diff --git a/404.html b/404.html index cd6c0df2208..4b875228447 100644 --- a/404.html +++ b/404.html @@ -15,13 +15,13 @@ - +
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We could not find what you were looking for.

Please contact the owner of the site that linked you to the original URL and let them know their link is broken.

- + \ No newline at end of file diff --git a/Design-Guide/design_guide.html b/Design-Guide/design_guide.html index 4e71ec81418..495c1bf013a 100644 --- a/Design-Guide/design_guide.html +++ b/Design-Guide/design_guide.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ chips. The Ethernet signal is a very sensitive signal for fast switching. In addition, this Design Guide will help you design Hardware using WIZnet's chips.: easily, quickly, accurately


Design Guide List


Design Guide Download


Limitation Note


- + \ No newline at end of file diff --git a/Design-Guide/eagle_cad_library_of_wiznet_products.html b/Design-Guide/eagle_cad_library_of_wiznet_products.html index 1bee8bb637d..a2b7c645548 100644 --- a/Design-Guide/eagle_cad_library_of_wiznet_products.html +++ b/Design-Guide/eagle_cad_library_of_wiznet_products.html @@ -15,13 +15,13 @@ - +
Skip to main content
- + \ No newline at end of file diff --git a/Design-Guide/hardware_design_guide.html b/Design-Guide/hardware_design_guide.html index e0f6e0ec271..4b0bb1f5e35 100644 --- a/Design-Guide/hardware_design_guide.html +++ b/Design-Guide/hardware_design_guide.html @@ -15,7 +15,7 @@ - + @@ -53,7 +53,7 @@ noise, and it causes EMI emission, also it is highly to interfere with external signals.
  • All Trace length difference should be less than 50mm(2000mil).
  • Routing for Data and Clock signals should be connected at 45° or curved lines except 90°.
  • Data and Clock signals prohibit Via or Layer changes

  • ESD & EMI


    ETC


    - + \ No newline at end of file diff --git a/Design-Guide/ir_reflow_profile.html b/Design-Guide/ir_reflow_profile.html index 0d7f92c649b..ae8fbebd830 100644 --- a/Design-Guide/ir_reflow_profile.html +++ b/Design-Guide/ir_reflow_profile.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Design-Guide/package_information.html b/Design-Guide/package_information.html index 169edd17709..49605294ca6 100644 --- a/Design-Guide/package_information.html +++ b/Design-Guide/package_information.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ OPTIONAL RADIUS ON THE OTHER END OF THE TERMINAL, THE DIMENSION b SHOULD NOT BE MEASURED IN THAT RADIUS AREA.
  • BILATERAL COPLANARITY ZONE APPLIES TO THE EXPOSED HEAT SINK SLUG AS WELL AS THE TERMINALS.
  • - + \ No newline at end of file diff --git a/Product/App-Module.html b/Product/App-Module.html index dccd45b3e2e..88fed0b8090 100644 --- a/Product/App-Module.html +++ b/Product/App-Module.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ server. Users can control & monitor the digital I/O and ADC inputs on module via web pages.


    Product Family


    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web.html b/Product/App-Module/WIZ550web.html index 27308119768..e1f397e1630 100644 --- a/Product/App-Module/WIZ550web.html +++ b/Product/App-Module/WIZ550web.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ / [Korean]

    Download


    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/datasheet-eng.html b/Product/App-Module/WIZ550web/datasheet-eng.html index 0d781f636a8..b73bbf5cc07 100644 --- a/Product/App-Module/WIZ550web/datasheet-eng.html +++ b/Product/App-Module/WIZ550web/datasheet-eng.html @@ -15,7 +15,7 @@ - + @@ -38,7 +38,7 @@ connection can opt to J26, J28 Jumper. WIZ550WEB Analog Input Jumper


    AC/DC Characteristics

    WIZ550WEB

    General Operating Conditions

    SymbolParameterPinsMinTypMaxUnit
    VDDStandard operating voltage3V3D23.33.6V
    VDDAAnalog operation voltage (ADC not used)3V3A2.03.33.6V
    :::Analog operation voltage (ADC used)3V3A2.43.33.6V
    VBATBackup operating voltageVBAT0.83.33.6V
    VINI/O Digital input voltageD0~D150-VDD+0.3V
    :::I/O Analog input voltageA0~A30-VDD+0.3V
    :::BOOT0BOOT00-5.5V
    :::NRSTNRST0-VDD+0.3V

    I/O Static Characteristic

    SymbolParameterPinsMinTypMaxUnit
    VILLow level input voltageD0~D15-0.5-0.7V
    VIHHigh level input voltageD0~D152.0-VDDV
    VIOOutput current sunk by any I/O and control pinD0~D15--25mA
    :::Output current source by any I/O and control pinD0~D15---25mA
    VIL(NRST)NRST Input low level voltageNRST-0.5-0.8V
    VIH(NRST)NRST Input high level voltageNRST2-3.3V

    Reference Schematic & Parts

    Schematic

    항목VersionSchematic
    WIZ550web1.1Download
    WIZ550web Baseboard1.0Download

    Parts Datasheet

    PartsDescripsionDatasheet
    STM32F103RCT6ARM 32-bit Cortex™-M3 CPU CoreSTM32F103RCT6
    W5500WIZnet TCP/IP ChipW5500
    AT45DB081D-SU8-Megabit Serial Flash MemoryAT45DB081D-SU
    24AA64T-I/OT64K I2C™ Serial EEPROM24AA64T-I/OT
    J1B1211CCDTransformer + RJ45 + LED, IndustrialJ1B1211CCD
    HR91C-051 pole, 3-10A Relay, 1c(SPDT)HR91C-05
    SP3485ENLow Power Half-Duplex RS-485 TransceiversSP3485EN
    SP3232EBEYTrue +3.0V to +5.5V RS-232 TransceiversSP3232EBEY
    TC1047AVNBTemperature to Voltage SensorTC1047AVNB
    LM358APWRDual Operational AmplifiersLM358APWR
    TLP290-44-Channel Transistor-Output PhotocouplersTLP290-4
    AOZ1210AIEZBuck 2A Simple Buck RegulatorAOZ1210AI

    WIZ550web

    74.95mm(W) x 30mm(L) x 24mm(H) (±0.5)

    WIZ550web Baseboard

    145mm(W) x 85mm(L) x 28mm(H) (±0.5)

    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/datasheet-kor.html b/Product/App-Module/WIZ550web/datasheet-kor.html index 975bac7d7e4..c5c9fa82c49 100644 --- a/Product/App-Module/WIZ550web/datasheet-kor.html +++ b/Product/App-Module/WIZ550web/datasheet-kor.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ 간단하게 0~12V입력이 가능하고 내부 회로를 통과해 WIZ550WEB으로 입력 된다. WIZ550WEB Analog Input Port

    Analog Input은 4개중에 2개(A0,A1)는 Baseboard 내부의 가변저항(10K)과 온도센서(TC1047AVNB)에 같이 연결이 되어 있거, 이 연결은 J26, J28 Jumper로 선택 할 수 있다. WIZ550WEB Analog Input Jumper


    AC/DC Characteristics

    WIZ550web

    General Operating Conditions

    SymbolParameterPinsMinTypMaxUnit
    VDDStandard operating voltage3V3D23.33.6V
    VDDAAnalog operation voltage (ADC not used)3V3A2.03.33.6V
    :::Analog operation voltage (ADC used)3V3A2.43.33.6V
    VBATBackup operating voltageVBAT0.83.33.6V
    VINI/O Digital input voltageD0~D150-VDD+0.3V
    :::I/O Analog input voltageA0~A30-VDD+0.3V
    :::BOOT0BOOT00-5.5V
    :::NRSTNRST0-VDD+0.3V

    I/O Static Characteristic

    SymbolParameterPinsMinTypMaxUnit
    VILLow level input voltageD0~D15-0.5-0.7V
    VIHHigh level input voltageD0~D152.0-VDDV
    VIOOutput current sunk by any I/O and control pinD0~D15--25mA
    :::Output current source by any I/O and control pinD0~D15---25mA
    VIL(NRST)NRST Input low level voltageNRST-0.5-0.8V
    VIH(NRST)NRST Input high level voltageNRST2-3.3V

    Reference Schematic & Parts

    Schematic

    항목VersionSchematic
    WIZ550web1.1 / 1.2Download
    WIZ550web Baseboard1.0Download

    Parts Datasheet

    PartsDescripsionDatasheet
    STM32F103RCT6ARM 32-bit Cortex™-M3 CPU CoreSTM32F103RCT6
    W5500WIZnet TCP/IP ChipW5500
    AT45DB081D-SU8-Megabit Serial Flash MemoryAT45DB081D-SU
    24AA64T-I/OT64K I2C™ Serial EEPROM24AA64T-I/OT
    J1B1211CCDTransformer + RJ45 + LED, IndustrialJ1B1211CCD
    HR91C-051 pole, 3-10A Relay, 1c(SPDT)HR91C-05
    SP3485ENLow Power Half-Duplex RS-485 TransceiversSP3485EN
    SP3232EBEYTrue +3.0V to +5.5V RS-232 TransceiversSP3232EBEY
    TC1047AVNBTemperature to Voltage SensorTC1047AVNB
    LM358APWRDual Operational AmplifiersLM358APWR
    TLP290-44-Channel Transistor-Output PhotocouplersTLP290-4
    AOZ1210AIEZBuck 2A Simple Buck RegulatorAOZ1210AI

    WIZ550web V1.1/V1.2

    74.95mm(W) x 30mm(L) x 24mm(H) (±0.5)

    WIZ550web Baseboard

    145mm(W) x 85mm(L) x 28mm(H) (±0.5) WIZ550WEB Baseboard Dimension

    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/download.html b/Product/App-Module/WIZ550web/download.html index 3b83c7c5e3c..ea464d96712 100644 --- a/Product/App-Module/WIZ550web/download.html +++ b/Product/App-Module/WIZ550web/download.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ H/W Rev 1.1/1.2 & bin 2.0.0

    WIZ550web H/W Rev1.1/1.2 & F/W bin v2.0.0 (zip) (Apr. 2016)

    Source code (with web pages)

    **WIZ550web GitHub Repository

    Rev1.1/1.2 (Link)** 🌎https://github.com/Wiznet/WIZ550web

    WIZ550web Latest Firmware Source code (Direct download)

    (Sep. 2016)


    Download Configuration Tool

    Program (Java based)

    WIZnet Configuration Tool (Direct download)

    WIZnet Configuration tool v1.02 (zip)

    Download EEPROM ERASE CODE

    WIZ550web H/W Rev1.1/1.2 EEPROM Memory ERASE CODE

    WIZ550web H/W Rev1.1/1.2 EEPROM ERASE FILE(HEX)

    How to program WIZ550web code flash memory

    1. WIZ550web enter the ISP mode

    Press the 'Boot' push button switch on baseboard (or BOOT pin) until turn on the board after reset or power supply

    2. Run the 'Flash Loader Demonstrator' Program

    Refer to 🌎Flash Loader Demonstrator

    3. Flash program and Run the new application firmware

    Please make sure a start address setting when you download a firmware into target.

    1. You must download a bootloader from 0x8000000 at least once.
    2. You must use 0x8007000 for an application firmware.

    4. How to WIZ550web Firmware

    Flash Loader Demo Picture

    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/future-plan-eng.html b/Product/App-Module/WIZ550web/future-plan-eng.html index 4fd712facd3..4511a2a9076 100644 --- a/Product/App-Module/WIZ550web/future-plan-eng.html +++ b/Product/App-Module/WIZ550web/future-plan-eng.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Future Plan(Eng)

    FunctionItemsv1.0.0v1.1.x
    Latest ver.
    v1.2.x
    AT commandSearching & Upating by NetworkOOO
    :::Search MAC address & updatingOOO
    :::Socket Control in Command modeOOO
    :::Data TX/RX in Command modeOOO
    SearchAll device searchOOO
    :::Search by MAC addressXXO
    :::Search by aliasingXXO
    :::Search by IP addressXXO
    Firmware UploadingTFTPOOO
    WEB ServerNetwork UpdatingOOO
    :::Jave scriptOOO
    :::GET/POST methodOOO
    :::CGIOOO
    :::GET/SET Func.XOO
    SD CardDetect SD cardOOO
    :::Read from SD cardOOO
    :::Write to SD cardOOO
    FTP ServerUploadXOO
    :::DownloadXOO
    Dynamic IPDHCPOOO
    :::DDNSXXO
    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/future-plan-kor.html b/Product/App-Module/WIZ550web/future-plan-kor.html index 2c65829dcac..a1086b20c5e 100644 --- a/Product/App-Module/WIZ550web/future-plan-kor.html +++ b/Product/App-Module/WIZ550web/future-plan-kor.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Future Plan(Kor)

    FunctionItemsv1.0.0v1.1.x
    Latest ver.
    v1.2.x
    AT command네트워크 정보 검색 및 설정OOO
    :::MAC 주소 검색 및 설정OOO
    :::Command mode에서 socket 제어OOO
    :::Command mode에서 데이터 송수신OOO
    Search모든 장치 찾기OOO
    :::MAC 주소 지정 찾기XXO
    :::별칭 지정 찾기XXO
    :::IP 주소 지정 찾기XXO
    Firmware UploadingTFTP 기능 지원OOO
    WEB ServerNetwork 정보 변경OOO
    :::Jave scriptOOO
    :::GET/POST methodOOO
    :::CGIOOO
    :::GET/SET Func.XOO
    SD CardSD card 인식OOO
    :::SD card에서 파일 읽기OOO
    :::SD card에 파일 쓰기OOO
    FTP ServerUploadXOO
    :::DownloadXOO
    Dynamic IPDHCP 기능 지원OOO
    :::DDNS 기능 지원XXO
    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/getting-started-guide-eng.html b/Product/App-Module/WIZ550web/getting-started-guide-eng.html index 77491c8ef39..8fe822de87e 100644 --- a/Product/App-Module/WIZ550web/getting-started-guide-eng.html +++ b/Product/App-Module/WIZ550web/getting-started-guide-eng.html @@ -15,7 +15,7 @@ - + @@ -142,7 +142,7 @@ XMLHttpRequest object provide a method for exchanging data asynchronously between browser and server to avoid full page reloads.

    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/getting-started-guide-kor.html b/Product/App-Module/WIZ550web/getting-started-guide-kor.html index f885cd3c9b3..904769e676b 100644 --- a/Product/App-Module/WIZ550web/getting-started-guide-kor.html +++ b/Product/App-Module/WIZ550web/getting-started-guide-kor.html @@ -15,7 +15,7 @@ - + @@ -99,7 +99,7 @@ 있다. AJAX 기법을 활용하면 웹 브라우저와 웹 서버 사이에 교환되는 데이터량과 웹서버의 데이터 처리량도 줄어들기 때문에 애플리케이션의 응답성이 좋아진다. 또한 웹 서버의 데이터 처리에 대한 부하를 줄여주는 일이 요청을 주는 수 많은 컴퓨터에 대해서 일어나기 때문에 전체적인 웹 서버 처리량도 줄어들게 된다.

    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/tutorials-eng.html b/Product/App-Module/WIZ550web/tutorials-eng.html index ca3b34df2ba..105fdf82970 100644 --- a/Product/App-Module/WIZ550web/tutorials-eng.html +++ b/Product/App-Module/WIZ550web/tutorials-eng.html @@ -15,7 +15,7 @@ - + @@ -62,7 +62,7 @@ Introduce the I/O Interface functions

    Interface Functions Guide for WIZ550web

    Overview

    WIZ550web provides the HTTP Request function set for CGI so that device name and network setting, control and monitoring of each digital I/O and analog input can be performed only by making web page without modification of firmware.

    It is implemented with GET/SET interface. By using JavaScript and AJAX to request CGI corresponding to each function with HTTP GET/POST method, user can easily implement web page that can control WIZ550web Can be.

    In the case of a GET command, it is configured to obtain a value in the form of a JavaScript Callback function for the corresponding request. For the SET command, you can send the value you want to set to WIZ550web by including it in the HTTP request with the CGI request in the form of specified Web form element.

    Please refer to 'Getting Started Guide:CGI for WIZ550web' for the CGI of WIZ550web.

    Get/Set interface Web pages and firmware for testing using CGI can be downloaded from the following link.

    WIZ550web GitHub Repository

    🌎https://github.com/Wiznet/WIZ550web

    WIZ550web GitHub Repository: Webpage source code

    🌎GET/SET Interface functions Testpage

    WIZ550web GET/SET Interface

    The CGI list for the GET/SET interface of WIZ550web is shown below.

    GET Function List

    Get: Functions Table

    HTTP Request CGIname Description
    widget.cgiGet Basic Settings
    io.cgiGet I/O all status, include pin 90,91 on-board LED
    io_alias.cgiGet all I/O status. direction and port names
    adc.cgiGet all ADC Status/values
    get_devinfo.cgiGet Device info
    get_netinfo.cgiGet Network info
    get_serial_data.cgiGet serial data from buffer (Console port)
    get_uart0info.cgiGet Serial port 0 settings (UART1, Console)
    get_uart1info.cgiGet Serial port 1 settings (UART2, AT command)
    get_dio0.cgi ~ get_dio15.cgiGet I/O status per port
    get_ain0.cgi ~ get_ain3.cgiGet ADC info per port
    SectionCGI nameJavaScript Callback ParameterReturn TypeDescriptionValue (Example)Note
    Device Informationget_devinfo.cgifwverStringFirmware version1.0.0-
    devnameStringDevice nameWIZ550web-
    pcodeStringProduct identifier1-2-0 For WIZ configuration tool mac String MAC address 00:08:DC:xx:xx:xx-
    Network Informationget_netinfo.cgiipStringIP address192.168.11.2-
    gwStringGateway IP address192.168.11.1-
    subStringSubnet Mask255.255.255.0-
    dnsStringDNS server IP address8.8.8.8-
    dhcp1-digit numberDHCP enable0 or 11 : Enabled,0 : Disabled
    Serial Port Informationget_uart0info.cgi get_uart1info.cgibaud1-digit numberBaud rate0 ~ 90:600,1:1200,2:2400,3:4800,4:9600,5:19200,6:38400,7:57600,8:115200,9:230400
    databit1-digit numberData bit0 or 10:Databit8 1:Databit9
    parity1-digit numberParity bit0 ~ 20:None 1:Odd 2:Even
    stopbit1-digit numberStopbit0 or 10:Stopbit1 1:Stopbit2
    flow1-digit numberFlow control0 ~ 30:None 1:RTS/CTS,2:RS-422,3:RS-485
    16-Digital I/O(0 ~ 15)get_dio0.cgi~get_dio15.cgidio_p1 or 2-digit numbersI/O Pin Info.0-
    dio_s1-digit numberI/O State0 or 10 : Low,1 : High
    dio_d1-digit numberI/O Direction0/1/20 : NotUsed,1 : Input,2 : Output
    dio_aStringI/O AliasDigital I/O #0-
    4-Analog Inputs(12-bit ADC)get_ain0.cgi~get_ain3.cgiain_p1-digit numberAnalog input pin0 ~ 3-
    ain_v1 ~ 4-digit numbersAnalog input value0 ~ 4095The values need to transform for use.

    Get: JavaScript Callback Function Name Table

    HTTP Request CGI nameJavaScript Function Name on Web page
    get_devinfo.cgifunction DevinfoCallback(o)
    get_netinfo.cgifunction NetinfoCallback(o)
    get_uart0info.cgifunction UartinfoCallback(o)
    get_uart1info.cgi
    get_dio0.cgi~get_dio15.cgifunction DioCallback(o)
    get_ain0.cgi~get_ain3.cgifunction AinCallback(o)

    SET Function List

    Set: Functions Table

    HTTP Request CGI nameDescription
    config.cgiSet Basic Settings for 🌎DemoPages
    dout.cgiSet I/O port On/Off
    save_alias.cgiChange name of I/O port
    dir_change.cgiChange I/O direction
    tx_serial_data.cgiSend serial data to UART1(Console port)
    set_default_io_status.cgiIO Settings Factory Reset and Reboot
    set_devinfo.cgiSet Device info (changes takes effect after reboot)
    set_netinfo.cgiSet Network info (changes takes effect after reboot)
    set_uart0info.cgiSet Serial port 0 settings (UART1, Console) (changes takes effect after reboot)
    set_uart1info.cgiSet Serial port 1 settings (UART2, AT command) (changes takes effect after reboot)
    set_diodir.cgiChange I/O direction. same as dir_change.cgi
    set_diostate.cgiSet I/O port On/Off. almost the same as dout.cgi
    set_dioalias.cgi

    config.cgi is for 🌎DemoPages.

    Other common APIs are from set_devinfo.cgi

    SectionCGI nameParameterWebform ElementDescriptionParameter ExampleNote
    Device Configurationconfig.cgidevicenameParam: StringDevice namedevicename=WIZ550WEB
    dhcpParam: 0 or 1DHCP enabledhcp=01 : Enabled
    0 : Disabled
    libParam: StingLocal IP addresslip=192.168.11.100Including dots
    gwParam: StringGateway IP addressgw=192.168.11.254
    subParam: StringSubnet Masksub=255.255.255.192
    dnsParam: StringDNS server IP addressdns=168.126.63.1
    baudrateParam: 1-digit numberBaud ratebaud=8
    databitParam: 8~9Data bitdatabit=88:Databit8,
    9:Databit9
    parityParam: 0~2Parity bitparity=00:None,
    1:Odd,
    2:Even
    stopbitParam: 1~2Stopbitstopbit=11:Stopbit1
    2:Stopbit2
    flowcontrolParam: 0~3Flow controlflowcontrol=00:None,
    1:RTS/CTS,
    2:RS-422,
    3:RS-485
    Device Informationset_devinfo.cgidevnameParam: StringDevice namedevname=Server1-
    Network Informationset_netinfo.cgiipParam: StringIP addressip= 192.168.11.3Including dots
    gwParam: StringGateway IP addressgw= 192.168.11.254
    subParam: StringSubnet Mask sub= 255.255.255.192
    dnsParam: StringDNS server IP addressdns= 168.126.63.1
    dhcpParam: 0 or 1DHCP enabledhcp=01 : Enabled
    0 : Disabled
    Serial Port Informationset_uart0info.cgi set_uart1info.cgibaudParam: 1-digit numberBaud ratebaud=80:600,
    1:1200,
    2:2400,
    3:4800,
    4:9600,
    5:19200,
    6:38400,
    7:57600,
    8:115200,
    9:230400
    databitParam: 8~9Data bitdatabit=88:Databit8,
    9:Databit9
    parityParam: 0~2Parity bitparity=00:None,
    1:Odd,
    2:Even
    stopbitParam: 1~2Stopbitstopbit=11:Stopbit1,
    2:Stopbit2
    flowParam: 0~3Flow controlflow=00:None,
    1:RTS/CTS,
    2:RS-422,
    3:RS-485
    16-Digital I/O(0 ~ 15)set_diostate.cgipin / valParams: digit numbersI/O Statepin=0&val=1pin:0~15,
    val=0(Low/On),
    val=1(High/Off)
    set_diodir.cgipin / valI/O Directionpin=1&val=2pin:0~15,
    val=0(Not used),
    val=1(Input),
    val=2(Output)
    set_dioalias.cgipin / valParams: digit numbers / StringI/O Aliaspin=1&val=pin#1pin:0~15
    value:string
    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/tutorials-kor.html b/Product/App-Module/WIZ550web/tutorials-kor.html index b2f1d69f322..ea7d7c14c18 100644 --- a/Product/App-Module/WIZ550web/tutorials-kor.html +++ b/Product/App-Module/WIZ550web/tutorials-kor.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ Introduce the I/O Interface functions

    Interface Functions Guide for WIZ550web

    Overview

    WIZ550web은 펌웨어의 수정 없이 웹 페이지의 제작만으로 장치 이름 및 Network 설정, 각각의 Digital I/O와 Analog input의 제어와 모니터링을 수행할 수 있도록 CGI를 위한 HTTP Request function set을 제공한다.

    GET / SET interface로 나뉘어 구현되어 있으며, 사용자는 JavaScript와 AJAX를 이용한 HTTP GET / POST method로 각 기능에 해당하는 CGI를 요청하는 방법을 활용하면 손쉽게 WIZ550web을 제어할 수 있는 웹 페이지를 구현 및 제작 할 수 있다. GET 명령의 경우 해당하는 요청에 대한 JavaScript Callback function의 형태로 값을 얻도록 구성 되었으며, SET 명령의 경우 CGI 요청과 함께 설정하고자 하는 값을 지정된 Web form element의 형태로 HTTP request에 포함하여 WIZ550web으로 전송하면 된다.

    WIZ550web의 CGI에 관한 내용은 'Getting Started Guide: WIZ550web의 CGI' 챕터를 참조하기 바란다.

    Get/Set interface CGI를 이용한 테스트 용 웹 페이지 및 펌웨어는 다음 링크에서 다운로드 할 수 있다.

    WIZ550web GitHub Repository

    🌎https://github.com/Wiznet/WIZ550web

    WIZ550web GitHub Repository: Webpage source code

    🌎GET/SET Interface functions Testpage

    WIZ550web GET/SET Interface

    WIZ550web의 GET/SET interface를 위한 CGI 리스트는 아래와 같다.

    GET Function List

    Get: Functions Table

    HTTP Request CGIname Description
    widget.cgiGet Basic Settings
    io.cgiGet I/O all status, include pin 90,91 on-board LED
    io_alias.cgiGet all I/O status. direction and port names
    adc.cgiGet all ADC Status/values
    get_devinfo.cgiGet Device info
    get_netinfo.cgiGet Network info
    get_serial_data.cgiGet serial data from buffer (Console port)
    get_uart0info.cgiGet Serial port 0 settings (UART1, Console)
    get_uart1info.cgiGet Serial port 1 settings (UART2, AT command)
    get_dio0.cgi ~ get_dio15.cgiGet I/O status per port
    get_ain0.cgi ~ get_ain3.cgiGet ADC info per port
    SectionCGI nameJavaScript Callback ParameterReturn TypeDescriptionValue (Example)Note
    Device Informationget_devinfo.cgifwverStringFirmware version1.0.0-
    devnameStringDevice nameWIZ550web-
    pcodeStringProduct identifier1-2-0 For WIZ configuration tool mac String MAC address 00:08:DC:xx:xx:xx-
    Network Informationget_netinfo.cgiipStringIP address192.168.11.2-
    gwStringGateway IP address192.168.11.1-
    subStringSubnet Mask255.255.255.0-
    dnsStringDNS server IP address8.8.8.8-
    dhcp1-digit numberDHCP enable0 or 11 : Enabled,0 : Disabled
    Serial Port Informationget_uart0info.cgi get_uart1info.cgibaud1-digit numberBaud rate0 ~ 90:600,1:1200,2:2400,3:4800,4:9600,5:19200,6:38400,7:57600,8:115200,9:230400
    databit1-digit numberData bit0 or 10:Databit8 1:Databit9
    parity1-digit numberParity bit0 ~ 20:None 1:Odd 2:Even
    stopbit1-digit numberStopbit0 or 10:Stopbit1 1:Stopbit2
    flow1-digit numberFlow control0 ~ 30:None 1:RTS/CTS,2:RS-422,3:RS-485
    16-Digital I/O(0 ~ 15)get_dio0.cgi~get_dio15.cgidio_p1 or 2-digit numbersI/O Pin Info.0-
    dio_s1-digit numberI/O State0 or 10 : Low,1 : High
    dio_d1-digit numberI/O Direction0/1/20 : NotUsed,1 : Input,2 : Output
    dio_aStringI/O AliasDigital I/O #0-
    4-Analog Inputs(12-bit ADC)get_ain0.cgi~get_ain3.cgiain_p1-digit numberAnalog input pin0 ~ 3-
    ain_v1 ~ 4-digit numbersAnalog input value0 ~ 4095The values need to transform for use.

    Get: JavaScript Callback Function Name Table

    HTTP Request CGI nameJavaScript Function Name on Web page
    get_devinfo.cgifunction DevinfoCallback(o)
    get_netinfo.cgifunction NetinfoCallback(o)
    get_uart0info.cgifunction UartinfoCallback(o)
    get_uart1info.cgi
    get_dio0.cgi~get_dio15.cgifunction DioCallback(o)
    get_ain0.cgi~get_ain3.cgifunction AinCallback(o)

    SET Function List

    Set: Functions Table

    HTTP Request CGI nameDescription
    config.cgiSet Basic Settings for 🌎DemoPages
    dout.cgiSet I/O port On/Off
    save_alias.cgiChange name of I/O port
    dir_change.cgiChange I/O direction
    tx_serial_data.cgiSend serial data to UART1(Console port)
    set_default_io_status.cgiIO Settings Factory Reset and Reboot
    set_devinfo.cgiSet Device info (changes takes effect after reboot)
    set_netinfo.cgiSet Network info (changes takes effect after reboot)
    set_uart0info.cgiSet Serial port 0 settings (UART1, Console) (changes takes effect after reboot)
    set_uart1info.cgiSet Serial port 1 settings (UART2, AT command) (changes takes effect after reboot)
    set_diodir.cgiChange I/O direction. same as dir_change.cgi
    set_diostate.cgiSet I/O port On/Off. almost the same as dout.cgi
    set_dioalias.cgi

    config.cgi is for 🌎DemoPages.

    Other common APIs are from set_devinfo.cgi

    SectionCGI nameParameterWebform ElementDescriptionParameter ExampleNote
    Device Configurationconfig.cgidevicenameParam: StringDevice namedevicename=WIZ550WEB
    dhcpParam: 0 or 1DHCP enabledhcp=01 : Enabled 0 : Disabled
    libParam: StingLocal IP addresslip=192.168.11.100Including dots
    gw Param: StringGateway IP addressgw=192.168.11.254
    subParam: StringSubnet Masksub=255.255.255.192
    dnsParam: StringDNS server IP addressdns=168.126.63.1
    baudrateParam: 1-digit numberBaud ratebaud=8
    databitParam: 8~9Data bitdatabit=88:Databit8,9:Databit9
    parityParam: 0~2Parity bitparity=00:None ,1:Odd ,2:Even
    stopbitParam: 1~2Stopbitstopbit=11:Stopbit1 2:Stopbit2
    flowcontrolParam: 0~3Flow controlflowcontrol=00:None,1:RTS/CTS,2:RS-422,3:RS-485
    Device Informationset_devinfo.cgidevnameParam: StringDevice namedevname=Server1-
    Network Informationset_netinfo.cgiipParam: StringIP addressip= 192.168.11.3Including dots
    gwParam: StringGateway IP addressgw= 192.168.11.254
    subParam: StringSubnet Mask sub= 255.255.255.192
    dnsParam: StringDNS server IP addressdns= 168.126.63.1
    dhcpParam: 0 or 1DHCP enabledhcp=01 : Enabled 0 : Disabled
    Serial Port Informationset_uart0info.cgi set_uart1info.cgibaudParam: 1-digit numberBaud ratebaud=80:600,1:1200,2:2400,3:4800,4:9600,5:19200,6:38400,7:57600,8:115200,9:230400
    databitParam: 8~9Data bitdatabit=88:Databit8,9:Databit9
    parityParam: 0~2Parity bitparity=00:None,1:Odd,2:Even
    stopbitParam: 1~2Stopbit stopbit=11:Stopbit1,2:Stopbit2
    flowParam: 0~3Flow controlflow=00:None,1:RTS/CTS,2:RS-422,3:RS-485
    16-Digital I/O(0 ~ 15)set_diostate.cgipin / valParams: digit numbersI/O Statepin=0&val=1pin:0~15,val=0(Low/On),val=1(High/Off)
    set_diodir.cgipin / valI/O Directionpin=1&val=2pin:0~15 ,val=0(Not used),val=1(Input),val=2(Output)
    set_dioalias.cgipin / valParams: digit numbers / StringI/O Aliaspin=1&val=pin#1pin:0~15 value:string
    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/users-guide-eng.html b/Product/App-Module/WIZ550web/users-guide-eng.html index f6923dc2303..4d536be2676 100644 --- a/Product/App-Module/WIZ550web/users-guide-eng.html +++ b/Product/App-Module/WIZ550web/users-guide-eng.html @@ -15,7 +15,7 @@ - + @@ -44,7 +44,7 @@
  • Response:[S]
  • AT+FIOVAL

    AT+FIOVAL=<PIN>

    AT+FIOVAL=<PIN>,<VAL>

    < PIN> : GPIO Pin Number (1 ~ 16) < VAL> : GPIO Pin Output Value

    ParameterMeaning
    0Low
    1High

    [S,,<VAL>]
    [S]


    AT+FIOVAL=1\r\n

    [S,,1]

    AT+FIOVAL=1,1\r\n

    [S]

    - + \ No newline at end of file diff --git a/Product/App-Module/WIZ550web/users-guide-kor.html b/Product/App-Module/WIZ550web/users-guide-kor.html index 722b45ade62..28c21469f38 100644 --- a/Product/App-Module/WIZ550web/users-guide-kor.html +++ b/Product/App-Module/WIZ550web/users-guide-kor.html @@ -15,7 +15,7 @@ - + @@ -47,7 +47,7 @@ AT+FIOVAL=<PIN>,<VAL>

    < PIN> : GPIO Pin Number (1 ~ 16) < VAL> : GPIO Pin Output Value

    ParameterMeaning
    0Low
    1High

    [S,,<VAL>]
    [S]


    AT+FIOVAL=1\r\n

    [S,,1]

    AT+FIOVAL=1,1\r\n

    [S]

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    Azure Sphere Guardian ASG200

    Overview

    WIZnet Azure Sphere Guardian 200 (ASG200) is a product which provides Ethernet interfaces to both Public and Private Network. The general Azure Sphere Module supports only one ethernet Interface interacting with Azure Sphere Pluton OS. But ASG200 has an additional Ethernet interface which WIZnet Hardwired TCP/IP is embedded on, so that a legacy device having only ethernet interface can send data to the cloud server in Azure Sphere Security system.

    East to apply in brown field system, ASG200 supports a plenty of network application protocol libraries. ASG200 receives data from brown field system in private network and parses it. Then the data is secured and sent to Cloud server by ASG200.

    ASG200

    Features

    • Data transfer between the private network and the public network
    • Certificate management
      • By console
      • By Azure Sphere Service
      • By Configuration tool thru Ethernet (Under development)
    • Support TLS session in private network
    • Auto switching between Wi-Fi and Ethernet for public networks optionally
    • Support USB interface for debug and programming

    Specification

    ASG200

    Resources

    Software Checklist

    ASG200 ApplicationGithub Repository
    ASG200_AppGithub Link
    Library and SamplesGithub Repository
    ASG200_m4_SoftwareGithub Link
    - + \ No newline at end of file diff --git a/Product/Azure-Sphere/asg210-datasheet.html b/Product/Azure-Sphere/asg210-datasheet.html index edb1fe745e2..52c90841083 100644 --- a/Product/Azure-Sphere/asg210-datasheet.html +++ b/Product/Azure-Sphere/asg210-datasheet.html @@ -15,7 +15,7 @@ - + @@ -33,7 +33,7 @@ • Sandisk microSDHC class4 4GB • Sandisk microSDHC 1 class4 8GB • Sandisk Ultra microSDHC 1 class10 16GB

    LED Status

    An overview of ASG210 LED status as follows:

    NameStatus LEDsColorDescription
    LED0POWERRedConfirmation that 5V supply rail voltage is ok
    LED1AZUREGreenReady to communicate with Azure Cloud
    LED2Wi-FiGreenActivate Wi-Fi
    LED3ETHERNETGreenActivate WAN, ETH0 port
    LED4INTERFACEGreenReceived data from LAN, ETH1 port
    LED5BLUETOOTHGreenActivate Blue-tooth

    System Architecture

    System Architecture describes entire system which is ASG210 applied to Brown-field network and connected to Cloud Server and Management service

    Block Diagram

    ASG210 can send data via various interfaces to the cloud server and management service.

    GPIOs, UART, I2C Operating System Block Diagram

    In ASG210, M4 and A7 Cores of MT3620 can access to GPIOs, I2C, UART interface to communicate with user exsiting system, Brown field. ASG210 supports user-selected RS232/485/422 communication on mounted transceiver chip as well.

    The received data from GPIOs/I2C/UART is sent to Azure cloud or management service on Azure Sphere security system via public network, Ethernet, or Wi-Fi. In the same manner, the exsiting system can receive data from Azure cloud or management service via Azure Sphere security system. It allows users to access the system remotely with guaranteed high-level security.

    Dual Ethernet Operating System Block Diagram

    In ASG200, M4 Core of MT3620 is connected to W5500, which is WIZnet’s hardwired TCP/IP chip with SPI interface. Since the hardwired TCP/IP stack is embedded in W5500, software TCP/IP stack is not required on the M4 Core for ethernet communication. M4 Core only receives data parsed by W5500 then sends it to A7 Core on inter-core communication. A7 Core secures this data on Azure Sphere security system and sends it Azure Cloud via public network.

    W5500 is only connected with the SPI interface to M4 Core. Hence, the data communication between the brownfield system and W5500 is out of Azure Sphere security system. However, W5500 can filter the ethernet packets used in data communication and allow reliable Ethernet communication even if heavy traffic occurs, such as a DDoS attack.

    Dimensions

    Base PCB

    ASG210 Connections

    An overview of how ASG210 interface to the equipment in local network is as follows:

    1. Power provided to ASG210 with 5V2A power adapter, power status LED turned on.
    2. For equipment with as Ethernet interface, connect Ethernet cable from ASG210’s LAN port to the equipment.
    3. Connect another Ethernet cable from ASG210’s WAN port to internet router for public network.
    4. Once connected, the LEDs on ASG210 should be as follows:

    DC Power Cable Specification

    Power to ASG210 is supplied directly via 5V2A DC connector or via the debugger board USB Micro B connector.

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    Debugger Board

    Description

    ASG Debugger board supports programming and debugging Azure Sphere 3 Cores, A7 Core and Dual M4 Cores, and downloading and debugging Uart BLE module in MT3620 combo. There are 2 Micro-USB connectors and 1 JLINK interface pin-header. Each Micro USB connectors support Azure Sphere Cores debugging and JLINK interface pin-header supports BLE software download and debugging.

    USB-Debug/Prog. UART Interface

    ASG210 supports Debugger Connector for ASG Debugger board to debug and program. ASG Debugger board includes on-board, the Microsoft-specified FTDI 4-port USB to Serial bridge implementation of the RECOVERY, SERVICE, DEBUG and SWD interfaces. These interfaces are primarily used for software application development and/or programming of USI Azure Sphere Combo module onboarded on ASG210. This requires a USB cable to be connected from Micro-USB PortA, to a Windows-10 (or Linux) computer on which Azure Sphere SDK and the relevant USB drivers have been installed.

    ASG Debugger board also supports Micro-USB PortB to debug M4 cores and BT SWD to download/debug BT in USI Azure Sphere Combo module. User can debug M4 cores using Micro-USB PortB with baud rate of 115200.

    A simplified block diagram of ASG Debugger board is shown below:

    Installation Overview

    Users need ASG Debugger board to install ASG210 with Micro usb cable and 5V2A power adaptor. ASG Debugger board can be attached to ASG210’s debugger connector for debugging and programing. ASG Debugger board supports 2Micro usb connectors and JLINK pin header. 2Micro usb connectors are for programming and debugging Azure Sphere MT3620 A7/Dual M4 Cores. It also supports Azure Sphere CLI connection. JLINK pin header is for download and debugging BLE.

    User applications for ASG210 are developed in C using Microsoft’s Visual Studio IDE and Azure Sphere SDK. Visual Studio provides a powerful development environment for compiling and debugging application codes. And Azure Sphere SDK also supports Azure Sphere Development command prompt to set Azure Sphere module for user application development.

    These components are optional. Needed additional purchase.

    ASG Debugger board connector

    ASG Debugger board supports connectors and interface as follows:

    NameTypeDescription
    AZURE DebuggerMicro USB PortAA7 Core program and debugger port
    Supports Aure Sphere CLI
    M4 DebuggerMicro USB PortBDual M4 Cores program and debugger port
    JLINK3V33V3
    SWDIOData I/O Pin
    SWDCLKClock Pin
    BTRSTBLE Reset Pin
    GNDGND
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    Getting Started

    Software Development Environment Preparation

    Complete the below steps to develop applications on a Windows or Linux System.

    Machine Environment

    You can select Azure Sphere development kit for your machine and install software.

    • On Windows 10 (1st anniversary update or more)
      • Visual Studio Enterprise, Professional or Community 2019
      • Visual Studio Code
    • On Linux
      • Visual Studio Code

    Azure Sphere SDK Installation

    Download Azure Sphere SDK and install it.

    Then complete Azure Sphere SDK Extension Install for development tool.

    Visual Studio Code settings.json

    Please check cmake options in settings.json for Visual Studio Code:

    "cmake.cmakePath": "C:\\Program Files\\CMake\\bin\\cmake.exe",
    "cmake.configureSettings": {
    "CMAKE_MAKE_PROGRAM": "C:\\ninja\\ninja-v1.10.0\\ninja.exe",
    },
    "AzureSphere.ArmGnuPath": "C:\\Program Files (x86)\\GNU Arm Embedded Toolchain\\9 >2020-q2-update\\bin",
    "AzureSphere.SdkPath": "C:\\Program Files (x86)\\Microsoft Azure Sphere SDK",

    Azure Sphere Debugger

    The MT3620 exposes two dedicated UARTs and SWD interface for debugging. The Azure Sphere PC software tools require the use of a USB-to-UART interface that exposes these interfaces to a PC in a way that allows the tools to recognize and interact with them. For this, ASG200 components have a ‘Debugger’ board which can attach to 18pin headers on ASG200. To use this debugger board, user should init the interface information with FTDI tools.

    Please follow these steps described in this link:

    Development Environment

    Azure Sphere CLI

    The azsphere.exe command-line utility supports commands that manage Azure Sphere elements. For the more details, enter the below link:

    On Azure Sphere Developer Command Prompt Preview, the option, -?, helps to show the command information.

    Register User Account

    To manage Azure Sphere elements for development, log in Azure Sphere Developer Command Prompt Preview with Microsoft account. To use Azure Sphere Security Service, Microsoft Account is required.

    Log in on azsphere login command (Needed the option, –-newuser, with azsphere login command to register the account only have to sign in once.)

    azsphere login –newuser <MS Account>

    Azure Sphere Tenant

    An Azure Sphere tenant provides a secure way for your organization to remotely manage its Azure Sphere devices in isolation from other customer’s devices. And it is accessed based on RBAC (Role Based Access Control). Only people with an account in that directory will be able to manage devices within your Azure Sphere tenant.

    Role assigned an account in the Azure Sphere tenant

    Follow these steps to select the role assigned Azure Sphere tenant:

    1. Search the tenant list
    azsphere tenant list
    1. Select the tenant from the list with tenant id
    azsphere tenant select -I <tenant id>
    1. Check the selected tenant
    azsphere tenant show-selected

    Create new tenant

    There is no existed Azure Sphere tenant or assigned role in it. User can create new Azure Sphere tenant.

    azsphere tenant create -n <tenant name>

    Claim

    Check the selected tenant for development environment. Once ASG200 is claimed to the Azure Sphere tenant, claiming to other tenants is prohibited following Azure Sphere Security policy.

    azsphere device claim

    Recovery Interface

    Once ASG200 is connected to the internet, Azure Sphere OS updates are initiated automatically via OTA (Over The Air) Wi-Fi interface. Also, user can manually update Azure Sphere OS with recovery. Recovery is the process of replacing the latest system software on the device using a special recovery bootloader instead of cloud update.

    Follow these steps to update the latest Azure Sphere OS:

    1. Set Wi-Fi interface
    azsphere device wifi add --ssid <SSID> --psk <Password>
    1. Check Wi-Fi status
    azsphere device wifi show-status
    1. Recovery for Azure Sphere OS update
    azsphere device recover
    1. Check Azure Sphere OS version
    azsphere device show-os-version

    Development Mode

    Connect Debugger board which is attached to ASG200 debug interface to PC and set development mode for debugging on In Azure Sphere Developer Command Prompt Preview.

    On development mode, OTA is inactivated.

    Development mode for debugging (Add option for RT App debugging).

    --enablertcoredebugging option requires administrator privilege because it installs USB driver for the debugger

    azsphere device enable-development --enablertcoredebugging

    Configuration Wi-Fi Network Settings

    Scan for Wi-Fi Access Point

    A quick-check of Wi-Fi reception can be done:

    azsphere device wifi scan

    Configuring the Wi-Fi Network Settings

    1. Set new Wi-Fi
    azsphere device wifi add –-ssid <SSID> --psk <Password>

    azsphere device wifi add -s <SSID> -p <Password>
    1. Verify the present Wi-Fi connectivity status
    azsphere device wifi show-status
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    Resources

    Software Checklist

    Libraries and SamplesDownload Link
    Visual Studio 2019 (Enterprise, Progessional or Community edition)Link
    Visual Studio Code (Support Window/Linux OS)Link
    Microsoft Azure Sphere SDK (Support Window/Linux OS)Link

    User Applications for ASG210

    Libraries and SamplesDescriptionGithub Repository
    ASG210-examplesPeripheral Interface examples for each M4 core and A7 core

    GPIO
    - GPIO_HLApp_mt3620_BareMetal
    - GPIO_RTApp_mt3620_BareMetal

    I2C
    - I2C_HLApp_mt3620_BareMetal
    - I2C_RTApp_mt3620_BareMetal
    - I2C_SSD1306_HLApp_mt3620_BareMetal
    - I2C_SSD1306_RTApp_mr3620_BareMetal

    UART
    - UART_HLApp_mt3620_BareMetal
    - UART_RTApp_mt3620_BareMetal
    - UART_Openlog_RTApp_mt3620_BareMetal

    DHCP Server/Client
    - DHCP_Client_HLApp
    - DHCP_Client_RTApp
    - DHCP_Server_HLApp
    - DHCP_Server_RTApp
    Github Link
    ASG210_ApplicationAzure IoT Application using variety peripheral Interfaces
    - Dual Ethernet Azure IoT Application
    Github Link

    Key USI documents are located in the IoT Devices tab

    Key Mediatek and Microsoft documentation is located at:

    Technical Support Resources:

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    Running Application

    This section describes how to run Dual-Ethernet Application on ASG210 (For the more details, please refer to Dual Ethernet Operating System Block Diagram. ASG210 Dual-Ethernet Application consists of High-level application and Real-time capable application.

    Step 1. Clone repository

    Clone the repository

    $ git clone https://github.com/WIZnet-Azure-Sphere/ASG210_App

    Step 2. Network configuration

    This application sends local data to Azure cloud. User should configure ASG210 connection to Local network and Global network as shown below.

    Step 3. Real-time Capable Application

    Set Local Network Information

    To run Real-time capable application, user should set Local Network information. User can select static network and DHCP network.

    Set up Static network

    User can set up static network in ASG210_RTApp code. Go to this directory in ASG210_App, ASG210_App/Software/ASG210_RTApp_W5500_SPI_BareMetal and open main.c. Enable #define NETINFO_USE_MANUAL and set local network information.

    Set up DHCP network

    User can set up DHCP network in ASG210_RTApp code. Go to this directory in ASG210_App, ASG210_App/Software/ASG210_RTApp_W5500_SPI_BareMetal and open main.c. Disable #define NETINFO_USE_MANUAL.

    Build and download

    From the Select Startup Item menum on the tool bar, select GDB Debugger (RTCore). Click Build All on Build menu. Press F5 or Click Startup Item to start the RT application with debugging. (Please check Azure Sphere Development mode with Azure Sphere Developer Command Prompt.)

    Prepare Azure Sphere development mode:

    azsphere device enable-development

    Step 4. Set High-Level application

    Set up Azure IoT Hub for ASG210

    To run this application, user should set up user’s own Azure IoT Hub service for ASG210. In this link, it describes how to create Azure IoT Hub and DPS service, then guides ASG210 authentication using DPS service.

    https://docs.microsoft.com/en-us/azure-sphere/app-development/setup-iot-hub

    Set Azure Cloud Parameters

    To connect Azure Cloud, user must fullfil the parameters about Azure IoT Hub, DPS and Tenant ID on app_manifest.json in ASG210_HLApp.

    Azure DPS Scope ID

    Copy the ID Scope from Device Provisioning Service in Azure Portal.

    Azure IoT Hub endpoint URL

    Copy the IoT Hub endpoint URL from IoT Hun in Azure Portal.

    Azure Sphere Tenant ID

    Copy the Azure Sphere Tenant ID from Azure Sphere Developer Command Prompt

    azsphere tenant show-selected

    Set Wi-Fi Information

    ASG210 supports auto switching between Public Ethernet and Wi-Fi. Public Ethernet interface has high priority. Please refer Configuration Wi-Fi Network Settings.

    Set up Public Ethernet interface

    To enable ethernet interface for public network and communication with Azure IoT, install ethernet imagepackage by deploying a board configuration image to ASG210. The board configuration image contains information that the Azure Sphere Security Service requires to add support for Ethernet to the Azure Sphere OS.

    Follow these steps to enable public ethernet interface:

    1. Create a board configuration image package
    azsphere image-package pack-board-config –-preset lan-enc28j60-isu0-int5 –-output 
    1. Prepare ASG210 for development mode
    azsphere device enable-development
    1. Sideload a board configuration image package
    azsphere device sideload deploy --imagepackage enc28j60-isu0-int5.imagepackage
    1. Check the sideloaded imagepackage
    azsphere device image list-installed

    Build and download

    From the Select Startup Item menum on the tool bar, select GDB Debugger (HLCore). Click Build All on Build menu. Press F5 or Click Startup Item to start the HL application with debugging. (Please check Azure Sphere Development mode with Azure Sphere Developer Command Prompt.)

    Prepare Azure Sphere development mode:

    azsphere device enable-development

    Step 5. Check application operation

    Send data to ASG210 from Local Network

    Set user device network address range and connect to ASG210 network address in Local network with TCP Client. After connection between user device and ASG210, user device can send JSON format data to transmit it to Azure Cloud through ASG210.

    Check the data in Azure Cloud

    ASG210 sends user device data to Azure Cloud. User can check the data sent from user device in Azure Cosmos DB or Storage.

    Auto Switch in ASG210 Network Interface

    This application supports auto switching network interface to guarantee Azure Cloud connection. If Ethernet connection is not working anymore, ASG210 switches from Ethernet to Wi-Fi interface and re-connects to Azure Cloud. (Vice versa works as well.)

    - + \ No newline at end of file diff --git a/Product/Azure-Sphere/asg210.html b/Product/Azure-Sphere/asg210.html index 668424abc76..fb80ef139d3 100644 --- a/Product/Azure-Sphere/asg210.html +++ b/Product/Azure-Sphere/asg210.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    Overview

    Introduction

    WIZnet’s ASG210 including Azure Sphere MT3620 combo designed by USI is an Azure Sphere guardian module designed to retrofit the brownfield systems that seek to add data communication with cloud service and secure remote access. ASG210 supports various interfaces - GPIOs/I2C/UART (RS232/485/422) – and public network connectivity – Wi-Fi(Ext-Ant)/Ethernet - to help reduce additional cost and add high-level security and cloud service.

    ASG210’s Azure Sphere module supports high-level security system for cloud services. In public networks, data transmissions are encrypted. All Azure Sphere OS and application updates are delivered securely via Microsoft Azure Sphere Security Service, and authentication ensures the module only communicates with trusted hosts. With ASG210, On-premise systems can more confidently communicate existing devices with the cloud to operate more efficiently.

    WIZnet ASG210 includes Azure Sphere systems. Customers will need an Azure tenant, which is free, to enable the automated Azure Sphere security and OS updates.

    ASG210-MCASG210 (Non-Case Version)
    ASG210 Case VersionASG210 (Non-Case Version)

    Features

    • USI Azure Sphere MT3620 Combo features:
      • ARM Cortex-A7, 4MB SRAM
      • 2x ARM Cortex-M4, 192KB TCM, 64KB SRAM (per Core)
      • Dual-band 2.5/5GHz 802.11 a/b/g/n Wi-Fi with Ext.antenna and PCB antenna
      • BT5.0 with U.FL Ext.antenna
    • Data transfer between private network and public network
    • Supports GPIOs/I2C/UART(RS232/485/422) interfaces
    • Support Private Network Configuration via Configuration tool
    • Support Micro SD Card slot (UART to SDCard)
    • 1x User button, 5x Status LEDs, 1x Power LED
    • Auto switching between Wi-Fi and Ethernet for public networks
    • 5V DC Power Regulation (2A max, with over voltage protection)
    • Dimentions: 80.0mm x 75.0mm x 18.0mm
    • Debugger connector for ASG Debugger board (ASG Debugger board supports program and debug Azure Sphere Cores(A7/2x M4 Cores), download and debug BLE with JLINK interface)
    ASG210-MC Dual Ethernet, User/Reset button and Power connector
    ASG210-MC I2C/GPIOs/UART Interface connectors
    ASG210-MC Debugger connector and SDCard slot

    Key Benefits

    • Securely connect On-premise system:

      Retrofit existing equipment easily and cost-effectively with a comprehensive, cloud connectivity solution with high-level security system.

    • Device Management Service:

      ASG210 support securely remote monitor and configurate equipment to increase efficiency, reduce costs and improve the customer cloud experience.

    Target Applications

    • Secure Public networks
    • Smart Retail and Smart Supply Chain
    • Smart City and Smart Farm
    • Factory and Building Automation
    • Smart Energy and Smart Grids

    Product Handling

    To Program and operate ASG210, the below components (Debugger, Micro USB cable and 5V2A power adapter) are needed.

    These components are optional and available for purchase separately.

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-debug-wizwiki-w7500.html b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-debug-wizwiki-w7500.html index 825259eb1c6..5eed092c4fb 100644 --- a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-debug-wizwiki-w7500.html +++ b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-debug-wizwiki-w7500.html @@ -15,7 +15,7 @@ - + @@ -54,7 +54,7 @@ menu.

  • Only set 'Erase Sectors', 'Program', 'Verify' in Download Function.

  • Click W7500 128KB FLASH in Programming Algorithm and fill the [Start][Size] Box.

  • You can get [Start] address and [Size] from target information like figure below. If everything is entered correctly, Click 'OK'.

    The remaining steps can be followed by the previous description.

    How to switch app & boot for debug

    You just need reset device and debug that you want!


    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-install-wizwiki-7500-serial-driver.html b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-install-wizwiki-7500-serial-driver.html index 329a05ea8af..bdd88c5e807 100644 --- a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-install-wizwiki-7500-serial-driver.html +++ b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-install-wizwiki-7500-serial-driver.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ 🌎ARM mbed Window serial configuration PAGE
    If the driver is successfully installed, serial port that is created as "mbed Seral Port (COMn)" in Device Manager.


    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-start-wizwiki-w7500-board.html b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-start-wizwiki-w7500-board.html index bfcdad7ea43..26df9fbf913 100644 --- a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-start-wizwiki-w7500-board.html +++ b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-start-wizwiki-w7500-board.html @@ -15,7 +15,7 @@ - + @@ -34,7 +34,7 @@ WIZwiki-W7500.

  • WIZwiki-W7500 operates as loopback server.

  • Make proceed with the ping test or loopback test with an IP of 192.168.077.009 on WIZwiki-W7500.

    Necessarily, IP of the PC must also be set to 192.168.077.XXX.
  • If you can do everything well, then your WIZwiki-W7500 doesn't have any problem.

  • - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-write-firmware-into-cmsis-dap.html b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-write-firmware-into-cmsis-dap.html index ab321b3fc73..889c0a1c650 100644 --- a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-write-firmware-into-cmsis-dap.html +++ b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-write-firmware-into-cmsis-dap.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ update the firmware for the CMSIS -DAP, when a new version CMSIS-DAP firmware has released.

    This page shows how to write firmware into CMSIS-DAP.


    Writing firmware into the CMSIS-DAP

    Firmware Download

    To follow

    1. While pressing the Reset SW on WIZwiki-W7500, connect the USB cable to WIZwiki-W7500 and wait for a removable disk, CRP_DISABLD, to appear.

    2. Then you can find the difference between a normal removable disk and a removable disk with pressing the Reset SW.

    3. Delete firmware.bin existing in the CRP_DISABLD disk.

    4. Drag and Drop or copy the updated firmware to the CRP_DISABLD disk for CMSIS-DAP.

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-write-firmware-into-wizwiki-w7500.html b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-write-firmware-into-wizwiki-w7500.html index b6f3ae99ce5..fc737c66e49 100644 --- a/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-write-firmware-into-wizwiki-w7500.html +++ b/Product/Mbed-WIZwiki-Platform/Getting-Started/how-to-write-firmware-into-wizwiki-w7500.html @@ -15,7 +15,7 @@ - + @@ -48,7 +48,7 @@

  • Connect ULINK debugger and SWD Header. At this moment, be careful of matching pin number.

  • Setting Flash Algorithm and ULINK debugger in Keil and
    Download on WIZwiki-W7500. Then you can check the success message.


  • Reference


    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/Getting-Started/using-cmsis-dap-debugger.html b/Product/Mbed-WIZwiki-Platform/Getting-Started/using-cmsis-dap-debugger.html index b445198d552..990d4ce12e4 100644 --- a/Product/Mbed-WIZwiki-Platform/Getting-Started/using-cmsis-dap-debugger.html +++ b/Product/Mbed-WIZwiki-Platform/Getting-Started/using-cmsis-dap-debugger.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@

  • Next to the Debug menu bar, Click 'Flash Download' and set 'Erase Full Chip' in Download Function, '0x20000000 to 0x4000' in RAM for Algorithm, Add 'W7500_128KB_FLASH' on Programming Algorithm. After checking it with below figure, click 'OK'.

  • Download the firmware into WIZwiki-W7500. You can check complete message and the CMSIS-DAP Debugger at the bottom. Chick the 'Debug icon' or Ctrl+F5 to debug.

  • - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit.html index d491bc9e8f1..113a60251bf 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ (Do-It-Yourself).

    mbed Starter Kit all parts

    한국어

    WIZwiki-W7500 mbed Starter Kit 제품 소개
    스타터 킷 튜토리얼 (예제로따라해보기)

    English

    WIZwiki-W7500 mbed Starter Kit Introduction
    Starter Kit Tutorial

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-1-led-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-1-led-eng.html index ab38b906ba7..1c904c8d452 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-1-led-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-1-led-eng.html @@ -15,7 +15,7 @@ - + @@ -35,7 +35,7 @@ will blink every 0.2 second. WIZwiki-W7500 LED1

    If the LED blinks successfully, it means that the example code is operating on the WIZwiki-W7500 board. This exercise making the LED blink is called “Hello World.”

    Users can test with different time value of the wait function.

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-1-led-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-1-led-kor.html index 67b4d4d98d0..723c2dfeb2f 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-1-led-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-1-led-kor.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ 다운로드한다.

    Example Code

    #include "mbed.h"

    DigitalOut myled(LED1);

    int main(/) {
    while(1) {
    myled = 1;
    wait(0.2);
    myled = 0;
    wait(0.2);
    }
    }

    예제 실행 및 결과

    PC에 복사된 파일인 mbed_blinky_WIZWIKI_W7500.bin 파일을 mbed 드라이브 (예를 들면, E: 또는 F: 등)로 복사한다.

    그리고, 리셋 핀을 눌러준다. 연결도의 그림에서 파란색 동그라미 내부의 D4 부분이 0.2초 간격으로 깜박인다.

    WIZwiki-W7500 LED1

    LED가 깜박이고 있으면 WIZwiki-W7500 플랫폼 보드에서 예제 코드가 정상동작하고 있는 것이다. 이렇게 LED를 깜박이게 만드는 LED Blink 예제를 보통 "Hello World"라고도 부른다.

    사용자는 wait 함수의 시간 값을 바꿔가며 테스트 해 볼 수 있다.

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-2-serial-port-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-2-serial-port-eng.html index c19cec18994..db53fa406a5 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-2-serial-port-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-2-serial-port-eng.html @@ -15,7 +15,7 @@ - + @@ -34,7 +34,7 @@

    Another example

    This example can do both data output and input and is created by the WIZnet team. Click the link below and open main.cpp to copy/import/test the code.

    🌎https://os.mbed.com/teams/WIZnet/code/Serial_HelloWorld_WIZwiki-W7500/

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-2-serial-port-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-2-serial-port-kor.html index 77e89f0ee70..d92539403b0 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-2-serial-port-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-2-serial-port-kor.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ PC 환경마다 다를 수 있다.

    프로그램 실행 결과는 다음과 같다.

    다른 실습 예제

    데이터 출력뿐만이 아니라 입력도 테스트 할 수 있는 예제이다. 이 예제는 WIZnet 팀에서 만든 예제이다. 아래 링크를 클릭한 후 main.cpp를 열어 코드를 복사해 테스트해 볼 수도 있고, Import해서 실행할 수도 있다. 🌎https://os.mbed.com/teams/WIZnet/code/Serial_HelloWorld_WIZwiki-W7500/

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-3-switch-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-3-switch-eng.html index 13df32fec01..ec562babe1a 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-3-switch-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-3-switch-eng.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ becomes “0”, then the LED1 on the WIZwiki board turns on.

    When you release the button, the LED turns off.

    To learn Class and API like the DigitalOut and DigitalIn parts of the above example code, refer to the mbed Handbook page. 🌎https://os.mbed.com/handbook/Homepage

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-3-switch-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-3-switch-kor.html index 34821a0c885..d5843295b26 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-3-switch-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-3-switch-kor.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ mybutton(D6); 부분은 D6 핀을 입력모드로 설정한다.

    손으로 버튼을 누르면 LED가 켜진다. 3.3V 전압이 D6 핀으로 입력되면 mybutton이 "1"로 인식이 되고, myled가 "0"이 된다. myled가 "0"이 되면 WIZwiki 보드에 장착된 LED1 가 켜진다.

    버튼에서 손을 떼면 LED가 꺼진다.

    위 Example Code 부분 DigitalOut 과 DigitalIn 등의 Class와 API에 대한 학습은 mbed Handbook 페이지를 참고한다. 🌎https://os.mbed.com/handbook/Homepage

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-4-pwm-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-4-pwm-eng.html index cef87a31410..6d70a3dce7f 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-4-pwm-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-4-pwm-eng.html @@ -15,7 +15,7 @@ - + @@ -30,7 +30,7 @@ codes below and compile.

    #include "mbed.h"

    #define VOLUME 0.02
    #define BPM 100.0

    PwmOut pwm_pin(D3);

    // Plays a sound with the defined frequency, duration, and volume
    void playNote(float frequency, float duration, float volume) {
    pwm_pin.period(1.0/frequency);
    pwm_pin = volume/2.0;
    wait(duration);
    pwm_pin = 0.0;
    }

    int main(/)
    {
    float beat_duration;

    // Calculate duration of a quarter note from bpm
    beat_duration = 60.0 / BPM;

    // Loop forever
    while(1) {

    playNote(261.626, (0.75 * beat_duration), VOLUME);
    playNote(329.628, (0.75 * beat_duration), VOLUME);
    playNote(391.995, (0.75 * beat_duration), VOLUME);

    playNote(261.626, (0.75 * beat_duration), VOLUME);
    playNote(329.628, (0.75 * beat_duration), VOLUME);
    playNote(391.995, (0.75 * beat_duration), VOLUME);

    playNote(440.000, (0.75 * beat_duration), VOLUME);
    playNote(440.000, (0.75 * beat_duration), VOLUME);
    playNote(440.000, (0.75 * beat_duration), VOLUME);
    playNote(391.995, ((2 * beat_duration) - 0.1), VOLUME);
    wait(0.1);

    playNote(349.228, (0.75 * beat_duration), VOLUME);
    playNote(349.228, (0.75 * beat_duration), VOLUME);
    playNote(349.228, (0.75 * beat_duration), VOLUME);

    playNote(329.628, (0.75 * beat_duration), VOLUME);
    playNote(329.628, (0.75 * beat_duration), VOLUME);
    playNote(329.628, (0.75 * beat_duration), VOLUME);

    playNote(293.665, (0.75 * beat_duration), VOLUME);
    playNote(293.665, (0.75 * beat_duration), VOLUME);
    playNote(293.665, (0.75 * beat_duration), VOLUME);

    //playNote(261.626, ((2 * beat_duration) - 0.1), VOLUME);
    playNote(261.626, ((3 * beat_duration) - 0.1), VOLUME);
    wait(0.1);

    }
    }

    How to run and test result

    When you download the compiled binary to the WIZwiki board and push the reset button, then the PWM digital signal drives a buzzer and plays a simple music.

    Learning Resources

    🌎https://en.wikipedia.org/wiki/Pulse-width_modulation

    🌎https://en.wikipedia.org/wiki/Piano_key_frequencies

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-4-pwm-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-4-pwm-kor.html index 72697942e2d..d7680031860 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-4-pwm-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-4-pwm-kor.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ 약자이다. 특정한 펄스의 폭을 가진 디지털 파형을 만드는 데 사용이된다. WIZwiki 보드의 W7500 칩 내부의 PWM 모듈을 설정하면 다양한 파형을 만들 수 있다. PWM을 이용해 높낮이가 다른 소리 출력, LED 밝기 조절, 모터 구동 등을 할 수 있다.

    준비물

    하드웨어

    회로도

    전체 회로도는 아래와 같다.

    연결도

    소프트웨어

    Example Code

    예제 코드이다. mbed 환경에서 main.c에 아래 code를 복사해 붙여넣기 한 후 컴파일한다.

    #include "mbed.h"

    #define VOLUME 0.02
    #define BPM 100.0

    PwmOut pwm_pin(D3);

    // Plays a sound with the defined frequency, duration, and volume
    void playNote(float frequency, float duration, float volume) {
    pwm_pin.period(1.0/frequency);
    pwm_pin = volume/2.0;
    wait(duration);
    pwm_pin = 0.0;
    }

    int main(/)
    {
    float beat_duration;

    // Calculate duration of a quarter note from bpm
    beat_duration = 60.0 / BPM;

    // Loop forever
    while(1) {

    playNote(261.626, (0.75 * beat_duration), VOLUME);
    playNote(329.628, (0.75 * beat_duration), VOLUME);
    playNote(391.995, (0.75 * beat_duration), VOLUME);

    playNote(261.626, (0.75 * beat_duration), VOLUME);
    playNote(329.628, (0.75 * beat_duration), VOLUME);
    playNote(391.995, (0.75 * beat_duration), VOLUME);

    playNote(440.000, (0.75 * beat_duration), VOLUME);
    playNote(440.000, (0.75 * beat_duration), VOLUME);
    playNote(440.000, (0.75 * beat_duration), VOLUME);
    playNote(391.995, ((2 * beat_duration) - 0.1), VOLUME);
    wait(0.1);

    playNote(349.228, (0.75 * beat_duration), VOLUME);
    playNote(349.228, (0.75 * beat_duration), VOLUME);
    playNote(349.228, (0.75 * beat_duration), VOLUME);

    playNote(329.628, (0.75 * beat_duration), VOLUME);
    playNote(329.628, (0.75 * beat_duration), VOLUME);
    playNote(329.628, (0.75 * beat_duration), VOLUME);

    playNote(293.665, (0.75 * beat_duration), VOLUME);
    playNote(293.665, (0.75 * beat_duration), VOLUME);
    playNote(293.665, (0.75 * beat_duration), VOLUME);

    //playNote(261.626, ((2 * beat_duration) - 0.1), VOLUME);
    playNote(261.626, ((3 * beat_duration) - 0.1), VOLUME);
    wait(0.1);

    }
    }

    실행 방법 및 결과

    코드를 실행시키면, PWM 디지털 신호가 부저를 울려 간단한 음악이 연주된다.

    학습 자료

    🌎https://en.wikipedia.org/wiki/Pulse-width_modulation

    🌎https://en.wikipedia.org/wiki/Piano_key_frequencies

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-5-variable-resistor-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-5-variable-resistor-eng.html index ba64c630b12..de73f3248a6 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-5-variable-resistor-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-5-variable-resistor-eng.html @@ -15,7 +15,7 @@ - + @@ -34,7 +34,7 @@ board turns on. If the measured value is less than 2000mV, then the LED1 turns off.

    The WIZwiki board can read analog values from external circuit and convert them to digital values.

    Learning Resources

    🌎Potentiometer, from wikipedia

    🌎Analog-to-digital converter, from wikipedia

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-5-variable-resistor-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-5-variable-resistor-kor.html index 1ea7317b871..3cc9bc0dc33 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-5-variable-resistor-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-5-variable-resistor-kor.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@

    소프트웨어

    Example Code

    예제 코드이다. mbed 환경에서 main.c에 아래 code를 복사해 붙여넣기 한 후 컴파일한다.

    #include "mbed.h"

    AnalogIn analog_value(A0);

    DigitalOut led(LED1);

    int main(/) {
    float meas;

    printf("\nAnalogIn example\n");

    while(1) {
    meas = analog_value.read(/); // Converts and read the analog input value (value from 0.0 to 1.0)
    meas = meas * 3300; // Change the value to be in the 0 to 3300 range
    printf("measure = %.0f mV\n", meas);
    if (meas > 2000) { // If the value is greater than 2V then switch the LED on
    led = 0;
    }
    else {
    led = 1;
    }
    wait(0.2); // 200 ms
    }
    }

    실행 방법 및 결과

    가변저항기의 다이얼을 움직여 가며 시리얼 포트의 메시지를 확인한다. 사진과 같이 주기적으로 밀리볼트 (mV) 단위의 measure 값을 확인할 수 있다.

    이 예제에서는 가변기의 다이얼을 시계방향으로 회전시키면 measure 값이 올라간다. measure 값이 2000mV 이상이면 WIZwiki 보드에 장착된 LED1이 켜진다. measure 값이 2000mV 이하이면 LED1이 꺼진다.

    WIZwiki 보드는 외부 회로의 아날로그 값을 읽어서 디지털 값으로 변환할 수 있다.

    학습 자료

    🌎가변저항

    🌎아날로그-디지털 변환회로(위키백과

    🌎Analog-to-digital converter, from wikipedia

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-6-temperature-sensor-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-6-temperature-sensor-eng.html index 2845a2488c6..10f6bc1ed5a 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-6-temperature-sensor-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-6-temperature-sensor-eng.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Reading the temperature sensor value

    Summary

    This is an example of reading analog temperature sensor value using ADC. Convert analog values ​​to Celsius and Fahrenheit using formulas. The converted value It is displayed on the screen through the serial port..

    Materials

    • WIZwiki-W7500 board
    • USB cable
    • Breadboard
    • Jumper wire
    • Temperature Sensor TMP36GT9 (Low Voltage Temperature Sensor)

    Hardware

    Schematic

    The overall circuit diagram is as follows.

    Connection diagram

    Software

    Example Code

    Here is an example code.

    Open the page below and compile by importing the program with "Import this program".

    🌎https://os.mbed.com/teams/IOP/code/Temp36_HelloWorld_WIZwiki-W7500/

    Or, compile after copying and pasting the following code to main.c in the mbed environment.

    /* Analog Input "Temp36" Temperature Sensor Example Program */

    #include "mbed.h"

    // Initialize a pins to perform analog input fucntions
    AnalogIn ain(A2); // connect A0(WIZwiki-W7500) to Vout(Temp36)

    int main(void)
    {
    while (1)
    {
    float V = ain.read(/) * 3.3; // connect Vs(Temp36) to 3.3V(WIZwiki-W7500)
    //float V = ain.read(/) * 5; // connect Vs(Temp36) to 5V(WIZwiki-W7500)

    float tempC = (V-0.5) * 100; // calculate temperature C
    float tempF = (tempC * 9 / 5) + 32.0; // calculate temperature F

    printf("tempC value : %5.2f C \r\n", tempC);
    printf("tempF value : %5.2f F \r\n", tempF);

    wait(1.0);
    }
    }

    Methods and results

    The following is an example execution screen. Celsius and Fahrenheit temperature values alternate.

    Learning materials

    See the link below for temperature sensor data.

    • [Kit Configuration Data Sheet] (/)
    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-6-temperature-sensor-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-6-temperature-sensor-kor.html index d882905c121..1cfaa8bfced 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-6-temperature-sensor-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-6-temperature-sensor-kor.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    튜토리얼 예제6. 온도 센서 값 읽어내기

    개요

    ADC를 이용해서 아날로그 온도 센서 값을 읽어내는 예제이다. 아날로그 값을 수식을 사용해 섭씨와 화씨로 변환한다. 변환 된 값을 시리얼 포트를 통해 화면에 보연준다.

    준비물

    • WIZwiki-W7500 보드
    • USB 케이블
    • Breadboard (빵판)
    • Jumper wire
    • Temperature Sensor TMP36GT9 (Low Voltage Temperature Sensor)

    하드웨어

    회로도

    전체 회로도는 아래와 같다.

    연결도

    소프트웨어

    Example Code

    예제 코드이다.

    아래 페이지를 열고 "Import this program" 으로 프로그램을 불러와 컴파일 한다.

    🌎https://os.mbed.com/teams/IOP/code/Temp36_HelloWorld_WIZwiki-W7500/

    또는, mbed 환경에서 main.c에 아래 code를 복사해 붙여넣기 한 후 컴파일한다.

    /* Analog Input "Temp36" Temperature Sensor Example Program */

    #include "mbed.h"

    // Initialize a pins to perform analog input fucntions
    AnalogIn ain(A2); // connect A0(WIZwiki-W7500) to Vout(Temp36)

    int main(void)
    {
    while (1)
    {
    float V = ain.read(/) * 3.3; // connect Vs(Temp36) to 3.3V(WIZwiki-W7500)
    //float V = ain.read(/) * 5; // connect Vs(Temp36) to 5V(WIZwiki-W7500)

    float tempC = (V-0.5) * 100; // calculate temperature C
    float tempF = (tempC * 9 / 5) + 32.0; // calculate temperature F

    printf("tempC value : %5.2f C \r\n", tempC);
    printf("tempF value : %5.2f F \r\n", tempF);

    wait(1.0);
    }
    }

    실행 방법 및 결과

    다음은 예제의 실행 화면이다. 섭씨와 화씨 온도 값이 번갈아 보인다.

    학습 자료

    온도 센서 자료는 아래 링크를 참조한다.

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-7-photoresistor-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-7-photoresistor-eng.html index a8f829efb37..bc16b37df1b 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-7-photoresistor-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-7-photoresistor-eng.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Reading light sensor value

    Summary

    This is an example of reading the light sensor value using ADC. Convert the analog value to a formula and serial it with a value between 0 \ ~ 3.3V It shows on the screen through the port. Turns the LED on or off compared to the specified analog value.

    Materials

    • WIZwiki-W7500 board
    • USB cable
    • Breadboard
    • Jumper wire
    • PGM5537D (CDS Photo Resistor)

    Hardware

    Schematic

    The overall circuit diagram is as follows.

    Connection diagram

    Software

    Example Code

    Here is an example code.

    Open the page below and compile by importing the program with "Import this program".

    🌎https://os.mbed.com/teams/IOP/code/CDS_HelloWorld_WIZwiki-W7500/

    Or, compile after copying and pasting the following code to main.c in the mbed environment.

    #include "mbed.h"

    DigitalOut redled(LED1); // RED
    DigitalOut blueled(LED3); // BLUE
    AnalogIn CDS(A0);

    int main(/) {
    printf("Hello WizWIki-W7500!\n\r");
    printf("===========================================\n\r");

    int CDS_data = 0;
    double CDS_vol = 0;

    while(1) {
    CDS_data = CDS.read(/)*1000;
    CDS_vol = CDS.read(/)*3.3;

    //CDS Seneor ADC Low Data
    printf("CDS Data : %3d\r\n",CDS_data);
    //CDS Sensor Voltage data
    printf("CDS Voltage : %3.3lfV\r\n",CDS_vol);
    printf("===========================================\n\r");

    wait(1);
    //Status is bright.
    if(CDS_data < 500){
    redled = 1;
    blueled = 0;
    }
    //Status is dark.
    else {
    redled = 0;
    blueled = 1;
    }
    }
    }

    Methods and results

    The following is an example execution screen. The CDS value and the CDS voltage value measured based on 3.3V are shown alternately. !

    Learning materials

    Refer to the link below for the specifications of the illuminance sensor.

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-7-photoresistor-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-7-photoresistor-kor.html index 02e73450420..ff9dbf485be 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-7-photoresistor-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/exercise-7-photoresistor-kor.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    튜토리얼 예제7. 조도 센서 값 읽어내기

    개요

    ADC를 이용해서 조도 센서 값을 읽어내는 예제이다. 아날로그 값을 수식으로 변환 해 0 ~ 3.3V 사이의 값으로 시리얼 포트를 통해 화면에 보여준다. 지정된 아날로그 값과 비교해서 LED를 키거나 끈다.

    준비물

    • WIZwiki-W7500 보드
    • USB 케이블
    • Breadboard (빵판)
    • Jumper wire
    • PGM5537D (CDS Photo Resistor)

    하드웨어

    회로도

    전체 회로도는 아래와 같다.

    연결도

    소프트웨어

    Example Code

    예제 코드이다.

    아래 페이지를 열고 "Import this program" 으로 프로그램을 불러와 컴파일 한다.

    🌎https://os.mbed.com/teams/IOP/code/CDS_HelloWorld_WIZwiki-W7500/

    또는, mbed 환경에서 main.c에 아래 code를 복사해 붙여넣기 한 후 컴파일한다.

    #include "mbed.h"

    DigitalOut redled(LED1); // RED
    DigitalOut blueled(LED3); // BLUE
    AnalogIn CDS(A0);

    int main(/) {
    printf("Hello WizWIki-W7500!\n\r");
    printf("===========================================\n\r");

    int CDS_data = 0;
    double CDS_vol = 0;

    while(1) {
    CDS_data = CDS.read(/)*1000;
    CDS_vol = CDS.read(/)*3.3;

    //CDS Seneor ADC Low Data
    printf("CDS Data : %3d\r\n",CDS_data);
    //CDS Sensor Voltage data
    printf("CDS Voltage : %3.3lfV\r\n",CDS_vol);
    printf("===========================================\n\r");

    wait(1);
    //Status is bright.
    if(CDS_data < 500){
    redled = 1;
    blueled = 0;
    }
    //Status is dark.
    else {
    redled = 0;
    blueled = 1;
    }
    }
    }

    실행 방법 및 결과

    다음은 예제의 실행 화면이다. CDS 값과 3.3V 기준으로 측정된 CDS전압 값이 번갈아 보인다.

    학습 자료

    조도 센서의 스펙은 아래 링크를 참조한다.

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/kit-parts-datasheet-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/kit-parts-datasheet-kor.html index f3e1437c183..3aa7272555f 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/kit-parts-datasheet-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/kit-parts-datasheet-kor.html @@ -15,7 +15,7 @@ - + @@ -30,7 +30,7 @@ GND : 그라운드와 연결 데이터시트: {{:products:wizwiki_mbed_kit:kit_kr:tmp35_36_37.pdf|}} *참고: http://www.analog.com/media/en/technical-documentation/data-sheets/TMP35_36_37.pdf


    Photo Resistor PGM5537D (CDS Photo Resistor)


    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/kit-parts-datasheet.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/kit-parts-datasheet.html index 040f9564297..f4611806b86 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/kit-parts-datasheet.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/kit-parts-datasheet.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    Kit parts datasheet

    Kit Includes

               Part Name                         Description                       Q.Ty
    WIZwiki-W7500 ARM Cortex-M0 Test Board 1
    USB cable USB Mini-B, 1meter 1
    LAN cable CAT5, 1meter 1
    Breadboard 55 x 85 mm 2
    Resistor (330 Ohm) 1/4W J(5%) 330 Ohm 20
    Resistor (10K Ohm) 1/4W J(5%) 10K Ohm 20
    Pushbutton Switch Momentary Pushbutton Switch 4
    LED (Red) 5pi DIP type Red LED 5
    LED (Green) 5pi DIP type Green LED 5
    LED (Yellow) 5pi DIP type Yellow LED 5
    LED (RGB) RED/GREEN/BLUE Triple Color LED 3
    Rotary Potentiometer Rotary Potentiometer / 10K Ohm 1
    Humidity & Temp Sensor DHT11 (Humidity & Temperature Sensor) 1
    Temperature Sensor TMP36GT9 (Low Voltage Temperature Sensor) 1
    Photo Resistor PGM5537D (CDS Photo Resistor) 1
    Magnetic Buzzer SM-1205C (Magnetic Buzzer) 1
    Jumper Wire (M/M) Various Colors, 26 AWG, 6" (15 cm) Jumper wires 40
    Jumper Wire (M/F) Various Colors, 26 AWG, 8" (20 cm) Jumper wires 10

    Datasheet

    LED (RGB)

    • Common Anode type
    • There are three LEDs (RED, GREEN, BLUE) in a part.
    • There are 4 leads. Each LED has one negative lead, three LEDs has common positive lead.
    • Common Anode lead is the longest one among 4 leads. This lead should be connected to 3.3V.

    DHT11 (Humidity & Temperature Sensor)


    Temperature Sensor TMP36GT9 (Low Voltage Temperature Sensor)


    Photo Resistor PGM5537D (CDS Photo Resistor)

    • A photoresistor or light-dependent resistor (LDR) or photocell is a light-controlled variable resistor.
    • The resistance of a photoresistor decreases with increasing incident light intensity; in other words, it exhibits photoconductivity.
    • A photoresistor can be applied in light-sensitive detector circuits, and light- and dark-activated switching circuits.
    • Datasheet: Download

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-1-tcp-loopback-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-1-tcp-loopback-eng.html index bd3f90aa117..9c5b5636be3 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-1-tcp-loopback-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-1-tcp-loopback-eng.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Network Exercise 1. TCP loopback(Eng)

    Outline

    This is an exercise to test TCP loopback communication. The PC runs as a TCP Client and the WIZwiki board runs as a TCP Server. The TCP server returns the messages sent by the TCP client.

    User can learn how to drive a network using the TOE (TCP/IP Offload Engine) of W7500.

    What you need

    • WIZwiki-W7500
    • USB cable
    • LAN cable
    • Hub switch (Router with DHCP function)

    Hardware

    The Circuit

    No special circuit.

    Connections

    Connect the PC and the router (with DHCP function) with LAN cable. Connect the router and the WIZwiki board with LAN cable. Connect the PC and the WIZwiki board with USB cable.

    Software

    Test Software

    • Terminal program

    • TCP/IP Client Server terminal program

      • EX) Hercules, etc.
      • It is for transmitting message using the TCP/IP Client Server terminal

    Example Code

    Use the example code in the page below.

    🌎https://os.mbed.com/teams/WIZnet/code/TCPEchoServer-WIZwiki-W7500/?platform=WIZwiki-W7500

    Click on the red part of the "Import this program" section in the figure below.

    A pop-up window will appear as shown below.

    The "Source URL" and "Import As" have default values. User can change the "Import Name" if one wants. If clicking on the red part of the "Import", the program is copied to the mbed compiler environment.

    How to run and test result

    Execute serial terminal in PC. First push Reset switch of WIZwiki board and check messages.

    Execute Hercules program in PC. Select TCP Client menu and configure the IP and Port. Click on the red part of the "Ping" button in the figure below.

    Click the "Connect" button and check connection.

    The TCP Client sends a message to WIZwiki board and the WIZwiki board sends a reversed message to the TCP client. Check the Loopback message as shown below.

    Learning Resources

    The WIZnet team page in the ARM mbed provides mbed libraries and examples for WIZnet products.

    There are mbed libraries below which are used for Hardware TCP/IP chip (W5500) and WIZnet TCP/IP Offload Engine (W7500).

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-1-tcp-loopback-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-1-tcp-loopback-kor.html index d10834b925a..40d9c618416 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-1-tcp-loopback-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-1-tcp-loopback-kor.html @@ -15,7 +15,7 @@ - + @@ -33,7 +33,7 @@

    TCP Client 프로그램이 WIZwiki 보드에 메시지를 보내고, WIZwiki 보드가 역순으로 된 메시지를 TCP Client로 보낸다. 아래 그림에서 Loopback 된 메시지를 확인한다.

    학습 자료

    아래에 위즈네트 제품에 사용할 mbed 라이브러리와 예제들이 있다.

    아래에 위즈네트의 Hardware TCP/IP chip (W5500) 과 WIZnet TCP/IP Offload Engine (W7500)을 위한 mbed 라이브러리가 있다.

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-2-led-with-tcp-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-2-led-with-tcp-eng.html index f9f3852cd45..445b20f7766 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-2-led-with-tcp-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-2-led-with-tcp-eng.html @@ -15,7 +15,7 @@ - + @@ -49,7 +49,7 @@ Server on Teraterm in the figure below.

    Check the LED light on the blue circle turns off.

    Learning Resources

    The WIZnet team page in the ARM mbed provides mbed libraries and examples for WIZnet products.

    There are mbed libraries below which are used for Hardware TCP/IP chip (W5500) and WIZnet TCP/IP Offload Engine (W7500).

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-2-led-with-tcp-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-2-led-with-tcp-kor.html index 2a6eb7bc015..55cd40e6510 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-2-led-with-tcp-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/network-exercise-2-led-with-tcp-kor.html @@ -15,7 +15,7 @@ - + @@ -36,7 +36,7 @@ Server)로 보내면 LED가 꺼진다.

    LED가 꺼지는 동작 이외에 다른 메시지도 표시된다. TCP Client 프로그램이 WIZwiki 보드에 메시지를 보내고, WIZwiki 보드가 메시지를 반대의 순서로 TCP Client로 보낸다.

    아래 그림에서 파란색 동그라미 부분의 LED가 꺼짐을 확인한다.

    학습 자료

    아래에 위즈네트 제품에 사용할 mbed 라이브러리와 예제들이 있다.

    아래에 위즈네트의 Hardware TCP/IP chip (W5500) 과 WIZnet TCP/IP Offload Engine (W7500)을 위한 mbed 라이브러리

    가 있다.

    관련 링크

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/product-information-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/product-information-eng.html index eda4b5bcf2c..05e8761aa6b 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/product-information-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/product-information-eng.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ novice user can easily implement one’s own application.

    Product Feature

    This starter kit is suitable for beginners who want to make IoT device

    Because WIZwiki-W7500 platform board has been mbed-enabled, user can use free on-line compiler and various examples in mbed.org site.

    This kit includes a USB cable, a LAN cable, two breadboards, jumper wires, sensors, buttons, LEDs and resistors.

    Kit Includes

               Part Name                         Description                       Q.Ty
    WIZwiki-W7500 ARM Cortex-M0 Test Board 1
    USB cable USB Mini-B, 1meter 1
    LAN cable CAT5, 1meter 1
    Breadboard 55 x 85 mm 2
    Resistor (330 Ohm) 1/4W J(5%) 330 Ohm 20
    Resistor (10K Ohm) 1/4W J(5%) 10K Ohm 20
    Pushbutton Switch Momentary Pushbutton Switch 4
    LED (Red) 5pi DIP type Red LED 5
    LED (Green) 5pi DIP type Green LED 5
    LED (Yellow) 5pi DIP type Yellow LED 5
    LED (RGB) RED/GREEN/BLUE Triple Color LED 3
    Rotary Potentiometer Rotary Potentiometer / 10K Ohm 1
    Humidity & TemperaturDHT11 (Humidity & Temperature Sensor) 1
    Temperature Sensor TMP36GT9 (Low Voltage Temperature Sensor) 1
    Photo Resistor PGM5537D (CDS Photo Resistor) 1
    Magnetic Buzzer SM-1205C (Magnetic Buzzer) 1
    Jumper Wire (M/M) Various Colors, 26 AWG, 6" (15 cm) Jumper wires 40
    Jumper Wire (M/F) Various Colors, 26 AWG, 8" (20 cm) Jumper wires 10

    Kit parts datasheet

    Tutorials

    This tutorial helps user experiment mbed examples with on-line compiler.

    These documents are available at the ARM mbed website.

    These documents are available at WIZnet’s website.

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/product-information-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/product-information-kor.html index a779346fe58..e301046f9eb 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/product-information-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/product-information-kor.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ 센서, 버튼, LED, 저항 등을 포함하고 있다.

    ARM mbed에 올려진 각종 라이브러리와 예제 코드를 이용해, 초보 사용자도 쉽게 소프트웨어를 구현할 수 있다.

    제품 특징

    사물인터넷 기기를 직접 만들어보고 싶은 초보자들에게 적합함.

    ARM사로부터 mbed 인증을 받은 WIZwiki-W7500 보드를 포함하고 있어, 온라인 컴파일 툴과 각종 예제들을 무료로 이용할 수 있음.

    USB케이블, LAN케이블, 브레드보드, 와이어, 센서, 버튼, LED, 저항 등 포함

    Kit 구성물

               Part Name                         Description                       Q.Ty
    WIZwiki-W7500 ARM Cortex-M0 Test Board 1
    USB cable USB Mini-B, 1meter 1
    LAN cable CAT5, 1meter 1
    Breadboard 55 x 85 mm 2
    Resistor (330 Ohm) 1/4W J(5%) 330 Ohm 20
    Resistor (10K Ohm) 1/4W J(5%) 10K Ohm 20
    Pushbutton Switch Momentary Pushbutton Switch 4
    LED (Red) 5pi DIP type Red LED 5
    LED (Green) 5pi DIP type Green LED 5
    LED (Yellow) 5pi DIP type Yellow LED 5
    LED (RGB) RED/GREEN/BLUE Triple Color LED 3
    Rotary Potentiometer Rotary Potentiometer / 10K Ohm 1
    Humidity & Temp Sensor DHT11 (Humidity & Temperature Sensor) 1
    Temperature Sensor TMP36GT9 (Low Voltage Temperature Sensor) 1
    Photo Resistor PGM5537D (CDS Photo Resistor) 1
    Magnetic Buzzer SM-1205C (Magnetic Buzzer) 1
    Jumper Wire (M/M) Various Colors, 26 AWG, 6" (15 cm) Jumper wires 40
    Jumper Wire (M/F) Various Colors, 26 AWG, 8" (20 cm) Jumper wires 10

    Kit 구성물 데이터시트

    튜토리얼

    mbed 의 예제와 온라인 컴파일러를 이용해 실습해 볼 수 있는 튜토리얼이다.

    관련 자료들

    ARM mbed 사이트 자료들이다.

    위즈네트에서 운영하는 위즈위키 페이지의 자료들이다.

    관련 페이지로 가기

    WIZwiki-W7500 mbed Starter Kit
    스타터 킷 튜토리얼 (예제로 따라해보기)

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/sign-up-at-arm-mbed-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/sign-up-at-arm-mbed-eng.html index d21d7c8578a..9b69fdda330 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/sign-up-at-arm-mbed-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/sign-up-at-arm-mbed-eng.html @@ -15,14 +15,14 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/sign-up-at-arm-mbed-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/sign-up-at-arm-mbed-kor.html index 4733afa0805..3b35b957be7 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/sign-up-at-arm-mbed-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/sign-up-at-arm-mbed-kor.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    mbed 회원 가입하기

    mbed.org 에 접속하면 아래와 같은 화면이 나온다. 화면에서 빨간색 표시된 부분 (Developer Site)을 클릭해서 🌎mbed 개발자 사이트로 이동한다.

    빨간색 표시된 부분 (Login or signup)을 클릭한다.

    회원 가입이 안 되어 있는 사용자는 신규 mbed 회원 가입을 한다.

    회원 가입 완료되면 위 화면의 로그인 창으로 로그인을 한다.

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/tutorial-eng.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/tutorial-eng.html index 1ce7be8ace2..29c3ace3638 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/tutorial-eng.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/tutorial-eng.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ Exercise 7. Reading the intensity of illumination sensor value

    Exercises using network

    Network Exercise 1. Testing TCP loopback communication
    Network Exercise 2. Controlling LED with TCP communication


    WIZwiki-W7500 mbed Starter Kit
    WIZwiki-W7500 mbed Starter Kit Product Introductoin

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/tutorial-kor.html b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/tutorial-kor.html index b74a174308a..32fbd7ab442 100644 --- a/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/tutorial-kor.html +++ b/Product/Mbed-WIZwiki-Platform/WIZwiki-W7500-Mbed-Starter-Kit/tutorial-kor.html @@ -15,7 +15,7 @@ - + @@ -30,7 +30,7 @@ 예제7. 조도 센서 값 읽어내기

    네트워크 기능을 사용하는 예제

    네트워크 예제1. TCP 루프백 통신 테스트하기
    네트워크 예제2. TCP 통신으로 LED 제어하기


    관련 페이지로 가기

    WIZwiki-W7500 mbed Starter Kit
    WIZwiki-W7500 mbed Starter Kit 제품 소개

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/mbed-wizwiki-platform.html b/Product/Mbed-WIZwiki-Platform/mbed-wizwiki-platform.html index 62688893590..9f4b2e22d9b 100644 --- a/Product/Mbed-WIZwiki-Platform/mbed-wizwiki-platform.html +++ b/Product/Mbed-WIZwiki-Platform/mbed-wizwiki-platform.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/wizwiki-w7500-eco-shield.html b/Product/Mbed-WIZwiki-Platform/wizwiki-w7500-eco-shield.html index ec381686a22..9720f9a5a13 100644 --- a/Product/Mbed-WIZwiki-Platform/wizwiki-w7500-eco-shield.html +++ b/Product/Mbed-WIZwiki-Platform/wizwiki-w7500-eco-shield.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/wizwiki-w7500.html b/Product/Mbed-WIZwiki-Platform/wizwiki-w7500.html index b793b92c034..d23d894a72d 100644 --- a/Product/Mbed-WIZwiki-Platform/wizwiki-w7500.html +++ b/Product/Mbed-WIZwiki-Platform/wizwiki-w7500.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ WIZwiki-W7500 Callout

    WIZwiki-W7500 Detail Pinout
    wizwiki_w7500_pinout_wiki_150701_detail.png

    WIZwiki-W7500 Simple Pinout
    wizwiki_w7500_pinout_wiki_150701_simple.png


    Firmware

    W7500 Library


    Getting Started


    Make New WIZwiki-W7500 Projects


    Technical Reference

    Datasheet

    Schematic

    Schematic Version 1.1

    Part list

    Dimension

    WIZwiki-W7500 Dimension


    Etc.

    Serial Port Driver

    W7500 ISP Program

    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/wizwiki-w7500eco.html b/Product/Mbed-WIZwiki-Platform/wizwiki-w7500eco.html index 059c0db92af..5432b8a328d 100644 --- a/Product/Mbed-WIZwiki-Platform/wizwiki-w7500eco.html +++ b/Product/Mbed-WIZwiki-Platform/wizwiki-w7500eco.html @@ -15,7 +15,7 @@ - + @@ -33,7 +33,7 @@ WIZwiki-W7500ECO Detail Pinout

    WIZwiki-W7500ECO Simple Pinout
    WIZwiki-W7500ECO Simple Pinout


    Firmware

    W7500 Library

    Getting Started


    Make New WIZwiki-W7500ECO Projects


    Technical Reference

    Datasheet

    Schematic

    Part list

    Dimension

    WIZwiki-W7500ECO Dimension


    Etc.

    Serial Port Driver

    W7500 ISP Program


    - + \ No newline at end of file diff --git a/Product/Mbed-WIZwiki-Platform/wizwiki-w7500p.html b/Product/Mbed-WIZwiki-Platform/wizwiki-w7500p.html index cc7639ad441..e208a902458 100644 --- a/Product/Mbed-WIZwiki-Platform/wizwiki-w7500p.html +++ b/Product/Mbed-WIZwiki-Platform/wizwiki-w7500p.html @@ -15,7 +15,7 @@ - + @@ -36,7 +36,7 @@ WIZwiki-W7500P Pinout
    WIZwiki-W7500 Pinout


    Firmware

    W7500P Library


    Getting Started


    Make New WIZwiki-W7500P Projects


    Technical Reference

    Datasheet

    Schematic

    Part list

    Dimension

    WIZwiki-W7500P Dimension


    Etc.

    Serial Port Driver

    W7500 ISP Program

    - + \ No newline at end of file diff --git a/Product/Obsolete/egsr7100a.html b/Product/Obsolete/egsr7100a.html index cd50b8cafdb..544049a763a 100644 --- a/Product/Obsolete/egsr7100a.html +++ b/Product/Obsolete/egsr7100a.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    EG-SR-7100A

    Documents

    Migration Guide (EG-SR-7100A -> WIZ100SR) (2010-Nov-9) : Click for download

    EG-SR-7100A User's Manual v.4.1 (2010-Mar-13) : Click for download

    EG-SR-7100A Brochure (2010-Mar-13) : Click for download

    Differenes btw EG-SR-7100A & 7150MJ (2010-Mar-13) : Click for download

    Software

    Device terminal program(2013-Jul-19) : Click for download

    EG-SR-7100A How to update firmware (2010-Mar-13) : Click for download

    EG-SR-7100A F/W V4.6 (2010-Mar-13) : Click for download

    Configuration Tool for EG-SR-7100A (2010-Mar-13) : Click for download

    RS-485 Reference schematic for EG-SR-7100A (2010-Mar-13) : Click for download

    Hardware

    EG-SR-7100A Connector_spec (2010-Mar-13) : Click for download

    EG-SR-7100A reference schematic (2010-Mar-13) : Click for download

    EG-SR-7100A Module Dimension (2010-Mar-13) : Click for download

    - + \ No newline at end of file diff --git a/Product/Obsolete/nm7010a.html b/Product/Obsolete/nm7010a.html index 8c2b8163cee..a41625cf2f1 100644 --- a/Product/Obsolete/nm7010a.html +++ b/Product/Obsolete/nm7010a.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    NM7010A

    Documents

    Migration Guide (NM7010A->WIZ8xxMJ) (2011-Nov-9) : Click for download

    Migration Guide (NM7010A -> NM7010B+) (2011-Nov-9) : Click for download

    NM7010A-LF Datasheet V2.6 (2010-Mar-15) : Click for download

    NM7010A Datasheet V2.6 (2010-Mar-13) : Click for download

    Hardware

    NM7010A-LF Application Schematic (2010-Mar-15) : Click for download

    NM7010A Rev.2.0 Hardware Schematic (2010-Mar-15) : Click for download

    NM7010A-LF Rev.2.0 Hardware Schematic (2010-March-13) : Click for download

    - + \ No newline at end of file diff --git a/Product/Obsolete/w7200.html b/Product/Obsolete/w7200.html index b607a42d0da..d288abcb791 100644 --- a/Product/Obsolete/w7200.html +++ b/Product/Obsolete/w7200.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    W7200

    Documents

    Data Sheet V1.1.0 (2013-Jan-3) : Click for download

    Errata Sheet V1.0.4 (2013-Jun-5) : Click for download

    Startup Guide for EWARM V1.0.0 (2012-Dec-12) : Click for download

    User Guide for STM32F10x_Peri V1.0.0 (2012-Dec-6) : Click for download

    User Manual V1.1.0 (2012-Sep-13) : Click for download

    Application Notes

    Power Down Mode V1.1.1 (2013-Jan-25) : Click for download

    WOL(Wake On LAN) V1.1.1 (2013-Jan-25) : Click for download

    DHCP (also include DNS, Loopback code) V1.1.1 (2013-Jan-25) : Click for download

    UPnP V1.1.1 (2013-Jan-25) : Click for download

    twitter V1.1.1 (2013-Jan-25) : Click for download

    SNMP V1.1.1 (2013-Jan-25) : Click for download

    SMTP (also include DNS, Loopback code) V1.1.1 (2013-Jan-25) : Click for download

    HTTP Server V1.1.1 (2013-Jan-25) : Click for download

    HTTP Client V1.1.1 (2013-Jan-25) : Click for download

    FTP V1.1.1 (2013-Jan-25) : Click for download

    Software

    Driver Codes V1.2.0 (2013-Jan-3) : Click for download

    - + \ No newline at end of file diff --git a/Product/Obsolete/wiz220io.html b/Product/Obsolete/wiz220io.html index 43d18196d69..0cef98f2e69 100644 --- a/Product/Obsolete/wiz220io.html +++ b/Product/Obsolete/wiz220io.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ220IO

    Documents

    WIZ220IO User Manual V1.1 (2013-Jul-8) : Click for download

    WIZ220IO User Manual V1.0 (2010-May-26) : Click for download

    WIZ220IO Product Brief Ver 0.9 (2010-Aug-18) : Click for download

    Software

    WIZ220IO Config Tool v1.1.2 (2014-Feb-17) : Click for download

    WIZ220IO Configuration Tool V1.1 (2010-Aug-18) : Click for download

    WIZ220IO Configuration tool v1.0 (2014-Feb-17) : Click for download

    WIZ220IO Firmware V1.3 (2012-Nov-14) : Click for download

    WIZ220IO Firmware V1.2 (2010-Aug-18) : Click for download

    WIZ220IO Firmware V1.1 (2010-Aug-18) : Click for download

    WIZ220IO F/W image (2010-Aug-18) : Click for download

    webpage source code for WIZ220IO (2010-Aug-18) : Click for download

    RomFileMaker V3.0 (2010-Apr-27) : Click for download

    Hardware

    WIZ220IO Base Board Rev1.1 Hardware resource (2010-Aug-18) : Click for download

    WIZ220IO Base Board schematic & partlist (2010-Aug-18) : Click for download

    - + \ No newline at end of file diff --git a/Product/Obsolete/wiz220web.html b/Product/Obsolete/wiz220web.html index 244940e36ca..1c9aacaca3e 100644 --- a/Product/Obsolete/wiz220web.html +++ b/Product/Obsolete/wiz220web.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Obsolete/wiz610wi.html b/Product/Obsolete/wiz610wi.html index 52aafdd350b..17a1d6d9ed0 100644 --- a/Product/Obsolete/wiz610wi.html +++ b/Product/Obsolete/wiz610wi.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ610wi

    Documents

    WIZ610wi User Manual V2.0.1 (2014-Jun-5) : Click for download

    Software

    WIZ610wi old Firmware (2013-Nov-6) :Click for download

    WIZ610wi Firmware V1.2.5 (20130902) : Click for download

    WIZ610wi Firmware V1.2.5 (20130204) : Click for download

    Hardware

    Hardware Schematic of WIZ610wi V1.0 (2012-Feb-21) : Click for download

    WIZ610wi EVB Rev1.1 Schematic V1.1 (2010-May-26) : Click for download

    WIZ610wi EVB Rev1.0 Part list V1.0 (2010-May-26) : Click for download

    - + \ No newline at end of file diff --git a/Product/Obsolete/wiz850sw.html b/Product/Obsolete/wiz850sw.html index 1e00bd198fe..cbc3bf08aa2 100644 --- a/Product/Obsolete/wiz850sw.html +++ b/Product/Obsolete/wiz850sw.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Obsolete/wizfi630.html b/Product/Obsolete/wizfi630.html index b6bb32d9ed6..fb48e8c0f02 100644 --- a/Product/Obsolete/wizfi630.html +++ b/Product/Obsolete/wizfi630.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WizFi630

    Documents

    WizFi630 User Manual (2012-Jul-19) : Click for download

    WizFi630 QuickStartGuide (2012-Jul-17) : Click for download

    WizFi630 Security Config by AT Command v1.0.0 EN (2013-Apr-16) : Click for download

    WIZSmartScript including WizFi630 Serial Command Guide (2012-Dec-10) : Click for download

    Software

    WizFi630 firmware V1.1.25( 20120726 ) (2013-Jul-19) : Click for download

    WizFi630 firmware V1.1.24 (2013-Mar-13) : Click for download

    Hardware

    WizFi630 HW Design Guide V1.0 (2012-Jul-19) : Click for download

    - + \ No newline at end of file diff --git a/Product/Obsolete/wizsm10.html b/Product/Obsolete/wizsm10.html index 9c5fd63a335..36ef8dcd13c 100644 --- a/Product/Obsolete/wizsm10.html +++ b/Product/Obsolete/wizsm10.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/Energy_micro.html b/Product/Open-Source-Hardware/Energy_micro.html index 7855bfe8343..a7b53e2d28a 100644 --- a/Product/Open-Source-Hardware/Energy_micro.html +++ b/Product/Open-Source-Hardware/Energy_micro.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ Cortex-M3 and Cortex-M0+ processors. Read mode...

    We introduce how to add Internet connectivity to EnergyMicro MCUs using WIZnet W5500(or WIZ550io).

    Silicon Labs provides many Start Kits and Development Kits. We first add Internet connectivity to Tiny Gecko (STK3300).


    Internet Connectivity List


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/IP_Configuration.html b/Product/Open-Source-Hardware/IP_Configuration.html index 6af56bc94e7..9ac0a9961ad 100644 --- a/Product/Open-Source-Hardware/IP_Configuration.html +++ b/Product/Open-Source-Hardware/IP_Configuration.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ enter IPv4 Properties.
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/Tutorial.html b/Product/Open-Source-Hardware/Tutorial.html index ca75f713583..98cabd6b13c 100644 --- a/Product/Open-Source-Hardware/Tutorial.html +++ b/Product/Open-Source-Hardware/Tutorial.html @@ -15,7 +15,7 @@ - + @@ -35,7 +35,7 @@ context menu
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/arduino.html b/Product/Open-Source-Hardware/arduino.html index c5cd6a737bc..2258470c68c 100644 --- a/Product/Open-Source-Hardware/arduino.html +++ b/Product/Open-Source-Hardware/arduino.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/cookie.html b/Product/Open-Source-Hardware/cookie.html index 56cd7e33ad9..98272b030e7 100644 --- a/Product/Open-Source-Hardware/cookie.html +++ b/Product/Open-Source-Hardware/cookie.html @@ -15,7 +15,7 @@ - + @@ -64,7 +64,7 @@ message as follows.

    UDP Loopback


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/ethernet_library_for_ioShield_A.html b/Product/Open-Source-Hardware/ethernet_library_for_ioShield_A.html index c30df698154..b71bbc26398 100644 --- a/Product/Open-Source-Hardware/ethernet_library_for_ioShield_A.html +++ b/Product/Open-Source-Hardware/ethernet_library_for_ioShield_A.html @@ -15,7 +15,7 @@ - + @@ -54,7 +54,7 @@ Posting or refer http://playground.arduino.cc/Code/TwitterLibrary
  • Test HTTP Client(WebClient): A Simple HTTP Client test
  • Basically, you can refer the usage for each examples in Arduino site.

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/getting_started_arduino.html b/Product/Open-Source-Hardware/getting_started_arduino.html index 25bb01a1c2c..a276b81aa41 100644 --- a/Product/Open-Source-Hardware/getting_started_arduino.html +++ b/Product/Open-Source-Hardware/getting_started_arduino.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ Search to Ethernet2


    Install the latest version
    Install the latest version


    Check the Installed
    Check the Installed


    Step 3: Enjoy

    Completed add to Ethernet 2 library

    Completed add to Ethernet 2 library

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/getting_started_arduino_jp.html b/Product/Open-Source-Hardware/getting_started_arduino_jp.html index 173ceda0068..c8ddd8f2d15 100644 --- a/Product/Open-Source-Hardware/getting_started_arduino_jp.html +++ b/Product/Open-Source-Hardware/getting_started_arduino_jp.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ Libraryを ダウンロードします。
  • Download ZIP ボタンをクリックしてダウンロードします。

  • Step 2 : Library Copy & Paste

    Arduino IDE 1.0.x

    Arduino IDE 1.5.x


    Step 3: Arduino Library Import


    Arduino Web Server Examples

    Step 1 : Arduino を始める


    Step 2 : Arduinoの動作確認


    Step 6 : Enjoy it!


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/getting_started_arduino_kr.html b/Product/Open-Source-Hardware/getting_started_arduino_kr.html index 18719ae06e0..7c66970fb3e 100644 --- a/Product/Open-Source-Hardware/getting_started_arduino_kr.html +++ b/Product/Open-Source-Hardware/getting_started_arduino_kr.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ 복사&붙여넣기 한다.
  • 경로 = C:\Program Files\Arduino\libraries
  • Arduino IDE 1.5.x


    Step 3: Arduino Library Import


    Arduino Web Server Examples

    Step 1 : Arduino 시작하기


    Step 2 : Arduino 동작확인


    Step 6 : Enjoy it !


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/http_client.html b/Product/Open-Source-Hardware/http_client.html index dc435e6a84d..f3f4367c8e5 100644 --- a/Product/Open-Source-Hardware/http_client.html +++ b/Product/Open-Source-Hardware/http_client.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    HTTP Client

    Before Compile

    1. Download source file from https://github.com/amcewen/HttpClient.
    2. Extract and Copy all files into "Arduino/libraries/Ethernet/".

    Change code

    Change "SimpleHttpExample.ino" file in the "Ethernet/example/SimpleHttpExample/" as follow :




    Result

    During the run the program, You can see the log message via Serial Monitor as follow:

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/ioshield_a.html b/Product/Open-Source-Hardware/ioshield_a.html index 83bfb909620..b9149c7b722 100644 --- a/Product/Open-Source-Hardware/ioshield_a.html +++ b/Product/Open-Source-Hardware/ioshield_a.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ : Based on 🌎Arduino Duemilanove

    Although you have non-AVR Arduino-compatible board, you could use ioShield Hardware. But you should use adequate S/W libraries for each chipsets. please refer to each product's web site.

    Available Resource

    All design files and source codes for the ioShield can be found on GitHub:

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/ioshield_k.html b/Product/Open-Source-Hardware/ioshield_k.html index b68ef858322..4cbc7096e24 100644 --- a/Product/Open-Source-Hardware/ioshield_k.html +++ b/Product/Open-Source-Hardware/ioshield_k.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ this new board can use existing sample codes, ensuring easy use with Arduino language and standard libraries from both hardware and software aspects.

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/ioshield_l.html b/Product/Open-Source-Hardware/ioshield_l.html index 19305cff618..500434374aa 100644 --- a/Product/Open-Source-Hardware/ioshield_l.html +++ b/Product/Open-Source-Hardware/ioshield_l.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    ioShield-L (discontinued)

    caution

    Please note that this product was discontinued. We do not recommend using it in new design.

    Overview

    ioShield-L is an Ethernet BoosterPack for MSP430 LaunchPad development board(🌎MSP-EXP430G2, TI). The ioShield-L allows a MSP430 LaunchPad board to connect to the internet. It consists of WIZ550io for ethernet connectivity and an interface board to LaunchPad.

    MSP430 LaunchPad

    The MSP-EXP430G2 low-cost experimenter board called LaunchPad is a complete development solution for the Texas Instruments MSP430G2xx Value Line series. The integrated USB-based emulator offers all the hardware and software necessary to develop applications for all MSP430G2xx series devices.

    For more details, please refer to 🌎MSP430 LaunchPad page in 🌎TI official website.

    Development Environment

    The MSP-EXP430G2 can be used with IAR Embedded Workbench™ Integrated Development Environment (IDE), Code Composer Studio™(CCS) IDE or Energia (open-source electronics prototyping platform based on the Wiring and Arduino framework) to write, download, and debug applications. Now we provides libraries for IAR and Energia, except CCS. Libraries for CCS will be released soon.

    ioShield-L supported devices

    • Board : MSP-EXP430G2 Rev. 1.5 and later. (for H/W UART support)
    • MCU : MSP430G25x3IN20 (PDIP20 package, 16kB Flash, 512B RAM) and later.

    Available Resources

    All design files and source codes for the ioShield can be found on GitHub:

    • Project for IAR Embedded Workbench for MSP430 5.52 (EWMSP430)
    • Project for Code Composer Studio 5.4.0 (CCSv5)
    • Project for Energia
    • Hardware Ver1.0 Design file (PDF) / Eagle CAD) and Part List of ioShield-L
    • Hardware Ver1.1 Design file (PDF) / Eagle CAD) and Part List of ioShield-L
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/loopback.html b/Product/Open-Source-Hardware/loopback.html index 4f62a7dc01a..ad4c074d834 100644 --- a/Product/Open-Source-Hardware/loopback.html +++ b/Product/Open-Source-Hardware/loopback.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ message as follows.

    UDP Loopback


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/open_source_hardware.html b/Product/Open-Source-Hardware/open_source_hardware.html index aec79dbdf1e..8c72a6de0a4 100644 --- a/Product/Open-Source-Hardware/open_source_hardware.html +++ b/Product/Open-Source-Hardware/open_source_hardware.html @@ -15,7 +15,7 @@ - + @@ -65,7 +65,7 @@ prototyping platform based on flexible, easy-to-use hardware and software. WIZnet’ chip and module are being used in the Arduino’s Ethernet Shield, and adopted in its clones.

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/open_source_hardware_all_pages.html b/Product/Open-Source-Hardware/open_source_hardware_all_pages.html index e6ac9425ee4..eed76b660d1 100644 --- a/Product/Open-Source-Hardware/open_source_hardware_all_pages.html +++ b/Product/Open-Source-Hardware/open_source_hardware_all_pages.html @@ -15,7 +15,7 @@ - + @@ -73,7 +73,7 @@ button. Now, UDP socket opened.
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/open_source_hardware_coocox.html b/Product/Open-Source-Hardware/open_source_hardware_coocox.html index 076f68d408a..fc6d439fc9b 100644 --- a/Product/Open-Source-Hardware/open_source_hardware_coocox.html +++ b/Product/Open-Source-Hardware/open_source_hardware_coocox.html @@ -15,7 +15,7 @@ - + @@ -36,7 +36,7 @@ designed by Cox-Peripheral Interface starting as x(e.g. xGPIOModeSet), you can operate by changing just SPI interface PIN setting in each MCUs or EVB-boards.

    Learn more

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/rp2040_based.html b/Product/Open-Source-Hardware/rp2040_based.html index 0dc4f545ebf..14f1cb8bc6a 100644 --- a/Product/Open-Source-Hardware/rp2040_based.html +++ b/Product/Open-Source-Hardware/rp2040_based.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/surf5.html b/Product/Open-Source-Hardware/surf5.html index 25c6658224d..a310ebfc08e 100644 --- a/Product/Open-Source-Hardware/surf5.html +++ b/Product/Open-Source-Hardware/surf5.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Surf5

    Overview

    Surf5 is a microcontroller evaluation board based on the W7500P.

    Surf5

    Revision history

    DateVersionDescription
    Oct 20231.0Initial board release

    Features

    • W7500P microcontroller
      • ARM Cortex-M0
        • 48MHz maximum frequency
      • Hardwired TCP/IP Core
        • 8 Sockets
        • SRAM for socket: 32 KB
      • PHY
        • IC+(IP101G)
      • Memories
        • Flash: 128 KB
        • SRAM: 16KB
        • ROM for boot code: 6 KB
      • Clock, reset and supply management
        • POR (Power-On Reset)
        • Internal Voltage Regulator : 3.3V to 1.5V
        • 8-to-24MHz external crystal oscillator
        • Internal 8MHz RC Oscillator
        • PLL for CPU clock
      • ADC : 12bit, 8ch, 1Msps
      • DMA
        • 6-channel DMA controller
        • Peripheral supported: UARTs, SPIs
      • GPIO
        • 34 I/Os (15 IO x 2ea, 4 IO x 1ea)
      • Debug mode
        • Serial Wire Debug (SWD)
      • Timer/PWM
        • 1 Watchdog (32-bit down-counter)
        • 4 Timers (32-bit or 16-bit down-counter)
        • 8 PWMs (32-bit counter/timers with programmable 6-bit prescaler)
      • Communication Interfaces
        • 3 UART (2 UARTs with FIFO and Flow Control, 1 simple UART)
        • 2 SPI
        • 2 I2C (Master/Slave, Fast-mode (400 kbps))
      • Crypto
        • 1 RNG (Random Number Generator): 32-bit random number
      • Package
        • 64 LQFP (7x7 mm)
    • Built-in RJ45
    • Built-in LDO
    • Built-in UART to USB

    Hardware Specification

    Pin-out v1.0

    Surf5_PINOUT

    The pins below are fixed functions in surf5

    I/OPin NameDescription
    OPC_15Connected to user LED
    OPC_10UART2_TX connected USB to Serial IC
    IPC_11UART2_RX connected USB to Serial IC
    OPA_03SWCLK connected J3
    IOPA_04SWDIO connected J3

    Apart from GPIO and ground pins, there are 5 other pins on the main 40-pin interface:

    Pin No.Pin NameDescription
    PIN40VBUSMicro-USB input voltage, connected to micro-USB port pin 1. Nominally 5V.
    PIN39VSYSMain system input voltage, which can vary in the allowed range 4.3V to 5.5V, and is used by the on-board LDO to generate the 3.3V .
    PIN373V3_ENConnects to the on-board LDO enable pin. To disable the 3.3V (which also de-power Surf5), short this pin low.
    PIN363V3Main 3.3V supply to RP2040 and W5100S, generated by the on-board LDO.
    PIN30RUNReset pin, To reset W7500P, short this pin low.

    Operation Condition

    ItemDescription
    Operation Temperature MAX70C (including self-heating)
    Operation Temperature MIN0C
    VBUSDC 5V (+/- 10%)
    VSYS MinDC 4.3V
    VSYS MaxDC 5.5V

    Recommended maximum ambient temperature of operation is 50C.

    Technical Reference

    W7500P

    Schematic v1.0

    Surf5_Schematic

    Schematic & Part list & Gerber File

    Firmware Example

    Dimension v1.0 (Unit : mm)

    Surf5_Dimension

    How to buy

    Coming soon

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/surf5/Errata.html b/Product/Open-Source-Hardware/surf5/Errata.html index 2e29fa666fc..78746c5ec03 100644 --- a/Product/Open-Source-Hardware/surf5/Errata.html +++ b/Product/Open-Source-Hardware/surf5/Errata.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/surf5/getting-started.html b/Product/Open-Source-Hardware/surf5/getting-started.html index a8f2ca0541e..4e676ef888a 100644 --- a/Product/Open-Source-Hardware/surf5/getting-started.html +++ b/Product/Open-Source-Hardware/surf5/getting-started.html @@ -15,7 +15,7 @@ - + @@ -23,11 +23,13 @@
    Skip to main content

    Getting Started

    This section was written on the assumption that the use of Surf5 board.


    What's in the Box?

    Comming soon


    PC Settings

    Install UART to USB driver

    Surf5 has UART to USB converter IC(CH340N) that need to install driver. you can download driver here or CH340 manufacturer's web CH340N's manufacture link

    Surf5After unzipping the downloaded ZIP file, you'll find a SETUP.EXE executable in the folder, which you'll need to run.Surf5When you run SETUP.EXE, the DriverSetup window appears, and you can select INSTALL to install the driver.

    Example Source Using Keil

    1. Software Download

    • ARM GCC Compiler

    • CMake

    • Build Tools for Visual Studio 2019

    • Visual Studio Code

    • Xpack Build Tools

    (1) Install ARM GCC Compiler -Download link

    Surf5Surf5Surf5Surf5(2) CMake [Download link](https://visualstudio.microsoft.com/downloads/#build-tools-for-visual-studio-2019)Surf5Surf5Surf5Surf5Surf5

    (3) Build Tools for Visual Studio 2019 -Download link

    Surf5Surf5Surf5Surf5Surf5

    (4) Visual Studio Code -Download link

    Surf5Surf5Surf5Surf5Surf5

    (5) Xpack Build Tools -Download link

    Click “Download Now” Button

    Surf5

    2. Extract xpack-windows-build-tools-4.x.x.x

    Surf5Extract the xpack-windows-build-tool-4.x.x.x.zip archive. Save the extracted folder to the recommended path below. **Recommended storage path for the xpack-windows-build-tools folder** : C:\Program Files (x86)\xpack-windows-build-tools-4.x.x.

    3. Create a New Workspace (Prevent Changes to Existing Settings)

    Create a new workspace. The reason for creating a new workspace is to prevent changes to the existing settings.

    Surf5First, select "File -> Add Folder to Workspace."Surf5Select the "W7500P" project folder as the target for the workspace, and then click the "Add" button. (The "W7500P" should be the top-level directory.)Surf5If you've added the workspace with the W7500P folder path, then click on "File -> Save Workspace As..." again.Surf5Simply press "Save" with the same file name.

    4. Save the CMake Extension Settings for the stored workspace.

    Surf5Surf5In CMake Tools, go to the gear icon (settings) -> Extension Settings -> Navigate to the Workspace tab. In the top search bar, type "@ext:ms-vscode.cmake-tools" to search.Surf5In the options, press "Add Item" in the Configure Args section and add the following two definitions: CMAKE_MAKE_PROGRAM is the location of the make executable (inside the previously extracted xpack folder). ARM_TOOLCHAIN_DIR is the location of the GNU Arm compiler's executable files that you previously downloaded. For example, the author used: -DARM_TOOLCHAIN_DIR=C:/Program Files (x86)/GNU Arm Embedded Toolchain/10 2021.10/bin -DCMAKE_MAKE_PROGRAM=C:/Program Files (x86)/xpack-windows-build-tools-4.4.0-1/bin/make.exe Adjust the Configure Args to match your own file paths according to your setup.Surf5Once you have completed the path configuration, enter "Unix Makefiles" in the "CMake: Generator" field.

    5. Build Project in VS Code

    Surf5Press the F1 key, and then click on "CMake: Select a Kit."Surf5Select "GCC Arm Embedded" to configure the kit.Surf5Click the "Build" button at the bottom or press F7 to start the build process.Surf5Once the build is completed, you will see a message like the one above in the OUTPUT window.Surf5You will also be able to confirm that the Build directory has been created. The project folder within the Build directory contains the generated bin files. You can save these bin files to the W7500 device and use the project.
    - +Download link

    Surf5Surf5Surf5Surf5(2) Install CMake [Download link](https://visualstudio.microsoft.com/downloads/#build-tools-for-visual-studio-2019)Surf5Surf5Surf5Surf5Surf5

    (3) Install Build Tools for Visual Studio 2019 +Download link

    Surf5Surf5Surf5Surf5Surf5

    (4) Install Visual Studio Code +Download link

    Surf5Surf5Surf5Surf5Surf5

    (5) Install Xpack Build Tools +Download link

    Click “Download Now” Button

    Surf5

    2. Extract xpack-windows-build-tools-4.x.x.x

    Surf5

    Extract the xpack-windows-build-tool-4.x.x.x.zip archive. Save the extracted folder to the recommended path below.

    Recommended storage path for the xpack-windows-build-tools folder : C:\Program Files (x86)\xpack-windows-build-tools-4.x.x.

    3. Create a New Workspace (Prevent Changes to Existing Settings)

    Create a new workspace. The reason for creating a new workspace is to prevent changes to the existing settings.

    Surf5

    First, select "File -> Add Folder to Workspace."

    Surf5

    Select the "W7500P" project folder as the target for the workspace, and then click the "Add" button. +(The "W7500P" should be the top-level directory.)

    Surf5

    If you've added the workspace with the W7500P folder path, then click on "File -> Save Workspace As..." again.

    Surf5

    Simply press "Save" with the same file name.

    4. Save the CMake Extension Settings for the stored workspace.

    Surf5Surf5

    In CMake Tools, go to the gear icon (settings) -> Extension Settings -> Navigate to the Workspace tab. In the top search bar, type "@ext:ms-vscode.cmake-tools" to search.

    Surf5

    In the options, press "Add Item" in the Configure Args section and add the following two definitions:

    CMAKE_MAKE_PROGRAM is the location of the make executable (inside the previously extracted xpack folder).

    ARM_TOOLCHAIN_DIR is the location of the GNU Arm compiler's executable files that you previously downloaded.

    For example, the author used:

    -DARM_TOOLCHAIN_DIR=C:/Program Files (x86)/GNU Arm Embedded Toolchain/10 2021.10/bin +-DCMAKE_MAKE_PROGRAM=C:/Program Files (x86)/xpack-windows-build-tools-4.4.0-1/bin/make.exe

    Adjust the Configure Args to match your own file paths according to your setup.

    Surf5

    Once you have completed the path configuration, enter "Unix Makefiles" in the "CMake: Generator" field.

    5. Build Project in VS Code

    Surf5

    Press the F1 key, and then click on "CMake: Select a Kit."

    Surf5

    Select "GCC Arm Embedded" to configure the kit.

    Surf5

    Click the "Build" button at the bottom or press F7 to start the build process.

    Surf5

    Once the build is completed, you will see a message like the one above in the OUTPUT window.

    Surf5

    You will also be able to confirm that the Build directory has been created. The project folder within the Build directory contains the generated bin files. You can save these bin files to the W7500 device and use the project.

    + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/surf5/w7500-based.html b/Product/Open-Source-Hardware/surf5/w7500-based.html index 04b12e426fd..05beb46b38f 100644 --- a/Product/Open-Source-Hardware/surf5/w7500-based.html +++ b/Product/Open-Source-Hardware/surf5/w7500-based.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/tinygecko.html b/Product/Open-Source-Hardware/tinygecko.html index 4b14e6ede2c..61c8c3b6f9f 100644 --- a/Product/Open-Source-Hardware/tinygecko.html +++ b/Product/Open-Source-Hardware/tinygecko.html @@ -15,7 +15,7 @@ - + @@ -84,7 +84,7 @@ DNS_run(/) can be called for translating the domain name into IP address. This is blocked until DNS process is success or failed.
    The below code shows how to use DNS APIs.

       /* DNS client initialization */
    DNS_init(SOCK_DNS, gDATABUF);

    /* DNS processing */
    if ((ret = DNS_run(gWIZNETINFO.dns, Domain_name, Domain_IP)) > 0) // try to 1st DNS
    {
    #if DEBUG_MODE != DEBUG_NO
    printf("> 1st DNS Response\r\n");
    #endif
    }
    else if ((ret != -1) && ((ret = DNS_run(DNS_2nd, Domain_name, Domain_IP))>0)) // retry to 2nd DNS
    {
    #if DEBUG_MODE != DEBUG_NO
    printf("> 2nd DNS Response\r\n");
    #endif
    }
    else if(ret == -1)
    {
    #if DEBUG_MODE != DEBUG_NO
    printf("> MAX_DOMAIN_NAME is too small. Should be redefined it.\r\n");
    #endif
    led_msTick = 100;
    }
    else
    {
    #if DEBUG_MODE != DEBUG_NO
    printf("> DNS Failed\r\n");
    #endif
    led_msTick = 100;
    }

    if(ret > 0)
    {
    #if DEBUG_MODE != DEBUG_NO
    printf("> Translated %s to %d.%d.%d.%d\r\n",Domain_name,Domain_IP[0],Domain_IP[1],Domain_IP[2],Domain_IP[3]);
    #endif
    //
    // TO DO
    //
    }

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/twitter_test.html b/Product/Open-Source-Hardware/twitter_test.html index 37ad0eac95a..7fd0cb57305 100644 --- a/Product/Open-Source-Hardware/twitter_test.html +++ b/Product/Open-Source-Hardware/twitter_test.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@

    and compile, upload code on your Arduino Board.

    Result

    During the run the program, You can see the log message via Serial Monitor as follow:


    and, you can see the first message in your twitter timeline as follow:

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/w2e-gateway-pico.html b/Product/Open-Source-Hardware/w2e-gateway-pico.html index 1a9e32cae29..f008c24fc09 100644 --- a/Product/Open-Source-Hardware/w2e-gateway-pico.html +++ b/Product/Open-Source-Hardware/w2e-gateway-pico.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    W2E-Gateway-Pico (Preliminary)

    Overview

    W2E-Gateway-Pico is an evaluation board based on Raspberry Pi RP2040; it supports both wired and wireless connection by using WizFi360 and W5100S - with the ability to connect to the Cloud easily through wired or wireless and can be used for prototyping IoT solutions.

    • Raspberry Pi Pico Clone
    • Wi-Fi (WizFi360)
    • Ethernet (W5100S)

    Features

    • RP2040 microcontroller with 2MByte Flash
      • Dual-core cortex M0+ at up to 133MHz
      • 264kByte multi-bank high performance SRAM
      • External Quad-SPI Flash with eXecute In Place (XIP)
    • Includes WizFi360-PA
      • WiFi 2.4G, 802.11 b/g/n
      • Support Station / SoftAP / SoftAP+Station operation modes
      • Support “Data pass-through” and “AT command data transfer” mode
      • Support serial AT command configuration
      • Industrial grade (operating temperature range: -40 ° C ~ 85 ° C)
      • CE, FCC certification`
    • Includes W5100S
      • Supports Hardwired Internet Protocols: TCP, UDP, WOL over UDP, ICMP, IGMPv1/v2, IPv4, ARP, PPPoE
      • Supports 4 Independent Hardware SOCKETs simultaneously
      • Internal 16 Kbytes Memory for TX/ RX Buffers
      • SPI Interface
    • Includes 16M-bit Flash Memory
    • Micro-USB B port for power and data (and for reprogramming the Flash)
    • 3-pin ARM Serial Wire Debug (SWD) port
    • 10 / 100 Ethernet PHY embedded
    • Supports Auto Negotiation
      • Full / Half Duplex
      • 10 / 100 Based
    • Built-in RJ45
    • Built-in LDO
    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/w5100s_mkr_ethernet_shield.html b/Product/Open-Source-Hardware/w5100s_mkr_ethernet_shield.html index d49f3ceb000..0bf13bef4ef 100644 --- a/Product/Open-Source-Hardware/w5100s_mkr_ethernet_shield.html +++ b/Product/Open-Source-Hardware/w5100s_mkr_ethernet_shield.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ Ethernet Shield is compatible with Arduino and ARM mbed Platform. The W5100S Ethernet shield is compatible with the Arduino Ethernet Shield (W5100).

    W5100S Ethernet Shield
    Figure: W5100S Ethernet Shield
    W5100S MKR-Ethernet Shield
    Figure: W5100S MKR-Ethernet Shield

    Getting Started


    Datasheet


    Technical Reference

    Schematic & Part list & Gerber

    Ethernet Library


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/w5500_ethernet_shield.html b/Product/Open-Source-Hardware/w5500_ethernet_shield.html index 5c8521531da..4424724f07d 100644 --- a/Product/Open-Source-Hardware/w5500_ethernet_shield.html +++ b/Product/Open-Source-Hardware/w5500_ethernet_shield.html @@ -15,7 +15,7 @@ - + @@ -40,7 +40,7 @@ to the chip's datasheet:


    Technical Reference

    Block Diagram

    Rev 1.0 Schematic

    Rev 1.1 Schematic


    Rev 1.01_Customize Schematic


    Part list

    Dimension


    Etc.

    Examples

    Ethernet Library


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/w5500_ethernet_shield_jp.html b/Product/Open-Source-Hardware/w5500_ethernet_shield_jp.html index a06b551daa0..04e91419f7b 100644 --- a/Product/Open-Source-Hardware/w5500_ethernet_shield_jp.html +++ b/Product/Open-Source-Hardware/w5500_ethernet_shield_jp.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ Duemilanove

    Getting Started


    言語


    特徴

    ハードウェア構成

    Arduino & ARM mbed ピンを使用

    W5500イーサネットシールドはGPIOピンを使用者が選択できます。

    Caution) 注意)使用者が5Vプラットフォームを使うとき、SDカードの動作は信頼性が低い。しかし、十分なテストをした後なら使用可能。信頼性を求めるならバッファーと100nFコンデンサーを設置して使用をおすすめします。


    SPI Operation & Timing Diagram

    SPIオペレーション

    W5500イーサネットシールドにはW5500チップが使用されました。ですのでSPIオペレーションやタイミングダイアグラムはW5500と同一です。詳しい情報は下のW5500チップのデータシートをご覧ください。


    Technical Reference

    ブロックダイアグラム

    概略図

    パーツリスト

    ディメンション


    Etc.

    ioShield-A使用者のWIZnetイーサネットライブラリ

    イーサネットライブラリ


     参考

    WizWiki Forum : WIZnetの技術的サポートやプロジェクトを共有するフォーラム

    Ethernet Library for ioShield-A : WIZnet WIZ550ioの技術的サポート

    製品概要: 追加予定


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/w5500_ethernet_shield_kor.html b/Product/Open-Source-Hardware/w5500_ethernet_shield_kor.html index 5f248877201..f996d53d832 100644 --- a/Product/Open-Source-Hardware/w5500_ethernet_shield_kor.html +++ b/Product/Open-Source-Hardware/w5500_ethernet_shield_kor.html @@ -15,7 +15,7 @@ - + @@ -33,7 +33,7 @@ 사용바란다.


    SPI Operation & Timing Diagram

    SPI Operation

    W5500 Ethernet shield는 W5500 기반으로 제작되었습니다. 그러므로 SPI 동작 & 타이밍 등은 W5500 Datasheet를 확인해주세요. 더 많은 정보를 원하시면W5500과 Datasheet 확인해주세요.

    ---

    Technical Reference

    Block Diagram

    Schematic

    Part list

    Dimension


    Etc.

    Ethernet shield Library 추가하기

    Arduino 예제

    Ethernet Library


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/w6100_mkr_ethernet_shield.html b/Product/Open-Source-Hardware/w6100_mkr_ethernet_shield.html index c24f57a1e61..b024ba2048c 100644 --- a/Product/Open-Source-Hardware/w6100_mkr_ethernet_shield.html +++ b/Product/Open-Source-Hardware/w6100_mkr_ethernet_shield.html @@ -15,7 +15,7 @@ - + @@ -30,7 +30,7 @@ Hardwired TCP/IP Stack supports TCP, UDP, IPv4, IPv6, ICMP, ARP, IGMP, and PPPoE etc which has been proven through various Applications over many years.

    W6100 Ethernet Shield
    Figure: W6100 Ethernet Shield
    W6100 MKR-Ethernet Shield
    Figure: W6100 MKR-Ethernet Shield

    Getting Started


    Datasheet


    Technical Reference

    Schematic & Part list & Gerber


    Ethernet Library


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/wizarduino_m0_eth.html b/Product/Open-Source-Hardware/wizarduino_m0_eth.html index 0cac18a31b4..1c2e79b494a 100644 --- a/Product/Open-Source-Hardware/wizarduino_m0_eth.html +++ b/Product/Open-Source-Hardware/wizarduino_m0_eth.html @@ -15,7 +15,7 @@ - + @@ -33,7 +33,7 @@ 와 🌎Start with Arduino M0 를 참고 하세요.

    Ethernet

    #include <SPI.h>
    #include <Ethernet2.h>

    SD Card


    Example

    본 예제는 아두이노 스케치 <wrap em>v1.7.5 에서 정상 동작 확인 되었습니다.

    Basic

    IoT


    Maker Projects


    Technical Reference

    Schematic & Reference Design

    Dimension

    Part list


    FAQ

    How to recover a board blocked?

    Rescue guide for microcontroller ATSAMD21G18A 정상적인 보드의 경우 Reset을 누르면 장치 관리자에서 Arduino M0 (Bootloader Mode) Navtive Port(COMxx)로 검색이 된 후 Arduino M0 Native Port(COMxx)로 변경되어 검색이 됩니다.

    하지만, 예상치 못한 오류로 Arduino M0 (Bootloader Mode) Navtive Port(COMxx)로 검색이 된 후 Arduino M0 Native Port(COMxx)로 변경되지 못 할 경우가 있습니다. 그래서 아두이노 스케치에서 역시 보드의 포트가 검색이 안되어 스케치 파일을 업로드 할 수 없는 경우가 발생 합니다. 위 증상과 관련하여 Arduino.org에서 복구 가이드를 제공 합니다.

    만약 위와 같은 증상이 발생 한다면, 위 복구 가이드 또는 아래 내용을 따라 하여 복구 하시기 바랍니다.

    1. 보드를 PC와 연결
    2. 아두이노 스케치 프로그램을 실행
    3. 메뉴의 파일-환경설정 선택
    4. 환경설정 메뉴에서 다음 동작중 자세한 출력 보이기: 컴파일, 업로드 선택 후 확인
    5. 아두이노 스케치 프로그램을 종료 후 재 실행
    6. 메뉴의 도구-보드-Arduino M0 선택
    7. 메뉴의 파일-예제-Basic-Blink 선택
    8. 업로드 버튼 선택
    9. 로그를 확인하다가 COM Port List 가 보일때 보드의 Reset 누름
    Where is the MAC address?
    Ethernet을 하는 모든 장치에는 고유의 물리적인 주소가 존재합니다. WizArduino M0 ETH로 Ethernet통신을 할 시 필요한 MAC address는 아래 사진의 위치에 스티커로 부착 되어 제공 하고 있습니다.

    네트워크 응용 프로그램을 만들때 MAC address를 확인 하신 후 아래 코드와 같이 확인한 MAC address를 입력하여 사용하세요.

    byte mac[] = {
    0x00, 0x08, 0xdc, 0x??, 0x??, 0x??
    };
    How do I get a POE module?
    WizArduino M0 ETH 에는 Board 중앙 부분에 POE Module을 장착 할 수 있는 핀헤더 소켓이 있습니다. 장착 가능한 모듈은 [Silvertel](https://www.silvertel.com/) 사의 Ag9700 제품(Ag9712-2BR, Ag9700 SIL Package, OutPut Voltage : 12.0V) 입니다. 국내에서는 파워텔넷사에서 취급하고 있으니 참고 하시기 바랍니다.

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/wizarduino_m0_eth_eng.html b/Product/Open-Source-Hardware/wizarduino_m0_eth_eng.html index 79155e5c302..fe25bcb7562 100644 --- a/Product/Open-Source-Hardware/wizarduino_m0_eth_eng.html +++ b/Product/Open-Source-Hardware/wizarduino_m0_eth_eng.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    WizArduino M0 ETH (ENG)


    Overview

    WizArduino M0 ETH is built on 🌎M0 board but adds 🌎W5500 TCP/IP Embedded Ethernet Controller, thus making it simple as Arduino UNO platform and applicable for IoT development.

    WizArduino M0 ETH is a board that combines Arduino M0 and Ethernet Shield 2, start any IoT, Home Automation, Robot, drone or any DIY project


    Hardware Features

    WizArduino Microcontroller

    • Microcontroller : ATSAMD21G18, 48pins LQFP
    • Architecture : ARM Cortex-M0+
    • Operation Voltage : 3.3V
    • Flash Memory : 256KB
    • SRAM : 32KB
    • Clock Speed : 48MHz
    • Analog I/O Pins : 6 + 1 DAC
    • DC Current per I/O Pins : 7mA (I/O Pins)

    General features

    • Ethernet : WIZnet W5500 Ethernet Controller
    • Input Voltage : 7-15V
    • Input Voltage PoE : 36 – 57V
    • Digital I/O Pins : 20, with 12 PWM and UART
    • PWM Output : 12
    • Power Consumption : 80mA
    • PCB Size : 53 x 68.5mm
    • Card Reader : Micro SD Card, with active voltage translators
    • Weight : 28g

    PinOut


    Getting Started

    WizArduino M0 ETH is 100% compatible with M0 board from Arduino.org. Install Arduino IDE and try connecting your board. It is recommended to use Arduino IDE v1.7.5 and higher. Select Arduino M0 when prompted to select your board.

    For more details refer to next page.

    🌎Download the software WizArduino M0 ETH is pin compatible with Arduino UNO, thus you can use your program not only with WizARduino M0 ETH, but also with other ARduino boards too. But there are some important notes to check before.

    Voltage

    • The microcontroller mounted on the WizArduino M0 ETH operates at 3.3V. You should not apply more than 3.3V to input or output. If you use it with a typical Arduino board that operates at 5V, WizArduino M0 ETH could be damaged.
    • The power of the WizArduino M0 ETH can be supplied by USB connectors or DC plugs.
    • A linear voltage regulator is built-in, so when supplying power to an adapter with a high voltage, overheating may occur.

    Serial port on the M0

    • WizArduino M0 ETH has one USB port.
    • Called Native USB, it connects directly to the SAMD21 MCU, a microcontroller of WizArduino M0 ETH.
    • This port is also used as a virtual port as "SerialUSB" in Arduino programming.

    ADC and PWM resolutions

    • WizArduino M0 ETH supports 6 ADCs (12-bit) and 12 PWM (8-bit).

    For more details please refer to next page.

    🌎Start with Arduino M0


    Examples

    Before programming with WizArduino M0 ETH, there are few points to be checked.

    Checkpoint

    Select board

    • As mentioned in Getting Started, WizArduino M0 ETH is 100% compatible with Arduino.org's M0 board. Select Arduino M0 when prompted to Select board.

    Serial message

    SerialUSB
    • As mentioned in Getting Started, WizArduino M0 ETH supports one USB port and connects with a USB cable to access virtual serial ports using Serial USB through programming.
    • Please use the code below when using the serial message with the port.
    void setup() {
    SerialUSB.begin(9600);
    while (!SerialUSB);
    SerialUSB.println("Hello world");
    }
    Serial5
    • WizArduino M0 ETH supports Serial5 using pins 0, 1 in addition to Serial USB.
    • Please use the code below when using the serial message with the port.
    void setup() {
    Serial5.begin(9600);
    while (!Serial5);
    Serial5.println("Hello world");
    }

    For more details refer to 🌎Serial ports and 🌎Start with Arduino M0.

    Ethernet

    • As mentioned in Overview, WizArduino M0 ETH is a board that combines Arduino M0 and Ethernet Shield 2.
    • To use the Ethernet function, you need to add the Ethernet2.h file as below.
    • When using the Ethernet function, pin 10 is assigned for Ethernet control, thus it can't be used.
    #include <SPI.h>
    #include <Ethernet2.h>

    SD Card

    • When using the SD Card function, pin 4 is assigned for SD Card control, thus it can't be used.

    Example

    This example sketch was checked on v1.7.5.

    Basic

    IoT


    Maker Projects

    • Coming soon

    Technical Reference

    Schematic & Reference Design

    Dimension

    Part list


    FAQ

    How to recover a board blocked?

    Rescue Guide for Microcontroller ATSAMD21G18A

    If board is operating normally, press Reset and check in the device manager for changes from Arduino M0 (Bootloader Mode) Native Port (COMxx) to Arduino M0 Native Port (COMxx).

    However, an unexpected error may fail to change to Arduino M0 Native Port (COMxx) after being searched with Arduino M0 (Bootloader Mode) Navy Port (COMxx). Therefore, in Arduino Sketch, there are cases where the sketch file cannot be uploaded because the port on the board cannot be searched. Regarding the above failures, Arduino.org provides the Recovery Guide.

    If the above failures occur, please follow the above recovery guide or the following information.

    1. Connect the board to the PC.
    2. Run Arduino Sketch Program.
    3. Go to File -> Preferences.
    4. In the Preferences menu, show detailed output during the following actions: Compile, Upload Check after choosing.
    5. Terminate Arduino Sketch Program and rerun it.
    6. Select Tools-Board-Arduino M0 in the menu
    7. Select File-Example-Basic-Blink for the menu.
    8. Select the upload button.
    9. Press Reset on the board when you see the COM Port List while checking the log.
    Where is the MAC address?
    Every Ethernet device has its own physical address. The MAC address required for Ethernet communication with WizArduino M0 ETH is provided on a sticker, shown as below.

    When creating a network application, check the MAC address and enter the MAC address as shown in the code below.

    byte mac[] = {
    0x00, 0x08, 0xdc, 0x??, 0x??, 0x??
    };
    How do I get a POE module?
    WizArduino M0 ETH has a pinheader in the center of the board for mounting POE module.

    Possible module for installation is Ag9700(Ag9712-2BR, Ag9700 SIL Package, OutPut Voltage : 12.0V) from Silvertel

    Among domestic please check products of local company PowerTelNet.


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/wizarduino_mega_wifi.html b/Product/Open-Source-Hardware/wizarduino_mega_wifi.html index 531da851e79..47d47dd1db2 100644 --- a/Product/Open-Source-Hardware/wizarduino_mega_wifi.html +++ b/Product/Open-Source-Hardware/wizarduino_mega_wifi.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@
  • 검색된 WizFi310 라이브러리 설치
  • 설치완료 및 예제 확인

  • Examples

    IoT


    Maker Projects


    Technical Reference

    Schematic & Reference Design

    Dimension

    Part List


    FAQ

    WizArduino MEGA WIFI에 장착된 WizFi310과 다른 WiFi모듈과 차이점은 뭔가요?
    WizFi310 특징

    요즘 Embedded WiFi 모듈이 많이 나와 있는데, 기술이 어느 정도 평준화 되어서 (일부 저가 WiFi 모듈을 제외하고는) 스펙이나 특징에서 특별한 차이점이 없습니다.

    • UART 인터페이스로 AT Command를 이용하여 제어
    • 802.11 bgn 지원
    • WEP, WPA/WPA2, TKIP/AES 지원
    • Soft AP mode 지원
    • 스마트폰을 이용한 설정/제어 가능
    • TCP/UDP, SSL, MQTT/MQTTS 및 멀티 소켓 지원
    • WizFi310도 위의 스펙을 모두 지원하고 있습니다.

    다만, 위즈네트에서 직접 개발된 제품이라 SKT Thingplug 및 KT IoTMaksers 같은 국내 통신사 IoT 플랫폼 연동을 지원하고 있다는 점이 장점이라 할 수 있을 것 같습니다.

    위즈네트 아카데미에서는 (ThingPlug 접속 기능이 내장된) WizFi310을 사용하여 SKT Thingplug를 강의하고 있고, KT IoTMakers에는 (WiFi 모듈로서는 최초로) 공식 Compatible 제품으로 등록되었습니다.

    SKT나 KT의 IoT 플랫폼에 WiFi로 접속하려는 분들에게는 특히나 좋은 선택이 될 듯 합니다.

    WiFi 통신 거리는 어떻게 되나요?
    내부적으로 테스트한 결과 WizFi310은 개활지에서 최대 160m 까지 통신 가능합니다. (단, 이경우 사용하는 공유기의 안테나에 따른 성능 차이는 있습니다.)

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/wizarduino_mega_wifi_eng.html b/Product/Open-Source-Hardware/wizarduino_mega_wifi_eng.html index 10096fb7785..9818276d546 100644 --- a/Product/Open-Source-Hardware/wizarduino_mega_wifi_eng.html +++ b/Product/Open-Source-Hardware/wizarduino_mega_wifi_eng.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@

    1. Wait for installation and check sample projects.


    Examples

    IoT


    Maker Projects


    Technical Reference

    Schematic & Reference Design

    Dimension

    Part List


    FAQ

    What are the differences between WizFi310 and other WiFi modules?
    WizFi310 description

    There are many Embedded WiFi modules these days, and the technology has been leveled to some extent (except for some low-cost WiFi modules), so there is no special difference in specifications or features.

    • Control using AT Command through UART interface.
    • 802.11 bgn support.
    • Support for WEP, WPA/WPA2, TKIP/AES.
    • Support for Soft AP mode.
    • It can be set up/controlled using a smartphone.
    • TCP/UDP, SSL, MQTT/MQTTS, and multi-socket support.
    • WizFi 310 also supports all of the above specifications.

    However, it is a product developed directly by Wiznet, so we can say that its advantage is that WizFi310 can be easily connected to IoT platforms of domestic telecommunication companies such as SKT Thingplug and KT IoT Makers.

    The Wiznet Academy provides training sessions for using WizFi310 with SKT Thingplug, which has a built-in ThingPlug connection, and KT IoTMakers is registered as the official Compatible Product (for the first time as a WiFi module).

    It would be a particularly good choice for customers who want to connect to SKT or KT's IoT platforms through Wi-Fi.

    What is WiFi range?
    As a result of internal testing, WizFi310 signal can range up to 160m outdoors. (However, in this case, there could be a difference in performance depending on the antenna of the router used.)

    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/wizfi310_shield.html b/Product/Open-Source-Hardware/wizfi310_shield.html index ecf38c7316c..13f4b41fbaa 100644 --- a/Product/Open-Source-Hardware/wizfi310_shield.html +++ b/Product/Open-Source-Hardware/wizfi310_shield.html @@ -15,7 +15,7 @@ - + @@ -35,7 +35,7 @@ used.
    Pin 1 : RTS - D6
    Pin 2 : CTS - D7

    SW5 - Aruduino Pin Selector DIP Switch

    Pin 1 : A0 - CDS
    Pin 2 : D14 - DHT11
    Pin 3 : D9 - WizFi310 Reset Pin

    UART Selector Jumper

    J1 : RXD
    J2 : D0 ~ D8
    J3 : TXD

    Getting Started


    Technical Refernce

    Datasheet

    Schematic

    Partlist


    ETC

    Serial Port Driver

    Sensor Datasheets


    - + \ No newline at end of file diff --git a/Product/Open-Source-Hardware/wizfi360-evb-pico.html b/Product/Open-Source-Hardware/wizfi360-evb-pico.html index aeb8d9712c0..bd0e3054ddf 100644 --- a/Product/Open-Source-Hardware/wizfi360-evb-pico.html +++ b/Product/Open-Source-Hardware/wizfi360-evb-pico.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WizFi360-EVB-Pico

    Overview

    WizFi360-EVB-Pico is based on Raspberry Pi RP2040 and adds Wi-Fi connectivity using WizFi360. It is pin compatible with Raspberry Pi Pico board and can be used for IoT Solution development.

    WizFi360-EVB-Pico_Main

    Powered By Raspberry Pi logo

    Features

    • RP2040 microcontroller with 2MByte Flash
      • Dual-core cortex M0+ at up to 133MHz
      • 264kByte multi-bank high performance SRAM
      • External Quad-SPI Flash with eXecute In Place (XIP)
    • Includes WizFi360-PA
      • WiFi 2.4G, 802.11 b/g/n
      • Support Station / SoftAP / SoftAP+Station operation modes
      • Support “Data pass-through” and “AT command data transfer” mode
      • Support serial AT command configuration
      • Support TCP Server / TCP Client / UDP operating mode
      • Support configuration of operating channel 0 ~ 13
      • Support auto 20MHz / 40MHz bandwidth
      • Support WPA_PSK / WPA2_PSK encryption
      • Support built-in unique MAC address and user configurable
      • Industrial grade (operating temperature range: -40 ° C ~ 85 ° C)
      • CE, FCC certification
    • Includes 16M-bit Flash Memory
    • Micro-USB B port for power and data (and for reprogramming the Flash)
    • 40 pin 21x51 'DIP' style 1mm thick PCB with 0.1" through-hole pins also with edge castellations
    • 3-pin ARM Serial Wire Debug (SWD) port
    • Built-in LDO

    Hardware Specification

    Pin-out

    WizFi360-EVB-Pico_Pinout_220405

    WizFi-EVB-Pico pinout is directly connected to the GPIO of RP2040 as shown in the picture above. It has the same pinout as the Raspberry Pi Pico board. However, GPIO4, GPIO5, GPIO6, GPIO7, GPIO20 are connected to WizFi360 inside the board. These pins enable UART communication with WizFi360 to use Wi-Fi function. If you are using the Wi-Fi function, these pins cannot be used for any other purpose.

    The RP2040 GPIO used inside WizFi360-EVB-Pico is as follows.

    I/OPin NameDescription
    OGPIO4Connected to RXD1 on WizFi360
    IGPIO5Connected to TXD1 on WizFi360
    OGPIO6Connected to RTS1 on WizFi360
    IGPIO7Connected to CTS1 on WizFi360
    OGPIO20Connected to RST on WizFi360
    IGPIO24VBUS sense - high if VBUS is present, else low
    OGPIO25Connected to user LED
    IGPIO29Used in ADC mode (ADC3) to measure VSYS/3

    Apart from GPIO and ground pins, there are 7 other pins on the main 40-pin interface:

    Pin No.Pin NameDescription
    PIN40VBUSMicro-USB input voltage, connected to micro-USB port pin 1. Nominally 5V.
    PIN39VSYSMain system input voltage, which can vary in the allowed range 4.3V to 5.5V, and is used by the on-board LDO to generate the 3.3V .
    PIN373V3_ENConnects to the on-board LDO enable pin. To disable the 3.3V (which also de-powers the RP2040 and WizFi360), short this pin low.
    PIN363V3Main 3.3V supply to RP2040 and WizFi360, generated by the on-board LDO.
    PIN35ADC_VREFADC power supply (and reference) voltage, and is generated on WizFi360-EVB-Pico by filtering the 3.3V supply.
    PIN33AGNDGround reference for GPIO26-29.
    PIN30RUNRP2040 enable pin, To reset RP2040, short this pin low.

    Operation Condition

    ItemDescription
    Operation Temperature MAX85C (including self-heating)
    Operation Temperature MIN-20C
    VBUSDC 5V (+/- 10%)
    VSYS MinDC 4.3V
    VSYS MaxDC 5.5V

    Electrical Specification

    Technical Reference

    RP2040 Datasheet

    WizFi360 Datasheet

    Schematic

    WizFi360-EVB-Pico_SCH_V100-1

    Schematic & Part list & Gerber File

    Dimension (Unit : mm)

    WizFi360-EVB-Pico_V100_Dimension-1

    Firmware Example

    Please refer to below links to find firmware example.

    AWS Qualification

    WizFi360-EVB-Pico is RP2040-based device that got AWS IoT Core Qualification.

    Microsoft Azure Certification

    WizFi360-EVB-Pico is RP2040-based device certified to run with Microsoft Azure.

    How to buy

    WIZnetUS Online Shop, USA WIZnetKorea Online Shop, Korea

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    WIZnet Pico PoE

    Overview

    It combines with the W5500, W5100S, and W6100 Io Module to provide Ethernet as well as a separate power supply. It can supply up to 8W

    • Raspberry Pi Pico Mountable
    • Ethernet W5100S, W5500, W6100 IO Module Mountable
    WIZnet Pico PoE

    Features

    PoE

    • IEEE802.3af compliant
    • Mode A(Endspan), Mode B(Midspan)
    • Wide input voltage range 37Vdc ~ 57Vdc
    • Circuit Protection (OV,OC)
    • High DC/DC convertion efficiency
    • Isolation level 2kVrms
    • Enhanced surge protection
    • Internal build in 2 channel bridge rectifiers

    PoE Electrical Specifications

    NoValueSpecification
    1Input Voltage37 ~ 57V
    2Output Voltage5V (1.6A)
    3.3V (1A LDO)
    3Power8W
    4Switching Frequency400kHz fixed
    5Isolation2kVrms
    6Operating Temperature-20 ~ 85℃

    WIZnet IO Module

    • W5100S-IO
      • Supports Hardwired Internet Protocols: TCP, UDP, WOL over UDP, ICMP, IGMPv1/v2, IPv4, ARP, PPPoE
      • Supports 4 Independent Hardware SOCKETs simultaneously
      • Internal 16 Kbytes Memory for TX/ RX Buffers
      • SPI Interface
    • W5500-IO
      • Supports Hardwired Internet Protocols: TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
      • Supports 8 Independent Hardware SOCKETs simultaneously
      • Internal 32 Kbytes Memory for TX/ RX Buffers
      • Supports High Speed Serial Peripheral Interface(SPI MODE 0, 3)
    • W6100-IO
      • Supports Hardwired Internet Protocols: TCP, UDP, IPv6, IPv4, ICMPv6, ICMPv4, IGMP, MLDv1, ARP, PPPoE
      • Supports 8 independent SOCKETs simultaneously with 32KB memory
      • Internal 16 Kbytes Memory for TX/ RX Buffers
      • SPI Interface

    Raspberry Pi Pico

    • RP2040 microcontroller with 2MByte Flash
      • Dual-core cortex M0+ at up to 133MHz
      • 264kByte multi-bank high performance SRAM
      • External Quad-SPI Flash with eXecute In Place (XIP)
      • High performance full-crossbar bus fabric
      • 30 multi-function General Purpose IO (4 can be used for ADC)
        • 1.8-3.3V IO Voltage (NOTE. Pico IO voltage is fixed at 3.3V)
      • 12-bit 500ksps Analogue to Digital Converter (ADC)
      • Various digital peripherals
        • 2 × UART, 2 × I2C, 2 × SPI, 16 × PWM channels
        • 1 × Timer with 4 alarms, 1 × Real Time Counter
      • 2 × Programmable IO (PIO) blocks, 8 state machines total
      • Flexible, user-programmable high-speed IO
      • Can emulate interfaces such as SD Card and VGA

    Other Functions

    • 3-pin ARM Serial Wire Debug (SWD) port
    • 10 / 100 Ethernet PHY embedded
    • Supports Auto Negotiation
      • Full / Half Duplex
      • 10 / 100 Based
    • Built-in RJ45(BR1-ZZ-0049)
    • Built-in LDO (IL1117-3.3)

    Hardware Specification

    WIZnet_Pico_PoE-1
    Mounting Raspberry Pi Pico, WIZnet Ethernet IO Module
    WIZnet_Pico_PoE_FIN_FW_C
    Removed Raspberry Pi Pico, WIZnet Ethernet IO Module
    WIZnet Pico PoE Part
    Parts

    Raspberry Pi Pico

    WIZnet IO Module pinout is directly connected to the GPIO of Pico Board as shown in the picture above. GPIO16, GPIO17, GPIO18, GPIO19, GPIO20, GPIO21 are connected to WIZnet IO Module. These pins enable SPI communication with WIZnet Chip to use Ethernet function. If you are using the Ethernet function, these pins cannot be used for any other purpose

    Raspberry Pi Pico to WIZnet IO Module Connecttion Pin

    I/OPin NameDescription
    IGPIO16Connected to MISO on W5100S
    OGPIO17Connected to CSn on W5100S
    OGPIO18Connected to SCLK on W5100S
    OGPIO19Connected to MOSI on W5100S
    OGPIO20Connected to RSTn on W5100S
    IGPIO21Connected to INTn on W5100S
    IGPIO24VBUS sense - high if VBUS is present, else low
    OGPIO25Connected to user LED
    IGPIO29Used in ADC mode (ADC3) to measure VSYS/3

    Power Pin of Raspberry Pi Pico

    Pin No.Pin NameDescription
    PIN40VBUSMicro-USB input voltage, connected to micro-USB port pin 1. Nominally 5V.
    PIN39VSYSMain system input voltage, which can vary in the allowed range 4.3V to 5.5V, and is used by the on-board LDO to generate the 3.3V .
    PIN373V3_ENConnects to the on-board LDO enable pin. To disable the 3.3V (which also de-powers the RP2040 and W5100S), short this pin low.
    PIN363V3Main 3.3V supply to RP2040 and W5100S, generated by the on-board LDO.
    PIN35ADC_VREFADC power supply (and reference) voltage, and is generated on W5100S-EVB-Pico by filtering the 3.3V supply.
    PIN33AGNDGround reference for GPIO26-29.
    PIN30RUNRP2040 enable pin, To reset RP2040, short this pin low.

    J1 Power Output Header

    Pin No.Pin NameDescription
    1+5V+5V Power I/O Pin
    2+3.3V+3.3V Power I/O Pin
    3GNDGround

    J7 SWD Header

    3-pin ARM Serial Wire Debug (SWD) port

    Pin No.Pin Name
    1SWDIO
    2GND
    3SWCLK
    ItemDescription
    Operation Temperature MAX70℃
    Input Volatge48 ~ 57V

    Technical Reference

    io-Module

    RP2040 Datasheet

    Schematic V100

    Sch_WIZnet_Pico_PoE_FIN_1- Sch_WIZnet_Pico_PoE_FIN

    Schematic & Partlist & Gerber File

    Dimension (Unit : mm)

    Dimension
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    WIZnet Ethernet HAT

    Overview

    WIZnet Ethernet HAT (Hardware Attached on Top) is a Raspberry Pi Pico pin-compatible board that utilizes W5100S and supports both 3.3V & 5V.

    Please refer to this link to find more information about W5100S.

    • Raspberry Pi Pico Pin-Compatible
    • Ethernet (W5100S Hardwired TCP/IP CHIP)

    Features

    • Includes W5100S
      • Supports Hardwired Internet Protocols: TCP, UDP, WOL over UDP, ICMP, IGMPv1/v2, IPv4, ARP, PPPoE
      • Supports 4 Independent Hardware SOCKETs simultaneously
      • Internal 16 Kbytes Memory for TX/ RX Buffers
    • Operation Voltage 3.3V / 5V
      • Built-in LDO (LM8805SF5-33V)
    • SPI Interface
      • 5V I/O tolerance
    • 10 / 100 Ethernet PHY embedded
    • Supports Auto Negotiation
      • Full / Half Duplex
      • 10 / 100 Based
    • Built-in RJ45 (RB1-125BAG1A)

    Hardware Specification

    Pin-out

    WIZnet-Ethernet-HAT-Pinout

    Pin Description

    I/OPin NameDescription
    PVBUSPower supply, 4.3~5.5 Voltage
    P3V3Power supply, 3.3 Voltage
    PGNDPower ground
    IINTnW5100S Interrupt : Low activity.
    IRSTnW5100S Reset : Low activity
    ISPI0 TXSPI MOSI (Master Out Slave In)
    ISPI0 SCKSPI Clock
    ISPI0 CSnSPI Slave Select
    OSPI0 RXSPI MISO(Master In Slave Out)

    Electrical Specification

    TBA

    Technical Reference

    W5100S Datasheet

    Schematic & Part list & Gerber File

    Schematic

    WIZnet-Ethernet-HAT-Schematic

    Dimension (Unit : mm)

    21 x 68 x 18 (mm)

    WIZnet-Ethernet-HAT-Dimension

    Firmware Examples

    Please refer to below links to find firmware example.

    How to buy

    WIZnetUS Online Shop, USA WIZnetKorea Online Shop, Korea

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    - + \ No newline at end of file diff --git a/Product/Pre-programmed-MCU/W7500P-S2E/w7500p-s2e-EN.html b/Product/Pre-programmed-MCU/W7500P-S2E/w7500p-s2e-EN.html index 629b3f8cdc9..58ff11faaaa 100644 --- a/Product/Pre-programmed-MCU/W7500P-S2E/w7500p-s2e-EN.html +++ b/Product/Pre-programmed-MCU/W7500P-S2E/w7500p-s2e-EN.html @@ -15,7 +15,7 @@ - + @@ -44,7 +44,7 @@ customer.

    We also provide technical support including various hardware guide and references for customer's quick product design-win.

    What We Offer

    Addable features


    Network Protocols

    Custom Functions

    Changeable options



    Contact Us

    We offer a wide range of customizable products and technical support

    Email:sales@wiznet.io


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    Resources

    Documents

    Product Overview

    Getting Started Guide (English)/(Korean)

    User's Manual (English)/(Korean)

    Configuration Tool Manual (English)/(Korean)

    Configuration Tool Manual New (English)/(Korean)

    CLI Config Tool Tutorial

    Device Command Manual (English)/(Korean)

    Education Data

    Troubleshooting Guide (English)/(Korean)

    Update History (English)/(Korean)

    Datasheet

    Datasheet


    Developer's Guide

    Developer's Guide (English)/(Korean)


    Download

    Software Download

    Technical References


    Customization Services

    Grow with WIZnet, Attract New Clients

    WIZnet은 고객 목적에 맞춘 Customization services를 제공합니다.

    W7500(P)-S2E 제품을 기반으로 제품 초기 설정 및 MAC 주소 변경, 다양한 프로토콜 추가 탑재 및 기능 확장에 대한 서비스를 제공하며, 완성된 펌웨어는 W7500 / W7500P MCU에 프로그램되어 요청 고객에게 제공됩니다.

    또한 고객의 빠른 제품 Design-Win을 위해, 다양한 Hardware references를 포함한 Technical support를 제공합니다.

    What We Offer

    기능 확장 / 추가


    Network Protocols

    Custom Functions

    옵션 변경



    Contact Us

    위즈네트는 다양한 분야의 고객 맞춤형 제품 서비스와 기술 지원을 제공합니다.
    아래 메일로 문의하시면 언제든 담당자의 상세한 소개를 받으실 수 있습니다.

    Email:sales@wiznet.io


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    Features


    Specification



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    Features


    Specification



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    Features


    Specification


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    WIZ100SR

    caution

    WIZ100SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Please check WIZ750SR-100 instead.

    Overview

    WIZ100SR is the serial to Ethernet module using W5100 & 8051 MCU. WIZ100SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment.

    Features

    • Serial to Ethernet Module based on W5100 & 8051
    • Pin-header type module
    • Serial signals : TXD, RXD, RTS, CTS, GND
    • Support the configuration method of AT command & Configuration tool program
    • 10/100Mbps Ethernet & Max.230kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • Pin Header Connector Type : 2mm Pitch (2x12mm)
    • Dimension (mm) : 50(L) x 30 (W) x 12 (H)
    • Input Voltage : 3.3V
    • Max. Power Consumption : 200mA
    • Operation Temperature : 0~80℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Pin Assignment

    Download

    Documents

    WIZ100SR User Manual v2.2.0

    Last Update: 2017.02.28

    English Version
    Korean Version

    WIZ100SR/ WIZ105SR/ WIZ110SR Programmer’s Guide

    Last Update: 2013.06.19

    Download

    WIZ100SR Temperature Test Report

    Last Update: 2010.05.26

    Download

    Firmware

    WIZ100SR Firmware v5.13

    • Last Update: 2015.03.27
    • Improved the exception for infinite loop during using socket functions : Apply time-out mechanism
    • Bug Fixed : side effect of AT command
    Download

    WIZ100SR Old Firmware

    • V5.11 (2015.01.21)
    • 5.10 (2014.01.14)
    • 4.32 (2013.11.21)
    • 4.31 (2013.01.30)
    • 4.1 (2012-04-03)
    Download

    Utilities

    WIZ100SR /WIZ105SR /WIZ110SR Config Tool for Windows v3.0.2

    • Last Update: 2013.06.27
    • WIZ1xxSR Config Tool Installation Package
    • WIZ1xxSR Config Tool Source Code
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    Hardware Design Guide

    Reference Schematic for WIZ100SR V2.0
    WIZ100SR Pin Header Description
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    WIZ100SR-EVB

    caution

    WIZ100SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Please check WIZ750SR-100 instead.

    Overview

    WIZ100SR-EVB is a evaluation board for WIZ100SR.

    WIZ100SR is the serial to Ethernet module using W5100 & 8051 MCU. WIZ100SR is the protocol converter that transmits the data sent by a serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to a serial equipment.

    Features

    • Serial to Ethernet Module based on W5100 & 8051
    • Pin-header type module
    • Serial signals : TXD, RXD, RTS, CTS, GND
    • Support the configuration method of AT command & Configuration tool program
    • 10/100Mbps Ethernet & Max.230kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    WIZ100SR Module

    • TCP/IP : W5100
    • PHY : Embedded in W5100
    • MCU : 8051 (GC89L591A0-MQ44I) : SRAM : 16K Byte, EEPROM : 2K Byte
    • Serial : 3.3V LVTTL

    Base Board

    • RJ-45 : RB1-125BAG1A (Transformer Integrated)
    • Serial Connector : D-SUB, 9PIN, Right Angle, Male
    • RS-232 Transceiver : MAX3232CSE
    • Power : DC Jack mounted (External : 4.5Ø, Internal :1.3Ø)

    Accessories

    • Power Adaptor (5V, 2A), UTP LAN Cable (2M), Serial Cable

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Evaluation Board Interface

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    WIZ105SR

    caution

    WIZ105SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Please check WIZ750SR-105 instead.

    Overview

    WIZ105SR is the serial to Ethernet module using W5100 & 8051 MCU. WIZ105SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment.

    Features

    • Serial to Ethernet Module based on W5100 & 8051
    • Pin-header type, RJ-45 mounted module
    • Serial signals : TXD, RXD, RTS, CTS, GND
    • Support the configuration method of AT command & Configuration tool program
    • 10/100Mbps Ethernet & Max.230kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • Pin Header Connector Type : 2mm Pitch (6×2)
    • Dimension (mm) : 40(L) x 62 (W) x 17 (H)
    • Input Voltage : 3.3V
    • Max. Power Consumption : 200mA
    • Operation Temperature : 0~80℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Pin Assignment

    Download

    Documents

    WIZ105SR User Manual v1.3.0

    Last Update: 2017.02.28

    English Version

    WIZ100SR/ WIZ105SR/ WIZ110SR Programmer’s Guide

    Last Update: 2013.06.19

    Download

    Firmware

    WIZ100SR Firmware v5.13

    • Last Update: 2015.03.27
    • Improved the exception for infinite loop during using socket functions : Apply time-out mechanism
    • Bug Fixed : side effect of AT command
    Download

    WIZ100SR Old Firmware

    • V5.11 (2015.01.21)
    • 5.10 (2014.01.14)
    • 4.32 (2013.11.21)
    • 4.31 (2013.01.30)
    • 4.1 (2012-04-03)
    Download

    Utilities

    WIZ100SR /WIZ105SR /WIZ110SR Config Tool for Windows v3.0.2

    • Last Update: 2013.06.27
    • WIZ1xxSR Config Tool Installation Package
    • WIZ1xxSR Config Tool Source Code
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    Hardware Design Guide

    Reference Schematic for WIZ105SR V1.0
    WIZ105SR PinHeader Description
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    WIZ105SR-EVB

    caution

    WIZ105SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Please check WIZ750SR-105 instead.

    Overview

    WIZ105SR-EVB is a evaluation board for WIZ105SR.

    WIZ105SR is the serial to Ethernet module using W5100 & 8051 MCU. WIZ105SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment.

    Hardware Specification

    WIZ105SR Module

    • TCP/IP : W5100
    • PHY : Embedded in W5100
    • RJ-45 : RB1-125BAG1A (Transformer Integrated)
    • MCU : 8051 (GC89L591A0-MQ44I) : SRAM : 16K Byte, EEPROM : 2K Byte
    • Serial : 3.3V LVTTL

    Base Board

    • Module Interface : 2×6 12PIN 2mm DIP Header (Male)
    • Serial Connector : D-SUB, 9PIN, Right Angle, Male
    • RS-232 Transceiver : SP3232ECN
    • Power : DC Jack mounted (External : 4.5Ø, Internal :1.3Ø)

    Accessories

    • Power Adaptor (5V, 2A), UTP LAN Cable (2M), Serial Cable, WIZ105SR-CBL (connection cable between module & base board)

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Evaluation Board Interface

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ107SR.html b/Product/S2E-Module/WIZ107SR.html index 5d06b1961c5..633ab6f7ee1 100644 --- a/Product/S2E-Module/WIZ107SR.html +++ b/Product/S2E-Module/WIZ107SR.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ107SR

    caution

    WIZ107SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Overview

    WIZ107SR is the compact sized serial to Ethernet module using W7100A, WIZnet iMCU, 8051. WIZ107SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to a serial equipment.

    It complies with industrial temperature standard and supports the serial interface of RS-232.

    Features

    • Serial to Ethernet Module based on W7100A
    • Pin-header type & RJ-45 mounted module
    • Serial signals : TXD, RXD, RTS, CTS, GND, (RS-232 transceiver optionally built-in)
    • Support the configuration method of AT command & Configuration tool program
    • Support password function for the security
    • 10/100Mbps Ethernet & Max.230kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • Pin Header Connector Type : 2.54mm Pitch (6×2)
    • Dimension (mm) : 48(L) x 30 (W) x 18 (H)
    • Input Voltage : 3.3V
    • Max. Power Consumption : 250mA
    • Operation Temperature : -40 ~ 85℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Pin Assignment

    Download

    Documents

    WIZ107SR User Manual V1.72

    Last Update: 2017.06.19

    Download

    WIZ107SR/ WIZ108SR Network Configuration Guide V1.0

    • Last Update: 2012.11.15
    • Guide Document for Network Configuration with using multiple WIZ107SR, WIZ108SR modules
    Download

    WIZ107SR/WIZ108SR Configuration Communication Protocol Guide V1.0

    • Last Update: 2013.12.23
    • WIZ107/108SR Communication Protocol Format for Custom configuration tool development
    Download

    Firmware

    Firmware v4.0.6 (Latest)

    • Last Update: 2016.06.09
    • WIZ107SR(HW Ver. 1.3 / 1.4) Firmware
    Download

    Firmware v4.0.5

    • Last Update: 2015.09.15
    • WIZ107SR(HW Ver. 1.3 / 1.4) Firmware
    Download

    Firmware v4.04

    • Last Update: 2014.11.26
    • WIZ107SR(HW Ver. 1.3 / 1.4) Firmware
    Download

    WIZ107SR Old Firmware

    • V4.03 (2014.04.23) WIZ107SR(HW Ver. 1.3 / 1.4) Firmware
    • V3.14 (2013.11.07) WIZ107SR(HW Ver. 1.3) Firmware
    • V3.11 (2013.06.10) WIZ107SR(HW Ver. 1.3) Firmware
    • V3.10 (2013.02.22) WIZ107SR(HW Ver. 1.3) Firmware
    • V3.07 (2013.02.08) WIZ107SR(HW Ver. 1.3) Firmware
    • V3.04 (2012.11.15) WIZ107SR(HW Ver. 1.3) Firmware
    • V2.20 (2013.02.22) WIZ107SR(Old HW Ver. 1.1) Firmware
    • V2.17 (2013.02.08) WIZ107SR(Old HW Ver. 1.1) Firmware
    Download

    Utilities

    WIZ107SR /WIZ108SR Config Tool for Windows v1.4.4.1

    • Last Update: 2013.11.07
    • WIZ107SR/ WIZ108SR Config Tool Installation Package
    • WIZ107SR/WIZ108SR Config Tool Source Code
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    Hardware Design Guide

    Reference Schematic for WIZ107SR
    • WIZ107SR Hardware Schematic V1.4
    • WIZ107SR Hardware Schematic V1.3
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    WIZ107SR-EVB

    caution

    WIZ107SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Overview

    WIZ107SR-EVB is a evaluation board for WIZ107SR.

    WIZ107SR is the compact sized serial to Ethernet module using W7100A, WIZnet iMCU based on 8051 MCU core. WIZ107SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment

    It complies with industrial temperature standard and supports the serial interface of RS-232.

    Hardware Specification

    WIZ107SR Module

    • TCP/IP : W7100A
    • PHY : Embedded in W7100A
    • RJ-45 : BS-RB10005 (Transformer Integrated)
    • MCU : 8051 (W7100A) : SRAM : 64K Byte, FLASH-64Kbyte, 2Kbyte Boot ROM
    • Serial : 3.3V LVTTL or RS-232

    Base Board

    • Module Interface : 6×2 2.54mm Pin Header (Male)
    • Serial Connector : D-SUB, 9PIN, Right Angle, Male
    • RS-232 Transceiver : SP3232EBEY (optional)
    • Power : DC Jack mounted (External : 4.5Ø, Internal :1.3Ø)

    Accessories

    • Power Adaptor (5V, 2A), UTP LAN Cable (2M), Serial Cable, WIZ107SR-CBL (connection cable between module & base board)

    Base Board Type

    To test WIZ107SR-232 versionTo test WIZ107SR-TTL version

    WIZ107SR Ordering Information

    Part NoDescription
    WIZ107SR-232Serial : RS-232 (RS-232 transceiver mounted)
    Network : RJ-45 (Transformer integrated)
    WIZ107SR-TTLSerial : TTL
    Network : RJ-45 (Transformer integrated)
    WIZ107SR-232-EVBEvaluation Board for WIZ107SR-232 board
    WIZ107SR-TTL-EVBEvaluation Board for WIZ107SR-TTL board
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ108SR.html b/Product/S2E-Module/WIZ108SR.html index 6aa7613c9eb..c6ae44272f0 100644 --- a/Product/S2E-Module/WIZ108SR.html +++ b/Product/S2E-Module/WIZ108SR.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ108SR

    caution

    WIZ108SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Overview

    WIZ108SR is the compact sized serial to Ethernet module using W7100A WIZnet iMCU, 8051. WIZ108SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment

    It complies with industrial temperature standard and supports the serial interface of RS422/485.

    Features

    • Serial to Ethernet Module based on W7100A
    • Pin-header type & RJ-45 mounted module
    • Serial signals : TXD, RXD, RTS, CTS, GND, (RS-232 transceiver optionally built-in)
    • Support the configuration method of AT command & Configuration tool program
    • Support password function for the security
    • 10/100Mbps Ethernet & Max.230kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • Pin Header Connector Type : 2.54mm Pitch (6×2)
    • Dimension (mm) : 48(L) x 30 (W) x 18 (H)
    • Input Voltage : 3.3V
    • Max. Power Consumption : 250mA
    • Operation Temperature : -40 ~ 85℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Pin Assignment

    Download

    Documents

    WIZ108SR User Manual V1.42

    Last Update: 2017.06.19

    Download

    WIZ107SR/WIZ108SR Application Note V1.0

    • Last Update: 2012.11.15
    • Private IP & Public IP
    Download

    WIZ107SR/WIZ108SR Programmer’s Guide V1.0

    • Last Update: 2013.12.23
    Download

    Firmware

    Firmware v4.0.6 (Latest)

    • Last Update: 2016.06.09
    • WIZ108SR(HW Ver. 1.2 / 1.4) Firmware
    Download

    Firmware v4.0.5

    • Last Update: 2015.09.15
    • WIZ108SR(HW Ver. 1.2 / 1.4) Firmware
    Download

    Firmware v4.04

    • Last Update: 2014.11.26
    • WIZ108SR(HW Ver. 1.2 / 1.4) Firmware
    Download

    WIZ107SR Old Firmware

    • V4.03 (2014.06.14) WIZ108SR(HW Ver. 1.2 / 1.4) Firmware
    • V3.14 (2013.11.07) WIZ108SR(HW Ver. 1.2) Firmware
    • V3.11 (2013.03.11) WIZ108SR(HW Ver. 1.2) Firmware
    • V3.10 (2013.02.22) WIZ108SR(HW Ver. 1.2) Firmware
    • V3.07 (2013.02.08) WIZ108SR(HW Ver. 1.2) Firmware
    • V3.04 (2012.11.15) WIZ108SR(HW Ver. 1.2) Firmware
    • V2.20 (2013.02.22) WIZ108SR(Old HW Ver. 1.1) Firmware
    • V2.17 (2013.02.08) WIZ108SR(Old HW Ver. 1.1) Firmware
    Download

    Utilities

    WIZ107SR /WIZ108SR Config Tool for Windows v1.4.4.1

    • Last Update: 2013.11.07
    • WIZ107SR/ WIZ108SR Config Tool Installation Package
    • WIZ107SR/WIZ108SR Config Tool Source Code
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    Hardware Design Guide

    Reference Schematic for WIZ107SR
    • WIZ108SR Hardware Schematic V1.4
    • WIZ108SR Hardware Schematic V1.2
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    WIZ108SR-EVB

    caution

    WIZ108SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Overview

    WIZ108SR-EVB is a evaluation board for WIZ108SR.

    WIZ108SR is the compact sized serial to Ethernet module using W7100A, WIZnet iMCU based on 8051 MCU core. WIZ108SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment

    It complies with industrial temperature standard and supports the serial interface of RS422/485.

    Hardware Specification

    WIZ108SR Module

    • TCP/IP : W7100A
    • PHY : Embedded in W7100A
    • RJ-45 : BS-RB10005 (Transformer Integrated)
    • MCU : 8051 (W7100A) : SRAM : 64K Byte, FLASH-64Kbyte, 2Kbyte Boot ROM
    • Serial : RS-422/485 (SP3485EN, transceiver chip mounted)

    Base Board

    • Module Interface : 6×2 2.54mm Pin Header (Male)
    • Serial Connector : BR-508LH-6Pin (6pin Terminal Block)
    • Power : Supplied by Pin no. 1 of 6pin terminal block (J2)

    Accessories

    • UTP LAN Cable (2M), WIZ107SR-CBL (connection cable between module & base board)

    Base Board Interface

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ110SR.html b/Product/S2E-Module/WIZ110SR.html index 671f418bc5a..fb4f1bacab2 100644 --- a/Product/S2E-Module/WIZ110SR.html +++ b/Product/S2E-Module/WIZ110SR.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ110SR

    caution

    WIZ110SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Please check WIZ750SR-110 instead.

    Overview

    WIZ110SR is the serial to Ethernet module using W5100 & 8051 MCU. WIZ110SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment.

    Just by connecting LAN & Serial cable to the modules, you can easily add the ‘Serial to Ethernet’ function without additional hardware design.

    Features

    • Serial to Ethernet Module based on W5100 & 8051
    • DB-9 & RJ-45 mounted module
    • Serial signals : TXD, RXD, RTS, CTS, GND, RS-232 transceiver built-in
    • Support the configuration method of AT command & Configuration tool program
    • 10/100Mbps Ethernet & Max.230kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • Dmension (mm) : 75(L) x 50 (W) x 17 (H)
    • Input Voltage : 5V
    • Max. Power Consumption : 180mA
    • Operation Temperature : 0~80℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Hardware Interface

    Download

    Documents

    WIZ110SR User Manual v2.1.0

    Last Update: 2013.06.19

    Download

    WIZ100SR/ WIZ105SR/ WIZ110SR Programmer’s Guide

    • Last Update: 2013.06.19
    Download

    Firmware

    Firmware v5.13

    • Last Update: 2015.03.27
    • Improved the exception for infinite loop during using socket functions : Apply time-out mechanism
    • Bug Fixed : side effect of AT command
    Download

    WIZ110SR Old Firmware

    • V5.11 (2015.01.21)
    • 5.10 (2014.01.14)
    • 4.32 (2013.11.21)
    • 4.31 (2013.01.30)
    • 4.1 (2012-04-03)
    Download

    Utilities

    WIZ100SR /WIZ105SR /WIZ110SR Config Tool for Windows v3.0.2

    • Last Update: 2013.06.27
    • WIZ1xxSR Config Tool Installation Package
    • WIZ1xxSR Config Tool Source Code
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ120SR.html b/Product/S2E-Module/WIZ120SR.html index afdb629bb58..33c81ec49f7 100644 --- a/Product/S2E-Module/WIZ120SR.html +++ b/Product/S2E-Module/WIZ120SR.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ120SR

    caution

    WIZ120SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Please check WIZ752SR-120 instead.

    Overview

    WIZ120SR is an embedded module based on WIZnet W5100 & ARM Cortex-M3. WIZ120SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment. It supports two serial ports(3.3V LVTTL) so that it can communicate with two serial equipments at the same time.

    Features

    • Serial to Ethernet Module based on W5100 & Cortex-M3
    • Pin-header typed module
    • Serial signals : 2 port serial port (3.3V LVTTL) / TXD, RXD, RTS, CTS, GND signals
    • Support the configuration method of AT command & Configuration tool program
    • Support password function for the security
    • 10/100Mbps Ethernet & Max.230kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • Pin Header Connector Type : 2.5mm Pitch (1×14 & 2×14)
    • Dimension (mm) : 50(L) x 30 (W) x 8.85 (H)
    • Input Voltage : 3.3V
    • Max. Power Consumption : 300mA
    • Operation Temperature : 0 ~ 80℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Pin Assignment

    Download

    Documents

    WIZ120SR User’s Manual v1.1.0

    Last Update: 2013.06.19

    English Version
    Korean Version

    Firmware

    Firmware v1.41

    • Last Update: 2019.04.24
    • Bug fixes
      • Data loss problem during serial data transmission with a serial transfer rate of 230400 bps has been resolved.
    • Improvements
      • Stabilize the network operation by internal code modified
      • Watchdog timer added for device operation stability
    Download

    Firmware v1.4.0

    • Last Update: 2015.08.18
    • Ethernet to Serial Data Transmission problem has been fixed: The Ethernet data was not transmitted to the designated serial port. This problem sporadically occurred without any rule.
    Download

    Firmware v1.3.0

    • Last Update: 2013.04.18
    • Bug fixed : When set (Databits : 7),(Parity:odd/even) in UART2, WIZ120/125SR sent wrong data
    Download

    Utilities

    WIZ120SR/ WIZ125SR Config Tool for Windows v1.3

    • Last Update: 2013.04.18
    • WIZ120SR/ WIZ125SR Config Tool Program Installation Package
    • WIZ120SR/ WIZ125SR Config Tool Source Code
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ120SR/wiz120sr-evb.html b/Product/S2E-Module/WIZ120SR/wiz120sr-evb.html index 7944ba6a94d..b95f0eab082 100644 --- a/Product/S2E-Module/WIZ120SR/wiz120sr-evb.html +++ b/Product/S2E-Module/WIZ120SR/wiz120sr-evb.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ120SR-EVB

    caution

    WIZ120SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Please check WIZ752SR-120 instead.

    Overview

    WIZ120SR-EVB is a evaluation board for WIZ120SR.

    WIZ120SR is an embedded module based on WIZnet W5100 & ARM Cortex-M3. WIZ120SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment. WIZ120SR is able to communicate two serial equipments at the same time by supporting 2 serial ports(3.3V LVTTL).

    Hardware Specification

    WIZ120SR Module

    • TCP/IP : W5100
    • PHY : Embedded in W5100
    • MCU : ARM Cortex-M3 (STM32F103C8T6)
    • Serial : 2 UART (3.3V LVTTL)

    Base Board

    • Module Interface : 1×14 2mm Pin Header (Female)
    • Ethernet Interface : RJ-45 (RB1-125BAG1A, Transformer integrated)
    • Serial Connector : 2x D-SUB, 9PIN (Right Angle, Male)
    • Power : DC Jack mounted (Outer 3.5 Ø, Inner 1.35 Ø)

    Accessories

    • UTP LAN Cable (2M), WIZ108SR-CBL (connection cable between module & base board)

    Base Board Interface

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ125SR.html b/Product/S2E-Module/WIZ125SR.html index ce0986d206c..e75d2d8d226 100644 --- a/Product/S2E-Module/WIZ125SR.html +++ b/Product/S2E-Module/WIZ125SR.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ125SR

    caution

    WIZ125SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Please check WIZ752SR-125 instead.

    Overview

    WIZ125SR is an embedded module based on WIZnet W5100 & ARM Cortex-M3. WIZ125SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment. It supports two serial ports so that it can communicate with two serial equipments at the same time.

    Features

    • Serial to Ethernet Module based on W5100 & Cortex-M3
    • Serial signals : TXD, RXD, RTS, CTS, GND signals (2 UART/RS-232C)
    • 2 DB-9 & RJ-45 mounted
    • Support the configuration method of AT command & Configuration tool program
    • 10/100Mbps Ethernet & Max.115.2kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • 2 DB-9 for serial & 1 RJ-45 for Ethernet interface
    • Dimension (mm) : 88.5(L) x 65.5 (W) x 18 (H)
    • Input Voltage : 5V
    • Max. Power Consumption : 220mA
    • Operation Temperature : 0 ~ 70℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Hardware Interface

    Download

    Documents

    WIZ125SR User Manual V1.0

    Last Update: 2010.07.10

    User Manual

    WIZ125SR Datasheet v1.00

    Last Update: 2010.05.26

    Datasheet

    Firmware

    Firmware v1.41

    • Last Update: 2019.04.24
    • Bug fixes
      • Data loss problem during serial data transmission with a serial transfer rate of 230400 bps has been resolved.
    • Improvements
      • Stabilize the network operation by internal code modified
      • Watchdog timer added for device operation stability
    Download

    Firmware v1.4.0

    • Last Update: 2015.08.18
    • Ethernet to Serial Data Transmission problem has been fixed: The Ethernet data was not transmitted to the designated serial port. This problem sporadically occurred without any rule.
    Download

    Firmware v1.3.0

    • Last Update: 2013.04.18
    • Bug fixed : When set (Databits : 7),(Parity:odd/even) in UART2, WIZ120/125SR sent wrong data
    Download

    Utilities

    WIZ120SR/ WIZ125SR Config Tool for Windows v1.3

    • Last Update: 2013.04.18
    • WIZ120SR/ WIZ125SR Config Tool Program Installation Package
    • WIZ120SR/ WIZ125SR Config Tool Source Code
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ140SR.html b/Product/S2E-Module/WIZ140SR.html index aec7621e751..f4268f17dff 100644 --- a/Product/S2E-Module/WIZ140SR.html +++ b/Product/S2E-Module/WIZ140SR.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ140SR

    caution

    WIZ140SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Overview

    WIZ140SR is an embedded module based on WIZnet W5300 & ARM Cortex-M3. WIZ140SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment.

    Features

    • Serial to Ethernet Module based on W5300 & Cortex-M3
    • Pin-header mounted module
    • Serial signals : TXD, RXD, RTS, CTS, GND signals (4 UART/RS-232C)
    • Support the configuration method of AT command & Configuration tool program
    • 10/100Mbps Ethernet & Max.115.2kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • Pin Header Connector Type : 2.5mm Pitch (1×14, 2×14)
    • Dimension (mm) : 48 x 36 x 16
    • Input Voltage : 3.3V
    • Max. Power Consumption : 250mA
    • Operation Temperature : 0 ~ 70℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Pin Assignment

    Download

    Documents

    WIZ140SR & WIZ145SR User’s Munual v2.0.1

    Last Update: 2013.07.13

    Download

    WIZ140SR & WIZ145SR Datasheet v1.1.0

    Last Update: 2020.11.17

    Download

    Firmware

    Firmware v1.7.0

    • Last Update: 2021.04.20
    • Update buffer management
    Download

    Firmware v1.6.8

    • Last Update: 2019.03.29
    • Update buffer management
    Download

    Firmware v1.6.5

    • Last Update: 2015.06.10
    • Update buffer management
    Download

    Old firmware

    VersionDescription
    Firmware v1.6.4- Last Update: 2015.01.07
    - Telnet mode is added
    - Bug fix about serial data corruption with data from ethernet
    - Bug fix with Data packing condition ‘Size’
    Firmware v1.6.1- Last Update: 2013.11.18
    - Bug fixed : The previous firmware has error, when trying to connect to the remote server
    Firmware v1.6.0- Last Update: 2013.08.07
    - Baud rate : 600 bps added
    - The format of Serial cmd WnBU/RnBU got changed
    - Debug message displays current network information
    - The notation of firmware version was changed to x.x.x
    Firmware v1.5.2- Last Update: 2013.06.11
    - Bug fixed : When transmitting to WIZ140/145SR more than 8K bytes data continuously, some data is lost
    Firmware v1.5- Last Update: 2013.04.18
    - Optimize the code by reflecting W5300 erratum4 & erratum5
    Download

    Utilities

    WIZ140SR/WIZ145SR Configuration Tool for Windows v1.7

    • Last Update: 2015.01.07
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    Hardware Design Guide

    Reference Schematic for WIZ140SR & WIZ145SR V1.0

    Last Update: 2010.04.27

    Download
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ140SR/wiz140sr-evb.html b/Product/S2E-Module/WIZ140SR/wiz140sr-evb.html index 522f3324f25..005831292cd 100644 --- a/Product/S2E-Module/WIZ140SR/wiz140sr-evb.html +++ b/Product/S2E-Module/WIZ140SR/wiz140sr-evb.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ140SR-EVB

    caution

    WIZ140SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Overview

    WIZ140SR-EVB is a evaluation board for WIZ140SR.

    WIZ140SR is an embedded module based on WIZnet W5300 & ARM Cortex-M3. WIZ140SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment. WIZ140SR is able to communicate four serial equipments at the same time by supporting 4 serial ports(3.3V LVTTL).

    Hardware Specification

    WIZ140SR Module

    • TCP/IP : W5300
    • PHY : Embedded in W5300
    • MCU : ARM Cortex-M3 (STM32F103ZCT6)
    • Serial : 4 UART (3.3V LVTTL)

    Base Board

    • Module Interface : 2×14 2.54mm, 1×14 2.54mm Pin Header (Female)
    • Ethernet Interface : RJ-45 (RB1-125BAG1A, Transformer integrated)
    • Serial Connector : 4 x D-SUB, 9PIN (Right Angle, Male)
    • Power : DC Jack mounted (Outer 3.5 Ø, Inner 1.35 Ø)

    Accessories

    • UTP LAN Cable (2M), Serial Cable, Power Adaptor

    Base Board Interface

    Download

    Hardware Design Guide

    WIZ140SR-EVB (WIZ145SR-EVB) Dimension

    Last Update: 2015.08.03

    Download
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    Skip to main content

    WIZ145SR

    caution

    WIZ145SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Overview

    WIZ145SR is an embedded module based on WIZnet W5300 & ARM Cortex-M3. WIZ145SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment.

    Features

    • Serial to Ethernet Module based on W5300 & Cortex-M3
    • Pin-header & RJ-45 mounted module
    • Serial signals : TXD, RXD, RTS, CTS, GND signals (4 UART/RS-232C)
    • Support the configuration method of AT command & Configuration tool program
    • 10/100Mbps Ethernet & Max.115.2kbps serial speed
    • Support WIZ VSP (Virtual Serial Port) program

    Hardware Specification

    • Pin Header Connector Type : 2.5mm Pitch (1×14 & 2×14)
    • Dimension (mm) : 48.3 x 61.4 x 24.7
    • Input Voltage : 3.3V
    • Max. Power Consumption : 250mA
    • Operation Temperature : 0 ~ 70℃
    • RoHS, SVHC Compliant

    Utilities

    • Configuration Tool for Windows
    • WizVSP: Virtual Serial Port (COM port) for User’s Programs

    Pin Assignment

    Download

    Documents

    WIZ140SR & WIZ145SR User’s Munual v2.0.1

    Last Update: 2013.07.13

    Download

    WIZ140SR & WIZ145SR Datasheet v1.1.0

    Last Update: 2020.11.17

    Download

    Firmware

    Firmware v1.7.0

    • Last Update: 2021.04.20
    • Update buffer management
    Download

    Firmware v1.6.8

    • Last Update: 2019.03.29
    • Update buffer management
    Download

    Firmware v1.6.5

    • Last Update: 2015.06.10
    • Update buffer management
    Download

    Old firmware

    VersionDescription
    Firmware v1.6.4- Last Update: 2015.01.07
    - Telnet mode is added
    - Bug fix about serial data corruption with data from ethernet
    - Bug fix with Data packing condition ‘Size’
    Firmware v1.6.1- Last Update: 2013.11.18
    - Bug fixed : The previous firmware has error, when trying to connect to the remote server
    Firmware v1.6.0- Last Update: 2013.08.07
    - Baud rate : 600 bps added
    - The format of Serial cmd WnBU/RnBU got changed
    - Debug message displays current network information
    - The notation of firmware version was changed to x.x.x
    Firmware v1.5.2- Last Update: 2013.06.11
    - Bug fixed : When transmitting to WIZ140/145SR more than 8K bytes data continuously, some data is lost
    Firmware v1.5- Last Update: 2013.04.18
    - Optimize the code by reflecting W5300 erratum4 & erratum5
    Download

    Utilities

    WIZ140SR/WIZ145SR Configuration Tool for Windows v1.7

    • Last Update: 2015.01.07
    Download

    Device Terminal Program for Windows

    • Last Update: 2015.08.05
    • Simple Configuration & Testing for WIZnet Serial to Ethernet Modules
    Download

    WIZVSP Program for Windows

    Go to WIZ VSP Guide page

    Hardware Design Guide

    Reference Schematic for WIZ140SR & WIZ145SR V1.0

    Last Update: 2010.04.27

    Download
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    Skip to main content

    WIZ145SR-EVB

    caution

    WIZ145SR is not discontinued, but we do not recommend it for new designs.

    Technical support for this product has officially ended.

    Overview

    WIZ145SR-EVB is a evaluation board for WIZ145SR.

    WIZ145SR is an embedded module mounting RJ-45 and is based on WIZnet W5300 & ARM Cortex-M3. WIZ145SR is the protocol converter that transmits the data sent by serial equipment as TCP/IP data type, and converts back the TCP/IP data received through the network into serial data to transmit back to the equipment. WIZ145SR is able to communicate four serial equipments at the same time by supporting 4 serial ports(3.3V LVTTL).

    Hardware Specification

    WIZ145SR Module

    • TCP/IP : W5300
    • PHY : Embedded in W5300
    • MCU : ARM Cortex-M3 (STM32F103ZCT6)
    • Ethernet Interface : RJ-45 (RB1-125BAG1A, Transformer integrated)
    • Serial : 4 UART (3.3V LVTTL)

    Base Board

    • Module Interface : 2×14 2.54mm, 1×14 2.54mm Pin Header (Female)
    • Serial Connector : 4 x D-SUB, 9PIN (Right Angle, Male)
    • Power : DC Jack mounted (Outer 3.5 Ø, Inner 1.35 Ø)

    Accessories

    • UTP LAN Cable (2M), Serial Cable, Power Adaptor

    Base Board Interface

    Download

    Hardware Design Guide

    WIZ145SR-EVB (WIZ140SR-EVB) Dimension

    Last Update: 2015.08.03

    Download
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ510SSL.html b/Product/S2E-Module/WIZ510SSL.html index 467a1bb6175..982d301fb86 100644 --- a/Product/S2E-Module/WIZ510SSL.html +++ b/Product/S2E-Module/WIZ510SSL.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ transmit data to various cloud services via MQTT over SSL.

    Figure: W510SSL Product Overview

    WIZ510SSL is WIZnet’s first serial to cloud module, composed of W5100S and STM Cortex M33, can connect to all 3 major IoT cloud services – AWS, Azure, and GCP. WIZnet also provides its own WIZnet IoT Cloud service that can save authentications and update F/W via Dual bank. WIZ510SSL is projected to be both price competitive (30% cheaper in average) and safer than the current comparison products in the market.


    Features

    Cloud connectivity


    Product Contents

    WIZ510SSL-EVB Package

    WIZ510SSL

    WIZ510SSL-EVB

    W510SSL Module Series

    Ordering InformationItemQ'tyRemarks
    WIZ510SSLWIZ510SSL module1-

    W510SSL Evaluation Board Series

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ510SSL-EVBDeviceWIZ510SSL module1-
    ::::::WIZ510SSL-EVB board1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::USB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable

    Contents can be replaced with better components to improve the performance of the product.


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ510SSL/aws-connection-guide.html b/Product/S2E-Module/WIZ510SSL/aws-connection-guide.html index a51efc6c7bc..c5a9e451802 100644 --- a/Product/S2E-Module/WIZ510SSL/aws-connection-guide.html +++ b/Product/S2E-Module/WIZ510SSL/aws-connection-guide.html @@ -15,7 +15,7 @@ - + @@ -37,7 +37,7 @@ Reboot device.

    Results

    1. Send test message using Terminal

    1. Since we subscribed to "updated" topic, when MQTT message is sent we can see reply message instantly. Also it is possible to check in AWS IoT -> Manage -> Things -> Shadow or Activity

    Congratulations

    WIZ510SSL is successfully connected to AWS!

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ510SSL/command-manual.html b/Product/S2E-Module/WIZ510SSL/command-manual.html index 0ac24faf59e..aedd731bd2f 100644 --- a/Product/S2E-Module/WIZ510SSL/command-manual.html +++ b/Product/S2E-Module/WIZ510SSL/command-manual.html @@ -15,7 +15,7 @@ - + @@ -43,7 +43,7 @@ 1: Used(Enabled)

    This function must be active in order to enter serial command mode via 3-byte command mode switch code.

  • Response

    Without Parameter (Get)

    With Parameter (Set)


  • SS


    Device Control


    EX



    SV



    BA


    Return valueMeaningRemarks
    0Bank 0-
    1Bank 1-

    RT



    FR


    Status I/O


    SC


    Parameter / Return valueMeaningRemarks
    0PHY link statusDefault
    1DTRData Terminal Ready (RS-232/TTL only)
    Parameter / Return valueMeaningRemarks
    0TCP connection statusDefault
    1DSRData Set Ready (RS-232/TTL only)

    S0


    Return valueMeaningRemarks
    0PHY link up-
    1PHY link down-
    Return valueMeaningRemarks
    0The device is not ready-
    1The device ready for communications-

    S1


    Return valueMeaningRemarks
    0TCP connection established-
    1TCP disconnected-
    Return valueMeaningRemarks
    0The peer device is not ready-
    1The peer device ready for communications-
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ510SSL/configuration-tool-manual.html b/Product/S2E-Module/WIZ510SSL/configuration-tool-manual.html index a1d1625161e..3eedb4951be 100644 --- a/Product/S2E-Module/WIZ510SSL/configuration-tool-manual.html +++ b/Product/S2E-Module/WIZ510SSL/configuration-tool-manual.html @@ -15,7 +15,7 @@ - + @@ -84,7 +84,7 @@ packets

    If there is any problem?
    Please refer to our Troubleshooting Guide!


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    Skip to main content

    Datasheet

    Hardware Specification

    Product Spec Table

    CategoryDescription
    MCUArm® 32-bit Cortex®-M33 CPU
    with TrustZone® and FPU
    48Mhz maximum frequency
    Internal 16Mhz RC Oscillator
    Flash: 512KB
    256 Kbytes of SRAM including 64 Kbytes with hardware parity check
    Arm® TrustZone® and securable I/Os, memories and peripherals
    512-byte OTP (one-time programmable) for user data
    :::Hardwired
    TCP/IP
    Core
    4 independent Sockets
    SRAM for socket: 32KB
    MII (Medium-Independent Interface)
    TCP/IP Protocols: TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
    :::PHYIC+(IP101G) PHY
    Auto negotiation (Full-duplex and Half-duplex)
    Auto MDI/MDIX
    SerialInterfaceWIZ510SSL
    :::SignalTXD, RXD, RTS, CTS, GND
    :::ParametersParity: None, Odd, Even
    Data bits: 7, 8 bit
    Flow control: None, RTS / CTS, XON / XOFF
    :::SpeedUp to 460Kbps
    Dimension ( PCB board size )
    ( Include part size )
    Connector typeTBC 2.54mm Pitch 1x12 Pin-header(Data Line)
    2.54mm Pitch 1x12 Pin-header(ISP)
    2.54mm Pitch 1x12 Pin-header(Expansion GPIO & app_boot)
    1.27mm Pitch 1x5 Pin-header (JTAG)
    Input VoltageDC 3.3V
    TemperatureTBC 0℃ ~ 70℃ (Operation), -40℃ ~ 85℃ (Storage range)

    Callout

    Rev1.0

    TOPBOTTOM

    Schematic

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0RS-232AltiumComing soon-
    ::::::PDF Download-

    Part list

    H/W versionFiletypeDownload LinkRemarks
    1.0ExcelDownload
    PDFDownload

    Electrical Characteristics

    Operating Conditions

    SymbolParameterPinsMinTypMaxUnit
    VccOperating Voltage3.3V3.1353.33.6V
    VssGroundALL050mV
    fFCLKInternal CPU clock frequencyALL0-48MHz
    TstgStorage Temperature (max)ALL-4085
    TAAmbient operating temperatureALL-4085
    VIOI/O Signal voltage (Tolerance)ALLVss-0.33.35V
    VIHInput high voltageALL2.5V
    VILInput low voltageALL0.6V
    VOHOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL2.83V
    VOLOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL0.32V

    Absolute maximum ratings

    Voltage characteristics

    SymbolRatingsMinMaxUnit
    VDDX-VSSExternal main supply voltage (including VDD, VDDA, VDDIO2, VDDUSB, VBAT, VDDSMPS, VREF+)-0.34.0V
    VDD12-VSSExternal SMPS supply voltage (All ranges 0/1/2)-0.31.4V
    VINInput voltage on FT_xxx pins except FT_c pinsVSS-0.3min (VDD, VDDA, VDDIO2, VDDUSB, VDDSMPS) + 4.0V
    ::Input voltage on FT_c pinsVSS-0.35.5V
    ::Input voltage on any other pinsVSS-0.34.0V
    VREF+-VDDAAllowed voltage difference for VREF+ > VDDA-0.4V
    |∆VDDX|Variations between different VDDX power pins of the same domain-50mV
    |VSSX-VSS|Variations between all the different ground pins-50mV

    Current characteristics

    SymbolRatingsMaxUnit
    ∑IVDD TTotal current into sum of all VDD power lines (source)160mA
    ∑IVSSTotal current out of sum of all VSS ground lines (sink)160mA
    IVDD(PIN)Maximum current into each VDD power pin (source)100mA
    IVSS(PIN)Maximum current out of each VSS ground pin (sink)100mA
    IIO(PIN)Output current sunk by any I/O and control pin except FT_f20mA
    ::Output current sunk by any FT_f pin20mA
    ::Output current sourced by any I/O and control pin20mA
    ∑IIO(PIN)Total output current sunk by sum of all I/Os and control pins100mA
    ::Total output current sourced by sum of all I/Os and control pins100mA
    IINJ(PIN)Injected current on FT_xxx, TT_xx, RST and B pins, except PA4, PA5-5/+0mA
    ::Injected current on PA4, PA5-5/0mA
    ∑|IINJ(PIN)| Total injected current (sum of all I/Os and control pins)+/-25mA

    Thermal characteristics

    SymbolRatingsMaxUnit
    TSTGStorage temperature range-65 to +150
    TJMaximum junction temperature150

    Flash Memory

    SymbolParameterConditionsMin(1)Unit
    NENDSector EnduranceTA = –40 to +105 °C10,000Cycles
    TDRData Retention1 kcycle(2) at TA = 85 °C
    1 kcycle(2) at TA = 105 °C
    1 kcycle(2) at TA = 125 °C
    1 kcycle(2) at TA = 55 °C
    1 kcycle(2) at TA = 85 °C
    1 kcycle(2) at TA = 105 °C
    30
    15
    7
    30
    15
    10
    Years

    (1) - Guaranteed by characterization results. (2) - Cycling performed over the whole temperature range.

    Ethernet Power Dissipation

    WIZ510SSL-TTL

    ConditionMinTypMaxTolUnit
    100M Link-67-±3mA
    10M Link-52-mA
    Unlink (Auto-negotiation mode)455057±3mA
    100M Transmitting-74-±3mA
    10M Transmitting-62-mA

    WIZ510SSL Pinout

    1x6 Pin Header

    J1 Pin

    Pin NumberSignal
    13V3D
    2SWDIO
    3SWCLK
    4NRST
    5GND

    J2 Pin

    Pin NumberSignal
    13V3D
    2BOOT0
    3UART2_TX
    4UART2_RX
    5NRST
    6GND

    J3 Pin

    Pin NumberSignal
    13V3D
    2BOOT0

    1x12 Pin Header

    J4 Ethernet Line

    Pin NumberSignal
    13V3A
    2RX N
    3RX P
    4GND
    5TX N
    6TX P
    7GND
    8LINKn
    9SPDn
    10ACTn
    11COLn
    123V3D

    J5 Data Line

    Pin NumberSignal
    13V3D
    2NRST
    3GND
    4USART1_TX
    5USART1_RTS
    6DTR
    7GND
    8USART1_RX
    9USART1_CTS
    10DSR
    11GND
    12STATUS

    J6 Debug Line

    Pin NumberSignal
    1GND
    2STATUS LED0
    3STATUS LED1
    4BOOT00
    5UART2 TX
    6UART2 RX
    7PB3
    8PB4
    9PB5
    10PB6
    11PB7
    12GND

    WIZ510SSL Dimension

    • WIZ510SSL Dimension :
      • 50mm x 30mm ( PCB board size )
    Rev0.1
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ510SSL/firmware-update-guide.html b/Product/S2E-Module/WIZ510SSL/firmware-update-guide.html index 7a79a6e59d8..38a0df62abe 100644 --- a/Product/S2E-Module/WIZ510SSL/firmware-update-guide.html +++ b/Product/S2E-Module/WIZ510SSL/firmware-update-guide.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Firmware Update Guide

    Using the WIZnet S2E Configuration Tool

    The 'Using the WIZnet S2E Configuration Tool' section provides a firmware update guide through WIZnet S2E Configuration Tool.

    Required Hardware and Software

    Hardware

    • WIZ510SSL

    • WIZ510SSL-RS232/TTL-EVB Evaluation Board

    • Cables (Ethernet / Serial / Micro USB Type B)

    Software

    How to Download the Firmware Using the WIZnet S2E Configuration Tool

    Step 1: Set up environment to use the WIZ510SSL

    The process of set up environment to use the WIZ510SS is available at the WIZ510SSL Getting Started page.

    Step 2: Firmware Upload

    • Click the firmware upload button
    Figure: Click the firmware upload button
    • Select the downloaded firmware (*.bin)
      • When current flash bank 0 in the WIZnet S2E Configuration Tool, select firmware (.bin) for BANK 0
      • When current flash bank 1 in the WIZnet S2E Configuration Tool, select firmware (.bin) for BANK 1
    Figure: Select the firmware
    Figure: Firmware selection warning
    • Uploading firmware
    Figure: Uploading firmware

    Step 3: Done

    Firmware update is finished!

    Figure: Finished firmware update
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    Skip to main content

    Getting Started

    This section was written on the assumption that the use of WIZ510SSL evaluation board.


    Unpacking the WIZ510SSL Evaluation Kit

    What's in the Box?

    Figure: WIZ510SSL Rev. 1.0 evaluation board package

    The WIZ510SSL evaluation board package contains the following parts.

    • WIZ510SSL Module
    • WIZ510SSL-RS232/TTL-EVB Evaluation Board
    • Cables (Ethernet / Serial / Micro USB Type B)

    The entire list of parts of the board is available at the WIZ510SSL Overview: Product Contents page.

    Device Layout

    Figure: WIZ510SSL Rev. 1.0 top
    Figure: WIZ510SSL Rev. 1.0 bottom

    Parts

    • STM32L552CET6 based on ARM Cortex-M33 [1]
    • W5100S with Hardwired TCP/IP and PHY [2]
    • Power LED (red[LD4]) [3]
    • Status LED (green[LD1]: PHY link status / green[LD2]: TCP connection status / green[LD3]: not defined) [4]

    Interfaces and Ports

    • Data UART Port: 6x1 2.00mm Pin header (Data UART pin / MCU reset pin / GND) [5]
    • Debug UART Port: 6x1 2.00mm Pin header (Debug UART pin / MCU boot pin / GND) [6]
    • Ethernet Port: 6x1 2.00mm Pin header (Ethernet pin / GND) [7]

    Prerequisites for Setup

    Software

    • Configuration tool program (Github page)
    • TCP server / TCP client / UDP terminal program
    • Serial terminal program

    Hardware

    • WIZ510SSL module and evaluation board
    • Ethernet cable
    • USB type B cable (for Debug UART)
    • DB9 serial RS-232 cable (for Data UART, RS-232/TTL Ver. only)
    • Power source for device
      • Such as 5V DC adapter, USB port on your computer, or 3.3V Power source

    Connect Your WIZ510SSL

    WIZ510SSL Factory Settings

    Network SettingsLocalIP address192.168.11.2-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::DNS server8.8.8.8Google Public DNS
    ::::::Port number5000-
    :::RemoteIP address192.168.11.3-
    ::::::Port number5000-
    Serial Port SettingsData UART115200-8-N-1 / Flow Control: None-
    :::Debug UART115200-8-N-1 / Flow Control: NoneFixed
    • Operation mode: TCP server mode

    • Debug message: Enabled

    • Serial command mode switch: Enabled

    • Serial command mode switch code: +++ (hex code, [2B][2B][2B])

    • Data packing option - Time: Disabled

    • Data packing option - Size: Disabled

    • Data packing option - Char: Disabled

    • Inactivity Timer: Disabled

    • Reconnection Timer: 3 second

    • Keep-Alive: Enabled, 7-sec initial delay, 5-sec send interval

    PC Settings

    Double check that the WIZ510SSL and the PC, or laptop you are using to set up WIZ510SSL with are both on the same Ethernet network.

    Example: PC Network Settings

    * When the WIZ510SSL's settings are factory default,

    Network SettingsPC or laptop(= destination)IP address192.168.11.3-
    ::::::Gateway address192.168.11.1-
    ::::::Port number5000-
    • User should match the network settings of 'WIZ510SSL's remote host' and 'PC (or laptop)' for testing TCP client/mixed mode.

    • If the DHCP(automatic IP allocation) is used, both the WIZ510SSL and test PC must be set to be assigned the same IP from the same router.

    Connecting Steps

    The RS-232/TTL version of WIZ510SSL evaluation board is designed to use the DB9 connector to connect with the user’s serial device. Therefore, it is recommended to have all Ethernet and serial ports connected to the PC when testing. If the PC does not have a serial port, please purchase a RS-232 to USB converter separately.

    • In case of the RS-422/455 version of WIZ750SR-EVB, the serial connector is composed of terminal block.

    Step 1: Plug in

    Connect the WIZ510SSL module to evaluation board and also the cable as shown in the picture below.

    • Ethernet Cable

      • Used to connect the evaluation board’s RJ-45 connector and the PC’s Ethernet network interface card (PC's RJ-45 connector)
    • Serial Cable

      • Used to connect the evaluation board’s DB9 connector and the serial interface card (DB9 connector). If the PC does support serial interface, use the RS-232 to USB converter.
    • Optional: USB type B cable (for debug message)

      • Used to connect the evaluation board’s USB connector and the PC’s USB connector.
    Figure: Combining WIZ510SSL module and evaluation board
    Figure: WIZ510SSL evaluation board side view

    Step 2: Power on

    Connect the 5V power adaptor or USB cable to the evaluation board and turn on the power switch.

    • The power LED will turn red once the evaluation board is on.

    Open the configuration tool and click the Device Search button. If the board is turned on and connected to the same network, the MAC address or settings of the WIZ510SSL module can be checked using the configuration tool.

    The WIZ510SSL configuration tool can be downloaded from Github below.

    Figure: WIZnet S2E Configuration Tool

    Step 4: Set up your WIZ510SSL

    Change the settings accordingly to the customer’s environment. The test shown in this document is based on factory setting.

    • Click the Apply Settings button to apply the changes in settings of the configuration tool.

    Step 5: Connect

    Connect the PC as the TCP client of the user’s serial device for data communication testing. In order to do this, the serial terminal program / TCP client terminal program must be opened on the PC. The serial terminal program and TCP client program must be set as below.

    • Serial terminal program: 115200-8-N-1, Flow control: None
    • TCP client program: 192.168.11.2:5000 (The IP address and port number of WIZ510SSL)

    The COM port for serial terminal program connection can be checked as below.

    • Control Panel > System > Device Manager
    Figure: Device Manager

    Step 6: Verify

    The basic data communication of the WIZ510SSL can be verified as below.

    • Serial to Ethernet: data communication verification

      • Enter the character string in the serial terminal and check if the identical character string appears on the TCP client terminal.
    • Ethernet to Serial: data communication verification

      • Enter the character string in the TCP client terminal and check if the identical character string appears on the serial terminal.

    Step 7: Done

    Now you’re ready to use the WIZ510SSL!

    • This document is based on the assumption of the PC as the serial device / remote network device.

    • The next step is to connect the WIZ510SSL module to the target serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.


    If there is any problem? Please refer to our Troubleshooting Guide!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ510SSL/ssl-connection-guide.html b/Product/S2E-Module/WIZ510SSL/ssl-connection-guide.html index 8c5793bc797..6da3c796dd4 100644 --- a/Product/S2E-Module/WIZ510SSL/ssl-connection-guide.html +++ b/Product/S2E-Module/WIZ510SSL/ssl-connection-guide.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    SSL Connection Guide

    Using the OpenSSL

    The 'Using the OpenSSL' section provides a guide to connecting to the SSL server through OpenSSL

    Required Hardware and Software

    Hardware

    • WIZ510SSL

    • WIZ510SSL-RS232/TTL-EVB Evaluation Board

    • Cables (Ethernet / Serial / Micro USB Type B)

    Software

    How to Connect to SSL Server through OpenSSL

    Step 1: Set up environment to use the WIZ510SSL

    The process of set up environment to use the WIZ510SS is available at the WIZ510SSL Getting Started page.

    Step 2: Set up and run the SSL server through OpenSSL

    • Set up the SSL server
    genrsa -des3 -out [key_name].key 2048              // Create the private key
    req -new -key [key_name].key -out [csr_name].csr // Create the CSR(Required for certificate signing request)
    x509 -req -days [days] -in [csr_name].csr -signkey [key_name].key -out [crt_name].crt // Create the certificate

    Ex>
    genrsa -des3 -out server.key 2048
    req -new -key server.key -out server.csr
    x509 -req -days 365 -in server.csr -signkey server.key -out server.crt
    • Run the SSL server
    s_server -accept [port] -cert [crt_name].crt -key [key_name].key   // Run SSL the server

    Ex>
    s_server -accept 443 -cert server.crt -key server.key

    Step 3: Set up the WIZ510SSL through the WIZnet S2E Configuration Tool for SSL server connection

    • Select SSL TCP client mode in the Operation mode setting section
    Figure: Select SSL TCP client mode
    • Input the remote host IP (or URL) and remote port in the Remote host / port section
    Figure: Input the remote host IP and remote port
    • Click the Apply Settings button to save the settings
    Figure: Click the Apply Settings button

    | Figure: Saved settings

    Note: If you need certificates to connect to SSL server, please refer to the 'Upload Certificates' section below.

    Step 4: Done

    WIZ510SSL is successfully connected to SSL server through OpenSSL!

    Figure: Status
    Figure: Connect to the SSL server

    Upload Certificates

    You can upload certificates below in the 'Certificate manager' tab of the'WIZnet S2E Configuration Tool'.

    • Root CA
    • Client Certificate
    • Private key

    Upload and set up the certificates required by the SSL server you want to connect to.

    After loading the certificate by clicking the 'Load file' button, be sure to save it by clicking the 'Save to device' button.

    Figure: Upload Certificates
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ510SSL/troubleshooting-guide.html b/Product/S2E-Module/WIZ510SSL/troubleshooting-guide.html index e9cccfad8bb..c51ad19dc6e 100644 --- a/Product/S2E-Module/WIZ510SSL/troubleshooting-guide.html +++ b/Product/S2E-Module/WIZ510SSL/troubleshooting-guide.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ or Virtual Box is used.

    Module setting changes are not applied

    The firmware update is unsuccessful

    WIZ510SSL operates two firmware banks. In case if wrong firmware bank version was selected during firmware upgrade, it is possible that board may become unresponsive.

    Follow below steps to recover your board:

    1. Connect to debug UART (UART2) either by USB-cable or using J6 pins. Open any Terminal and connect by following settings: Speed-115200, Data-8bit, Parity-N, Stopbit-1, Flow Control-N
    2. Confirm firmware bank by board reset. You should be able to see following messages in terminal.

    |

    1. Set BOOT0 to HIGH (insert jumper to J3) and reset board.

    |

    1. Connect to your board using CubeProgrammer by UART using following settings: Speed-115200, Data-8bit, Parity-EVEN

    |

    1. Open necessary file, select appropriate memory address and download firmware. Please refer to below table to find bank version and address.
    BankAddress
    Bank 00x08010000
    Bank 10x08040000

    |

    |

    |

    It is recommended to upload firmware for both banks to prevent board becoming unresponsive again.


    Still having troubles?


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ510SSL/wiz510ssl-evb.html b/Product/S2E-Module/WIZ510SSL/wiz510ssl-evb.html index 64fc7b04541..f2354f04a3b 100644 --- a/Product/S2E-Module/WIZ510SSL/wiz510ssl-evb.html +++ b/Product/S2E-Module/WIZ510SSL/wiz510ssl-evb.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ510SSL-EVB

    WIZ510SSL-EVB

    • WIZ510SSL Developer Board.
    • USB to UART chip, CP2104.
    • RESET Tact SW.
    • BOOT0 Slide SW.
    • H/W Trig Slide SW.
    • Expansion GPIO TEST (Digital / Analog)
    • Micro USB.
    • WIZ510SSL-EVB (TTL/232)
      • RS-232C Connector, D-SUB9-MALE.
    WIZ510SSL-EVB Call Out

    Schematic

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0RS-232Altium DownloadLatest version H/W
    ::::::PDF Download:::

    Part list

    WIZ510SSL-EVB

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcelDownloadBOM version 1.0
    ::::::PDFDownload:::

    WIZ510SSL Dimension

    • WIZ510SSL-EVB (TTL/RS232) Rev1.0 Dimension :
      • 100mm x 65mm ( PCB board size )
    Rev0.1
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E.html b/Product/S2E-Module/WIZ550S2E.html index a6afcc182ef..3de08ec9193 100644 --- a/Product/S2E-Module/WIZ550S2E.html +++ b/Product/S2E-Module/WIZ550S2E.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ 中文

    Programmer's Guide

    한글

    English

    中文

    Future Plan

    한글
    English

    Download

    Download

    Tutorial

    한글
    English


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/at-command-chn.html b/Product/S2E-Module/WIZ550S2E/at-command-chn.html index abdfb86832e..12de7ea36c6 100644 --- a/Product/S2E-Module/WIZ550S2E/at-command-chn.html +++ b/Product/S2E-Module/WIZ550S2E/at-command-chn.html @@ -15,7 +15,7 @@ - + @@ -41,7 +41,7 @@ S = Server, C = Client, U = UDP, M = Mixed TCP(Server/Client)

    [S]

    AT+NMODE=C,5000,192.168.0.3,5000

    [S]

    Management Commands

    CommandProp.Input ParameterResponse
    ATNone[S]
    :::?:::[D,,(Size)]↓(Data)
    AT+MSTATNone or ?[S,,(Version)]
    AT+MUSARTNone or ?[S,,(BR),(W),(P),(S),(F)]
    :::\=(BR),(W),(P),(S),(F)[S]
    :::-num,Param[S]
    AT+MSAVENone[S]
    AT+MRSTNone[S]
    :::\=F[S]
    AT+MDATANone[S]

    AT

    AT

    [S]

    AT+MSTAT

    Format:

    AT+MSTAT

    AT+MSTAT?

    [S,,<Version>]

    AT+MUSART

    AT+MUSART=<BR>,<W>,<P>,<S>,<F>

    < BR>: Baud rate

    ParameterMeaning
    300300bps
    600600bps
    12001200bps
    24002400bps
    48004800bps
    96009600bps
    1920019200bps
    3840038400bps
    5760057600bps
    115200115200bps
    230400230400bps

    < W>: Word length

    ParameterMeaning
    77 bits
    88 bits

    < P>: Parity bit

    ParameterMeaning
    NNONE
    OODD
    EEVEN

    < S>: Stop bit

    ParameterMeaning
    11 bits
    22 bits

    < F>: Flow Control

    ParameterMeaning
    0NONE
    1RTS/CTS
    2RS422
    3RS485

    [S,,<BR>,( <W>, <P>, <S> ) <F>]

    AT+MUSART

    AT+MUSART?

    [S,,<BR>,( <W>, <P>, <S> ) <F>]

    AT+MUSART=,,E,,0

    [S]

    AT+MRST

    AT+MRST

    [S]

    AT+MDATA

    AT+MDATA

    [S]

    AT+MSAVE

    AT+MSAVE

    The values set via AT+MUSART, AT+NSET (except AT+NMAC) are basically only until the module is reset. (In Data Mode, the corresponding setting value is shared. Check through Search in Configuration Tool) In other words, when module is reset, it returns to the value before setting. However, the user can save the set value through the corresponding command (AT+MSAVE) so that the module does not change even if it is reset. That is, it is the same as Setting function in Configuration Tool.

    [S]

    Function Commands

    CommandProp.Input ParameterInput Resp.Query Response
    AT+FDNSNone[D,,(Size)]↓(Data)

    AT+FDNS

    Format:

    AT+FDNS

    [D,,13]
    DNS Timeout

    [D,,17]
    173.194.126.180

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/at-command-eng.html b/Product/S2E-Module/WIZ550S2E/at-command-eng.html index 1606206c5d3..2665e36c718 100644 --- a/Product/S2E-Module/WIZ550S2E/at-command-eng.html +++ b/Product/S2E-Module/WIZ550S2E/at-command-eng.html @@ -15,7 +15,7 @@ - + @@ -45,7 +45,7 @@ 173.194.126.180

    MQTT Commands

    CommandProp.Input ParameterResponseQuery Response
    AT+MQTTSETNone or ?[S,,(UserName),(Password),(ClientID)]Firmware v1.3.0 Later
    :::=(UserName),(Password),(ClientID)[S]Firmware v1.3.0 Later
    AT+MQTTCON=(UserName),(Password),(ClientID)[S]Firmware v1.3.0 Later
    AT+MQTTPUB=(UserName),(Password),(ClientID)[W,(SockId)]
    [S,(SockId)]
    Firmware v1.3.0 Later
    AT+MQTTSUB=(UserName),(Password),(ClientID)[S,,(Sub/Unsub),(Topic)]Firmware v1.3.0 Later

    AT+MQTTSET

    AT+MQTTSET

    AT+MQTTSET?

    AT+MQTTSET=<UserName>,<Password>,<ClientID>

    < UserName>: The User Name used in the broker authentication (Required, Max: 10 Character)
    < Password>: The Password used in the broker authentication (Required, Max: 10 Character)
    < ClientID>: The Client ID connected to the broker (Required, Max: 25 Character)

    [S,,<UserName>,<Password>,<ClientID>]

    [S,,<UserName>,<Password>,<ClientID>]

    [S]


    AT+MQTTCON

    AT+MQTTCON=<Con/Discon>,<BrokerIP>,<BrokerPort>

    < Con/Discon>: MQTT Connection (Required)

    ParameterMeaning
    1Connect to the broker
    0Disconnect from the broker

    [W,(SockId)]

    [S,(SockId)]


    AT+MQTTPUB

    AT+MQTTPUB=<SockId>,<Topic>,<Size>

    [W,(SockId)]

    [S,(SockId)]


    AT+MQTTSUB

    AT+MQTTSUB =<Sub/Unsub>,<Topic>

    < Sub/Unsub>: Subscribe/Unsubscribe the Topic (Required)

    ParameterMeaning
    1Subscribe the topic
    0Unsubscribe the topic

    [S,,<Sub/Unsub>,<Topic>]

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/at-command-kor.html b/Product/S2E-Module/WIZ550S2E/at-command-kor.html index dc2d73de9a3..c21d7e53c2e 100644 --- a/Product/S2E-Module/WIZ550S2E/at-command-kor.html +++ b/Product/S2E-Module/WIZ550S2E/at-command-kor.html @@ -15,7 +15,7 @@ - + @@ -55,7 +55,7 @@ 173.194.126.180


    MQTT Commands

    CommandProp.Input ParameterResponseQuery Response
    AT+MQTTSETNone or ?[S,,(UserName),(Password),(ClientID)]Firmware v1.3.0 Later
    :::=(UserName),(Password),(ClientID)[S]Firmware v1.3.0 Later
    AT+MQTTCON=(UserName),(Password),(ClientID)[S]Firmware v1.3.0 Later
    AT+MQTTPUB=(UserName),(Password),(ClientID)[W,(SockId)]
    [S,(SockId)]
    Firmware v1.3.0 Later
    AT+MQTTSUB=(UserName),(Password),(ClientID)[S,,(Sub/Unsub),(Topic)]Firmware v1.3.0 Later

    AT+MQTTSET

    AT+MQTTSET

    AT+MQTTSET?

    AT+MQTTSET=<UserName>,<Password>,<ClientID>

    < UserName>: The User Name used in the broker authentication (Required, Max: 10 Character)
    < Password>: The Password used in the broker authentication (Required, Max: 10 Character)
    < ClientID>: The Client ID connected to the broker (Required, Max: 25 Character)

    [S,,<UserName>,<Password>,<ClientID>]

    [S,,<UserName>,<Password>,<ClientID>]

    [S]


    AT+MQTTCON

    AT+MQTTCON=<Con/Discon>,<BrokerIP>,<BrokerPort>

    < Con/Discon>: MQTT Connection (Required)

    ParameterMeaning
    1Connect to the broker
    0Disconnect from the broker

    [W,(SockId)]

    [S,(SockId)]


    AT+MQTTPUB

    AT+MQTTPUB=<SockId>,<Topic>,<Size>

    [W,(SockId)]

    [S,(SockId)]


    AT+MQTTSUB

    AT+MQTTSUB =<Sub/Unsub>,<Topic>

    < Sub/Unsub>: Subscribe/Unsubscribe the Topic (Required)

    ParameterMeaning
    1Subscribe the topic
    0Unsubscribe the topic

    [S,,<Sub/Unsub>,<Topic>]

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/configuration-tool-chn.html b/Product/S2E-Module/WIZ550S2E/configuration-tool-chn.html index 44c19a2afaf..7d824b6c7a6 100644 --- a/Product/S2E-Module/WIZ550S2E/configuration-tool-chn.html +++ b/Product/S2E-Module/WIZ550S2E/configuration-tool-chn.html @@ -15,7 +15,7 @@ - + @@ -121,7 +121,7 @@ peer systems' Domain name in string. Put DNS Server IP, provided by ISP, into “DNS Server IP” field and peer system's Domain name into “Domain” field.


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/configuration-tool-eng.html b/Product/S2E-Module/WIZ550S2E/configuration-tool-eng.html index 111ce626e8c..ac7d67ca368 100644 --- a/Product/S2E-Module/WIZ550S2E/configuration-tool-eng.html +++ b/Product/S2E-Module/WIZ550S2E/configuration-tool-eng.html @@ -15,7 +15,7 @@ - + @@ -115,7 +115,7 @@ peer systems' Domain name in string. Put DNS Server IP, provided by ISP, into “DNS Server IP” field and peer system's Domain name into “Domain” field.


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/configuration-tool-kor.html b/Product/S2E-Module/WIZ550S2E/configuration-tool-kor.html index e89e69a941d..03ba71fdd34 100644 --- a/Product/S2E-Module/WIZ550S2E/configuration-tool-kor.html +++ b/Product/S2E-Module/WIZ550S2E/configuration-tool-kor.html @@ -15,7 +15,7 @@ - + @@ -86,7 +86,7 @@ (예:www.wiznet.co.kr)
    서버의 IP가 유동적이거나, 서버가 도메인 이름을 보유하고 있는 경우에 DNS 기능을 사용하면 서버의 IP 변화에 일일이 대응하지 않아도 되므로 유용하게 사용될 수 있는 기능이다. 만약 위와 같은 환경이 아니라면 반드시 DNS 기능을 사용할 필요는 없다.


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/datasheet-chn.html b/Product/S2E-Module/WIZ550S2E/datasheet-chn.html index 07438faa755..111a3ced6d7 100644 --- a/Product/S2E-Module/WIZ550S2E/datasheet-chn.html +++ b/Product/S2E-Module/WIZ550S2E/datasheet-chn.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Datasheet(Chn)

    概述

    本页提供 WIZ550S2E 及其RS232和RS422/485接口板的相关信息,包括以下内容。

    • 基本的硬件规格
    • 操作特性
    • 参考电路图
    • 模块尺寸信息

    如有任何硬件参数或外观设计的改动,修订历史将在此页面更新。


    硬件规格

    WIZ550S2E

    • MCU LPC11E36FHN33
    • TCP/IP 控制器 W5500
    • RJ45(集成变压器)
    • 2.54mm 排针x2

    引脚

    参考编号引脚编号符号类型描述
    J113V3DP提供 DC+3.3V
    :::2RSVD1I/O预留 I/O
    :::3RSVD2I/O预留 I/O
    :::4nSYSRSTI系统复位输入. 低电平有效.
    :::5nFACRSTI恢复出厂输入. 低电平有效.
    :::6nHWTRIGI硬件触发器输入.低电平有效
    :::7GNDP电源接地
    :::8GNDP电源接地
    参考编号引脚编号符号类型描述
    J21GNDP电源接地
    :::2NC-无连接
    :::3STATUS1OLED显示输出
    :::4STATUS2OLED显示输出
    :::5nCTSI清除UART发送输入
    :::6nRTSO回应UART发送输出.
    此引脚也可用于RS485控制.
    :::7RXDIUART接收器输入
    :::8TXDOUART发送器输出
    :::93V3DP供应 DC+3.3V

    WIZ550S2E-232 接口板

    • 驱动芯片SP3232EBEY
    • 系统复位开关
    • 恢复出厂设置开关
    • 硬件触发器模式开关
    • LED状态灯
    • DC-Jack (用于+5V电源输入)


    WIZ550S2E-485/422 接口板

    • 驱动芯片SP3485EN
    • 系统复位开关
    • 恢复出厂设置开关
    • 硬件触发器模式开关
    • LED状态灯
    • DC-Jack (用于+5V电源输出)


    特性

    WIZ550S2E

    输入电源DC +3.3V
    电流消耗140mA(Typ.)
    工作温度-40 ~ 85 ℃

    WIZ550S2E-232-EVB

    输入电源DC +5V (插入类型: 外部尺寸 5.5Pi - 口径 2.1Pi)
    电流消耗(连接WIZ550S2E)154mA(Max.)
    工作电压-40 ~ 85 ℃

    WIZ550S2E-485/422-EVB

    输入电源DC +5V (插入类型: 外部尺寸 5.5Pi - 口径 2.1Pi)
    电源消耗(连接 WIZ550S2E)179mA(Max.)@RS422Mode, 157mA(Max.)@RS485Mode
    工作温度-40 ~ 85 ℃

    原理图

    列表版本原理图(PDF)原理图(CAD)
    WIZ550S2E1.1Schematic_PDFSchematic_ORCAD
    WIZ550S2E-232 接口板1.0
    WIZ550S2E-485/422 接口板1.0
    列表版本PartlistGerber(Unit)
    WIZ550S2E1.1Partlist_PDFGerber
    • Rev 1.1 更新 原理图


    尺寸

    (单位: mm)

    WIZ550S2E


    WIZ550S2E-232 接口板


    WIZ550S2E-485/422 接口板


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/datasheet-eng.html b/Product/S2E-Module/WIZ550S2E/datasheet-eng.html index 2ce8d4cf897..1309aca7e02 100644 --- a/Product/S2E-Module/WIZ550S2E/datasheet-eng.html +++ b/Product/S2E-Module/WIZ550S2E/datasheet-eng.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ of hardware specification or exterior design.


    Hardware Specification

    WIZ550S2E

    Pin Description

    Ref No.Pin No.SymbolTypeDescription
    J113V3DPSupply DC+3.3V
    :::2RSVD1I/OReserved I/O
    :::3RSVD2I/OReserved I/O
    :::4nSYSRSTISystem reset input. Active Low.
    :::5nFACRSTIFactory reset. Active Low > 5sec. Changing the settings of the module to the default value
    :::6nHWTRIGIHardware Trigger input Active Low.
    :::7GNDPPower Ground
    :::8GNDPPower Ground
    Ref No.Pin No.SymbolTypeDescription
    J21GNDPPower Ground
    :::2NC-No connection
    :::3STATUS1OOutput for LED Display
    High and low once a second when operating
    :::4STATUS2OOutput for LED Display
    Low when operating
    :::5nCTSIClear To Send input for UART
    :::6nRTSORequest To Send output for UART.
    This pin also serves as the RS485 control.
    :::7RXDIReceiver input for UART
    :::8TXDOTransmitter output for UART
    :::93V3DPSupply DC+3.3V

    WIZ550S2E-232 Interface board


    WIZ550S2E-485/422 Interface board


    Characteristic

    WIZ550S2E

    Input PowerDC +3.3V
    Current Consumption140mA(Typ.)
    Operating Temperature-40 ~ 85 ℃

    WIZ550S2E-232-EVB

    Input PowerDC +5V (Plug type: Outdiameter 5.5Pi - Caliber 2.1Pi)
    Current Consumption(connected with WIZ550S2E)154mA(Max.)
    Operating Temperature-40 ~ 85 ℃

    WIZ550S2E-485/422-EVB

    Input PowerDC +5V (Plug type: Outdiameter 5.5Pi - Caliber 2.1Pi)
    Current Consumption(connected with WIZ550S2E)179mA(Max.)@RS422Mode, 157mA(Max.)@RS485Mode
    Operating Temperature-40 ~ 85 ℃

    Schematic

    ItemVersionSchematic(PDF)
    WIZ550S2E1.1/1.2Schematic_PDF
    WIZ550S2E-232 interface board1.0
    WIZ550S2E-485/422 interface board1.0
    ItemVersionPartlistPCB
    WIZ550S2E1.1Partlist_PDFWIZ550S2E_v1.1_PCB
    WIZ550S2E1.2:::WIZ550S2E_v1.2_PCB


    Dimension

    (Unit: mm)

    WIZ550S2E


    WIZ550S2E-232 Interface board


    WIZ550S2E-485/422 Interface board

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/datasheet-kor.html b/Product/S2E-Module/WIZ550S2E/datasheet-kor.html index 7817b63729c..b4079a1d43b 100644 --- a/Product/S2E-Module/WIZ550S2E/datasheet-kor.html +++ b/Product/S2E-Module/WIZ550S2E/datasheet-kor.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Datasheet(Kor)

    개요

    본 페이지는 WIZ550S2E와 RS232, RS422/485 인터페이스 보드들에 대한 하드웨어 관련 정보를 제공하기 위한 것으로

    • 기본적인 하드웨어 스펙
    • AC/DC 특성
    • 레퍼런스 회로도
    • 모듈의 Dimension 정보

    가 포함된다.

    향후 하드웨어 사양이나 외형에 변경이 있을 경우에는 변경 내역란이 추가될 수 있다.


    Hardware Specification

    WIZ550S2E

    • MCU LPC11E36FHN33
    • TCP/IP Controller W5500
    • RJ45(Integrated Transformer)
    • 2.54mm Header x2

    Pin Description

    Ref No.Pin No.SymbolTypeDescription
    J113V3DPDC +3.3V 전원
    :::2RSVD1I/O내부 지정된 I/O
    :::3RSVD2I/O내부 지정된 I/O
    :::4nSYSRSTI시스템 리셋 입력. Active Low.
    :::5nFACRSTI팩토리 리셋 입력. Active Low(5초 이상). 모듈의 설정을 기본값으로 변경
    :::6nHWTRIGI하드웨어 트리거 입력. Active Low.
    :::7GNDP전원 Ground
    :::8GNDP전원 Ground
    Ref No.Pin No.SymbolTypeDescription
    J21GNDP전원 Ground
    :::2NC-미연결 핀
    :::3STATUS1OLED 출력 핀, 전원 인가 후 1초마다 LED ON/OFF 반복
    :::4STATUS2OLED 출력 핀, TCP 연결상태(Disconnected-High, Connected-Low)
    :::5nCTSIUART용 CTS(Clear To Send) 입력 핀
    :::6nRTSOUART용 RTS(Request To Send) 출력 핀. 이 핀은 RS485에서는 항상 사용된다.
    :::7RXDIUART용 데이터 수신 핀
    :::8TXDOUART용 데이터 송신 핀
    :::93V3DPDC+3.3V 전원

    WIZ550S2E-232 인터페이스 보드

    • 라인 드라이버 SP3232EBEY
    • 시스템 리셋 스위치
    • 팩토리 리셋 스위치
    • 하드웨어 트리거 모드 스위치
    • 상태 LED들
    • DC 전원 단자 (+5V 전원 입력용)


    WIZ550S2E-485/422 인터페이스 보드

    • 라인 드라이버 SP3485EN
    • 시스템 리셋 스위치
    • 팩토리 리셋 스위치
    • 하드웨어 트리거 모드 스위치
    • 상태 LED들
    • DC 전원 단자 (+5V 전원 입력용)


    Characteristic

    WIZ550S2E

    입력 전원DC +3.3V
    소모 전류140mA(Typ.)
    동작 온도-40 ~ 85 ℃

    WIZ550S2E-232-EVB

    입력 전원DC +5V (단자 타입: 외경 5.5Pi - 내경 2.1Pi)
    소모 전류(WIZ550S2E 결합 상태에서 측정)154mA(Max.)
    동작 온도-40 ~ 85 ℃

    WIZ550S2E-485/422-EVB

    입력 전원DC +5V (단자 타입: 외경 5.5Pi - 내경 2.1Pi)
    소모 전류(WIZ550S2E 결합 상태에서 측정)179mA(Max.)@RS422Mode, 157mA(Max.)@RS485Mode
    동작 온도-40 ~ 85 ℃

    Schematic

    항목VersionSchematic(PDF)
    WIZ550S2E1.1/1.2PDF
    WIZ550S2E-232 인터페이스 보드1.0
    WIZ550S2E-485/422 인터페이스 보드1.0
    항목VersionPartlistPCB(Unit)
    WIZ550S2E1.1Partlist_PDFWIZ550S2E_v1.1_PCB
    WIZ550S2E1.2:::WIZ550S2E_v1.2_PCB
    • Rev 1.1/1.2 Update Schematic


    Dimension

    (Unit: mm)

    WIZ550S2E


    WIZ550S2E-232 인터페이스 보드


    WIZ550S2E-485/422 인터페이스 보드


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/download.html b/Product/S2E-Module/WIZ550S2E/download.html index 78a8b7a0cbd..414c0eed4b7 100644 --- a/Product/S2E-Module/WIZ550S2E/download.html +++ b/Product/S2E-Module/WIZ550S2E/download.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ page of configuration's in github.

    Please refer to below compatibility table and use appropriate version.

    F/W VersionConfiguration Tool Version
    1.0.31.03
    1.3.01.33
    1.4.11.33

    Environment configuration

    https://github.com/Wiznet/WIZ550S2E#configuration-tool

    Source code

    https://github.com/Wiznet/WIZnet_Configuration_Tool

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/future-plan-eng.html b/Product/S2E-Module/WIZ550S2E/future-plan-eng.html index 4c27a579954..a228215d76b 100644 --- a/Product/S2E-Module/WIZ550S2E/future-plan-eng.html +++ b/Product/S2E-Module/WIZ550S2E/future-plan-eng.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ550S2E Firmware Future Plan

    FunctionItemsVER 1.0VER 1.1
    AT commandNetwork Info. retrieving and settingOO
    :::MAC addr retrieving and settingOO
    :::Socket control in command modeOO
    :::Data communication in command modeOO
    :::Multi sockets handlingXO
    :::AT+FDNS=Domain_Name supportXO
    SearchSearch allOO
    :::Search with specified MACXO
    :::Search with alias of deviceXO
    :::Search with IP addressXO
    SettingPassword requiredOO
    Firmware UploadingTFTP function supportOO
    ResetPassword requiredOO
    Factory ResetPassword requiredOO
    EncryptionConfig Message encryptionOO
    :::User data encryptionXO
    FunctionDHCP functionOO
    :::DNS functionOO
    Baud rate300, 600, 1200, 2400, 4800, 9600, 19200, 38400, 57600, 115200, 230400OO
    Data Pack. ConditionTimeOO
    :::SizeOO
    :::CharOO
    Socket ModeTCP ClientOO
    :::TCP ServerOO
    :::TCP MixedOO
    :::UDPOO
    TimerInactivity TimerOO
    :::TCP Reconnection TimerOO
    Miscellaneosdedicated serial debug port supportXO
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/future-plan-kor.html b/Product/S2E-Module/WIZ550S2E/future-plan-kor.html index c48a5a38d28..c533a503739 100644 --- a/Product/S2E-Module/WIZ550S2E/future-plan-kor.html +++ b/Product/S2E-Module/WIZ550S2E/future-plan-kor.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ550S2E Firmware Future Plan

    FunctionItemsVER 1.0VER 1.0.2VER 1.1
    AT command네트워크 정보 검색 및 설정OOO
    :::MAC 주소 검색 및 설정OOO
    :::Command mode에서 socket 제어OOO
    :::Command mode에서 데이터 송수신OOO
    :::다중 소켓 제어XXO
    :::AT+FDNS=Domain_Name 명령 지원XOO
    Search모든 장치 찾기OOO
    :::MAC 주소 지정 찾기XXO
    :::별칭 지정 찾기XXO
    :::IP 주소 지정 찾기XXO
    SettingPassword 요구 기능OOO
    Firmware UploadingTFTP 기능 지원OOO
    ResetPassword 요구 기능OOO
    Factory ResetPassword 요구 기능OOO
    EncryptionConfig Message 암호화OOO
    :::사용자 데이터 암호화XXO
    FunctionDHCP 기능OOO
    :::DNS 기능OOO
    Baud rate300, 600, 1200, 2400, 4800, 9600, 19200, 38400, 57600, 115200, 230400OOO
    Data Pack. ConditionTimeOOO
    :::SizeOOO
    :::CharOOO
    Socket ModeTCP ClientOOO
    :::TCP ServerOOO
    :::TCP MixedOOO
    :::UDPOOO
    TimerInactivity TimerOOO
    :::TCP Reconnection TimerOOO
    기타 기능별도 시리얼 디버그 포트 지원XXO
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/programmer-guide-chn.html b/Product/S2E-Module/WIZ550S2E/programmer-guide-chn.html index e6fe7c63ea3..40696e7fa14 100644 --- a/Product/S2E-Module/WIZ550S2E/programmer-guide-chn.html +++ b/Product/S2E-Module/WIZ550S2E/programmer-guide-chn.html @@ -15,7 +15,7 @@ - + @@ -115,7 +115,7 @@ peer systems' Domain name in string. Put DNS Server IP, provided by ISP, into “DNS Server IP” field and peer system's Domain name into “Domain” field.

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/programmer-guide-eng.html b/Product/S2E-Module/WIZ550S2E/programmer-guide-eng.html index a462f02c0c3..14340aaa74b 100644 --- a/Product/S2E-Module/WIZ550S2E/programmer-guide-eng.html +++ b/Product/S2E-Module/WIZ550S2E/programmer-guide-eng.html @@ -15,7 +15,7 @@ - + @@ -115,7 +115,7 @@ peer systems' Domain name in string. Put DNS Server IP, provided by ISP, into “DNS Server IP” field and peer system's Domain name into “Domain” field.

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/programmer-guide-kor.html b/Product/S2E-Module/WIZ550S2E/programmer-guide-kor.html index eae14e4cc5e..0f5e81e9717 100644 --- a/Product/S2E-Module/WIZ550S2E/programmer-guide-kor.html +++ b/Product/S2E-Module/WIZ550S2E/programmer-guide-kor.html @@ -15,7 +15,7 @@ - + @@ -169,7 +169,7 @@ [S]


    AT+MQTTCON

    AT+MQTTCON=<Con/Discon>,<BrokerIP>,<BrokerPort>

    < Con/Discon>: MQTT Connection (Required)

    ParameterMeaning
    1Connect to the broker
    0Disconnect from the broker

    [W,(SockId)]
    [S,(SockId)]


    AT+MQTTPUB

    AT+MQTTPUB=<SockId>,<Topic>,<Size>

    [W,(SockId)]
    [S,(SockId)]


    AT+MQTTSUB

    AT+MQTTSUB =<Sub/Unsub>,<Topic>

    ParameterMeaning
    1Subscribe the topic
    0Unsubscribe the topic

    [S,,<Sub/Unsub>,<Topic>]

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/tutorial-eng.html b/Product/S2E-Module/WIZ550S2E/tutorial-eng.html index 2002dfe0ddc..b40bcb5d4d8 100644 --- a/Product/S2E-Module/WIZ550S2E/tutorial-eng.html +++ b/Product/S2E-Module/WIZ550S2E/tutorial-eng.html @@ -15,7 +15,7 @@ - + @@ -55,7 +55,7 @@ then WIZ550S2E notify to you like below.

    <RX> [R,0,10,192.168.3.202,4002]\r\nBBBBBBBBBB\r\n

    6. Send data to the second UDP device

    Send 10 bytes data "bbbbbbbbbb" to the second UDP device.

    <TX> AT+NSEND=0,10,192.168.3.202,4002\r\nbbbbbbbbbb
    <RX> [W,0]\r\n[S,0]\r\n

    7. Get data from the third UDP device

    If the third UDP device, which its IP address is 192.168.3.203 and port number is 4003, sent "CCCCCCCCCC"
    then WIZ550S2E notify to you like below.

    <RX> [R,0,10,192.168.3.203,4003]\r\nCCCCCCCCCC\r\n

    8. Send data to the third UDP device

    Send 10 bytes data "cccccccccc" to the second UDP device.

    <TX> AT+NSEND=0,10,192.168.3.203,4003\r\ncccccccccc
    <RX> [W,0]\r\n[S,0]\r\n

    9. Close UDP socket

    <TX> AT+NCLOSE=0\r\n
    <RX> [W,0]\r\n[S,0]\r\n

    Server<->Client connection Tutorial for RS422/485

    Refer to YouTube Tutorial

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550S2E/tutorial-kor.html b/Product/S2E-Module/WIZ550S2E/tutorial-kor.html index 5c773966b27..d510ee03a01 100644 --- a/Product/S2E-Module/WIZ550S2E/tutorial-kor.html +++ b/Product/S2E-Module/WIZ550S2E/tutorial-kor.html @@ -15,7 +15,7 @@ - + @@ -54,7 +54,7 @@ "CCCCCCCCCC"라고 하는 10 Byte의 데이터를 보내면, 아래와 같은 메시지를 확인할 수 있다.

    <RX> [R,0,10,192.168.3.203,4003]\r\nCCCCCCCCCC\r\n

    8. 세번째 UDP 장치에게 데이터를 보낼 때

    IP가 192.168.3.203이고 로컬 포트가 4003인 세번째 UDP 장치에게 아래와 같은 방법으로 "cccccccccc"의 10 Byte의 데이터를 전송한다.

    <TX> AT+NSEND=0,10,192.168.3.203,4003\r\ncccccccccc
    <RX> [W,0]\r\n[S,0]\r\n

    9. UDP 소켓 닫기

    <TX> AT+NCLOSE=0\r\n
    <RX> [W,0]\r\n[S,0]\r\n

    RS422/485 사용을 위한 Server<->Client 연결 튜토리얼

    Refer to YouTube Tutorial

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR.html b/Product/S2E-Module/WIZ550SR.html index 3c94a1428f4..25cb3da82e3 100644 --- a/Product/S2E-Module/WIZ550SR.html +++ b/Product/S2E-Module/WIZ550SR.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ [Korean]

    Datasheet

    Download


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/atcommand_tutorial-EN.html b/Product/S2E-Module/WIZ550SR/atcommand_tutorial-EN.html index 00174a5f350..1e5b4c8cfc4 100644 --- a/Product/S2E-Module/WIZ550SR/atcommand_tutorial-EN.html +++ b/Product/S2E-Module/WIZ550SR/atcommand_tutorial-EN.html @@ -15,7 +15,7 @@ - + @@ -56,7 +56,7 @@ then WIZ550SR notify to you like below.

    <RX> [R,0,10,192.168.3.202,4002]\r\nBBBBBBBBBB\r\n

    6. Send data to the second UDP device

    Send 10 bytes data "bbbbbbbbbb" to the second UDP device.

    <TX> AT+NSEND=0,10,192.168.3.202,4002\r\nbbbbbbbbbb
    <RX> [W,0]\r\n[S,0]\r\n

    7. Get data from the third UDP device

    If the third UDP device, which its IP address is 192.168.3.203 and port number is 4003, sent "CCCCCCCCCC"
    then WIZ550SR notify to you like below.

    <RX> [R,0,10,192.168.3.203,4003]\r\nCCCCCCCCCC\r\n

    8. Send data to the third UDP device

    Send 10 bytes data "cccccccccc" to the second UDP device.

    <TX> AT+NSEND=0,10,192.168.3.203,4003\r\ncccccccccc
    <RX> [W,0]\r\n[S,0]\r\n

    9. Close UDP socket

    <TX> AT+NCLOSE=0\r\n
    <RX> [W,0]\r\n[S,0]\r\n
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/atcommand_tutorial-KO.html b/Product/S2E-Module/WIZ550SR/atcommand_tutorial-KO.html index e8222b37960..f6fc9e89f91 100644 --- a/Product/S2E-Module/WIZ550SR/atcommand_tutorial-KO.html +++ b/Product/S2E-Module/WIZ550SR/atcommand_tutorial-KO.html @@ -15,7 +15,7 @@ - + @@ -54,7 +54,7 @@ "CCCCCCCCCC"라고 하는 10 Byte의 데이터를 보내면, 아래와 같은 메시지를 확인할 수 있다.

    <RX> [R,0,10,192.168.3.203,4003]\r\nCCCCCCCCCC\r\n

    8. 세번째 UDP 장치에게 데이터를 보낼 때

    IP가 192.168.3.203이고 로컬 포트가 4003인 세번째 UDP 장치에게 아래와 같은 방법으로 "cccccccccc"의 10 Byte의 데이터를 전송한다.

    <TX> AT+NSEND=0,10,192.168.3.203,4003\r\ncccccccccc
    <RX> [W,0]\r\n[S,0]\r\n

    9. UDP 소켓 닫기

    <TX> AT+NCLOSE=0\r\n
    <RX> [W,0]\r\n[S,0]\r\n
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/datasheet_hardware_spec_characteristics-EN.html b/Product/S2E-Module/WIZ550SR/datasheet_hardware_spec_characteristics-EN.html index ebf263a2ea2..82b2db7764a 100644 --- a/Product/S2E-Module/WIZ550SR/datasheet_hardware_spec_characteristics-EN.html +++ b/Product/S2E-Module/WIZ550SR/datasheet_hardware_spec_characteristics-EN.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Datasheet-EN

    WIZ550SR Datasheet

    Overview

    This page provides information about the hardware description of WIZ550SR as following:

    • Hardware Specification
    • Electrical Characteristics
    • Schematic
    • Dimension

    The revision history will be updated in this page in case of any changes of hardware specification or exterior design.


    Hardware Specification

    WIZ550SR

    • Very small size Serial to Ethernet Module.
    • WIZnet TCP/IP Chip W5500.
    • STM32F103RCT6.
    • Not include a transformer and RJ45.
    • 2.00mm Pitch Pin Header Type, 1x11.
    • Support the MDI(Medium Dependent Interface).
      • TXN, TXP, RXN, RXP
    • Support the UART interface.
      • RXD, TXD, RTS, CTS, DSR(Option), DTR(Option)
      • Support the RS-232C Interface.
      • Will be soppoted the RS-422/485 Interface.
    • Support the Debug UART.
      • DEBUG RXD, DEBUG TXD
    • Support the PHY Status Output.
      • Active LED, Link LED
    • Support the STATUS output.
      • LOW : TCP Connect.
      • HIGH : TCP Diconnect.
    • System Pins.
      • RESET : System Reset, Active Low.
      • BOOT0 : MCU BOOT mode operation, Active High.
      • H/W TRIG : App BOOT mode operation, Active Low.
    • Support the Indicator LED.
      • Power LED(LD3).
      • LED 0(LD1) :
      • LED 1(LD2) :
    • Support the Pin Header Hole for Firmware upload.
      • 2.54mm Pitch, Not Mount.
    • Support the Pin Header Hole for SWD.
      • 1.27mm Pitch, Not Mount.
    • Include eeprom for data storage.
    • Operation Temperature : -40℃ ~ 85℃
    • Size : 22mm x 24mm x 13mm

    WIZ550SR Pin Out

    WIZ550SR Pin Out

    WIZ550SR Pin Out

    WIZ550SR Pin Description

    Ref No.Pin No.SymbolTypeDescription
    J113.3VP+3.3V Input Power
    :::23.3V_OUTP+3.3V Output Power.
    This pin is connected to the TX resistor of MDI signal and Center TAP of RJ45.
    :::3TXNOMDI Signal. TX Positive.
    :::4TXPOMDI Signal. TX Negative.
    :::5GNDPGround.
    :::6RXNIMDI Signal. RX Negative.
    :::7RXPIMDI Signal. RX Positive.
    :::8GNDPGround.
    :::9ACT LEDOPHY Active LED
    :::10LINK LEDOPHY Link LED
    :::11GNDPGround.
    Ref No.Pin No.SymbolTypeDescription
    J21RXDIData UART. Recieve Pin.
    :::2TXDOData UART. Transmit Pin.
    :::3RTSOData UART. Request to Send Pin.
    :::4CTSIData UART. Clear to Send Pin.
    :::5DEBUG_RXIDebug UART. Recieve Pin.
    :::6DEBUG_TXODebug UART. Transmit Pin.
    :::7GNDPGround.
    :::8BOOT0IMCU Boot. Active High
    :::9nRSTIReset. Active Low
    :::10STATUSOStatus Output.
    High : Disconnect.
    Low : Connect.
    :::11nH/W TRIGIApp Boot.
    Hardware TRIG Input. Active Low

    WIZ550SR Block Diagram

    WIZ550SR Block Diagram


    WIZ550SR EVB

    WIZ550SR EVB

    • WIZ550SR Developer Board.
    • USB to UART chip, FT2232D.
    • RJ45 with Transformer, RB1-1D5B8K1A.
    • RESET Tact SW.
    • BOOT0 Tact SW.
    • H/W Trig Tact SW.
    • LED Indicators.
    • Micro USB.

    WIZ550SR EVB Call Out

    WIZ550SR EVB Call Out

    WIZ550SR EVB Block Diagram

    WIZ550SR Block Diagram


    Electrical Characteristics

    Operating conditions at power-up / power-down

    SymbolParameterConditionsMinMaxUnit
    TVDDVDD rise time rate-0-us/V
    :::VDD fall time rate:::20-:::

    DC Characteristics

    SymbolParameterPinsMinTypMaxUnit
    VDDSupply voltage3.3V2.973.33.6V
    VILHigh level input voltageALL1.8333.6V
    VIHLow level input voltageALL-0.31.166V
    VOLLow level output voltageALL0.4V
    VOHHigh level output voltageALL3.0V
    LOLLow level input Current
    Sink Current
    ALL-25mA
    LOHHigh level output Current
    Source Current
    ALL25mA
    IDDSupply Current
    (Normal operation mode)
    3.3VTBDmA

    nRST pin Characterisrics

    SymbolParameterConditionsMinTypMaxUnit
    VIL(nRST)NRST Input low level voltage--0.5-0.8V
    VIH(nRST)NRST Input high level voltage--2-3.8VV
    Vhys(nRST)NRST Schmitt trigger voltage hysteresis--200-mV
    RPUWeak pull-up equivalent resistor-304050
    VF(nRST)NRST Input filtered pulse---100ns
    VNF(nRST)NRST Input not filtered pulse-300--ns

    Power Dissipation

    ConditionMinTypMaxUnit
    100M Link-180-mA
    10M Link-TBD-mA
    Un-Link (Auto-negotiation mode)-TBD-mA
    100M Transmitting-TBD-mA
    10M Transmitting-TBD-mA
    Power Down mode-TBD-mA

    Schematics & BOM

    Ref. Schematic

    WIZ550SR Ref Schematic

    WIZ550SR Schematic

    WIZ550SR BOM

    WIZ550SR EVB Schematic

    WIZ550SR EVB BOM


    Dimension

    • WIZ550SR V1.0 3D PDF : Download
      * This PDF must be run using the 'Adobe Acrobat'.

    WIZ550SR Dimension


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    Skip to main content

    Datasheet-KO

    WIZ550SR Datasheet

    개요

    본 페이지는 WIZ550SR과 WIZ550-EVB 보드들에 대한 하드웨어 관련 정보를 제공하기 위한 것으로

    • 기본적인 하드웨어 스펙
    • AC/DC 특성
    • 레퍼런스 회로도
    • 모듈의 Dimension 정보

    가 포함된다.

    향후 하드웨어 사양이나 외형에 변경이 있을 경우에는 변경한 내역이 추가될 수 있다.


    Hardware Specification

    WIZ550SR

    • 아주 작은 사이즈의 Serial to Ethernet Module.
    • WIZnet의 TCP/IP Chip인 W5500 기반의 Serial to Ethernet Module.
    • STmicro의 STM32F103RCT6 기반의 Serial to Ethernet Module.
    • 2.00mm Pitch Pin Header 1x11 2ea 지원.
    • MDI(Medium Dependent Interface) 지원.
      • TXN, TXP, RXN, RXP
    • UART Interface 지원.
      • RXD, TXD, RTS, CTS, DSR(Option), DTR(Option)
      • RS-232C Interface 지원 가능.
      • RS-422/485 Interface 지원 예정.
    • Debug UART 지원.
      • DEBUG RXD, DEBUG TXD
    • PHY Status Output 지원.
      • Active LED, Link LED
    • STATUS Output 지원.
      • LOW : TCP Connect 상태.
      • HIGH : TCP Diconnect 상태.
    • 시스템 핀.
      • RESET : 시스템 리셋, Active Low.
      • BOOT0 : MCU BOOT 모드 진입, Active High.
      • H/W TRIG : App BOOT 모드 진입, Active Low.
    • Indicator LED 지원.
      • Power LED(LD3).
      • LED 0(LD1) :
      • LED 1(LD2) :
    • Firmware 업로드용 Pin Header Hole 지원.
      • 2.54mm Pitch, Not Mount.
    • SWD 용 Pin Header Hole 지원.
      • 1.27mm Pitch, Not Mount.
    • Data 저장용 EEPROM 내장.
    • Operation Temperature : -40℃ ~ 85℃
    • Size : 22mm x 24mm x 13mm

    WIZ550SR Pin Out

    WIZ550SR Pin Out
    WIZ550SR Pin Out

    WIZ550SR Pin Description

    Ref No.Pin No.SymbolTypeDescription
    J113.3VP+3.3V Input Power
    :::23.3V_OUTP+3.3V Output Power.
    This pin is connected to the TX resistor of MDI signal and Center TAP of RJ45.
    :::3TXNOMDI Signal. TX Negative.
    :::4TXPOMDI Signal. TX Positive.
    :::5GNDPGround.
    :::6RXNIMDI Signal. RX Negative.
    :::7RXPIMDI Signal. RX Positive.
    :::8GNDPGround.
    :::9ACT LEDOPHY Active LED
    :::10LINK LEDOPHY Link LED
    :::11GNDPGround.
    Ref No.Pin No.SymbolTypeDescription
    J21RXDIData UART. Recieve Pin.
    :::2TXDOData UART. Transmit Pin.
    :::3RTSOData UART. Request to Send Pin.
    :::4CTSIData UART. Clear to Send Pin.
    :::5DEBUG_RXIDebug UART. Recieve Pin.
    :::6DEBUG_TXODebug UART. Transmit Pin.
    :::7GNDPGround.
    :::8BOOT0IMCU Boot. Active High
    :::9nRSTIReset. Active Low
    :::10STATUSOStatus Output.
    High : TCP Disconnect.
    Low : TCP Connect.
    :::11nH/W TRIGIApp Boot.
    Hardware TRIG Input. Active Low

    WIZ550SR Block Diagram

    WIZ550SR Block Diagram


    WIZ550SR EVB

    WIZ550SR EVB

    • WIZ550SR Developer Board.
    • USB to UART chip, FT2232D.
    • RJ45 with Transformer, RB1-1D5B8K1A.
    • RESET Tact SW.
    • BOOT0 Tact SW.
    • H/W Trig Tact SW.
    • LED Indicators.
    • Micro USB.

    WIZ550SR EVB Call Out

    WIZ550SR EVB Call Out

    WIZ550SR EVB Block Diagram

    WIZ550SR Block Diagram


    Electrical Characteristics

    Operating conditions at power-up / power-down

    SymbolParameterConditionsMinMaxUnit
    TVDDVDD rise time rate-0-us/V
    :::VDD fall time rate:::20-:::

    DC Characteristics

    SymbolParameterPinsMinTypMaxUnit
    VDDSupply voltage3.3V2.973.33.6V
    VILHigh level input voltageALL1.8333.6V
    VIHLow level input voltageALL-0.31.166V
    VOLLow level output voltageALL0.4V
    VOHHigh level output voltageALL3.0V
    LOLLow level input Current
    Sink Current
    ALL-25mA
    LOHHigh level output Current
    Source Current
    ALL25mA
    IDDSupply Current
    (Normal operation mode)
    3.3VTBDmA

    nRST pin Characterisrics

    SymbolParameterConditionsMinTypMaxUnit
    VIL(nRST)NRST Input low level voltage--0.5-0.8V
    VIH(nRST)NRST Input high level voltage--2-3.8VV
    Vhys(nRST)NRST Schmitt trigger voltage hysteresis--200-mV
    RPUWeak pull-up equivalent resistor-304050
    VF(nRST)NRST Input filtered pulse---100ns
    VNF(nRST)NRST Input not filtered pulse-300--ns

    Power Dissipation

    ConditionMinTypMaxUnit
    100M Link-TBD-mA
    10M Link-TBD-mA
    Un-Link (Auto-negotiation mode)-TBD-mA
    100M Transmitting-TBD-mA
    10M Transmitting-TBD-mA
    Power Down mode-TBD-mA

    Schematics & BOM

    Ref. Schematic

    WIZ550SR Ref Schematic

    WIZ550SR Schematic

    WIZ550SR BOM

    WIZ550SR EVB Schematic

    WIZ550SR EVB BOM


    Dimension

    • WIZ550SR V1.0 3D PDF : Download
      • This PDF must be run using the 'Adobe Acrobat'.

    WIZ550SR Dimension


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    Skip to main content

    Download

    Download Firmware

    Binary Images

    WIZ550SR H/W V1.0 / F/W V1.0

    • Full Binary (Boot + App), Uesing the Flash Loader Demonstrator

    • Full Binary (App Boot + App)

    Download (Boot + App)
    • App Binary (App), Uesing the WIZnet Configuration Tool

    App Binary (App)

    Download (App)

    Source code (with web pages)

    WIZ550SR H/W V1.0 / F/W V1.0

    WIZ550SR GitHub Repository V1.0 (Link)

    https://github.com/Wiznet/WIZ550SR


    Download Configuration Tool

    WIZnet Configuration Tool made Java base. so runs on any OS that JRE be installed. Install JAVA Runtime Environment

    • http://www.java.com/
    • Click on the Free Java Download button.
    • Install the downloaded installation file.

    WIZnet Configuration Tool Version 1.0.3

    WIZnet Configuration Tool Version 1.0.3

    Download (zip)

    Configuration Tool Firmware Upload Guide(TFTP)

    Configuration Tool Fw upload guide(TFTP)

    Download WIZ550SR EVB USB Driver

    In order to use WIZ550SR is required for USB driver(Provided by the FTDI).

    Virtual COM Port Drivers.

    http://www.ftdichip.com/Drivers/VCP.htm


    Download WIZ550SR Firmware Writing Tool

    WIZ550SR used a MCU for STmicro. Therefore, Write firmware must use the program provided by STmicro.

    STM32 Flash loader demonstrator

    Flash Loader Demonstrator


    WIZ VSP

    Go to WIZ VSP Guide page


    How to program WIZ550SR code flash memory

    1. WIZ550SR enter the ISP mode

    Press the 'Boot' push button switch on WIZ550SR EVB(or BOOT pin) until turn on the board after reset or power supply

    1. Run the 'Flash Loader Demonstrator' Program

    Refer to Flash Loader Demonstrator

    1. Flash program and Run the new application firmware

    2. How to WIZ550web Firmware


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/getting_started-EN.html b/Product/S2E-Module/WIZ550SR/getting_started-EN.html index 0edf75ee1b0..b4981e968f8 100644 --- a/Product/S2E-Module/WIZ550SR/getting_started-EN.html +++ b/Product/S2E-Module/WIZ550SR/getting_started-EN.html @@ -15,7 +15,7 @@ - + @@ -58,7 +58,7 @@ device / remote network device.
  • The next step is to connect the WIZ550SR module to the target serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.

  • - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/getting_started-KO.html b/Product/S2E-Module/WIZ550SR/getting_started-KO.html index c6fe129e9ea..b0c46623b96 100644 --- a/Product/S2E-Module/WIZ550SR/getting_started-KO.html +++ b/Product/S2E-Module/WIZ550SR/getting_started-KO.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ WIZ550SR이 위 사진과 같이 조립이 되어 있는지 육안으로 확인을 한다.


    Prerequisites for Setup

    Software

    Hardware


    Connect Your WIZ550SR

    WIZ550SR Factory Settings

    CategoryItemValue
    NetworkLocal IP192.168.77.100
    :::Local Gateway192.168.77.1
    :::Local Subnet255.255.255.0
    :::Local Port5000
    :::Remote Port5000
    :::Working ModeTCP Server
    :::Inactivity0
    :::Reconnection1000
    Data UARTBaud Rate115200
    :::Data Bits8
    :::ParityNONE
    :::Stop Bits1
    :::FlowNONE
    :::AT Command USEEnable
    :::Trigger Code2B/ 2B / 2B
    :::Packing Condition Time0
    :::Packing Condition Size0
    :::Delimeter Length0
    :::Delimeter2D / 2D / 2D / 2D
    :::Delimeter Appendix0
    Debug UARTBaud Rate115200
    :::Data Bits8
    :::ParityNONE
    :::Stop Bits1
    :::FlowNONE
    OptionsModule NameWIZ550SR
    :::Setting PasswordWIZnet
    :::Connection PasswordWIZnet
    :::DHCP USEDisable
    :::DNS USEDisable
    :::DNS Server IP8.8.8.8

    PC Settings

    WIZ550SR과 WIZ550SR의 설정을 위한 PC 혹은 노트북(laptop)은 동일한 이더넷 네트워크 대역에 위치하여야 서로 통신이 가능합니다.

    Example: PC Network Settings

    * WIZ750SR의 설정이 공장 초기화 값일 때, PC의 설정 예,

    Network SettingsPC or laptop
    (= Remote)
    IP address192.168.77.101-
    ::::::Gateway address192.168.77.1-
    ::::::Subnet mask255.255.255.0-
    ::::::Port number5000-

    Connecting Steps

    Step 1 : USB Driver 설치

    처음 WIZ550SR-EVB를 사용하기 해서 사용자의 PC에 USB Driver 설치 한다.

    Device Manager

    Step 2 : 전원 입력

    WIZ550SR-EVB의 초기 상태를 확인을 한다.

    Step 3 : Search & Debug Message

    PC의 Configuration tool을 실행하여 상단 Search 버튼을 클릭 한다. 보드에 전원이 인가되고 동일한 네트워크에 연결되어 동작 중인 경우 WIZ550SR 모듈의 MAC 주소와 설정 값을 tool에서 확인 할 수 있다.

    {{ :products:wiz550sr:gettingstarted:search.png ? direct | Configuration tool }}

    PC의 시리얼 터미널 프로그램을 실행하여, WIZ550SR의 Debug UART의 시리얼 포트에 연결은 한다. 보드에 전원인 인가하면, 아래 사진과 같은 Debug Message를 확인 할수 있다.

    {{ :products:wiz550sr:gettingstarted:debug_message.png ? direct | Debug Message}}

    Step 4: Set up your WIZ550SR

    사용자 환경에 맞춰 제품의 설정 값을 변경한다. 본 Step에서는 제품의 공장 초기화 설정을 기반으로 초기 테스트를 수행한다.

    Step 5: Connect

    PC를 사용자 시리얼 장치 및 TCP 클라이언트로 삼아 데이터 통신을 테스트하기 위한 연결을 수행한다. 이를 위해 PC에서 시리얼 터미널 프로그램 및 TCP 클라이언트 터미널 프로그램이 실행 되어야 한다. 공장 초기값 기준으로 PC와 장치를 연결하기 위해 각각 프로그램은 다음과 같이 설정 후 연결하면 된다.

    Step 6: Verify

    아래와 같은 데이터 통신 과정이 올바르게 수행되면, WIZ550SR 제품의 기본적인 데이터 전송 기능 검증이 완료된다.

    Step 7: Done

    이제 WIZ550SR 제품을 활용할 준비가 완료되었습니다!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/overview-EN.html b/Product/S2E-Module/WIZ550SR/overview-EN.html index 8b18a37f33e..9367f46acf4 100644 --- a/Product/S2E-Module/WIZ550SR/overview-EN.html +++ b/Product/S2E-Module/WIZ550SR/overview-EN.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ serial equipment. It complies with industrial temperature standard and supports the serial interfaces of UART.

    WIZ550SR is is compatible with the Configuration Tool of WIZ550S2E and WIZ550WEB, and will use the same AT Command.

    However, Configuration Tool must use the latest version.

    Features

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/overview-KO.html b/Product/S2E-Module/WIZ550SR/overview-KO.html index 830d577033b..43f54d2046d 100644 --- a/Product/S2E-Module/WIZ550SR/overview-KO.html +++ b/Product/S2E-Module/WIZ550SR/overview-KO.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ 인터페이스를 지원하는 장치에 손쉽게 네트워크 연결 기능을 추가 할 수 있어, 이더넷 네트워크를 통해 시리얼 장비를 제어하는 것이 가능해집니다.

    WIZ550SR은 WIZ550S2E, WIZ550WEB의 Configuration Tool과 호환이 가능하며, 동일한 AT Command로 사용이 됩니다.

    단, Configuration Tool은 최신 버전을 사용해야합니다.

    Features

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/overview-test.html b/Product/S2E-Module/WIZ550SR/overview-test.html index 6ae1165f0a7..e22d579ea2a 100644 --- a/Product/S2E-Module/WIZ550SR/overview-test.html +++ b/Product/S2E-Module/WIZ550SR/overview-test.html @@ -15,7 +15,7 @@ - + @@ -36,7 +36,7 @@ 인터페이스를 지원하는 장치에 손쉽게 네트워크 연결 기능을 추가 할 수 있어, 이더넷 네트워크를 통해 시리얼 장비를 제어하는 것이 가능해집니다.

    WIZ550SR은 WIZ550S2E, WIZ550WEB의 Configuration Tool과 호환이 가능하며, 동일한 AT Command로 사용이 됩니다.

    단, Configuration Tool은 최신 버전을 사용해야합니다.

    Features

    • Very small size Serial to Ethernet Module. 22mm x 24mm x 13mm.
      • WIZnet, TCP/IP Chip W5500.
      • STmicro, Cortex-M3 based STM32F103RCT6.
      • Not include a transformer and RJ45.
      • 2.00mm Pitch Pin Header Type, 1x11.
      • Support the MDI(Medium Dependent Interface).
        • TXN, TXP, RXN, RXP
      • Support the UART Interface.
        • RXD, TXD, RTS, CTS, DSR(Option), DTR(Option)
        • Buad Rate : 600bps to 230.4kbps
        • Length : 8bit
        • Parity bit : None, Odd, Even
        • Stop bit : 1bit, 2bit
        • Support the RS-232C Interface.
        • Will be supported the RS-422/485 Interface.
        • Default : 115200, 8, n, 1
      • Support the Debug UART.
        • DEBUG RXD, DEBUG TXD
        • Default : 115200, 8, n, 1
      • Support the PHY Status Output.
        • Active LED, Link LED
      • Support the STATUS Output.
        • LOW : TCP Connect.
        • HIGH : TCP Diconnect.
      • System Pin.
        • RESET : System Reset, Active Low.
        • BOOT0 : MCU BOOT mode operation, Active High.
        • H/W TRIG : App BOOT mode operation, Active Low.
      • Support the Indicator LED.
        • Power LED(LD3).
        • LED 0(LD1) :
        • LED 1(LD2) :
      • Support the Pin Header Hole for firmware upload.
        • 2.54mm Pitch, Not Mount.
      • Support the Pin Header Hole for SWD.
        • 1.27mm Pitch, Not Mount.
      • Include eeprom for data storage.
      • Support the AT Command for the set of WIZ550SR.
      • Support the WIZ VSP (Virtual Serial Port).
      • Operation Temperature : -40℃ ~ 85℃
      • Size : 22mm x 24mm x 13mm
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/users_manual_programmers_guide-EN.html b/Product/S2E-Module/WIZ550SR/users_manual_programmers_guide-EN.html index 3e262bdfbc4..20256937423 100644 --- a/Product/S2E-Module/WIZ550SR/users_manual_programmers_guide-EN.html +++ b/Product/S2E-Module/WIZ550SR/users_manual_programmers_guide-EN.html @@ -15,7 +15,7 @@ - + @@ -131,7 +131,7 @@ DHCP mode : WIZ550SR's network information will be set automatically without user's interference.

    DNS

    This is valid in TCP Client mode only. Normally, TCP Client mode has to know its peer system's IP address. But there are some cases where the IP address is unknown and especially when the IP address change frequently.
    In this case, DNS function is needed.

    User has to select “Use DNS” option and set DNS Server IP address and peer systems' Domain name in string. Put DNS Server IP, provided by ISP, into “DNS Server IP” field and peer system's Domain name into “Domain” field.


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ550SR/users_manual_programmers_guide-KO.html b/Product/S2E-Module/WIZ550SR/users_manual_programmers_guide-KO.html index 660d23c626e..fd47990c8d6 100644 --- a/Product/S2E-Module/WIZ550SR/users_manual_programmers_guide-KO.html +++ b/Product/S2E-Module/WIZ550SR/users_manual_programmers_guide-KO.html @@ -15,7 +15,7 @@ - + @@ -120,7 +120,7 @@ (예:www.wiznet.co.kr)
    서버의 IP가 유동적이거나, 서버가 도메인 이름을 보유하고 있는 경우에 DNS 기능을 사용하면 서버의 IP 변화에 일일이 대응하지 않아도 되므로 유용하게 사용될 수 있는 기능이다. 만약 위와 같은 환경이 아니라면 반드시 DNS 기능을 사용할 필요는 없다.


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/datasheet.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/datasheet.html index a71f53b9c6d..aee3b345433 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/datasheet.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/datasheet.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Datasheet

    Hardware Specification

    Product Spec Table

    CategoryDescription
    MCU
    (RP2040)
    ARM
    Cortex-M0+
    Dure Core
    133Mhz maximum frequency
    264KB on-chip SRAM
    16KB on-chip ROM
    2MB External ROM
    2 × UART, 2 × SPI controllers, 2 × I2C controllers, 16 × PWM channels
    1 × USB 1.1 controller and PHY, with host and device support
    8 × Programmable I/O (PIO) state machines for custom peripheral support
    Ethernet
    (W5100S)
    Hardwired
    TCP/IP
    With MAX and PHY
    Support Hardwired Internet protocols
    : TCP, UDP, WOL over UDP, ICMP, IGMPv1/v2, IPv4, ARP, PPPoE
    Support 4 independent SOCKETs simultaneously
    Support SOCKET-less Command
    : ARP-Request, PING-Request
    Internal 16Kbytes Memory for TX/ RX Buffers
    10BaseT/100BaseTX Ethernet PHY Integrated
    SerialInterfaceUART (LVTTL 3.3V)
    SWD
    :::SignalTXD, RXD, RTS, CTS, DTR, DSR GND
    SWCLK, SWDIO
    :::ParametersParity: None, Odd, Even
    Data bits: 7, 8 bit
    Flow control: None, RTS / CTS, XON / XOFF
    :::SpeedTBD

    WIZ500SR-RP Callout

    WIZ500SR-RP Callout top
    TOP
    WIZ500SR-RP callout bottom
    BOTTOM

    Connector Specification

    1x12 Network Line (J3)

    WIZ500SR-RP 1x12 Network Line (J3)

    Pin NumberSignalDescription
    1VCCSystem Power Input (3.3V)
    2RX_N10/100M MDIO Receiver Differential Signal (N signal)
    3RX_P10/100M MDIO Receiver Differential Signal (P signal)
    4GNDSystem Ground
    5TX_N10/100M MDIO Transceiver Differential Signal (N signal)
    6TX_P10/100M MDIO Transceiver Differential Signal (P signal)
    7GNDSystem Ground
    8LINKnLink Status LED Signal
    Low : Link up
    High : Link down
    9SPDnLink Speed LED Signal
    Low : 100Mbps
    High : 10Mbps
    10ACTnActive LED Signal
    No Flash : Link up state without TX/RX
    Flash : Link up state with TX/RX data
    High : Link-down state
    11COLnLink Collision Detect LED Signal
    Low : Collision Detected
    High : No Collision
    12VCCSystem Power Input (3.3V)
    - If there is no Ethernet connection, the WIZ500SR-RP device will enter into a continuous reset loop.

    1x12 UART1 (J4)

    WIZ500SR-RP 1x12 UART1 (J4)

    Pin NumberSignalDescription
    1VCCSystem Power Input (3.3V)
    2RUNRP2040 Reset Signal input
    Active Low
    3GNDSystem Ground
    4UART1_TXUART1 TX
    5UART1_RTSUART1 RTS
    6UART1_DTRUART1 DTR
    7GNDSystem Ground
    8UART1_RXUART1 RX
    9UART1_CTSUART1 CTS
    10UART1_DSRUART1 DSR
    11GNDSystem Ground
    12BLINKWorking LED Signal
    When Module working well Switch Toggle every 1.0s

    1x12 Other pin (J5)

    WIZ500SR-RP 1x12 Other pin (J5)

    Pin NumberSignalDescription
    1GNDSystem Ground
    2LINK_STATUSLink Status signal
    High : Link
    Low : UnLink
    3TCP_STATUSTCP Connection
    High : Connect
    Low : Disconnect
    4BOOTSELActive Low
    Drive this pin Low and reset(or power on),then RP2040 will enter USB Mass Storage Device mode
    Then RP2040 can be re-programming
    5USB_DPUSB DP Signal input for RP2040
    6USB_DMUSB DM Signal input for RP2040
    7BOOT MODEBoot Mode Select signal input
    Active Low
    Drive this pin low and reset(or power on),then WIZ500SR-RP will enter Boot mode
    8FACT_RSTFactory Reset Signal input
    Drive this pin to Low for at least 5.0s then WIZ500SR-RP will be reset to factory settings
    9HW_TRIGActive Low
    High : Gateway Mode
    Low : AT Command Mode
    Changes will be reflected after reset
    10GPIO26/ADC0Reserved
    11GPIO27/ADC1Reserved
    12GNDSystem Ground

    1x6 UART0, SWD (J1)

    WIZ500SR-RP 1x6 UART0, SWD (J1)

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2TXUART0_TX (Debug)
    3RXUART0_RX (Debug)
    4SWCLKSWDCLK
    5SWDIOSWDIO
    6GNDSystem Ground

    J1 is not mounted connector

    1x2 BOOTSEL set pin (J2)

    WIZ500SR-RP 1x2 BOOTSEL set pin (J2)

    Pin NumberSignalDescription
    1BOOTSELActive Low
    Drive this pin Low and reset(or power on),then RP2040 will enter USB Mass Storage Device mode
    Then RP2040 can be re-programming
    2GNDSystem Ground

    J2 is not mounted connector


    Switch Specification

    RESET Switch (SW1)

    WIZ500SR-RP RESET Switch (SW1)

    • Pressing SW1 will initiate a reset of the WIZ500SR-RP device.

    WIZ500SR-RP indicators

    WIZ500SR-RP LED indicators

    Pin NumberPin NameSignalDescription
    1LD2Power LED(Red)Power on LED
    2LD3TCP_STATUS LED(Green)ON : Connect
    OFF : Disconnect
    3LD4LINK_STATUS LED(Green)ON : LINK
    OFF : Unlink
    4LD5BLINK LED(Green)Working indicate
    When Module working well Blinking every 1.0s

    WIZ500SR-RP EVB SET

    WIZ500SR-RP EVB SET


    Schematic & Artwork

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLAltium Download-
    ::::::PDF Download-

    Part list

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download
    ::::::PDF Download

    Electrical Characteristics

    Operating Conditions

    SymbolParameterMinTypMaxUnit
    VccOperating Voltage3.1353.33.465V
    VssGround050mV
    fFCLKInternal CPU clock frequency--133MHz
    TstgStorage Temperature (max)-2085
    TAAmbient operating temperature-2085
    VIHInput high voltage2.5V
    VILInput low voltage0.6V
    VOHOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    2.83V
    VOLOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    0.32V

    Ethernet Power Dissipation

    ConditionMinTypMaxTolUnit
    100M Transmitting-120-mA

    External Flash Memory

    SymbolParameterMinUnit
    NENDSector Endurance100,000Cycles
    TDRData Retention20Years


    Dimensions

    • WIZ500SR-RP Rev1.0 Dimension :
      • 50mm x 30mm x 1.6mm ( PCB board size )
      • 50mm x 30mm x 5.7mm ( Included part size )

    WIZ500SR-RP Dimension

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/getting-started.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/getting-started.html index 3e40ac54c7e..dd6ebcfffe8 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/getting-started.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/getting-started.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Getting Started

    Unpacking the WIZ500SR-RP

    What's in the Box?

    The WIZ500SR-RP evaluation board package contains the following parts.

    • WIZ500SR-RP Module

    The entire list of parts of the board is available at the WIZ500SR-RP Overview: Product Contents page.

    As WIZ500SR-RP does not have Serial and Ethernet port, two evaluation boards are needed to get started working with module: WIZ500/505SR-RP-EVB and WIZ500SR-RP-EVB.

    Device Layout

    Figure: WIZ500SR-RP Revision 1.0 Top

    Parts

    ItemDescription
    U1RP2040 MCU
    U2W5100S
    U6Flash memory
    J1Debug
    SW1Reset
    SW2BOOTSEL
    LD1~4LED indicators

    Prerequisites for Setup

    Software

    • Configuration tool program (Download page)
    • TCP server / TCP client / UDP terminal program
    • Serial terminal program

    Hardware

    • WIZ500SR-RP module
    • WIZ500/505SR-RP-EVB
    • WIZ500SR-RP-EVB
    • Ethernet cable
    • DB9 serial RS-232 cable (for Data UART, RS-232/TTL Ver. only)
      • Such as 5V DC adapter, USB port on your computer, or 3.3V Power source

    Connect Your WIZ500SR-RP

    WIZ500SR-RP Factory Settings

    Network SettingsLocalIP address192.168.11.2-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::DNS server8.8.8.8Google Public DNS
    ::::::Port number5000-
    :::RemoteIP address192.168.11.3-
    ::::::Port number5000-
    Serial Port SettingsData UART115200-8-N-1 / Flow Control: None-
    :::Debug UART115200-8-N-1 / Flow Control: NoneFixed
    • Operation mode: TCP server mode
    • Debug message: Enabled
    • Serial command mode switch: Enabled
    • Serial command mode switch code: +++ (hex code, [2B][2B][2B])
    • Data packing option - Time: Disabled
    • Data packing option - Size: Disabled
    • Data packing option - Char: Disabled
    • Inactivity Timer: Disabled
    • Reconnection Timer: 3 second
    • Keep-Alive: Enabled, 7-sec initial delay, 5-sec send interval

    PC Settings

    Double check that the WIZ500SR-RP and the PC, or laptop you are using to set up WIZ500SR-RP with are both in the same Ethernet network.

    Example: PC Network Settings

    When the WIZ500SR-RP's settings are factory default,

    Network SettingsPC or laptop
    (= Remote)
    IP address192.168.11.3-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::Port number5000-
    • User should to matching the network settings of 'WIZ500SR-RP's remote host' and 'PC (or laptop)' for testing TCP client/mixed mode.
    • If the DHCP(automatic IP allocation) is used, both the WIZ500SR-RP and test PC must be set to be assigned the same IP from the same router.

    Connecting Steps

    The WIZ500/505SR-RP-EVB is designed to use the DB9 connector to connect with the user’s serial device. Therefore, it is recommended to have all Ethernet and serial ports connected to the PC when testing. If the PC does not have a serial port, please purchase a RS-232 to USB converter separately.

    Step 1: Plug in

    Connect the WIZ500SR-RP module to evaluation board WIZ500/505SR-RP-EVB and WIZ500SR-RP-EVB, also the cable as shown in the picture below.

    • Ethernet Cable
      • Used to connect the evaluation board’s RJ-45 connector and the PC’s Ethernet network interface card (PC's RJ-45 connector)
    • Serial Cable
      • Used to connect the evaluation board’s DB9 connector and the serial interface card (DB9 connector). If the PC does support serial interface, use the RS-232 to USB converter.
    • Optional: USB type B cable (for debug message)
      • Used to connect the evaluation board’s USB connector and the PC’s USB connector.

    Image to be added

    Step 2: Power on

    Connect the 5V power adaptor or USB cable to the evaluation board and turn on the power switch.

    • The power LED will turn red once the evaluation board is on.

    Image to be added

    Open the configuration tool and click the search button. If the board is turned on and connected to the same network, the MAC address or settings of the WIZ500SR-RP module can be checked using the configuration tool.

    Figure: WIZnet Configuration Tool

    Step 4: Set up your WIZ500SR-RP

    Change the settings accordingly to the customer’s environment. The test shown in this document is based on factory setting.

    tip

    Click Apply Settings button to save the changes in settings of the configuration tool.

    Step 5: Connect

    Connect the PC as the TCP client of the user’s serial device for data communication testing. In order to do this, the serial terminal program / TCP client terminal program must be opened on the PC. The serial terminal program and TCP client program must be set as below.

    • Serial terminal program: 115200-8-N-1, Flow control: None
    • TCP client program: 192.168.11.2:5000 (The IP address and port number of WIZ500SR-RP)

    The COM port for serial terminal program connection can be checked as below.

    • Control Panel -> System -> Device Manager
    Figure: Device Manager

    Step 6: Verify

    The basic data communication of the WIZ500SR-RP can be verified as below.

    • Serial to Ethernet: data communication verification
      • Enter the character string in the serial terminal and check if the identical character string appears on the TCP client terminal.
    • Ethernet to Serial: data communication verification
      • Enter the character string in the TCP client terminal and check if the identical character string appears on the serial terminal.

    Step 7: Done

    Now you’re ready to use the WIZ500SR-RP!

    • This document is based on the assumption of the PC as the serial device / remote network device.
    • The next step is to connect the WIZ500SR-RP module to the target serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.

    If there is any problem?

    Please refer to our Troubleshooting guide!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/overview.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/overview.html index a2e745101b0..6bbab346d89 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/overview.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ500SR-RP/overview.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Overview

    WIZ500SR-RP

    WIZ500SR-RP is a compact sized serial to Ethernet module using the RP2040 MCU with W5100S Ethernet Chip. WIZ500SR-RP is a protocol converter that transmits data sent by serial equipment as TCP/IP data, and converts the TCP/IP data received through the network back into serial data to the serial equipment.

    In addition, WIZ500SR-RP contains serial debug port(J1).

    WIZ500SR-RP is the best fit solution to control user's serial device via Ethernet network.


    Features

    • Serial to Ethernet Module based on RP2040 MCU (TTL level)
    • W5100S included
    • 10/100Mbps Ethernet & Up to 230kbps serial speed
    • 2mm pitch 1x12 Pin-header(3ea) mounted module
    • Status pins: PHY link status / TCP connection status
    • Serial signals(UART or RS-232C)
      • WIZ500SR-RP module(UART): TXD, RXD, RTS, CTS
      • WIZ5xxSR-RP-EVB(RS-232C): TXD, RXD, RTS, CTS
      • Optional DTR/DSR signals supported
    • WIZ500SR-RP has UART x 2, SWD x 1, Ethernet x 1
      • UART0, SWD for Debug and UART1, Ethernet for Data transceive
    • Separate Data UART and Debug UART port
    • Configuration is possible via serial AT commands or via Configuration tool
    • Support WIZ VSP (Virtual Serial Port) program

    Product Contents

    WIZ500SR-RP Module Series

    Ordering InformationItemQ'tyRemarks
    WIZ500SR-RPWIZ500SR-RP module(TTL)1-

    WIZ5xxSR-RP Evaluation Board Series

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ5xxSR-RP-EVBDeviceWIZ5xxSR-RP EVB1-
    :::CableTBDTBDTBD
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/datasheet.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/datasheet.html index 4cd8cf8df57..f1b53d43be1 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/datasheet.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/datasheet.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Datasheet

    Hardware Specification

    Product Spec Table

    CategoryDescription
    MCU
    (RP2040)
    ARM
    Cortex-M0+
    Dure Core
    133Mhz maximum frequency
    264KB on-chip SRAM
    16KB on-chip ROM
    2MB External ROM
    2 × UART, 2 × SPI controllers, 2 × I2C controllers, 16 × PWM channels
    1 × USB 1.1 controller and PHY, with host and device support
    8 × Programmable I/O (PIO) state machines for custom peripheral support
    Ethernet
    (W5100S)
    Hardwired
    TCP/IP
    With MAX and PHY
    Support Hardwired Internet protocols
    : TCP, UDP, WOL over UDP, ICMP, IGMPv1/v2, IPv4, ARP, PPPoE
    Support 4 independent SOCKETs simultaneously
    Support SOCKET-less Command
    : ARP-Request, PING-Request
    Internal 16Kbytes Memory for TX/ RX Buffers
    10BaseT/100BaseTX Ethernet PHY Integrated
    SerialInterfaceUART (LVTTL 3.3V)
    SWD
    :::SignalTXD, RXD, RTS, CTS, DTR, DSR GND
    SWCLK, SWDIO
    :::ParametersParity: None, Odd, Even
    Data bits: 7, 8 bit
    Flow control: None, RTS / CTS, XON / XOFF
    :::SpeedTBD

    WIZ505SR-RP Callout

    WIZ505SR-RP Callout top
    TOP
    WIZ505SR-RP callout bottom
    BOTTOM

    Connector Specification

    Magnetic rj45 modular jack (P1)

    WIZ505SR-RP Magnetic rj45 modular jack (P1)

    • If there is no Ethernet connection, the WIZ505SR-RP device will enter into a continuous reset loop.

    2x7 UART1, Download (J2)

    WIZ505SR-RP 2x7 UART1, Download (J2)

    Pin NumberSignalDescription
    1RUNRP2040 Reset Signal Input
    Active Low
    2VCCSystem Power Input (3.3V)
    3UART1_RXUART1 RX
    4VCCSystem Power Input (3.3V)
    5UART1_CTSUART1 CTS
    6FACT RSTFactory Reset Signal input
    Drive this pin to Low for at least 5.0s then WIZ505SR-RP will be reset to factory settings
    7UART1 TXUART1 TX
    8HW_TRIGHW TRIG signal input
    Active Low
    High : Gateway Mode
    Low : AT Command Mode
    Changes will be reflected after reset
    9UART1_RTSUART1 RTS
    10BOOTSELActive Low
    Drive this pin Low and reset(or power on),then RP2040 will enter USB Mass Storage Device mode
    Then RP2040 can be re-programming
    11GNDSystem Ground
    12GNDSystem Ground
    13USB_DPUSB DP signal input for RP2040
    14USB_DMUSB DM Signal input for RP2040

    1x6 UART0, SWD (J1)

    WIZ505SR-RP 1x6 UART0, SWD (J1)

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2TXUART0_TX (Debug)
    3RXUART0_RX (Debug)
    4SWCLKSWDCLK
    5SWDIOSWDIO
    6GNDSystem Ground

    J1 is not mounted connector

    1x2 Boot mode select (J3)

    WIZ505SR-RP x2 Boot mode select (J3)

    Pin NumberSignalDescription
    1BOOTMODEBoot Mode Select signal input
    Active Low
    Drive this pin low and reset(or power on),then WIZ505SR-RP will enter Boot mode
    2GNDSystem Ground

    J3 is not mounted connector

    Switch Specification

    RESET Switch (SW1)

    WIZ505SR-RP RESET Switch (SW1)

    • Pressing SW1 will initiate a reset of the WIZ500SR-RP device.

    BOOTSEL Switch (SW2)

    WIZ505SR-RP BOOTSEL Switch (SW2)

    • Pressing SW2 and resetting (or powering on) will cause the RP2040 to enter USB Mass Storage Device mode. This enables the RP2040 to be reprogrammed.

    WIZ505SR-RP indicators

    WIZ505SR-RP LED indicators

    Pin NumberPin NameSignalDescription
    1LD2Power LED(Red)Power on LED
    2LD3TCP_STATUS LED(Green)ON : Connect
    OFF : Disconnect
    3LD4LINK_STATUS LED(Green)ON : LINK
    OFF : Unlink
    4LD5BLINK LED(Green)Working indicate
    When Module working well Blinking every 1.0s

    WIZ505SR-RP EVB

    To utilize the WIZ505SR-RP EVB, connect the J1 connector of the WIZ505SR-RP to the J6 connector of the EVB.

    WIZ505SR-RP LED indicators
    TOP
    WIZ505SR-RP LED indicators
    BOTTOM

    Schematic & Artwork

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLAltium Download-
    ::::::PDF Download-

    Part list

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download-
    ::::::PDF Download-

    Electrical Characteristics

    Operating Conditions

    SymbolParameterMinTypMaxUnit
    VccOperating Voltage3.1353.33.465V
    VssGround050mV
    fFCLKInternal CPU clock frequency--133MHz
    TstgStorage Temperature (max)-2085
    TAAmbient operating temperature-2085
    VIHInput high voltage2.5V
    VILInput low voltage0.6V
    VOHOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    2.83V
    VOLOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    0.32V

    Ethernet Power Dissipation

    ConditionMinTypMaxTolUnit
    100M Transmitting-125mA

    External Flash Memory

    SymbolParameterMinUnit
    NENDSector Endurance100,000Cycles
    TDRData Retention20Years

    Dimensions

    • WIZ505SR-RP Rev1.0 Dimension :
      • 40mm x 62mm x 1.6mm ( PCB board size )
      • 40mm x 66.5mm x 15mm ( Included part size )

    WIZ505SR-RP Dimensions

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/getting-started.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/getting-started.html index b62c32558dd..71b869110a4 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/getting-started.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/getting-started.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Getting Started

    Unpacking the WIZ505SR-RP

    What's in the Box?

    The WIZ505SR-RP evaluation board package contains the following parts.

    • WIZ505SR-RP Module

    The entire list of parts of the board is available at the WIZ505SR-RP Overview: Product Contents page.

    As WIZ505SR-RP already has Ethernet port, it is necessary to use WIZ500/505SR-RP-EVB to get started working with module.

    Device Layout

    Figure: WIZ505SR-RP Revision 1.0 Top

    Parts

    ItemDescription
    U1RP2040 MCU
    U2W5100S
    U4Flash memory
    J1Debug
    J2Header
    J3Boot Mode
    SW1Reset
    SW2BOOTSEL
    LD1~4LED indicators

    Prerequisites for Setup

    Software

    • Configuration tool program (Download page)
    • TCP server / TCP client / UDP terminal program
    • Serial terminal program

    Hardware

    • WIZ505SR-RP module
    • WIZ500/505SR-RP-EVB
    • Ethernet cable
    • DB9 serial RS-232 cable (for Data UART, RS-232/TTL Ver. only)
    • Power source for device
      • Such as 5V DC adapter, USB port on your computer, or 3.3V Power source
    tip

    J1, J3 pins are not mounted.


    Connect Your WIZ505SR-RP

    WIZ505SR-RP Factory Settings

    Network SettingsLocalIP address192.168.11.2-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::DNS server8.8.8.8Google Public DNS
    ::::::Port number5000-
    :::RemoteIP address192.168.11.3-
    ::::::Port number5000-
    Serial Port SettingsData UART115200-8-N-1 / Flow Control: None-
    :::Debug UART115200-8-N-1 / Flow Control: NoneFixed
    • Operation mode: TCP server mode
    • Debug message: Enabled
    • Serial command mode switch: Enabled
    • Serial command mode switch code: +++ (hex code, [2B][2B][2B])
    • Data packing option - Time: Disabled
    • Data packing option - Size: Disabled
    • Data packing option - Char: Disabled
    • Inactivity Timer: Disabled
    • Reconnection Timer: 3 second
    • Keep-Alive: Enabled, 7-sec initial delay, 5-sec send interval

    PC Settings

    Double check that the WIZ505SR-RP and the PC, or laptop you are using to set up WIZ505SR-RP with are both in the same Ethernet network.

    Example: PC Network Settings

    When the WIZ505SR-RP's settings are factory default,

    Network SettingsPC or laptop
    (= Remote)
    IP address192.168.11.3-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::Port number5000-
    • User should to matching the network settings of 'WIZ505SR-RP's remote host' and 'PC (or laptop)' for testing TCP client/mixed mode.
    • If the DHCP(automatic IP allocation) is used, both the WIZ505SR-RP and test PC must be set to be assigned the same IP from the same router.

    Connecting Steps

    The WIZ500/505SR-RP-EVB is designed to use the DB9 connector to connect with the user’s serial device. Therefore, it is recommended to have all Ethernet and serial ports connected to the PC when testing. If the PC does not have a serial port, please purchase a RS-232 to USB converter separately.

    Step 1: Plug in

    Connect the WIZ505SR-RP module to evaluation board WIZ500/505SR-RP-EVB and also the cable as shown in the picture below.

    • Ethernet Cable
      • Used to connect the evaluation board’s RJ-45 connector and the PC’s Ethernet network interface card (PC's RJ-45 connector)
    • Serial Cable
      • Used to connect the evaluation board’s DB9 connector and the serial interface card (DB9 connector). If the PC does support serial interface, use the RS-232 to USB converter.
    • Optional: USB type B cable (for debug message)
      • Used to connect the evaluation board’s USB connector and the PC’s USB connector.

    Image to be added

    Step 2: Power on

    Connect the 5V power adaptor or USB cable to the evaluation board and turn on the power switch.

    • The power LED will turn red once the evaluation board is on.

    Image to be added

    Open the configuration tool and click the search button. If the board is turned on and connected to the same network, the MAC address or settings of the WIZ505SR-RP module can be checked using the configuration tool.

    Figure: WIZnet Configuration Tool

    Step 4: Set up your WIZ505SR-RP

    Change the settings accordingly to the customer’s environment. The test shown in this document is based on factory setting.

    tip

    Click Apply Settings button to save the changes in settings of the configuration tool.

    Step 5: Connect

    Connect the PC as the TCP client of the user’s serial device for data communication testing. In order to do this, the serial terminal program / TCP client terminal program must be opened on the PC. The serial terminal program and TCP client program must be set as below.

    • Serial terminal program: 115200-8-N-1, Flow control: None
    • TCP client program: 192.168.11.2:5000 (The IP address and port number of WIZ505SR-RP)

    The COM port for serial terminal program connection can be checked as below.

    • Control Panel -> System -> Device Manager
    Figure: Device Manager

    Step 6: Verify

    The basic data communication of the WIZ505SR-RP can be verified as below.

    • Serial to Ethernet: data communication verification
      • Enter the character string in the serial terminal and check if the identical character string appears on the TCP client terminal.
    • Ethernet to Serial: data communication verification
      • Enter the character string in the TCP client terminal and check if the identical character string appears on the serial terminal.

    Step 7: Done

    Now you’re ready to use the WIZ505SR-RP!

    • This document is based on the assumption of the PC as the serial device / remote network device.
    • The next step is to connect the WIZ505SR-RP module to the target serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.

    If there is any problem?

    Please refer to our Troubleshooting guide!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/overview.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/overview.html index 575c3e3fd18..dac33db6f1b 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/overview.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ505SR-RP/overview.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ WIZ505SR-RP is a protocol converter that transmits data sent by serial equipment as TCP/IP data, and converts the TCP/IP data received through the network back into serial data to the serial equipment.

    In addition, WIZ505SR-RP contains serial debug port(J1).

    WIZ505SR-100 is the best fit solution to control user's serial device via Ethernet network.


    Features


    Product Contents

    WIZ505SR-RP Module Series

    Ordering InformationItemQ'tyRemarks
    WIZ505SR-RPWIZ505SR-RP module(TTL)1-

    WIZ505SR-RP Evaluation Board Series

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ5xxSR-RP-EVBDeviceWIZ5xxSR-RP EVB1-
    :::CableTBDTBDTBD
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/datasheet.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/datasheet.html index 3f2bcfc6c06..982a6f7b6f6 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/datasheet.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/datasheet.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Datasheet

    Hardware Specification

    Product Spec Table

    CategoryDescription
    MCU
    (RP2040)
    ARM
    Cortex-M0+
    Dure Core
    133Mhz maximum frequency
    264KB on-chip SRAM
    16KB on-chip ROM
    2MB External ROM
    2 × UART, 2 × SPI controllers, 2 × I2C controllers, 16 × PWM channels
    1 × USB 1.1 controller and PHY, with host and device support
    8 × Programmable I/O (PIO) state machines for custom peripheral support
    Ethernet
    (W5100S)
    Hardwired
    TCP/IP
    With MAX and PHY
    Support Hardwired Internet protocols
    : TCP, UDP, WOL over UDP, ICMP, IGMPv1/v2, IPv4, ARP, PPPoE
    Support 4 independent SOCKETs simultaneously
    Support SOCKET-less Command
    : ARP-Request, PING-Request
    Internal 16Kbytes Memory for TX/ RX Buffers
    10BaseT/100BaseTX Ethernet PHY Integrated
    SerialInterfaceUART (LVTTL 3.3V) only debug
    SWD
    RS232C
    :::SignalTXD, RXD, RTS, CTS, GND
    SWCLK, SWDIO
    :::ParametersParity: None, Odd, Even
    Data bits: 7, 8 bit
    Flow control: None, RTS / CTS
    :::SpeedTBD

    WIZ510SR-RP Callout

    WIZ510SR-RP Callout
    TOP
    WIZ510SR-RP Bottom
    BOTTOM

    WIZ510SR-RP Pinout

    WIZ510SR-RP Pinout


    WIZ510SR-RP indicators

    WIZ510SR-RP LED indicators

    Pin NumberPin NameSignalDescription
    1LD1Power LED(Red)Power on LED
    2LD2TCP_STATUS LED(Green)ON : Connect
    OFF : Disconnect
    3LD3LINK_STATUS LED(Green)ON : LINK
    OFF : Unlink
    4LD4BLINK LED(Green)Working indicate
    When Module working well Blinking every 1.0s

    Schematic & Artwork

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLAltium Download-
    ::::::PDF Download-

    Part list

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download-
    ::::::PDF Download-

    Electrical Characteristics

    Operating Conditions

    SymbolParameterMinTypMaxUnit
    VccOperating Voltage3.1353.33.465V
    VssGround050mV
    fFCLKInternal CPU clock frequency--133MHz
    TstgStorage Temperature (max)-2085
    TAAmbient operating temperature-2085
    VIHInput high voltage2.5V
    VILInput low voltage0.6V
    VOHOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    2.83V
    VOLOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    0.32V

    Ethernet Power Dissipation

    ConditionMinTypMaxTolUnit
    100M Transmitting-130mA

    External Flash Memory

    SymbolParameterMinUnit
    NENDSector Endurance100,000Cycles
    TDRData Retention20Years

    Connector Specification

    Magnetic RJ45 modular jack (P1)

    WIZ510SR-RP Magnetic RJ45 modular jack (P1)

    • If there is no Ethernet connection, the WIZ510SR-RP device will enter into a continuous reset loop.

    2Ø DC-JACK (P2)

    WIZ510SR-RP 2Ø DC-JACK (P2)

    • 5V input

    DB9M Serial Interface (J2)

    WIZ510SR-RP Serial Interface (J2)

    WIZ510SR-RP DB9M

    Pin NumberSignalDescription
    1DCDNC
    2RXDReceive Data
    3TXDTransmit Data
    4DTRNC
    5GNDSystem Ground(Signal Ground)
    6DSRNC
    7RTSRequest To Send
    8CTSClear To Send
    9RINC
    • RXD, TXD, GND: These are all you need if the device does not use hardware handshaking.
    • RXD, TXD, GND, RTS, CTS: These are the signals used when serial device uses hardware handshaking.
    • DCD, DTR, DSR, RI: Not used

    1x4 Download (J5)

    WIZ510SR-RP 1x4 Download (J5)

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2USB_DPUSB DP Signal input for RP2040
    3USB_DMUSB DM Signal input for RP2040

    1x6 UART0, SWD (J1)

    WIZ510SR-RP 1x6 UART0, SWD (J1)

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2TXUART0_TX (Debug)
    3RXUART0_RX (Debug)
    4SWCLKSWDCLK
    5SWDIOSWDIO
    6GNDSystem Ground
    • J1 is not mounted

    1x2 BOOT MODE (J3)

    WIZ510SR-RP 1x2 BOOT MODE (J3)

    Pin NumberSignalDescription
    1BOOT MODEBoot Mode Select signal input
    Active Low
    Drive this pin low and reset(or power on),then WIZ510SR-RP will enter Boot mode
    2GNDSystem Ground
    • J3 is not mounted

    1x2 FACT RST (J4)

    WIZ510SR-RP 1x2 FACT RST (J4)

    Pin NumberSignalDescription
    1FACT RSTFactory Reset Signal input
    Drive this pin to Low for at least 5.0s then WIZ510SR-RP will be reset to factory settings
    2GNDSystem Ground
    • J4 is not mounted

    Switch Specification

    Reset Switch (SW1)

    WIZ510SR-RP Reset Switch (SW1)

    • Pressing SW1 will initiate a reset of the WIZ510SR-RP device.

    BOOTSEL Switch (SW2)

    WIZ510SR-RP BOOTSEL Switch (SW2)

    • Pressing SW2 and resetting (or powering on) will cause the RP2040 to enter USB Mass Storage Device mode. This enables the RP2040 to be reprogrammed.

    HW TRIG Switch (SW3)

    WIZ510SR-RP HW TRIG Switch (SW3)

    • Slide SW3 Left : AT command
    • Slide SW3 Right : Gateway Mode
    • Changes will be reflected after reset

    Dimension

    • WIZ510SR-RP Rev1.0 Dimension :
      • 63mm x 45mm x 1.6mm ( PCB board size )
      • 76mm x 45mm x 15mm ( Included part size )

    WIZ510SR-RP Dimension

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/getting-started.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/getting-started.html index 0d6faf9d70e..70de59d26df 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/getting-started.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/getting-started.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Getting Started

    Unpacking the WIZ510SR-RP

    What's in the Box?

    The WIZ510SR-RP evaluation board package contains the following parts.

    • WIZ510SR-RP Module

    The entire list of parts of the board is available at the WIZ510SR-RP Overview: Product Contents page.

    As WIZ510SR-RP already has Serial and Ethernet port, no separate evaluation board is needed to get started working with module.

    Device Layout

    Figure: WIZ510SR-RP Revision 1.0 Top

    Parts

    ItemDescription
    U1RP2040 MCU
    U2W5100S
    U4RS232 IC
    U6Flash memory
    J1Debug
    J3Boot Mode
    J4FACT RST
    J5DP/DM Header
    SW1Reset
    SW2BOOTSEL
    SW3HW TRIG
    LD1~4LED indicators

    Prerequisites for Setup

    Software

    • Configuration tool program (Download page)
    • TCP server / TCP client / UDP terminal program
    • Serial terminal program

    Hardware

    • Your WIZ510SR-RP module
    • Ethernet cable
    • DB9 serial RS-232 cable (for Data UART, RS-232/TTL Ver. only)
    • Power source for device
      • Such as 5V DC adapter, USB port on your computer, or 3.3V Power source
    tip

    J1, J3, J4 pins are not mounted.


    Connect Your WIZ510SR-RP

    WIZ510SR-RP Factory Settings

    Network SettingsLocalIP address192.168.11.2-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::DNS server8.8.8.8Google Public DNS
    ::::::Port number5000-
    :::RemoteIP address192.168.11.3-
    ::::::Port number5000-
    Serial Port SettingsData UART115200-8-N-1 / Flow Control: None-
    :::Debug UART115200-8-N-1 / Flow Control: NoneFixed
    • Operation mode: TCP server mode
    • Debug message: Enabled
    • Serial command mode switch: Enabled
    • Serial command mode switch code: +++ (hex code, [2B][2B][2B])
    • Data packing option - Time: Disabled
    • Data packing option - Size: Disabled
    • Data packing option - Char: Disabled
    • Inactivity Timer: Disabled
    • Reconnection Timer: 3 second
    • Keep-Alive: Enabled, 7-sec initial delay, 5-sec send interval

    PC Settings

    Double check that the WIZ510SR-RP and the PC, or laptop you are using to set up WIZ510SR-RP with are both in the same Ethernet network.

    Example: PC Network Settings

    When the WIZ510SR-RP's settings are factory default,

    Network SettingsPC or laptop
    (= Remote)
    IP address192.168.11.3-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::Port number5000-
    • User should to matching the network settings of 'WIZ510SR-RP's remote host' and 'PC (or laptop)' for testing TCP client/mixed mode.
    • If the DHCP(automatic IP allocation) is used, both the WIZ510SR-RP and test PC must be set to be assigned the same IP from the same router.

    Connecting Steps

    The WIZ510SR-RP is designed to use the DB9 connector to connect with the user’s serial device. Therefore, it is recommended to have all Ethernet and serial ports connected to the PC when testing. If the PC does not have a serial port, please purchase a RS-232 to USB converter separately.

    Step 1: Plug in

    Connect cables to WIZ510SR-RP module as shown in the picture below.

    • Ethernet Cable
      • Used to connect the evaluation board’s RJ-45 connector and the PC’s Ethernet network interface card (PC's RJ-45 connector)
    • Serial Cable
      • Used to connect the evaluation board’s DB9 connector and the serial interface card (DB9 connector). If the PC does support serial interface, use the RS-232 to USB converter.

    Image to be added

    Step 2: Power on

    Connect the 5V power adaptor or USB cable to the evaluation board and turn on the power switch.

    • The power LED will turn red once the evaluation board is on.

    Image to be added

    Open the configuration tool and click the search button. If the board is turned on and connected to the same network, the MAC address or settings of the WIZ510SR-RP module can be checked using the configuration tool.

    Figure: WIZnet Configuration Tool

    Step 4: Set up your WIZ510SR-RP

    Change the settings accordingly to the customer’s environment. The test shown in this document is based on factory setting.

    tip

    Click Apply Settings button to save the changes in settings of the configuration tool.

    Step 5: Connect

    Connect the PC as the TCP client of the user’s serial device for data communication testing. In order to do this, the serial terminal program / TCP client terminal program must be opened on the PC. The serial terminal program and TCP client program must be set as below.

    • Serial terminal program: 115200-8-N-1, Flow control: None
    • TCP client program: 192.168.11.2:5000 (The IP address and port number of WIZ510SR-RP)

    The COM port for serial terminal program connection can be checked as below.

    • Control Panel -> System -> Device Manager
    Figure: Device Manager

    Step 6: Verify

    The basic data communication of the WIZ510SR-RP can be verified as below.

    • Serial to Ethernet: data communication verification
      • Enter the character string in the serial terminal and check if the identical character string appears on the TCP client terminal.
    • Ethernet to Serial: data communication verification
      • Enter the character string in the TCP client terminal and check if the identical character string appears on the serial terminal.

    Step 7: Done

    Now you’re ready to use the WIZ510SR-RP!

    • This document is based on the assumption of the PC as the serial device / remote network device.
    • The next step is to connect the WIZ510SR-RP module to the target serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.

    If there is any problem?

    Please refer to our Troubleshooting guide!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/overview.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/overview.html index 3625c9b050b..0b2fa2c30f6 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/overview.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/WIZ510SR-RP/overview.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    Overview

    WIZ510SR-RP

    WIZ510SR-RP is a compact sized serial to Ethernet module using the RP2040 MCU with W5100S Ethernet Chip. WIZ510SR-RP is a protocol converter that transmits data sent by serial equipment as TCP/IP data, and converts the TCP/IP data received through the network back into serial data to the serial equipment.

    In addition, WIZ510SR-RP contains serial debug port(J1).

    WIZ510SR-RP is the best fit solution to control user's serial device via Ethernet network.


    Features

    • Serial to Ethernet Module based on RP2040 MCU (TTL level)
    • Includes W5100S and magnetic rj45 modular jack
    • 10/100Mbps Ethernet & Up to 230kbps serial speed
    • Status pins: PHY link status / TCP connection status
    • Serial signals(RS-232C)
      • WIZ510SR-RP module(RS-232C): TXD, RXD, RTS, CTS
    • WIZ510SR-RP has UART x 1, SWD x 1 ,RS232C x 1, Ethernet x 1
      • UART, SWD for Debug and RS232C, Ethernet for Data transceive
    • Configuration is possible via serial AT commands or via
    • Configuration tool
    • Support WIZ VSP (Virtual Serial Port) program
    • Built in 10/100Mbps Ethernet ESD Protection IC

    Product Contents

    WIZ510SR-RP Module Series

    Ordering InformationItemQ'tyRemarks
    WIZ510SR-RPWIZ510SR-RP module(TTL)1-

    WIZ5xxSR-RP Evaluation Board Series

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ5xxSR-RP-EVBDeviceWIZ5xxSR-RP EVB1-
    :::CableTBDTBDTBD
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/command-manual.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/command-manual.html index 5bafa08cebc..624541f975f 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/command-manual.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/command-manual.html @@ -15,7 +15,7 @@ - + @@ -42,7 +42,7 @@ 1 ~ 60000: SSL receive timeout (unit: millisecond)

    If the timeout is set, the SSL connection closes when SSL receive timeout over.

  • Response

    Without Parameter (Get)

    With Parameter (Set)


  • RI


    MQTT Settings


    QU



    QP



    QC



    QK



    PU



    U0



    U1



    U2



    QO


    Return valueMeaningRemarks
    0QoS0-
    1QoS1-
    2QoS2-

    Certificate Settings


    RC


    Return valueMeaningRemarks
    0Client Root CA verify none-
    1Client Root CA verify optional-
    2Client Root CA verify required-

    CE


    Return valueMeaningRemarks
    0Client certificate disable-
    1Client certificate enable-

    OC



    LC



    PK


    Command Mode Switch Settings


    TE



    SS


    Device Control


    EX



    SV



    UF



    RT



    FR


    Status I/O


    SC


    Parameter / Return valueMeaningRemarks
    0PHY link statusDefault
    1DTRData Terminal Ready (RS-232/TTL only)
    Parameter / Return valueMeaningRemarks
    0TCP connection statusDefault
    1DSRData Set Ready (RS-232/TTL only)

    S0


    Return valueMeaningRemarks
    0PHY link up-
    1PHY link down-
    Return valueMeaningRemarks
    0The device is not ready-
    1The device ready for communications-

    S1


    Return valueMeaningRemarks
    0TCP connection established-
    1TCP disconnected-
    Return valueMeaningRemarks
    0The peer device is not ready-
    1The peer device ready for communications-

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/configuration-tool-manual.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/configuration-tool-manual.html index 55e186cdb6d..c7edec640f4 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/configuration-tool-manual.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/configuration-tool-manual.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ Firmware upload can be unsuccessful due to firewall or virus protection software.
  • The module will not work properly if the firmware is not correctly uploaded.
  • DO NOT TURN OFF POWER DURING FIRMWARE UPLOADING
    IT CAN CAUSE MALFUNCTIONING

    4) Reset Device

    5) Factory Reset

    6) Save Config

    7) Load Config

    8) Exit

    2. Network Interface configuration

    Figure: Network adapters

    3. Device List

    Figure: *Device list

    4. Search Method

    Search ID code

    Search method

    5. Status bar

    6-1. Basic settings Tab

    Figure: Basic settings tab

    1) Device information

    2) Search identification code

    3) Network configuration

    6-2. Options Tab

    Figure: Options tab

    1) TCP Timeout

    2) Status pin

    3) Serial debug

    1. Stable version is recommended for usage. Ex) Development version: v1.0.0dev, Stable version: v1.0.0

    2. In cases when there are multiple devices in the same network.

    4) Serial command mode

    info

    Please take caution of the following when using Trigger code.

    1. It can only be recognized as switch code if there is a time gap of at least 500ms of no data communication time before and after the 3-byte command mode switch.

    2. The time interval for each byte of the 3-byte command mode switch code has to be at most 500ms.

    3. Do not end the command mode switch code with CR((CR: Carriage return, ('\r', 0x0D) )) or LF((LF: Line feed, ('\n', 0x0A) )).

    4. The default interval of the time gap before and after the command mode switch code is 500ms. The operation is based on the timer value of the serial data packaging option.

    5) Connection password (TCP server mode only)

    6-3. MQTT Options Tab

    Figure: MQTT options tab

    1) MQTT Credentials

    2) MQTT Options

    3) MQTT Topics

    6-4. Certificate Manager Tab

    Figure: Certificate manager tab

    1) Root CA

    2) Client Certificate

    3) Private Key

    7. Channel Tab

    Figure: Channel tab

    1) Status & Serial Interface

    ItemDescription
    Status[1]Shows the operational status of the device
    - BOOT: Settings and firmware upload is possible during this status
    - OPEN: Status before TCP connection
    - CONNECT: Status after TCP connection
    - UPGRADE: Firmware update or DHCP IP allocation during this status
    - ATMODE: Serial AT command mode.
    - UDP: UDP mode
    Serial interface[2]Shows the types of UART interfaces.
    - RS-232/TTL: WIZ5xxSR-RP hardware TTL or RS-232 version.
    - RS-422/485: WIZ5xxSR-RP hardware RS-422/485 version.

    2) Operation mode

    3) Local port & Remote host / Port

    4) Serial Options

    5) Serial data packing condition

    6) Timer interval

    7) TCP Keep-alive interval

    8) Timeout


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    Skip to main content

    Firmware Update Guide


    WIZ5xxSR-RP Firmware Update Overview

    Memory Map

    • Internal Flash
      • Main flash size: 2 Mbytes
     Top Flash Memory Address /-------------------------------------------\  0x10200000
    | |
    | Parameters (64KB) |
    |-------------------------------------------| 0x101F0000
    | |
    | Reserved (448KB) |
    | |
    |-------------------------------------------| 0x10180000
    | |
    | |
    | Firmware Binary Bank (512KB) |
    | |
    | |
    |-------------------------------------------| 0x10100000
    | |
    | |
    | Application Bank (512KB) |
    | |
    | |
    |-------------------------------------------| 0x10080000
    | |
    Page 1 (256KB) | |
    | Bootloader (512KB) |
    Page 0 (256KB) | |
    | |
    \-------------------------------------------/ 0x100000000

    Firmware Update Sequence

    Figure: Firmware Update Sequence

    How to Upload or Update the Firmware of WIZ5xxSR-RP

    The WIZ5xxSR-RP provides one method of uploading or updating firmware.

    That's the way over ethernet using the Configuration Tool.


    Using the Configuration Tool

    Required Hardware and Software

    Hardware

    • WIZ5xxSR-RP
    • WIZ5xxSR-RP Evaluation Board (WIZ510SR-RP can be used without WIZ5xxSR-RP Evaluation Board.)
    • 5V Power adapter
    • Cables (Ethernet / Serial)

    Software

    How to Upload or Update the Firmware

    Step 1: Setup Environment to Use WIZ5xxSR-RP

    The process of setup environment to use the WIZ5xxSR-RP each product is available at the 'Getting Started' document below.

    Step 2: Upload Firmware

    1. Click the Firmware Upload button
    Figure: Click Firmware Upload button
    1. Select the uploaded firmware

    When selecting firmware, you must select .bin(*_linker.bin).

    Firmware in a file format other than .bin cannot be uploaded or updated properly.

    Figure: Select uploaded firmware
    1. Uploading the firmware
    Figure: Uploading firmware

    Step 3: Done

    Firmware upload or update completed!

    WIZ5xxSR-RP is searched after about 5 seconds in the Configuration Tool after firmware upload or update completed.

    Figure: Firmware upload or update complete

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/mqtt-connection-guide.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/mqtt-connection-guide.html index d57e3d00e18..60788834b4d 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/mqtt-connection-guide.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/mqtt-connection-guide.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    MQTT Connection Guide


    WIZ5xxSR-RP MQTT Connection Overview

    WIZ5xxSR-RP supports MQTT client and MQTTS client mode.


    Required Hardware and Software

    Hardware

    • WIZ5xxSR-RP
    • WIZ5xxSR-RP Evaluation Board (WIZ510SR-RP can be used without WIZ5xxSR-RP Evaluation Board.)
    • 5V Power adapter
    • Cables (Ethernet / Serial)

    Software


    How to Connect to MQTT Broker through Mosquitto

    WIZ5xxSR-RP supports MQTT client and MQTTS client mode, but this section guides how to connect to MQTT broker through Mosquitto based on MQTT client mode.

    Note : MQTTS client mode requires additional security-related settings, unlike MQTT client mode.

    Step 1: Setup Environment to Use WIZ5xxSR-RP

    The process of setup environment to use the WIZ5xxSR-RP each product is available at the 'Getting Started' document below.

    Step 2: Setup Mosquitto

    Depending on the Mosquitto version, you may need to setup Mosquitto, so refer to the below to setup.

    • In Mosquitto versions earlier than 2.0 the default is to allow clients to connect without authentication.
    • In 2.0 and up, you must choose your authentication options explicitly before clients can connect.

    Therefore, if you are using version 2.0 or later, refer to following link to setup 'mosquitto.conf' in the directory where Mosquitto is installed.

    Step 3: Run MQTT Broker through Mosquitto

    Ex>
    mosquitto -c mosquitto.conf -p 1883 -v
    Figure: Run MQTT broker through Mosquitto

    Step 4: Setup WIZ5xxSR-RP through WIZnet S2E Configuration Tool for MQTT Broker Connection

    1. Select MQTT client mode in the Operation mode setting section
    Figure: Select MQTT client mode
    1. Setup the remote host IP (or URL) and remote port in the Remote host / port section
    Figure: Setup remote host IP and remote port
    1. Setup MQTT options
    Figure: Setup MQTT options
    1. Click the Apply Settings button to save the settings
    Figure: Click Apply Settings button
    Figure: Saved settings

    Step 5: Done

    WIZ5xxSR-RP is successfully connected to the MQTT broker!

    Figure: Status
    Figure: Connect to MQTT broker

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/ssl-connection-guide.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/ssl-connection-guide.html index 8fe99b92c69..8122b783c74 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/ssl-connection-guide.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/ssl-connection-guide.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    SSL Connection Guide


    WIZ5xxSR-RP SSL Connection Overview

    WIZ5xxSR-RP supports SSL TCP client mode.


    Required Hardware and Software

    Hardware

    • WIZ5xxSR-RP
    • WIZ5xxSR-RP Evaluation Board (WIZ510SR-RP can be used without WIZ5xxSR-RP Evaluation Board.)
    • 5V Power adapter
    • Cables (Ethernet / Serial)

    Software


    How to Connect to SSL Server through OpenSSL

    Step 1: Setup Environment to Use WIZ5xxSR-RP

    The process of setup environment to use the WIZ5xxSR-RP each product is available at the 'Getting Started' document below.

    Step 2: Setup OpenSSL

    Setup OpenSSL to use as the SSL Server.

    genrsa -des3 -out [key_name].key 2048
    req -new -key [key_name].key -out [csr_name].csr
    x509 -req -days [days] -in [csr_name].csr -signkey [key_name].key -out [crt_name].crt

    Ex>
    genrsa -des3 -out server.key 2048
    req -new -key server.key -out server.csr
    x509 -req -days 365 -in server.csr -signkey server.key -out server.crt

    Step 3: Run SSL Server through OpenSSL

    If you have setup the OpenSSL to use as the SSL server, run the SSL server.

    s_server -accept [port] -cert [crt_name].crt -key [key_name].key

    Ex>
    s_server -accept 443 -cert server.crt -key server.key

    Step 4: Setup WIZ5xxSR-RP through WIZnet S2E Configuration Tool for SSL Server Connection

    1. Select SSL TCP client mode in the Operation mode setting section
    Figure: Select SSL TCP client mode
    1. Setup the remote host IP (or URL) and remote port in the Remote host / port section
    Figure: Setup remote host IP and remote port
    1. Click the Apply Settings button to save the settings
    Figure: Click Apply Settings button
    Figure: Saved settings

    Note: If you need certificates to connect to the SSL server, please refer to the 'What If I Need Certificates to Connect to SSL Server' section below.

    Step 5: Done

    WIZ5xxSR-RP is successfully connected to the SSL server!


    Appendix

    What If I Need Certificates to Connect to SSL Server?

    You can upload certificates below in the 'Certificate manager' tab of the'WIZnet S2E Configuration Tool'.

    • Root CA
    • Client Certificate
    • Private key

    Upload and setup the certificates required by the SSL server you want to connect to.

    After loading the certificate by clicking the 'Load file' button, be sure to save it by clicking the 'Save to device' button.

    Figure: Upload certificates

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    Skip to main content

    WIZ500SR-RP-EVB

    WIZ500SR-RP EVB(RJ45)

    TOP

    | BOTTOM


    Connector Specification

    1x12 Network Line (J1)

    Pin NumberSignalDescription
    13V33.3V input
    2RX_N10/100M MDIO Receiver Differential Signal (N signal)
    3RX_P10/100M MDIO Receiver Differential Signal (P signal)
    4GNDSystem Ground
    5TX_N10/100M MDIO Transceiver Differential Signal (N signal)
    6TX_P10/100M MDIO Transceiver Differential Signal (P signal)
    7GNDSystem Ground
    8LINKnLink Status LED Signal input
    9SPDnLink Speed LED Signal input
    10ACTnActive LED Signal input
    11COLnLink Collision Detect LED Signal input
    123V33.3V input

    1x2 Power check (J2)

    Pin NumberSignalDescription
    13V33.3V input
    2GNDSystem Ground

    Indicate

    RefSignalDescription
    D1LINKnON : LINK
    OFF : Unlink
    D2SPDnON : 100Mbps
    OFF : 10Mbps
    D3ACTnON : Link up state without TX/RX
    BLINK : Link up state with TX/RX data
    OFF : Link-down state
    D4COLnON : Collision Detected
    OFF : No Collision

    Schematic

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLAltium Download-
    ::::::PDF Download-

    Part list

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download-
    ::::::PDF Download-

    Dimension

    • WIZ500SR-RP EVB(RJ45) Rev1.0 Dimension :

      • 45mm x 26mm x 1.6mm ( PCB board size )

      • 50mm x 30mm x 14.95mm ( Included part size )

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ5xxSR-RP-Series/wiz505sr-rp-evb.html b/Product/S2E-Module/WIZ5xxSR-RP-Series/wiz505sr-rp-evb.html index 7da3f9f6cf4..9198443b96a 100644 --- a/Product/S2E-Module/WIZ5xxSR-RP-Series/wiz505sr-rp-evb.html +++ b/Product/S2E-Module/WIZ5xxSR-RP-Series/wiz505sr-rp-evb.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ505SR-RP-EVB

    WIZ505SR-RP EVB

    TOP
    BOTTOM

    Connector Specification

    J1Pin NumberSignalDescription
    :::1GNDSystem Ground
    :::2LINK STATUSLink status LED signal input
    :::3TCP STATUSTCP status LED signal input
    :::4BOOTSELBOOTSEL signal output
    :::5USB DPUSB DP signal output
    :::6USB DMUSB DM signal output
    :::7BOOTMODEBOOTMODE signal output
    :::8FACT RSTFactory reset signal output
    :::9HW TRIGHW TRIG signal output
    :::10IO26Reserved pin
    :::11IO27Reserved pin
    :::12GNDSystem Ground
    J2Pin NumberSignalDescription
    :::13V3System Power Output (3.3V)
    :::2RESETReset Signal output
    :::3GNDSystem Ground
    :::4UART1_TXTransmit Data
    :::5UART1_RTSRequest To Send
    :::6UART1_DTRData Terminal Ready
    :::7GNDSystem Ground
    :::8UART1_RXReceive Data
    :::9UART1_CTSClear To Send
    :::10UART1_DSRData Set Ready
    :::11GNDSystem Ground
    :::12BLINKWorking LED Signal Input
    J6Pin NumberSignalDescription
    :::1RESETReset Signal output
    :::23V3System Power Output (3.3V)
    :::3UART1_RXReceive Data
    :::43V3System Power Output (3.3V)
    :::5UART1_CTSClear To Send
    :::6FACT RSTFactory reset signal output
    :::7UART1_TXTransmit Data
    :::8HW TRIGHW TRIG signal output
    :::9UART1_RTSRequest To Send
    :::10BOOTSELBOOTSEL signal output
    :::11GNDSystem Ground
    :::12GNDSystem Ground
    :::13USB DPUSB DP signal output
    :::14USB DMUSB DM signal output

    WIZ500SR-RP indicate

    RefSignalDescription
    D4Power LED(Red)Power on LED
    D5TCP_STATUS LED(Green)ON : Connect
    OFF : Disconnect
    D6LINK_STATUS LED(Green)ON : LINK
    OFF : Unlink
    D7BLINK LED(Green)Working indicate
    When Module working well Blinking every 1.0s

    Schematic

    WIZ505SR-RP EVB

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLAltium Download-
    ::::::PDF Download-

    Part list

    WIZ505SR-RP EVB

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download-
    ::::::PDF Download-

    Switch Specification

    RefSignalDescription
    SW1BOOTSEL SWWhen push SW1, then BOOTSEL Pin(J1-4pin) will be low
    SW2FACT RST SWWhen push SW2, then FACT RST Pin(J1-8pin) will be low
    SW3HW TRIG SWWhen push SW3, then HW TRIG Pin(J1-9pin) will be low
    SW4BOOTMODE SWWhen push SW4, then BOOTMODE Pin(J1-7pin) will be low
    SW5RESET SWWhen push SW5, then RESET Pin(J2-2pin) will be low

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series.html b/Product/S2E-Module/WIZ750SR-1xx-Series.html index b38548e3f51..2b16e6d6501 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    WIZ750SR-1xx Series

    Overview

    WIZ750SR-1xx Series is 1-port serial to Ethernet converting module using the W7500 Ethernet MCU (SoC based on ARM Cortex-M0 architecture) with External PHY(IC+).


    WIZ750SR-100

    WIZ750SR-100

    Features

    • Without RJ45 and D'sub-9 connector
    • 2ea 1x12 2mm pitch pin header type
      • 1ea MDI Interface
      • 1ea Data UART Interface(3.3V)
    • Dimensions : 50.00(W) x 30.00(L) x 12.00(H) (Unit : mm)

    WIZ750SR-105

    WIZ750SR-105

    Features

    • With RJ45 and D'sub-9 connector
    • 2x6 2mm pitch pin header type
    • 1ea RJ45 connector
      • MDI Interface
    • Dimensions : 62.00(W) x 40.00(L) x 18.00(H) (Unit : mm)

    WIZ750SR-110

    WIZ750SR-110

    Features

    • With RJ45 and D'sub-9 connector
    • 1ea RJ45 connector
      • MDI Interface
    • 2ea D'sub-9 connector
      • RS-232C Interface
    • Dimensions : 62.00(W) x 40.00(L) x 18.00(H) (Unit : mm)

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100.html index e773188aa52..4a1bc8781b8 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ750SR-100

    WIZ100SR Compatible Serial to Ethernet Module

    Figure: WIZ750SR-100 Rev. 1.0

    Documents

    • Product Overview (English)/(Korean)

      • Overview
      • Features
      • Product Contents
    • Getting Started Guide (English)/(Korean)

      • Unpacking the WIZ750SR-100
      • Prerequisites for Setup
      • Connect Your WIZ750SR-100
    • User's Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • Operation Mode
      • Network / Serial Settings
      • Support Options
    • Configuration Tool Manual (New) (English)/(Korean)

      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • Configuration Tool Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • CLI Config Tool Tutorial

      • It's used in common with WIZ750SR
      • Device Configuration for CLI
      • CLI Configuration Tutorial
    • Device Command Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • WIZ750SR-100 Commands Overview
      • Command List
      • Command Descriptions
    • Troubleshooting Guide (English)/(Korean)

      • It's used in common with WIZ750SR Series
    • Update History (English)/(Korean)

      • It's used in common with WIZ750SR Series

    Datasheet

    • Datasheet
      • WIZ750SR-100 / WIZ750SR-100-EVB
      • Hardware Specification
      • Schematic / Part list / Dimension
      • Electrical Characteristics
      • Connector Specification

    Download

    • Software Download

      • It's used in common with WIZ750SR Series
      • Firmware Binary
      • Firmware Source code
      • Configuration Tool
      • WIZ VSP(Virtual Serial Port)
      • W7500 ISP Download tool
    • Technical References

      • It's used in common with WIZ750SR Series
      • Materials Datasheets
      • See Also

    Module

    WIZ750SR-100

    Evaluation Board

    WIZ750SR-100-EVB

    Chip

    W7500-S2E
    (Pre-programmed chip)


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/datasheet.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/datasheet.html index 8d08b825678..4bd1909dac1 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/datasheet.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/datasheet.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ device uses hardware handshaking.
  • DTR, DSR: Not used

  • Schematic & Artwork

    WIZ750SR-100

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLAltium Download-
    ::::::PDF Download-
    1.1TTLAltium Download-
    ::::::PDF Download-

    WIZ750SR-EVB

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0RS232Altium Download-
    ::::::PDF Download-

    Part list

    WIZ750SR-100

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download
    ::::::PDF Download
    1.1TTLExcel Download
    ::::::PDF Download

    WIZ750SR-100-EVB

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download
    ::::::PDF Download

    Electrical Characteristics

    Operating Conditions

    SymbolParameterPinsMinTypMaxUnit
    VccOperating Voltage3.3V3.1353.33.465V
    VssGroundALL050mV
    fFCLKInternal CPU clock frequencyALL0-48MHz
    TstgStorage Temperature (max)ALL-4085
    TAAmbient operating temperatureALL-4085
    VIOI/O Signal voltage (Tolerance)ALLVss-0.33.35V
    VIHInput high voltageALL2.5V
    VILInput low voltageALL0.6V
    VOHOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL2.83V
    VOLOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL0.32V

    Flash Memory

    SymbolParameterMinUnit
    NENDSector Endurance10,000Cycles
    TDRData Retention10Years

    EEPROM

    SymbolParameterMinUnit
    NENDSector Endurance1MCycles
    TDRData Retention200Years

    Connector Specification

    1x12 Data Pin Connector (J1)

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2RESETSystem Reset signal (Active HIGH)
    3GNDSystem Ground
    4U_TXD0Transmit Data (TTL : 3.3V)
    5U_RTS0Request To Send (TTL : 3.3V)
    6U_DTR0
    PHY LINK
    Data Terminal Ready (TTL : 3.3V)
    PHY Link status check signal
    7GNDSystem Ground
    8U_RXD0Receive Data (TTL : 3.3V)
    9U_CTS0Clear To Send (TTL : 3.3V)
    10U_DSR0
    TCP CON
    HW_TRIG
    Data Set Ready (TTL : 3.3V)
    TCP Connection check signal
    11GNDSystem Ground
    12STATUSTCP Connection & Trigger mode
    High: Not Connected
    Low: Connected
    :::HW_TRIGHardware Trigger (Only Check once at booting)
    High & Floating: Normal mode
    Low: App boot mode

    1x12 Network Line (J3)

    WIZ750SR Rev1.0

    WIZ750SR Rev1.1

    Pin NumberSignalDescription
    1NCNot Connect
    2MDI_RN10/100M MDIO Receiver Differential Signal (N signal)
    3MDI_RP10/100M MDIO Receiver Differential Signal (P signal)
    4GNDSystem Ground
    5MDI_TN10/100M MDIO Transceiver Differential Signal (N signal)
    6MDI_TP10/100M MDIO Transceiver Differential Signal (P signal)
    7GNDSystem Ground
    8Link LEDHigh: Link down
    Low: Link up
    (When the PHY is physically connected, the LINK LED lights up.)
    9NCNot Connect
    10ACT LEDBlink: 100M ACT
    (ACT LED blinks when data is transmitted/received between PHYs.)
    11NCNot Connect
    (This pin connected to COL pin in Rev1.0.
    this pin outputs a high-status signal it means a collision is detected.
    Processed to NC in Rev1.1.)
    12VCCSystem Power input (3.3V)

    1x12 Expansion GPIO & APP BOOT & Debug(ISP) Port (J2)

    Pin NumberSignalDescription
    1GNDSystem Ground
    2Status LED0User's depend on pin(LED)
    3Status LED1User's depend on pin(LED)
    4BOOTBOOT SW
    5U_TXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    6U_RXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    7Expansion GPIODExpansion User's depend on GPIO port
    8Expansion GPIOC:::
    9Expansion GPIOB:::
    10Expansion GPIOA:::
    11APP BOOTApplication Jump at BOOT mode
    12GNDSystem Ground

    1x5 SWD

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2SWDIOSWD(JTAG) Data I/O pin
    3SWCLKSWD(JTAG) Clock pin
    4nRESETSystem Reset signal (Active Low)[1]
    5GNDSystem Ground

    Caution) WIZ750SR-100 SWD reset pin must be active low, because it was connected to MCU directly.


    1x6 ISP

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2BOOTBOOT SW
    3U_TXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    4U_RXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    5nRESETSystem Reset signal (Active Low)1
    6GNDSystem Ground

    1. This pin connect to MCU reset pin directly↩︎

    Caution) WIZ750SR-100 ISP reset pin must be active low, because it was connected to MCU directly.


    RJ-45 Connector (BS-RB10005)

    Pin NumberPinSignal
    1R1TX+
    2R2TX-
    3R3TCT/RCT(Center tap)
    4R7RX+
    5R8RX-
    6L1+(Active LED)Anode
    7L2- (Active LED)Cathode
    8L3+(LINK LED)Anode
    9L4- (LINK LED)Cathode

    Dimension


    [1] This pin connect to MCU reset pin directly

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/getting-started-EN.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/getting-started-EN.html index c66da25b246..1541a775c16 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/getting-started-EN.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/getting-started-EN.html @@ -15,7 +15,7 @@ - + @@ -61,7 +61,7 @@ device / remote network device.

  • The next step is to connect the WIZ750SR-100 module to the target serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.


  • If there is any problem?

    Please refer to our Troubleshooting Guide!



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/getting-started-KO.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/getting-started-KO.html index df7edb0d89d..f39c724ca8a 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/getting-started-KO.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/getting-started-KO.html @@ -15,7 +15,7 @@ - + @@ -41,7 +41,7 @@ 원격지의 PC 혹은 서버 측(원격 네트워크 장비)에서 데이터 송/수신을 통해 제어 및 모니터링이 가능합니다.

    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요!



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/overview-EN.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/overview-EN.html index 0e4159d9ebf..874a7a1da0e 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/overview-EN.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/overview-EN.html @@ -15,7 +15,7 @@ - + @@ -35,7 +35,7 @@ selectable)
  • Separate Data UART and Debug UART port
  • Supports a search password
  • Configuration is possible via serial AT commands or via Configuration tool
  • Support WIZ VSP (Virtual Serial Port) program
  • Built in 10/100Mbps Ethernet ESD Protection IC
  • Built in Supervisor IC for improvements of Reset function stability
  • Compact sized design 50mm X 30mm X 12mm (Length x Width x Height)

  • Product Contents

    WIZ750SR-100 Module Series

    Ordering InformationItemQ'tyRemarks
    WIZ750SR-100WIZ750SR-100 module(TTL)1-

    WIZ750SR-100 Evaluation Board Series

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ750SR-100-EVBDeviceWIZ750SR-100 module1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::USB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable

    * It can be replaced with better components to improve the performance of the product.



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/overview-KO.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/overview-KO.html index e2f0be7dcd0..54aa7926e9c 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/overview-KO.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-100/overview-KO.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ 종류의 보드 사용이 가능합니다. (ex. WIZ750SR, WIZ750SR-100, WIZ750SR-105, WIZ750SR-110)

    해당 제품은 산업용 온도 스펙 (industrial temperature standard, -40℃ ~ 85℃)을 만족하며, WIZ750SR-100 모듈은 TTL로 동작하며 WIZ750SR-100-EVB를 사용할 경우 RS-232까지 사용 가능합니다.

    WIZ750SR-100은 이더넷 네트워크를 통해 시리얼 장치를 제어하기 위한 최적의 솔루션이 될 것입니다.


    Features


    Product Contents

    WIZ750SR-100 모듈 제품 구성

    Ordering InformationItemQ'tyRemarks
    WIZ750SR-100WIZ750SR-100 module(TTL)1-

    WIZ750SR-100 개발보드 제품 구성

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ750SR-100-EVBDeviceWIZ750SR-100 module1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::USB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable

    * 본 구성은 제품의 성능 향상을 위해 더 나은 구성품으로 대체 될 수 있습니다.



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105.html index 3ef14364832..4de38af3de5 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ750SR-105

    WIZ100SR Compatible Serial to Ethernet Module

    Figure: WIZ750SR-105 Rev. 1.0

    Documents

    • Product Overview (English)/(Korean)

      • Overview
      • Features
      • Product Contents
    • Getting Started Guide (English)/(Korean)

      • Unpacking the WIZ750SR-105
      • Prerequisites for Setup
      • Connect Your WIZ750SR-105
    • User's Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • Operation Mode
      • Network / Serial Settings
      • Support Options
    • Configuration Tool Manual (New) (English)/(Korean)

      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • Configuration Tool Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • CLI Config Tool Tutorial

      • It's used in common with WIZ750SR
      • Device Configuration for CLI
      • CLI Configuration Tutorial
    • Device Command Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • WIZ750SR-105 Commands Overview
      • Command List
      • Command Descriptions
    • Troubleshooting Guide (English)/(Korean)

      • It's used in common with WIZ750SR Series
    • Update History (English)/(Korean)

      • It's used in common with WIZ750SR Series

    Datasheet

    • Datasheet
      • WIZ750SR-105 / WIZ750SR-105-EVB
      • Hardware Specification
      • Schematic / Part list / Dimension
      • Electrical Characteristics
      • Connector Specification

    Download

    • Software Download

      • It's used in common with WIZ750SR Series
      • Firmware Binary
      • Firmware Source code
      • Configuration Tool
      • WIZ VSP(Virtual Serial Port)
      • W7500 ISP Download tool
    • Technical References

      • It's used in common with WIZ750SR Series
      • Materials Datasheets
      • See Also

    Module
    Evaluation Board

    WIZ750SR-105-EVB

    Chip

    W7500-S2E
    (Pre-programmed chip)


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/datasheet.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/datasheet.html index 498c2e35eb9..a29a46439f2 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/datasheet.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/datasheet.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ replacement for WIZ105SR.

    Serial Interface

    Pin NumberSignalDescription
    1DCDNC
    2RXDReceive Data
    3TXDTransmit Data
    4DTRNC
    5GNDSystem Ground(Signal Ground)
    6DSRNC
    7RTSRequest To Send
    8CTSClear To Send
    9RINC

    Schematic & Artwork

    WIZ750SR-105

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLAltium Download-
    ::::::PDF Download-

    Part list

    WIZ750SR-105

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download-
    ::::::PDF Download-

    Electrical Characteristics

    Operating Conditions

    SymbolParameterPinsMinTypMaxUnit
    VccOperating Voltage3.3V3.1353.33.465V
    VssGroundALL050mV
    fFCLKInternal CPU clock frequencyALL0-48MHz
    TstgStorage Temperature (max)ALL-4085
    TAAmbient operating temperatureALL-4085
    VIOI/O Signal voltage (Tolerance)ALLVss-0.33.35V
    VIHInput high voltageALL2.5V
    VILInput low voltageALL0.6V
    VOHOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL2.83V
    VOLOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL0.32V

    Flash Memory

    SymbolParameterMinUnit
    NENDSector Endurance10,000Cycles
    TDRData Retention10Years

    EEPROM

    SymbolParameterMinUnit
    NENDSector Endurance1MCycles
    TDRData Retention200Years

    Connector Specification

    6x2 Data Pin Connector (J4)

    Pin NumberSignalDescription
    1nRESETSystem Reset signal (Active Low)
    2VCCSystem Power (3.3V)
    3U_RXD0Receive Data (TTL : 3.3V)
    4VCCSystem Power (3.3V)
    5U_CTS0Clear To Send (TTL : 3.3V)
    6FAC_nRSTSystem Reset signal (Active Low)
    7U_TXD0Transmit Data (TTL : 3.3V)
    8HW_TRIGHardware Trigger signal (Active Low)
    9U_RTS0Request To Send (TTL : 3.3V)
    10NCNot Connect
    11GNDSystem Ground
    12GNDSystem Ground

    BOOT Pin (J5, J6)

    PartsPin NumberSignalDescription
    J51APP BOOTApplication Jump at BOOT mode
    :::2GNDSystem Ground
    PartsPin NumberSignalDescription
    J61BOOTSystem Ground
    :::2VCCSystem Power (3.3V)

    SWD(JTAG) Pin (J3)

    Pin NumberSignalDescription
    1VCCSystem Power (3.3V)
    2SWDIOSWD(JTAG) Data I/O pin
    3SWCLKSWD(JTAG) Clock pin
    4nRESETSystem Reset signal (Active Low)
    5GNDSystem Ground

    ISP Port & Expansion GPIO (J1, J2)

    PartsPin NumberSignalDescription
    J11VCCSystem Power (3.3V)
    :::2Expansion GPIODExpansion User's depend on GPIO port
    :::3Expansion GPIOC:::
    :::4Expansion GPIOB:::
    :::5Expansion GPIOA:::
    :::6GNDSystem Ground
    PartsPin NumberSignalDescription
    J21VCCSystem Power (3.3V)
    :::2BOOTBOOT SW
    :::3U_TXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    :::4U_RXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    :::5nRESETSystem Reset signal (Active Low)
    :::6GNDSystem Ground

    RJ-45 Connector (BS-RB10005)

    Pin NumberPinSignal
    1R1TX+
    2R2TX-
    3R3TCT/RCT(Center tap)
    4R7RX+
    5R8RX-
    6L1+(Active LED)Anode
    7L2- (Active LED)Cathode
    8L3+(LINK LED)Anode
    9L4- (LINK LED)Cathode

    Dimension

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/getting-started-EN.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/getting-started-EN.html index f85ea84372e..b1c3eb96ed1 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/getting-started-EN.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/getting-started-EN.html @@ -15,7 +15,7 @@ - + @@ -64,7 +64,7 @@ serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.

    If there is any problem?
    Please refer to our Troubleshooting Guide!



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/getting-started-KO.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/getting-started-KO.html index 452806379e4..c27c775233e 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/getting-started-KO.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/getting-started-KO.html @@ -15,7 +15,7 @@ - + @@ -42,7 +42,7 @@ 가능합니다.

    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요!



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/overview-EN.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/overview-EN.html index 15732512d09..e7862374f63 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/overview-EN.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/overview-EN.html @@ -15,7 +15,7 @@ - + @@ -35,7 +35,7 @@ via Ethernet network.


    Features


    Product Contents

    WIZ750SR-105 Module Series

    Ordering InformationItemQ'tyRemarks
    WIZ750SR-105WIZ750SR-105 module(TTL)1-

    WIZ750SR-105 Evaluation Board Series

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ105SR-EVBDeviceWIZ750SR-105 module1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::24AWG CAT5e UTP cable1LAN cable

    * It can be replaced with better components to improve the performance of the product.



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/overview-KO.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/overview-KO.html index 9f951967c60..d44a091a054 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/overview-KO.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-105/overview-KO.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ 종류의 보드 사용이 가능합니다. (ex. WIZ750SR, WIZ750SR-100, WIZ750SR-105, WIZ750SR-110)

    해당 제품은 산업용 온도 스펙 (industrial temperature standard, -40℃ ~ 85℃)을 만족하며, WIZ750SR-105 모듈은 TTL로 동작하며 WIZ105SR-EVB를 사용할 경우 RS-232까지 사용 가능합니다.

    WIZ750SR-105은 이더넷 네트워크를 통해 시리얼 장치를 제어하기 위한 최적의 솔루션이 될 것입니다.


    Features


    Product Contents

    WIZ750SR-105 모듈 제품 구성

    Ordering InformationItemQ'tyRemarks
    WIZ750SR-105WIZ750SR-105 module(TTL)1-

    WIZ750SR-105 개발보드 제품 구성

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ105SR-EVBDeviceWIZ750SR-105 module1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::24AWG CAT5e UTP cable1LAN cable

    * 본 구성은 제품의 성능 향상을 위해 더 나은 구성품으로 대체 될 수 있습니다.

    1. 하드웨어 핀 호환

    2. 펌웨어, AT command, Configuration tool 기능 혼용



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110.html index 9732edb6ec9..b7714774073 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ750SR-110

    WIZ100SR Compatible Serial to Ethernet Module

    Figure: WIZ750SR-110 Rev. 1.0

    Documents

    • Product Overview (English)/(Korean)

      • Overview
      • Features
      • Product Contents
    • Getting Started Guide (English)/(Korean)

      • Unpacking the WIZ750SR-110
      • Prerequisites for Setup
      • Connect Your WIZ750SR-110
    • User's Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • Operation Mode
      • Network / Serial Settings
      • Support Options
    • Configuration Tool Manual (New) (English)/(Korean)

      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • Configuration Tool Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • CLI Config Tool Tutorial

      • It's used in common with WIZ750SR
      • Device Configuration for CLI
      • CLI Configuration Tutorial
    • Device Command Manual (English)/(Korean)

      • It's used in common with WIZ750SR
      • WIZ750SR-110 Commands Overview
      • Command List
      • Command Descriptions
    • Troubleshooting Guide (English)/(Korean)

      • It's used in common with WIZ750SR Series
    • Update History (English)/(Korean)

      • It's used in common with WIZ750SR Series

    Datasheet

    • Datasheet
      • WIZ750SR-110 / WIZ750SR-110-EVB
      • Hardware Specification
      • Schematic / Part list / Dimension
      • Electrical Characteristics
      • Connector Specification

    Download

    • Software Download

      • It's used in common with WIZ750SR Series
      • Firmware Binary
      • Firmware Source code
      • Configuration Tool
      • WIZ VSP(Virtual Serial Port)
      • W7500 ISP Download tool
    • Technical References

      • It's used in common with WIZ750SR Series
      • Materials Datasheets
      • See Also

    Module
    Chip

    W7500-S2E
    (Pre-programmed chip)


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/datasheet.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/datasheet.html index 9d6ea21a79a..f44f6c94528 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/datasheet.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/datasheet.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ Firmware code)
  • Therefore, DCD and RI functions must be created.

  • BOOT Pin (J4, J5)

    PartsPin NumberSignalDescription
    J41APP BOOTApplication Jump at BOOT mode
    :::2GNDSystem Ground
    PartsPin NumberSignalDescription
    J51BOOTSystem Ground
    :::2VCCSystem Power (3.3V)

    SWD(JTAG) Pin (J3)

    Pin NumberSignalDescription
    1VCCSystem Power (3.3V)
    2SWDIOSWD(JTAG) Data I/O pin
    3SWCLKSWD(JTAG) Clock pin
    4nRESETSystem Reset signal (Active Low)
    5GNDSystem Ground

    ISP Port & Expansion GPIO (J1, J2)

    PartsPin NumberSignalDescription
    J11VCCSystem Power (3.3V)
    :::2Expansion GPIODExpansion User's depend on GPIO port
    :::3Expansion GPIOC:::
    :::4Expansion GPIOB:::
    :::5Expansion GPIOA:::
    :::6GNDSystem Ground
    PartsPin NumberSignalDescription
    J21VCCSystem Power (3.3V)
    :::2BOOTBOOT SW
    :::3U_TXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    :::4U_RXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    :::5nRESETSystem Reset signal (Active Low)
    :::6GNDSystem Ground

    RJ-45 Connector (BS-RB10005)

    Pin NumberPinSignal
    1R1TX+
    2R2TX-
    3R3TCT/RCT(Center tap)
    4R7RX+
    5R8RX-
    6L1+(Active LED)Anode
    7L2- (Active LED)Cathode
    8L3+(LINK LED)Anode
    9L4- (LINK LED)Cathode

    Dimension

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/getting-started-EN.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/getting-started-EN.html index 2c659b27e99..720067039a3 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/getting-started-EN.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/getting-started-EN.html @@ -15,7 +15,7 @@ - + @@ -57,7 +57,7 @@ serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.

    If there is any problem?
    Please refer to our Troubleshooting guide!



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/getting-started-KO.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/getting-started-KO.html index 61e42621190..fda616d8145 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/getting-started-KO.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/getting-started-KO.html @@ -15,7 +15,7 @@ - + @@ -38,7 +38,7 @@ 원격지의 PC 혹은 서버 측(원격 네트워크 장비)에서 데이터 송/수신을 통해 제어 및 모니터링이 가능합니다.

    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요!



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/overview-EN.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/overview-EN.html index 843c8ae0499..2d30def3161 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/overview-EN.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/overview-EN.html @@ -15,7 +15,7 @@ - + @@ -35,7 +35,7 @@ selectable)
  • Separate Data UART and Debug UART port
  • Supports a search password
  • Configuration is possible via serial AT commands or via Configuration tool
  • Support WIZ VSP (Virtual Serial Port) program
  • Built in 10/100Mbps Ethernet ESD Protection IC
  • Built in Supervisor IC for improvements of Reset function stability
  • PCB Board design 63mm X 45mm (Length x Width)
  • Compact sized desig 75mm X 45mm X 18mm (Length x Width x Height)

  • Product Contents

    WIZ750SR-110 Module Series

    Ordering InformationItemQ'tyRemarks
    WIZ750SR-110WIZ750SR-110 module(RS-232C)1-

    WIZ750SR-110 Evaluation Board Series

    Ordering InformationCategoryItemQ'tyRemarks
    PakageDeviceWIZ750SR-110 module1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::24AWG CAT5e UTP cable1LAN cable

    * It can be replaced with better components to improve the performance of the product.



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/overview-KO.html b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/overview-KO.html index fabccee497e..f6b55f23b55 100644 --- a/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/overview-KO.html +++ b/Product/S2E-Module/WIZ750SR-1xx-Series/WIZ750SR-110/overview-KO.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ 종류의 보드 사용이 가능합니다. (ex. WIZ750SR, WIZ750SR-100, WIZ750SR-105, WIZ750SR-110)

    해당 제품은 산업용 온도 스펙 (industrial temperature standard, -40℃ ~ 85℃)을 만족하며, WIZ750SR-110 모듈은 RS-232C로 동작합니다.

    WIZ750SR-110은 이더넷 네트워크를 통해 시리얼 장치를 제어하기 위한 최적의 솔루션이 될 것입니다.


    Features


    Product Contents

    WIZ750SR-110 모듈 제품 구성

    Ordering InformationItemQ'tyRemarks
    WIZ750SR-110WIZ750SR-110 module(RS-232C)1-

    WIZ750SR-110 개발보드 제품 구성

    Ordering InformationCategoryItemQ'tyRemarks
    PakageDeviceWIZ750SR-110 module1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::24AWG CAT5e UTP cable1LAN cable

    * 본 구성은 제품의 성능 향상을 위해 더 나은 구성품으로 대체 될 수 있습니다.



    WIZ750SR series Common Documents


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR.html b/Product/S2E-Module/WIZ750SR.html index ee0b2e76257..e3bf8dea47d 100644 --- a/Product/S2E-Module/WIZ750SR.html +++ b/Product/S2E-Module/WIZ750SR.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ WIZ750SR-RS232
    WIZ750SR-RS485

    Evaluation Board

    WIZ750SR-EVB

    Chip

    W7500-S2E
    (Pre-programmed chip)


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial.html b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial.html index 6eb80482fd5..fa71719d2f4 100644 --- a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial.html +++ b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial.html @@ -15,14 +15,14 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/file-options.html b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/file-options.html index bb472457567..4643b367ed4 100644 --- a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/file-options.html +++ b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/file-options.html @@ -15,7 +15,7 @@ - + @@ -33,7 +33,7 @@ situation.


    2. Setfile option

    You can save the settings you want to keep to a file and set them with the --setfile option.
    It can be used as the macro.

    To use this option, you have to make command set. (command + parameter)

    List up and write the command set info you want to set a file.

    The basic command format is as follows.

    for single device,

    python wizconfig.py -d 00:08:DC:XX:XX:XX --setfile [file_name]

    for multi devices,

    python wizconfig.py -a --setfile [file_name]

    Example 1: Setfile

    There is an example file in the project directory, 'set_cmd.txt'.

    set_cmd.txt

    IM0
    LI192.168.0.25
    SM255.255.255.0
    GW192.168.0.1
    LP5000
    BR12

    * From top to bottom: local IP, Subnet mask, Gateway, Local port, Baudrate and set as follows.

    * Single device

    python wizconfig.py -d 00:08:DC:53:AE:93 --setfile set_cmd.txt

    * Check:

    python wizconfig.py -d 00:08:DC:53:AE:93 --getfile set_cmd.txt

    * Multi devices

    python wizconfig.py -a --setfile set_cmd.txt

    * Check:

    python wizconfig.py -a --getfile set_cmd.txt

    The setfile option can be useful when you want to save and use multiple options as shown above.

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/how-to-use-cli-config-tool.html b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/how-to-use-cli-config-tool.html index 389caa3000a..c6ff9f275ae 100644 --- a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/how-to-use-cli-config-tool.html +++ b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/how-to-use-cli-config-tool.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ searched devices is recorded in mac_list.txt file.

    If new device is found, it is displayed as 'New Device', and this is determined by whether it is recorded in mac_list.txt.

    If you search for the same device again, you can see that 'New device' is not displayed.

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/multi-device-configuration.html b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/multi-device-configuration.html index 65e6c5fa0a9..253d8c521eb 100644 --- a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/multi-device-configuration.html +++ b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/multi-device-configuration.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ each device.
    Firmware upload success about multiple devices.

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/overview-environment.html b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/overview-environment.html index 881ca8bbf83..dfadf1e4479 100644 --- a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/overview-environment.html +++ b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/overview-environment.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ It works on python 3.6 or later.

    Supported Devices

    1-Port S2E Module Products

    2-Port S2E Module Products


    Environment

    Windows

    Python Install

    This Tool works on python version 3.6 or later.
    If you don't have Python, refer to Python download page

    If python already installed, check the version as follow. (on cmd.exe)

    >python --version
    Python 3.6.X

    Install process

    Check 'Add Python 3.6 to PATH' option to set environment variables of windows.


    Linux

    Coming soon.

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/single-device-configuration.html b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/single-device-configuration.html index da4bdebdfe0..bcdf64dd639 100644 --- a/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/single-device-configuration.html +++ b/Product/S2E-Module/WIZ750SR/CLI-Config-Tool-Tutorial/single-device-configuration.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ So first, use -m/--multiset option for set IP address to the same network-band as host.

    If your host IP address is '192.168.50.80', you can set like this.

    python wizconfig.py -m 192.168.50.100

    The parameter can be set to the random IP that not used.



    Step 3: Firmware update

    If the firmware file is in the project directory, just enter the file name.
    Otherwise, enter the full path.

    python wizconfig.py -d 00:08:DC:53:AE:B7 -u W7500x_S2E_App.bin

    (skip)

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/command-manual-EN.html b/Product/S2E-Module/WIZ750SR/command-manual-EN.html index 32dced969a1..9615a7440e4 100644 --- a/Product/S2E-Module/WIZ750SR/command-manual-EN.html +++ b/Product/S2E-Module/WIZ750SR/command-manual-EN.html @@ -15,7 +15,7 @@ - + @@ -118,7 +118,7 @@ 0 ~ 4095)
  • Parameter / Return Value:
  • I/O SettingParameter /
    Return value
    Remarks
    Digital in/out0Low
    :::1High
    Analog in0 ~ 409512-bit ADC resolution

    Status I/O


    SC


    Parameter /
    Return value
    MeaningRemarks
    0PHY link statusDefault
    1DTRData Terminal Ready
    (RS-232/TTL only)
    Parameter /
    Return value
    MeaningRemarks
    0TCP connection statusDefault
    1DSRData Set Ready
    (RS-232/TTL only)

    S0


    Return valueMeaningRemarks
    0PHY link up-
    1PHY link down-
    Return valueMeaningRemarks
    0The device is not ready-
    1The device ready for communications-

    S1


    Return valueMeaningRemarks
    0TCP connection established-
    1TCP disconnected-
    Return valueMeaningRemarks
    0The peer device is not ready-
    1The peer device ready for communications-

    Error Code

    If you enter an incorrect command set, an Error code is returned.

    Error MessageDescriptionExample
    ERIGNOREDRead Only CommandMC111
    ERNOCOMMANDUndefined CommandIP
    ERINVALIDPARAMWrong ParameterLI22
    ERNOTAVAILWrite Only and No ParameterSV00


    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/command-manual-KO.html b/Product/S2E-Module/WIZ750SR/command-manual-KO.html index 56482e78703..268efd7e110 100644 --- a/Product/S2E-Module/WIZ750SR/command-manual-KO.html +++ b/Product/S2E-Module/WIZ750SR/command-manual-KO.html @@ -15,7 +15,7 @@ - + @@ -67,7 +67,7 @@ 확인 할 수 있습니다.
  • 공장 초기화 수행 시, RT 커맨드를 수행 한 것과 동일하게 제품을 재시작 합니다.
  • User I/O Settings


    CA - CD


    Parameter /
    Return value
    I/O SettingRemarks
    0Digital input-
    1Digital output-
    2Analog input-

    User I/O Status / Value


    GA - GD


    I/O SettingParameter /
    Return value
    Remarks
    Digital in/out0Low
    :::1High
    Analog in0 ~ 409512-bit ADC resolution

    Status I/O


    SC


    Parameter /
    Return value
    MeaningRemarks
    0PHY link statusDefault
    1DTRData Terminal Ready
    (RS-232/TTL only)
    Parameter /
    Return value
    MeaningRemarks
    0TCP connection statusDefault
    1DSRData Set Ready
    (RS-232/TTL only)

    S0


    Return valueMeaningRemarks
    0PHY link up-
    1PHY link down-
    Return valueMeaningRemarks
    0통신 불가-
    1해당 장비의 통신 준비가 완료 됨-

    S1


    Return valueMeaningRemarks
    0TCP 연결 성립 상태-
    1TCP 통신이 연결되어 있지 않음-
    Return valueMeaningRemarks
    0통신 불가-
    1상대 장비의 통신 준비가 완료 됨-

    Error Code

    잘못된 Command set을 입력할 경우 Error 코드가 반환됩니다.

    Error MessageDescriptionExample
    ERIGNOREDRead Only, Write 할수 없는 CommandMC111
    ERNOCOMMAND정의 되지 않은 Command 를 입력IP
    ERINVALIDPARAMParameter를 잘못 입력LI22
    ERNOTAVAILWrite Only, Parameter가 없는 Command에 Parameter입력SV00


    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/configuration-tool-manual-EN.html b/Product/S2E-Module/WIZ750SR/configuration-tool-manual-EN.html index 49fd0f89eed..b4b6a8dd97d 100644 --- a/Product/S2E-Module/WIZ750SR/configuration-tool-manual-EN.html +++ b/Product/S2E-Module/WIZ750SR/configuration-tool-manual-EN.html @@ -15,7 +15,7 @@ - + @@ -99,7 +99,7 @@ the remote device.

    6. Progress Bar

    Device Search
    Firmware Upload
    Figures: Progress Bar

    If there is any problem?
    Please refer to our Troubleshooting Guide!



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/configuration-tool-manual-KO.html b/Product/S2E-Module/WIZ750SR/configuration-tool-manual-KO.html index 92065831ecf..0e7966fcb16 100644 --- a/Product/S2E-Module/WIZ750SR/configuration-tool-manual-KO.html +++ b/Product/S2E-Module/WIZ750SR/configuration-tool-manual-KO.html @@ -15,7 +15,7 @@ - + @@ -62,7 +62,7 @@ 연결을 종료 할 수 있도록 설정하는 것이 좋습니다.

    6. Progress Bar

    Device Search
    Firmware Upload
    Figures: Progress Bar

    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요!



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/configuration-tool-manual-new-EN.html b/Product/S2E-Module/WIZ750SR/configuration-tool-manual-new-EN.html index e07f21d3cb1..545fd7f9649 100644 --- a/Product/S2E-Module/WIZ750SR/configuration-tool-manual-new-EN.html +++ b/Product/S2E-Module/WIZ750SR/configuration-tool-manual-new-EN.html @@ -15,7 +15,7 @@ - + @@ -99,7 +99,7 @@ packets

    If there is any problem?
    Please refer to our Troubleshooting Guide!



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/configuration-tool-manual-new-KO.html b/Product/S2E-Module/WIZ750SR/configuration-tool-manual-new-KO.html index 7fab5bb80eb..ecaeaa3cc6d 100644 --- a/Product/S2E-Module/WIZ750SR/configuration-tool-manual-new-KO.html +++ b/Product/S2E-Module/WIZ750SR/configuration-tool-manual-new-KO.html @@ -15,7 +15,7 @@ - + @@ -37,7 +37,7 @@ Character => Size => Timer


    1. 시리얼 데이터의 수신 시 '지정 시간', '지정 크기', '특정 문자'를 기준으로 데이터를 모아 전송 할 수 있습니다.

    6) Timer interval


    7) TCP Keep-alive interval


    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요!



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/datasheet.html b/Product/S2E-Module/WIZ750SR/datasheet.html index 343d2516a14..6886598c65b 100644 --- a/Product/S2E-Module/WIZ750SR/datasheet.html +++ b/Product/S2E-Module/WIZ750SR/datasheet.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ750SR Datasheet

    Hardware Specification

    Product Spec Table

    CategoryDescription
    MCUARM
    Cortex-M0
    Core
    W7500P
    PHY Included
    48Mhz maximum frequency
    Internal 8Mhz RC Oscillator
    Flash: 128KB
    Large flexible-size SRAM buffer for various User Application
    - Min 16KB available if full 32KB socket buffer used
    - Max 48KB available if no socket buffer used
    ROM for boot code: 6 KB
    :::Hardwired
    TCP/IP
    Core
    8 independent Sockets
    SRAM for socket: 32KB
    MII (Medium-Independent Interface)
    TCP/IP Protocols: TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
    :::PHYIC+(IP101G) PHY
    Auto negotiation (Full-duplex and Half-duplex)
    Auto MDI/MDIX
    SerialInterfaceWIZ750SR-TTL: TTL Version
    WIZ750SR-232: 232 Version
    WIZ750SR-422/485: 422/485 Version
    :::SignalTXD, RXD, RTS, CTS, GND
    :::ParametersParity: None, Odd, Even
    Data bits: 7, 8 bit
    Flow control: None, RTS / CTS, XON / XOFF
    :::SpeedUp to 230Kbps
    Dimension45mm x 30mm ( PCB board size )
    48mm x 30mm x 18mm ( Include part size )
    Connector type2.54mm Pitch 6x2 Pin-header(Data Line)
    2.54mm Pitch 1x6 Pin-header(ISP)
    2.54mm Pitch 1x6 Pin-header(Expansion GPIO & app_boot)
    1.27mm Pitch 1x5 Pin-header (JTAG)
    Input VoltageDC 3.3V
    Temperature0℃ ~ 70℃ (Operation), -40℃ ~ 85℃ (Storage range)

    Callout

    Rev1.0/Rev1.1

    TOPBOTTOM

    Rev1.2

    TOPBOTTOM
    • WIZ750SR Rev1.2 has erased Watchdog IC and J5 connector and added POR(MIC811SUY) IC for stable operation.

    WIZ750SR Pinout

    Rev1.1Rev1.2

    Product Comparison Table

    SpecificationWIZ750SR-TTLWIZ750SR-232WIZ750SR-485
    (RS-422)
    WIZ750SR-485
    (RS-485)
    Operation modeSingle-EndedSingle-EndedDifferential
    Communication MethodFull DuplexFull DuplexFull DuplexHalf Duplex
    TransceiverN/A (Resistor)RS-232CRS-422/485RS-422/485

    WIZ750SR-TTL

    • Feature
      • This Product operates with WIZ750SR-TTL/232 EVB Board.
      • Caution) This product doesn't have any RS-232C & RS-422/485 Transceivers on it.

    WIZ750SR-232

    • Feature
      • This Product operates with WIZ750SR-TTL/232 EVB Board.

    WIZ750SR-485

    • Feature
      • This Product operates with WIZ750SR-422/485 EVB Board.

    WIZ750SR-EVB

    • WIZ750SR Developer Board.
    • USB to UART chip, CP2104.
    • RESET Tact SW.
    • BOOT0 Slide SW.
    • H/W Trig Slide SW.
    • Expansion GPIO TEST (Digital / Analog)
    • Micro USB.
    • WIZ750SR-EVB (TTL/232)
      • RS-232C Connector, D-SUB9-MALE.
    • WIZ750SR-EVB (422/485)
      • RS-422/485 Connector, ECH381R.

    TTL / RS232 Version

    <WIZ750SR EVB TTL/RS232 Call Out>
    <WIZ750SR EVB TTL/RS232 Block Diagram>

    RS422 / RS485 Version

    <WIZ750SR EVB RS422/485 Call Out>
    <WIZ750SR EVB RS422/485 Block Diagram>

    Schematic

    WIZ750SR

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTL
    RS-232
    RS-485
    Altium Download-
    ::::::PDF Download-
    1.1:::Altium Download-
    ::::::PDF Download:::
    1.2:::Altium DownloadLatest version H/W
    ::::::PDF Download:::

    WIZ750SR-EVB

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTL
    RS-232
    Altium DownloadLatest version H/W
    ::::::PDF Download:::
    :::RS-422
    RS-485
    Altium Download:::
    ::::::PDF Download:::

    Part list

    WIZ750SR

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel Download-
    ::::::PDF Download:::
    :::RS-232Excel Download:::
    ::::::PDF Download:::
    :::RS-485Excel Download:::
    ::::::PDF Download:::
    1.1TTLExcel Download-
    ::::::PDF Download:::
    :::RS-232Excel Download:::
    ::::::PDF Download:::
    :::RS-485Excel Download:::
    ::::::PDF Download:::
    1.2TTLExcel DownloadLatest version H/W
    ::::::PDF Download:::
    :::RS-232Excel Download:::
    ::::::PDF Download:::
    :::RS-485Excel Download:::
    ::::::PDF Download:::

    WIZ750SR-EVB

    H/W versionTypeFiletypeDownload LinkRemarks
    1.0TTLExcel DownloadBOM version 1.0
    ::::::PDF Download:::
    :::RS-232Excel Download:::
    ::::::PDF Download:::
    :::RS-485Excel Download:::
    ::::::PDF Download:::
    1.0TTLExcel DownloadBOM version 1.1
    Latest version H/W
    ::::::PDF Download:::
    :::RS-232Excel Download:::
    ::::::PDF Download:::
    :::RS-485Excel Download:::
    ::::::PDF Download:::

    Electrical Characteristics

    Operating Conditions

    SymbolParameterPinsMinTypMaxUnit
    VccOperating Voltage3.3V3.1353.33.465V
    VssGroundALL050mV
    fFCLKInternal CPU clock frequencyALL0-48MHz
    TstgStorage Temperature (max)ALL-4085
    TAAmbient operating temperatureALL-4085
    VIOI/O Signal voltage (Tolerance)ALLVss-0.33.35V
    VIHInput high voltageALL2.5V
    VILInput low voltageALL0.6V
    VOHOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL2.83V
    VOLOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL0.32V

    Flash Memory

    SymbolParameterMinUnit
    NENDSector Endurance10,000Cycles
    TDRData Retention10Years

    EEPROM

    SymbolParameterMinUnit
    NENDSector Endurance1MCycles
    TDRData Retention200Years

    Ethernet Power Dissipation

    WIZ750SR-TTL

    ConditionMinTypMaxTolUnit
    100M Link-67-±3mA
    10M Link-52-mA
    Unlink (Auto-negotiation mode)455057±3mA
    100M Transmitting-74-±3mA
    10M Transmitting-62-mA

    WIZ750SR-RS232

    ConditionMinTypMaxTolUnit
    100M Link-72-±3mA
    10M Link-57-mA
    Unlink (Auto-negotiation mode)465461±3mA
    100M Transmitting-79-±3mA
    10M Transmitting-61-mA

    WIZ750SR-RS422/485

    ConditionMinTypMaxTolUnit
    100M Link-95-±3mA
    10M Link-80-mA
    Unlink (Auto-negotiation mode)747985±3mA
    100M Transmitting-102-±3mA
    10M Transmitting-83-mA

    WIZ750SR Connector Specification

    6x2 Data Pin Connector

    TTL/RS-232

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2VCCSystem Power input (3.3V)
    3U_RXD0Receive Data (TTL : 3.3V)
    4nRESETSystem Reset signal (Active Low)
    5U_RTS0Request To Send (TTL : 3.3V)
    6U_DTR0
    PHY LINK
    Data Terminal Ready (TTL : 3.3V)
    PHY Link status check signal
    7U_TXD0Transmit Data (TTL : 3.3V)
    8U_DSR0
    TCP CON
    HW_TRIG
    Data Set Ready (TTL : 3.3V)
    TCP Connection check signal
    Hardware Trigger signal (Active Low)
    9U_CTS0Clear To Send (TTL : 3.3V)
    10Not useThis pin use to RS-422/485 mode
    11GNDSystem Ground
    12GNDSystem Ground

    RS-422/485

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2VCCSystem Power input (3.3V)
    3422_RXD+
    485+
    Differential Data +
    RS-485+
    4nRESETSystem Reset signal (Active Low)
    5422_RXD-
    485-
    Differential Data -
    RS-485-
    6U_DTR0
    PHY LINK
    Data Terminal Ready (TTL : 3.3V)
    PHY Link status check signal
    7422_TXD+Differential Data +
    8U_DSR0
    TCP CON
    HW_TRIG
    Data Set Ready (TTL : 3.3V)
    TCP Connection check signal
    Hardware Trigger signal (Active Low)
    9422_TXD-Differential Data -
    10485_SELWIZ750SR-485, 485/422 MODE Select pin
    11GNDSystem Ground
    12GNDSystem Ground

    1x6 ISP Connector

    Pin NumberSignalDescription
    1VCCSystem Power input (3.3V)
    2BOOTBOOT mode (Active High)
    3U_TXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    4U_RXD2Simple UART2(Debug port)
    ISP mode firmware downloader port
    5nRESETSystem Reset signal (Active Low)
    6GNDSystem Ground

    1x2 Supervisor Jumper / 1x6 Expansion GPIO & APP BOOT

    Rev1.1Rev1.2
    Pin NumberSignalDescription
    1WDT_nRST(input)It only has rev1.0/1.1
    2W7500P_RSTN(output):::
    Pin NumberSignalDescription
    1Expansion GPIODExpansion User's depend on GPIO port
    2Expansion GPIOC:::
    3Expansion GPIOB:::
    4Expansion GPIOA:::
    5APP BOOTApplication Jump at BOOT mode
    6GNDSystem Ground

    RJ-45 Connector (BS-RB10005)

    Pin NumberPinSignal
    1R1TX+
    2R2TX-
    3R3TCT/RCT(Center tap)
    4R7RX+
    5R8RX-
    6L1+(Active LED)Anode
    7L2- (Active LED)Cathode
    8L3+(LINK LED)Anode
    9L4- (LINK LED)Cathode

    WIZ750SR Dimension

    • The board size of the WIZ750SR Rev1.1 is the same as Rev1.0.

    • WIZ750SR Dimension :

      • 45mm x 30mm ( PCB board size )
      • 48mm x 30mm x 18mm ( Included part size )
    Rev1.0/1.1Rev1.2
    • WIZ750SR-EVB (TTL/RS232) Rev1.0 Dimension :
      • 83mm x 65mm ( PCB board size )
      • 83mm x 65mm x 18mm ( Included part size )

    • WIZ750SR-EVB (RS422/485) Rev1.0 Dimension :
      • 73mm x 65mm ( PCB board size )
      • 73mm x 65mm x 18mm ( Included part size )


    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/developers-guide-EN.html b/Product/S2E-Module/WIZ750SR/developers-guide-EN.html index 3b1b0530d6b..9c01880d034 100644 --- a/Product/S2E-Module/WIZ750SR/developers-guide-EN.html +++ b/Product/S2E-Module/WIZ750SR/developers-guide-EN.html @@ -15,7 +15,7 @@ - + @@ -65,7 +65,7 @@ with WIZ750SR)

    4. Press the 'Write MAC' button

    5. Done


    If there is any problem?
    Please refer to our Troubleshooting Guide


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/developers-guide-KO.html b/Product/S2E-Module/WIZ750SR/developers-guide-KO.html index 209413aec9c..879034b7c41 100644 --- a/Product/S2E-Module/WIZ750SR/developers-guide-KO.html +++ b/Product/S2E-Module/WIZ750SR/developers-guide-KO.html @@ -15,7 +15,7 @@ - + @@ -49,7 +49,7 @@ page

    1. WIZ750SR을 Normal 모드로 전환

    2. WizMACTool 프로그램 실행

    3. 아래와 같이 프로그램 설정

    4. 'Write MAC' 버튼을 눌러 입력

    5. 완료


    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/download.html b/Product/S2E-Module/WIZ750SR/download.html index 0edd61f2a12..c19fc672f20 100644 --- a/Product/S2E-Module/WIZ750SR/download.html +++ b/Product/S2E-Module/WIZ750SR/download.html @@ -15,7 +15,7 @@ - + @@ -48,7 +48,7 @@ Download the latest version https://github.com/Wiznet/WIZnet-S2E-Tool-GUI/releases

    GitHub Repository https://github.com/Wiznet/WIZnet-S2E-Tool-GUI


    W7500(P) ISP Tool

    Go to ISP tool manual & Program download


    WIZ VSP

    Go to WIZ VSP Guide page



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/education-data.html b/Product/S2E-Module/WIZ750SR/education-data.html index 1df098e1141..dcdd9c4011a 100644 --- a/Product/S2E-Module/WIZ750SR/education-data.html +++ b/Product/S2E-Module/WIZ750SR/education-data.html @@ -15,14 +15,14 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/getting-started-EN.html b/Product/S2E-Module/WIZ750SR/getting-started-EN.html index fa0cf9ac82e..da092da3839 100644 --- a/Product/S2E-Module/WIZ750SR/getting-started-EN.html +++ b/Product/S2E-Module/WIZ750SR/getting-started-EN.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ application boot pin / GND)

    Prerequisites for Setup

    Software

    Hardware


    Connect Your WIZ750SR

    WIZ750SR Factory Settings

    Network SettingsLocalIP address192.168.11.2-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::DNS server8.8.8.8Google Public DNS
    ::::::Port number5000-
    :::RemoteIP address192.168.11.3-
    ::::::Port number5000-
    Serial Port SettingsData UART115200-8-N-1 / Flow Control: None-
    :::Debug UART115200-8-N-1 / Flow Control: NoneFixed
    User's I/O SettingsUserIO AAnalog / InputRead only
    :::UserIO BDigital / InputRead only
    :::UserIO CDigital / OutputRead / Write
    :::UserIO DDigital / OutputRead / Write

    Double check that the WIZ750SR and the PC, or laptop you are using to set up WIZ750SR with are both on the same Ethernet network.

    Example: PC Network Settings

    * When the WIZ750SR's settings are factory default,

    Network SettingsPC or laptop
    (= Remote)
    IP address192.168.11.3-
    ::::::Gateway address192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::Port number5000-

    Connecting Steps

    The RS-232/TTL version of WIZ750SR-EVB is designed to use the DB9 connector to connect with the user’s serial device. Therefore, it is recommended to have all Ethernet and serial ports connected to the PC when testing. If the PC does not have a serial port, please purchase a RS-232 to USB converter separately.

    Step 1: Plug in

    Connect the WIZ750SR module to evaluation board and also the cable as shown in the picture below.

    Figure: Combining WIZ750SR module and EVB
    Figure: WIZ750SR-EVB side view

    Step 2: Power on

    Connect the 5V power adaptor or USB cable to the evaluation board and turn on the power switch.

    Open the configuration tool and click the search button. If the board is turned on and connected to the same network, the MAC address or settings of the WIZ750SR module can be checked using the configuration tool.

    The new WIZ750SR configuration tool can be downloaded from Github below.

    Figure: WIZnet Configuration Tool

    Step 4: Set up your WIZ750SR

    Change the settings accordingly to the customer’s environment. The test shown in this document is based on factory setting.

    Step 5: Connect

    Connect the PC as the TCP client of the user’s serial device for data communication testing. In order to do this, the serial terminal program / TCP client terminal program must be opened on the PC. The serial terminal program and TCP client program must be set as below.

    The COM port for serial terminal program connection can be checked as below.

    Figure: Device Manager

    Step 6: Verify

    The basic data communication of the WIZ750SR can be verified as below.

    Step 7: Done

    Now you’re ready to use the WIZ750SR!


    If there is any problem?
    Please refer to our Troubleshooting Guide!



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/getting-started-KO.html b/Product/S2E-Module/WIZ750SR/getting-started-KO.html index 669c14ae189..e16baf17ba0 100644 --- a/Product/S2E-Module/WIZ750SR/getting-started-KO.html +++ b/Product/S2E-Module/WIZ750SR/getting-started-KO.html @@ -15,7 +15,7 @@ - + @@ -30,7 +30,7 @@ 노트북(laptop)은 동일한 이더넷 네트워크 대역에 위치하여야 서로 통신이 가능합니다.

    Example: PC Network Settings

    * WIZ750SR의 설정이 공장 초기화 값일 때(출고 시), PC의 네트워크 정보 설정 예

    네트워크 설정PC or laptop
    (= 목적지)
    IP 주소192.168.11.3-
    ::::::Gateway 주소192.168.11.1-
    ::::::Subnet mask255.255.255.0-
    ::::::Port 번호5000-

    Connecting Steps

    WIZ750SR-EVB의 RS-232/TTL 버전DB9 커넥터를 이용하여 사용자 시리얼 장치와 연결되도록 구성되어 있습니다. 따라서 PC를 이용한 초기 제품 테스트의 경우, 이더넷 및 시리얼 포트를 모두 PC와 연결하여 테스트 하도록 가이드 하고 있습니다. 만약 PC에 시리얼 포트가 없는 경우는 시중에 판매 중인 RS-232 to USB 컨버터(*별매)를 활용하시기 바랍니다.

    Step 1: Plug in

    WIZ750SR 모듈과 개발보드를 아래 그림과 같이 결합한 후, 박스에 동봉된 케이블을 다음과 같이 연결합니다.

    Figure: WIZ750SR 모듈과 개발보드 결합
    Figure: WIZ750SR-EVB 측면부

    Step 2: Power on

    박스에 동봉된 5V 전원 어댑터나 USB 케이블을 개발보드에 연결한 후 전원 스위치를 ON으로 변경합니다.

    PC의 Configuration tool을 실행하여 상단 Search 버튼을 클릭합니다. 보드에 전원이 인가되고 동일한 네트워크에 연결되어 동작 중인 경우 WIZ750SR 모듈의 MAC 주소와 설정 값을 tool에서 확인 할 수 있습니다.

    새 Configuration tool은 아래 Github 링크를 통해 다운로드 가능합니다.

    Figure: WIZnet Configuration Tool

    Step 4: Set up your WIZ750SR

    사용자 환경에 맞춰 제품의 설정 값을 변경합니다. 본 Step에서는 제품의 공장 초기화 설정을 기반으로 초기 테스트를 수행합니다.

    Step 5: Connect

    PC를 사용자 시리얼 장치 및 TCP 클라이언트로 삼아 데이터 통신을 테스트하기 위한 연결을 수행합니다. 이를 위해 PC에서 시리얼 터미널 프로그램 및 TCP 클라이언트 터미널 프로그램이 실행 되어야 합니다. 공장 초기값 기준으로 PC와 장치를 연결하기 위해 각각 프로그램은 다음과 같이 설정 후 연결하면 됩니다.

    시리얼 터미널 프로그램을 연결하기 위한 COM 포트는 Windows 제어판 > 장치 관리자에서 확인 할 수 있습니다.

    Figure: Device Manager

    Step 6: Verify

    아래와 같은 데이터 통신 과정이 올바르게 수행되면, WIZ750SR 제품의 기본적인 데이터 전송 기능 검증이 완료됩니다.

    Step 7: Done

    이제 WIZ750SR 제품을 활용할 준비가 완료되었습니다!


    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요!



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/mdk-arm.html b/Product/S2E-Module/WIZ750SR/mdk-arm.html index dbe3dc91332..60286c2e48b 100644 --- a/Product/S2E-Module/WIZ750SR/mdk-arm.html +++ b/Product/S2E-Module/WIZ750SR/mdk-arm.html @@ -15,7 +15,7 @@ - + @@ -41,7 +41,7 @@

    Done!


    3. Import WIZ750SR Project

    Download the project from WIZ750SR Github repository.

    WIZ750SR Github repository

    Download the source code and unzip it.

    Run the Keil uVision5.

    Go to the 'Project - Open Project...' of Menu.

    and open the project file(W7500x_S2E.uvproj) from WIZ750SR/Project/S2E_App path.


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/overview-EN.html b/Product/S2E-Module/WIZ750SR/overview-EN.html index 06547bf8d12..8369591eb71 100644 --- a/Product/S2E-Module/WIZ750SR/overview-EN.html +++ b/Product/S2E-Module/WIZ750SR/overview-EN.html @@ -15,7 +15,7 @@ - + @@ -44,7 +44,7 @@
    Combining WIZ750SR module and EVB

    WIZ750SR Module Series

    Ordering InformationItemQ'tyRemarks
    WIZ750SR-TTLWIZ750SR-TTL module1-
    WIZ750SR-232WIZ750SR-RS232 module1-
    WIZ750SR-485WIZ750SR-RS485 module1RS-422/485

    WIZ750SR Evaluation Board Series

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ750SR-TTL-EVBDeviceWIZ750SR-TTL module1-
    ::::::WIZ750SR-232/TTL-EVB board1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::USB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable
    WIZ750SR-232-EVBDeviceWIZ750SR-232 module1-
    ::::::WIZ750SR-232/TTL-EVB board1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::USB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable
    WIZ750SR-485-EVBDeviceWIZ750SR-485 module1-
    ::::::WIZ750SR-485-EVB board1-
    :::CableUSB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable


    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/overview-KO.html b/Product/S2E-Module/WIZ750SR/overview-KO.html index 881b02705dc..140e2d8984f 100644 --- a/Product/S2E-Module/WIZ750SR/overview-KO.html +++ b/Product/S2E-Module/WIZ750SR/overview-KO.html @@ -15,7 +15,7 @@ - + @@ -39,7 +39,7 @@ WIZ750SR evaluation board for RS-485/422 module

    Combining WIZ750SR module and EVB

    WIZ750SR 모듈 제품 구성

    Ordering InformationItemQ'tyRemarks
    WIZ750SR-TTLWIZ750SR-TTL module1-
    WIZ750SR-RS232WIZ750SR-RS232 module1-
    WIZ750SR-RS485WIZ750SR-RS485 module1RS-422/485

    WIZ750SR 개발보드 제품 구성

    Ordering InformationCategoryItemQ'tyRemarks
    WIZ750SR-EVB-TTLDeviceWIZ750SR-TTL module1-
    ::::::WIZ750SR-RS232/TTL-EVB board1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::USB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable
    WIZ750SR-EVB-RS232DeviceWIZ750SR-RS232 module1-
    ::::::WIZ750SR-RS232/TTL-EVB board1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::USB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable
    WIZ750SR-EVB-RS485DeviceWIZ750SR-RS422/485 module1-
    ::::::WIZ750SR-EVB-RS422/485 board1-
    :::CableUSB 2.0 Micro B type cable 1M1Debug port
    ::::::24AWG CAT5e UTP cable1LAN cable

    * 본 구성은 제품의 성능 향상을 위해 더 나은 구성품으로 대체 될 수 있습니다.



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/series-update-history-EN.html b/Product/S2E-Module/WIZ750SR/series-update-history-EN.html index a44da823a64..ef495cb59f6 100644 --- a/Product/S2E-Module/WIZ750SR/series-update-history-EN.html +++ b/Product/S2E-Module/WIZ750SR/series-update-history-EN.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Series Update History-[EN]

    Supported Languages English (current page)
    Korean

    Firmware

    WIZ750SR

    * Firmware is an integrated to WIZ750SR series.

    VersionDateDescriptionNote
    1.1.02017. 08. 12-Stable
    1.0.02016. 07First release-

    WIZ750SR Hardware

    WIZ750SR Module

    TypeRevisionDateDescriptionNote
    TTL1.02016. 07First release-
    RS-232:::::::::-
    RS-422/485:::::::::-

    WIZ750SR Evaluation Board

    TypeRevisionDateDescriptionNote
    RS-232/TTL1.02016. 07First release-
    RS-422/485:::::::::-

    WIZ750SR-100 Hardware

    WIZ750SR-100 Module

    TypeRevisionDateDescriptionNote
    TTL1.02017. 09First release-
    TTL1.02017. 12Changed board nameChanged name WIZ750Jr to WIZ750SR-100

    WIZ750SR-100 Evaluation Board

    TypeRevisionDateDescriptionNote
    EVB(RS-232)1.02017. 09First release-
    EVB(RS-232)1.02017. 12Changed board nameChanged name WIZ750Jr-EVB to WIZ750SR-100-EVB

    WIZ750SR-105 Hardware

    WIZ750SR-105 Module

    TypeRevisionDateDescriptionNote
    TTL1.02017. 09First release-

    WIZ750SR-105 Evaluation Board

    TypeRevisionDateDescriptionNote
    EVB(RS-232)1.02012.04First releaseIt's used in common with WIZ105SR-EVB

    WIZ750SR-110 Hardware

    WIZ750SR-110 Module

    TypeRevisionDateDescriptionNote
    RS-2321.02017. 12First release-


    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/series-update-history-KO.html b/Product/S2E-Module/WIZ750SR/series-update-history-KO.html index cd31d89f096..39f6bfed7d2 100644 --- a/Product/S2E-Module/WIZ750SR/series-update-history-KO.html +++ b/Product/S2E-Module/WIZ750SR/series-update-history-KO.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Series Update History-[KO]

    Supported Languages English Korean (current page)

    Firmware

    WIZ750SR

    * WIZ750SR 시리즈는 펌웨어를 통합 관리합니다.

    VersionDateDescriptionNote
    1.1.02017. 08. 12-Stable
    1.0.02016. 07First release-

    WIZ750SR Hardware

    WIZ750SR Module

    TypeRevisionDateDescriptionNote
    TTL1.02016. 07First release-
    RS-232:::::::::-
    RS-422/485:::::::::-

    WIZ750SR Evaluation Board

    TypeRevisionDateDescriptionNote
    RS-232/TTL1.02016. 07First release-
    RS-422/485:::::::::-

    WIZ750SR-100 Hardware

    WIZ750SR-100 Module

    TypeRevisionDateDescriptionNote
    TTL1.02017. 09First release-
    TTL1.02017. 12보드 명칭 변경WIZ750Jr에서 WIZ750SR-100으로 보드 명칭 변경

    WIZ750SR-100 Evaluation Board

    TypeRevisionDateDescriptionNote
    EVB(RS-232)1.02017. 09First release-
    EVB(RS-232)1.02017. 12보드 명칭 변경WIZ750Jr-EVB에서 WIZ750SR-100-EVB로 보드 명칭 변경

    WIZ750SR-105 Hardware

    WIZ750SR-105 Module

    TypeRevisionDateDescriptionNote
    TTL1.02017. 09First release-

    WIZ750SR-105 Evaluation Board

    TypeRevisionDateDescriptionNote
    EVB(RS-232)1.02012.04First releaseWIZ105SR-EVB를 공용으로 사용합니다.

    WIZ750SR-110 Hardware

    WIZ750SR-110 Module

    TypeRevisionDateDescriptionNote
    RS-2321.02017. 12First release-


    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/technical-references.html b/Product/S2E-Module/WIZ750SR/technical-references.html index 6522a69c032..246fd7bf183 100644 --- a/Product/S2E-Module/WIZ750SR/technical-references.html +++ b/Product/S2E-Module/WIZ750SR/technical-references.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    Technical References

    Supported Languages
    * English only


    WIZ750SR Download Materials

    Datasheet


    WIZ750SR-100 Download Materials

    Datasheet


    WIZ750SR-105 Download Materials

    Datasheet


    WIZ750SR-110 Download Materials

    Datasheet



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/trouble-shooting-EN.html b/Product/S2E-Module/WIZ750SR/trouble-shooting-EN.html index ab9d266cc6b..50b76775505 100644 --- a/Product/S2E-Module/WIZ750SR/trouble-shooting-EN.html +++ b/Product/S2E-Module/WIZ750SR/trouble-shooting-EN.html @@ -15,7 +15,7 @@ - + @@ -41,7 +41,7 @@ address range, Different IP address)
    Problems with the WIZ750SR Evaluation Board (EVB)
    How do I connect the serial interface of WIZ750SR to PC for testing?
    • There are two versions of the WIZ750SR evaluation board, RS-232/TTL & RS-422/485, and each is composed of a different serial interface connector.

    • The DB9 connector is provided with the RS-232/TTL version; users can connect it to the serial port of the PC or use it with a RS-232 to USB convertor (available at Amazon).

    • The terminal block interface is provided with the RS-422/485 version; this is used to connect to the user’s serial device. If the user wishes to connect with the PC, an RS-422/485 to USB connector (available at Amazon) is needed.


    Problems cannot be solved!

    What is the next step if my problem is still not solved?
    • Users can ask questions at the WIZnet Forum.

    • All WIZnet products have a warranty of 1 year from the purchase date.

    • Contact the person you purchased the product from and request a RMA.



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/trouble-shooting-KO.html b/Product/S2E-Module/WIZ750SR/trouble-shooting-KO.html index 88cad711a82..12ecc1ea327 100644 --- a/Product/S2E-Module/WIZ750SR/trouble-shooting-KO.html +++ b/Product/S2E-Module/WIZ750SR/trouble-shooting-KO.html @@ -15,7 +15,7 @@ - + @@ -39,7 +39,7 @@ 연결을 위한 것으로써, 만약 PC에 연결하고자 하면 시중에 판매 중인 RS-422/485 to USB 커넥터(*별매)를 이용하여 연결 할 수 있습니다.


    문제를 해결 할 수 없습니다!

    문제 해결 가이드를 통해 문제가 해결되지 않는 경우는 어떻게 해야 하나요?
    • 위즈네트의 모든 제품들을 구입 또는 사용하시는 경우 최초 구매일로부터 1년간 보증됩니다.
    • 제품 문의를 통해 문제가 해결되지 않는 경우, 제품을 구입하신 구매처 혹은 대리점을 통해 위즈네트 본사로 RMA를 요청하여 주십시오.


    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/users-manual-EN.html b/Product/S2E-Module/WIZ750SR/users-manual-EN.html index a27fb66b026..ced42321b14 100644 --- a/Product/S2E-Module/WIZ750SR/users-manual-EN.html +++ b/Product/S2E-Module/WIZ750SR/users-manual-EN.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ (The remote host port number must be set )


    Serial Port Settings

    Baud Rate

    Baud rate(bps)Remarks
    300-
    600-
    1200-
    1800-
    2400-
    4800-
    9600-
    14400-
    19200-
    28800-
    38400-
    57600-
    115200Default
    230400-

    Data Bit

    Data BitRemarks
    7-
    8Default

    Parity Bit

    Parity BitRemarks
    NONEDefault
    ODD-
    EVEN-

    Stop Bit

    Stop BitRemarks
    1Default
    2-

    Flow Control

    Flow ControlDescriptionRemarks
    NONEDo not use flow control.Default
    XON/XOFFSoftware flow control-
    CTS/RTSHardware flow control-

    Etc.

    Serial SettingsRemarks
    115200-8-N-1:NONEDefault, setting fixed
    Flow control disabled

    Options

    Debug Message

    Serial Command Mode Switch Code

    info

    Please take caution of the following when using Trigger code.

    1. It can only be recognized as switch code if there is a time gap of at least 500ms of no data communication time before and after the 3-byte command mode switch.

    2. The time interval for each byte of the 3-byte command mode switch code has to be at most 500ms.

    3. Do not end the command mode switch code with CR or LF.

    4. The default interval of the time gap before and after the command mode switch code is 500ms. The operation is based on the timer value of the serial data packaging option.

    5. The serial command after switching modes must end with CR and LF.

    Serial Data Packing

    Data packing options can be multi-selected but has priority as shown below.
    Character => Size => Timer

    Inactivity Timer

    Re-connection Interval

    Search Identification Code

    Figure: Search ID code
    (UDP broadcast search)

    Connection Password

    1. Serial data can be collected according to the setting (character, size, or time) and be sent together.

    2. In cases when there are multiple devices in the same network.

    TCP Keep-Alive


    Device Setting Methods

    There are two methods for the various option settings of WIZ750SR’s serial to Ethernet operation.

    For more information, please refer to above document links.


    If there is any problem?
    Please refer to our Troubleshooting Guide!


    1. Settings of configuration tool and command set are compatible to the settings of WIZ107/108SR except the unused and altered command information described in the WIZ750SR Command Manual.

    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ750SR/users-manual-KO.html b/Product/S2E-Module/WIZ750SR/users-manual-KO.html index 2e1bd215de7..dc2cee88704 100644 --- a/Product/S2E-Module/WIZ750SR/users-manual-KO.html +++ b/Product/S2E-Module/WIZ750SR/users-manual-KO.html @@ -15,7 +15,7 @@ - + @@ -41,7 +41,7 @@ 연결을 종료 할 수 있도록 설정하는 것이 좋습니다.

    제품 설정 및 제어 방법

    WIZ750SR 제품은 시리얼 to 이더넷 동작 시 필요한 다양한 옵션들의 설정 변경을 위해 다음과 같은 방법들을 제공합니다.[1]

    자세한 내용은 해당 문서를 참조 바랍니다.


    1. Configuration tool 및 Command set을 이용한 설정 방법은 사용하지 않거나 목적에 따라 변경된 최소 부분 변경을 제외하고 WIZ107/108SR 제품과 호환됩니다. 시리얼 및 네트워크 상에서 제품의 제어를 위해 활용되는 Command의 상세 / 확장 정보는 WIZ750SR Command Manual에서 자세히 다룹니다.

    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고 해보세요!



    WIZ750SR


    WIZ750SR series Downloads


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series.html b/Product/S2E-Module/WIZ752SR-12x-Series.html index 62b6a792e6e..fea7d13781e 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    WIZ752SR-12x Series

    Overview

    WIZ752SR-12x Series is 2-port serial to Ethernet converting module using the W7500 Ethernet MCU (SoC based on ARM Cortex-M0 architecture) with External PHY(IC+).


    WIZ752SR-120

    WIZ752SR-120

    Features

    • Without RJ45 and D'sub-9 connector
    • 1x14 2mm pitch pin header type
    • 1ea MDI Interface
    • 2ea UART Interface(3.3V)
    • Dimensions : 50.00(W) x 30.00(L) x 9.00(H) (Unit : mm)

    WIZ752SR-125

    WIZ752SR-125

    Features

    • With RJ45 and D'sub-9 connector
    • 1ea RJ45 connector
      • MDI Interface
    • 2ea D'sub-9 connector
      • RS-232C Interface
    • Dimensions : 85.00(W) x 60.00(L) x 17.00(H) (Unit : mm)

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120.html index ec3ceb5f8e3..bf8c38d9cfc 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ752SR-120

    WIZ120SR Compatible Serial to Ethernet Module

    WIZ752SR-120
    Figure: WIZ752SR-120

    Documents

    • Getting Started Guide (English)/(Korean)
      • Unpacking the WIZ752SR-120
      • Prerequisites for Setup
      • Connect Your WIZ752SR-120
    • User's Manual (English)/(Korean)
      • It's used in common with WIZ750SR
      • Operation Mode
      • Network / Serial Settings
      • Support Options
    • Configuration Tool Manual (New) (English)/(Korean)
      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • Configuration Tool Manual (English)/(Korean)
      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • Device Command Manual (English)/(Korean)
      • It's used in common with WIZ750SR
      • WIZ752SR-120 Commands Overview
      • Command List
      • Command Descriptions

    Datasheet

    • Datasheet
      • WIZ752SR-120
      • Hardware Specification
      • Schematic / Part list / Dimension
      • Electrical Characteristics
      • Connector Specification

    Download

    • Software Download
      • It's used in common with WIZ750SR Series
      • Firmware Binary
      • Firmware Source code
      • Configuration Tool
      • WIZ VSP(Virtual Serial Port)
      • W7500 ISP Download tool

    Module

    WIZ752SR-120

    Chip

    W7500-S2E
    (Pre-programmed chip)


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/command-manual-EN.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/command-manual-EN.html index b3828710f9f..330aea17efc 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/command-manual-EN.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/command-manual-EN.html @@ -15,7 +15,7 @@ - + @@ -81,7 +81,7 @@ to data transmission mode is successful.
  • > SEG:GW Mode

  • SV



    RT



    FR


    User I/O Settings


    CA - CD


    User I/O Status / Value


    GA - GD


    Status I/O


    SC


    Parameter /
    Return value
    MeaningRemarks
    0PHY link statusDefault
    1DTRData Terminal Ready
    (RS-232/TTL only)
    Parameter /
    Return value
    MeaningRemarks
    0TCP connection statusDefault
    1DSRData Set Ready
    (RS-232/TTL only)

    S0


    Return valueMeaningRemarks
    0PHY link up-
    1PHY link down-
    Return valueMeaningRemarks
    0The device is not ready-
    1The device ready for communications-

    S1


    Return valueMeaningRemarks
    0TCP connection established-
    1TCP disconnected-
    Return valueMeaningRemarks
    0The peer device is not ready-
    1The peer device ready for communications-


    WIZ750SR series Common Documents


    WIZ750SR series Downloads

    WIZ750SR Individual documents


    WIZ750SR-100 Individual documents


    WIZ750SR-105 Individual documents


    WIZ750SR-110 Individual documents


    1. The Configuration tool provided by WIZnet uses the identical command set to control WIZ750SR.
    2. For example, when the MC command for checking the MAC address and the VR command for checking the firmware are identical.
    3. Data UART port
    4. Command mode switch trigger code via Data UART port
    5. Char '+++'
    6. Conversely, the serial command after mode switch must end with CR or LF.
    7. Users must use UDP or TCP client because the UDP or TCP server is operating to handle the device commands.
    8. Data is sent to the broadcast IP address 255.255.255.255, and data can be sent to all peers in the same network.
    9. FF:FF:FF:FF:FF:FF
    10. Hex value 0x20 means ‘gap’ in ASCII code.
    11. The response for ‘Get Request’ has the same form as ‘Set Request’.
    12. IPv4 address forms like IP address, Gateway address, subnet mask, DNS server address, or Remote IP address.
    13. Save setting, reboot, switch mode, factory reset and Etc.
    14. WIZ107/108SR sync command list, excluding [UI] command
    15. WIZ750SR exclusive command list
    16. When the remote peer address is changed from IP address to domain
    17. The received serial data is collected until the designated time is lapsed and will be sent all together via Ethernet. This time starts counting when receiving the serial data stop, and if additional serial data is received before the designated time is lapsed, the count restarts.
    18. The received serial data is collected until the designated data length is reached and will be sent all together via Ethernet.
    19. The received serial data is collected until the designated character is received and will be sent all together via Ethernet.
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/command-manual-KO.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/command-manual-KO.html index e8ade6d9af2..ab13136c8dd 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/command-manual-KO.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/command-manual-KO.html @@ -15,7 +15,7 @@ - + @@ -94,7 +94,7 @@ S1(PA_01)핀의 동작 모드 설정

  • Command Type: Read / Write

  • Parameter / Return Type: Number (0/1)

  • Parameter / Return Value:

  • Parameter_0 (upper byte)

  • Parameter /
    Return value
    MeaningRemarks
    0PHY link statusDefault
    1DTRData Terminal Ready
    (RS-232/TTL only)
    Parameter /
    Return value
    MeaningRemarks
    0TCP connection statusDefault
    1DSRData Set Ready
    (RS-232/TTL only)

    S0


    Return valueMeaningRemarks
    0PHY link up-
    1PHY link down-
    Return valueMeaningRemarks
    0통신 불가-
    1해당 장비의 통신 준비가 완료 됨-

    S1


    Return valueMeaningRemarks
    0TCP 연결 성립 상태-
    1TCP 통신이 연결되어 있지 않음-
    Return valueMeaningRemarks
    0통신 불가-
    1상대 장비의 통신 준비가 완료 됨-


    WIZ750SR series Common Documents


    WIZ750SR series Downloads

    WIZ750SR Individual documents


    WIZ750SR-100 Individual documents


    WIZ750SR-105 Individual documents


    WIZ750SR-110 Individual documents


    1. 위즈네트에서 제공하는 제품 설정 프로그램(Configuration tool)도 동일한 커맨드 셋을 이용하여 WIZ750SR 제품을 제어합니다.
    2. 예를 들어, 제품의 MAC 주소를 확인하는 MC 커맨드와 펌웨어 버전을 확인하는 VR 커맨드와 같은 경우.
    3. Data UART port
    4. Command mode switch trigger code via Data UART port
    5. Char '+++'
    6. 이와 반대로, 모드 전환 후 입력 될 시리얼 커맨드의 경우에는 각 커맨드의 마지막에 CR과 LF를 붙여야 합니다.
    7. 제품 내에 커맨드를 처리하기 위해 UDP와 TCP 서버가 동작하고 있으므로, 사용자는 꼭 UDP 혹은 TCP 클라이언트를 활용하여야 합니다.
    8. Broadcast IP 주소 255.255.255.255로 데이터를 전송하여, 동일 망 내에 위치한 모든 Peer에게 데이터를 전송하는 방법
    9. FF:FF:FF:FF:FF:FF
    10. Hex값 0x20은 ASCII 코드로 공백을 의미합니다.
    11. 즉, Get Request에 대한 Response는 Set Request와 동일한 형태입니다.
    12. IP 주소, 게이트웨이 주소, 서브넷 마스크, DNS 서버 주소, 원격지 IP 주소 등의 IPv4 주소 형식
    13. 설정 저장, 리부트, 모드 변경, 공장 초기화 등
    14. WIZ107/108SR 호환 커맨드 리스트, [UI] 커맨드 제외
    15. WIZ750SR 전용 커맨드 리스트
    16. 제품이 접속할 원격지의 주소를 IP 주소에서 Domain으로 변경한 경우 등
    17. 지정된 시간에 도달 할 때까지 수신된 시리얼 데이터를 모아 한 번에 이더넷으로 전송합니다. 이 시간은 시리얼 데이터 수신이 멈추는 순간부터 카운트 되며, 지정된 시간에 도달하기 이전에 추가 시리얼 데이터가 수신되면 초기화되어 다시 카운트를 시작합니다.
    18. 지정된 데이터 길이에 도달 할 때까지 수신된 시리얼 데이터를 모아 한 번에 이더넷으로 전송합니다.
    19. 지정된 문자가 수신 될 때까지 시리얼 데이터를 모아 한 번에 이더넷으로 전송합니다.
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/datasheet.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/datasheet.html index e87236a0de8..819c844d657 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/datasheet.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/datasheet.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ WIZ750SR_Power dissipation


    Connectors Specification

    Mount Connectors

    WIZ752SR-120 Pinout
    ConnectorPin NumberSignalI/O(( "I/O" Description - P:Power, I:Input, O:Output ))Description

    J6

    UART
    Data
    Connector
    13.3VPSystem Power input (3.3V)
    :::23.3VPSystem Power input (3.3V)
    :::3GNDPSystem Ground
    :::4GNDPSystem Ground
    :::5CTS0IUART0 Clear To Send
    :::6RTS0OUART0 Request To Send
    :::7TXD0OUART0 Transmit Data
    :::8RXD0IUART0 Receive Data
    :::9/RESETISystem Reset signal (Active Low), Included 4.7k Pullup
    :::10GNDPSystem Ground
    :::11RXD1IUART1 Receive Data
    :::12TXD1OUART1 Transmit Data
    :::13RTS1OUART1 Request To Send
    :::14CTS1IUART1 Clear To Send
    ConnectorPin NumberSignalI/ODescription

    J7

    Ethernet
    &
    Indicate
    1TPTX-OEthernet Differential Output-
    :::2TPTX+OEthernet Differential Output+
    :::3GNDPSystem Ground
    :::4TPRX-IEthernet Differential Input+
    :::5TPRX+IEthernet Differential Input-
    :::6GNDPSystem Ground
    :::7NC-Not Connected
    :::8LINKOEthernet LINK Status
    High : Link down
    Low : Link up
    :::9100M_ACTOEthernet 100M ACT Status
    Blink : 100M Data communication
    No Blink : 100M No Data communication
    :::10GNDPSystem Ground
    :::11NC-Not Connected
    :::12STATUS_1OUART0 Connected Status
    High : Not Connected
    Low : Connected
    :::13STATUS_2OUART1 Connected Status
    High : Not Connected
    Low : Connected
    :::14SW_INPUTIReserved I/O

    Not Mount Connectors

    WIZ752SR-120 Pinout
    ConnectorPin NumberSignalI/ODescription

    J1

    SWD
    (Serial Wire Debug)
    13.3VPSystem Power input (3.3V)
    :::2SWDIOI/OSWD Data I/O
    :::3SWCLKISWD Clock
    :::4/RESETISystem Reset
    :::5GNDPSystem Ground
    ConnectorPin NumberSignalI/ODescription

    J2

    ISP
    &
    Debug UART
    13.3VPSystem Power input (3.3V)
    :::2BOOTISystem BOOT
    4.7k Pull down
    When booting(Power on or Reset),
    High : Boot operating
    Low : Application operating
    :::3RXD2IUART2 Receive Data
    :::4TXD2OUART2 Transmit Data
    :::5/RESETISystem Reset signal (Active Low), 4.7k Pullup
    :::6GNDPSystem Ground
    ConnectorPin NumberSignalI/ODescription

    J3

    Expansion
    GPIO
    13.3VPSystem Power input (3.3V)
    :::2GPIO_DI/OExpansion User's depend on GPIO port
    :::3GPIO_CI/O:::
    :::4GPIO_BI/O:::
    :::5GPIO_AI/O:::
    :::6GNDPSystem Ground
    ConnectorPin NumberSignalI/ODescription

    J4

    System
    BOOT
    13.3VPSystem Power input (3.3V)
    :::2BOOTISystem BOOT
    4.7k Pull down
    When booting(Power on or Reset),
    High : System Boot operating
    Low : Application operating
    ConnectorPin NumberSignalI/ODescription

    J5

    Application
    BOOT
    1APP_BOOTIApplication BOOT
    Not uesed
    :::2GNDPSystem Ground

    Dimension

    WIZ752SR-120 V1.0 Dimension
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/getting-started-guide-EN.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/getting-started-guide-EN.html index 123c9fa038f..35788ff7c8d 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/getting-started-guide-EN.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/getting-started-guide-EN.html @@ -15,7 +15,7 @@ - + @@ -56,7 +56,7 @@ serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.

    If there is any problem?
    Please refer to our Troubleshooting Guide!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/getting-started-guide-KO.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/getting-started-guide-KO.html index 60dacc4bf45..748b138de3b 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/getting-started-guide-KO.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/getting-started-guide-KO.html @@ -15,7 +15,7 @@ - + @@ -39,7 +39,7 @@ 가능합니다.

    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/overview-EN.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/overview-EN.html index 4b74634d279..da4964730da 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/overview-EN.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/overview-EN.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ via Ethernet network.


    Features


    Product Contents

    WIZ752SR-120 Module

    Ordering InformationItemQ'tyRemarks
    WIZ752SR-120WIZ752SR-120 module1-

    WIZ752SR-120 Evaluation Board

    Ordering InformationCategoryItemQ'tyRemarks
    PakageDeviceWIZ752SR-1201-
    ::::::WIZ120SR-EVB1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::24AWG CAT5e UTP cable1LAN cable
    :::AdapterDC5V/2A Adapter1-

    * It can be replaced with better components to improve the performance of the product.

    1. hardware pins
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/overview-KO.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/overview-KO.html index 6bf19edd91f..5a4961211ab 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/overview-KO.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-120/overview-KO.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ 수행합니다. 이 제품을 활용하면 시리얼 인터페이스를 지원하는 장치에 손쉽게 네트워크 연결 기능을 추가 할 수 있어, 이더넷 네트워크를 통해 시리얼 장비를 제어하는 것이 가능해집니다.

    WIZ120SR 제품과 호환[1]되도록 제작 되었으며, 별도의 시리얼 Debug 포트와 고객의 목적에 따라 제어하고 모니터링 할 수 있는 4개의 사용자 I/O 핀을 제공합니다. (아날로그 입력 / 디지털 입-출력)

    또한 WIZ750SR와 혼용[2]사용할 수 있도록 제작 되었습니다.

    WIZ752SR-120은 이더넷 네트워크를 통해 시리얼 장치를 제어하기 위한 최적의 솔루션이 될 것입니다.


    Features


    Product Contents

    WIZ752SR-120 모듈 제품 구성

    Ordering InformationItemQ'tyRemarks
    WIZ752SR-120WIZ752SR-120 module1-

    WIZ752SR-120 개발보드 제품 구성

    Ordering InformationCategoryItemQ'tyRemarks
    PakageDeviceWIZ752SR-1201-
    ::::::WIZ120SR-EVB1-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::24AWG CAT5e UTP cable1LAN cable
    :::AdapterDC5V/2A Adapter1-

    * 본 구성은 제품의 성능 향상을 위해 더 나은 구성품으로 대체 될 수 있습니다.

    1. 하드웨어 핀 호환

    2. AT command

    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125.html index 4072b7a968d..7af3c1347f6 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ752SR-125

    WIZ120SR Compatible Serial to Ethernet Module

    WIZ752SR-125
    Figure: WIZ752SR-125

    Documents

    • Getting Started Guide (English)/(Korean)
      • Unpacking the WIZ752SR-125
      • Prerequisites for Setup
      • Connect Your WIZ752SR-125
    • User's Manual (English)/(Korean)
      • It's used in common with WIZ750SR
      • Operation Mode
      • Network / Serial Settings
      • Support Options
    • Configuration Tool Manual (New) (English)/(Korean)
      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • Configuration Tool Manual (English)/(Korean)
      • It's used in common with WIZ750SR
      • Device Configuration Overview
      • Configuration Tool for Setting Devices
    • Device Command Manual (English)/(Korean)
      • It's used in common with WIZ750SR
      • WIZ752SR-125 Commands Overview
      • Command List
      • Command Descriptions

    Datasheet

    • Datasheet
      • WIZ752SR-125
      • Hardware Specification
      • Schematic / Part list / Dimension
      • Electrical Characteristics
      • Connector Specification

    Download

    • Software Download
      • It's used in common with WIZ750SR Series
      • Firmware Binary
      • Firmware Source code
      • Configuration Tool
      • WIZ VSP(Virtual Serial Port)
      • W7500 ISP Download tool

    Module

    WIZ752SR-120

    Chip

    W7500-S2E
    (Pre-programmed chip)


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/datasheet.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/datasheet.html index d79cec35b26..0dfc319e60d 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/datasheet.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/datasheet.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ750SR-125 Datasheet

    Hardware Specification

    Product Spec Table

    CategoryDescription
    MCUARM
    Cortex-M0
    Core
    W7500
    48Mhz maximum frequency
    Internal 8Mhz RC Oscillator
    Flash: 128KB
    Large flexible-size SRAM buffer for various User Application
    - Min 16KB available if full 32KB socket buffer used
    - Max 48KB available if no socket buffer used
    ROM for boot code: 6 KB
    :::Hardwired
    TCP/IP
    Core
    8 independent Sockets
    SRAM for socket: 32KB
    MII (Medium-Independent Interface)
    TCP/IP Protocols: TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
    PHYEthernet
    Transceiver
    IP101GRI
    Single 10/100M Ethernet Transceiver
    SerialInterfaceRS-232C-1
    RS-232C-2
    :::SignalTXD0, RXD0, RTS0, CTS0
    TXD1, RXD1, RTS1, CTS1
    :::ParametersParity: None, Odd, Even
    Data bits: 7, 8 bit
    Flow control: None, RTS / CTS, XON / XOFF
    :::SpeedUp to 230Kbps
    Dimension88.50(W) x 66.00(L) x 18.00(H) (Unit : mm)
    Connector typeD-sub9 Connector(RS-232C) 2EA
    2.54mm Pitch 1x6 Pin-header(Expansion GPIO, Not Mount)
    2.54mm Pitch 1x6 Pin-header (ISP & Debug UART, Not Mount)
    1.27mm Pitch 1x5 Pin-header (SWD(Serial Wire Debug), Not Mount)
    Input VoltageDC 5V
    Operation Temperature-40℃ ~ 85℃ (Operation)

    WIZ752SR-125 Callout

    WIZ752SR-125 Callout

    WIZ752SR-125 Pinout

    WIZ752SR-125 Pinout
    ConnectorPin NumberSignalI/O(( "I/O" Description - P:Power, I:Input, O:Output ))Description

    J1

    SWD
    (Serial Wire Debug)
    13.3VPSystem Power input (3.3V)
    :::2SWDIOI/OSWD Data I/O
    :::3SWCLKISWD Clock
    :::4/RESETISystem Reset
    :::5GNDPSystem Ground
    ConnectorPin NumberSignalI/ODescription

    J2

    ISP
    &
    Debug UART
    13.3VPSystem Power input (3.3V)
    :::2BOOTISystem BOOT
    4.7k Pull down
    When booting(Power on or Reset),
    High : Boot operating
    Low : Application operating
    :::3RXD2IUART2 Receive Data
    :::4TXD2OUART2 Transmit Data
    :::5/RESETISystem Reset signal (Active Low), 4.7k Pullup
    :::6GNDPSystem Ground
    ConnectorPin NumberSignalI/ODescription

    J3

    Expansion
    GPIO
    13.3VPSystem Power input (3.3V)
    :::2GPIO_DI/OExpansion User's depend on GPIO port
    :::3GPIO_CI/O:::
    :::4GPIO_BI/O:::
    :::5GPIO_AI/O:::
    :::6GNDPSystem Ground
    ConnectorPin NumberSignalI/ODescription

    J4

    System
    BOOT
    13.3VPSystem Power input (3.3V)
    :::2BOOTISystem BOOT
    4.7k Pull down
    When booting(Power on or Reset),
    High : System Boot operating
    Low : Application operating
    ConnectorPin NumberSignalI/ODescription

    J5

    Application
    BOOT
    1APP_BOOTIApplication BOOT
    Not Uesed
    :::2GNDPSystem Ground

    WIZ752SR-125 D-Sub9 Pinout
    ConnectorPin NumberSignalI/ODescription

    J6

    RS-232C-1
    D-SUB 9Pin/Male
    Connector
    1NC--
    :::2RXD0IRS-232C Receive Data
    :::3TXD0ORS-232C Transmit Data
    :::4NC--
    :::5GNDPSystem Ground
    :::6NC--
    :::7RTS0ORS-232C Request To Send
    :::8CTS0IRS-232C Clear To Send
    :::9NC--
    ConnectorPin NumberSignalI/ODescription

    J7

    RS-232C-2
    D-SUB 9Pin/Male
    Connector
    1NC--
    :::2RXD1IRS-232C Receive Data
    :::3TXD1ORS-232C Transmit Data
    :::4NC--
    :::5GNDPSystem Ground
    :::6NC--
    :::7RTS1ORS-232C Request To Send
    :::8CTS1IRS-232C Clear To Send
    :::9NC--

    WIZ752SR-125 Block Diagram

    WIZ752SR-125 Block Diagram

    Schematic & Partlist

    • Hardware Files of WIZ752SR-125 in Github Repositories

    WIZ752SR-125


    Part list

    WIZ752SR-125


    Electrical Characteristics

    Operating Conditions

    SymbolParameterPinsMinTypMaxUnit
    VccOperating Voltage3.3V2.73.33.6V
    VssGroundALL050mV
    fFCLKInternal CPU clock frequencyALL0-48MHz
    TstgStorage Temperature (max)ALL-4085
    TAAmbient operating temperatureALL-4085
    VIOI/O Signal voltage (Tolerance)ALLVss-0.33.35V
    VIHInput high voltageALL2.145V
    VILInput low voltageALL1.155V
    VOHOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL2.5V
    VOLOutput high voltage
    (High driving strength Current load = 6mA)
    (Low driving strength Current load = 3mA)
    ALL0.5V

    Ethernet Power Dissipation

    ConditionMinTypMaxTolUnit
    100M Link-TBD-mA
    10M Link-TBD-mA
    Unlink (Auto-negotiation mode)TBDmA
    100M Transmitting-TBD-mA
    10M Transmitting-TBD-mA

    ※ Refer to WIZ752SR-120 Power Dissipation information (below Link)
    WIZ750SR_Power dissipation


    Dimension

    • WIZ752SR-125 V1.0 Dimension :
      • 88.50(W) x 66.00(L) x 18.00(H) (Unit : mm)
    WIZ752SR-120 V1.0 Dimension
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/getting-started-guide-EN.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/getting-started-guide-EN.html index abde6342b10..b5a0aada4e8 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/getting-started-guide-EN.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/getting-started-guide-EN.html @@ -15,7 +15,7 @@ - + @@ -56,7 +56,7 @@ serial device and check if the device can communicate, control, and monitor via the remote PC or monitoring server.

    If there is any problem?
    Please refer to our Troubleshooting Guide!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/getting-started-guide-KO.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/getting-started-guide-KO.html index 100aabe3d9d..7767d46d0b1 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/getting-started-guide-KO.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/getting-started-guide-KO.html @@ -15,7 +15,7 @@ - + @@ -38,7 +38,7 @@ 가능합니다.

    동작에 문제가 있나요?
    Troubleshooting 가이드 문서를 참고해 보세요!


    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/overview-EN.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/overview-EN.html index 27e5a87139f..389ff7a8215 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/overview-EN.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/overview-EN.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ via Ethernet network.


    Features


    Product Contents

    WIZ752SR-125 Module

    Ordering InformationItemQ'tyRemarks
    WIZ752SR-125WIZ752SR-125 module1-

    WIZ752SR-125 Evaluation Board

    Ordering InformationCategoryItemQ'tyRemarks
    PakageDeviceWIZ752SR-1251-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::24AWG CAT5e UTP cable1LAN cable
    :::AdapterDC5V/2A Adapter1-

    * It can be replaced with better components to improve the performance of the product.

    1. hardware pins
    - + \ No newline at end of file diff --git a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/overview-KO.html b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/overview-KO.html index 86af112f880..c01e53f345a 100644 --- a/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/overview-KO.html +++ b/Product/S2E-Module/WIZ752SR-12x-Series/WIZ752SR-125/overview-KO.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ 수행합니다. 이 제품을 활용하면 시리얼 인터페이스를 지원하는 장치에 손쉽게 네트워크 연결 기능을 추가 할 수 있어, 이더넷 네트워크를 통해 시리얼 장비를 제어하는 것이 가능해집니다.

    WIZ125SR 제품과 호환[1]되도록 제작 되었으며, 별도의 시리얼 Debug 포트와 고객의 목적에 따라 제어하고 모니터링 할 수 있는 4개의 사용자 I/O 핀을 제공합니다. (아날로그 입력 / 디지털 입-출력)

    또한 WIZ750SR와 혼용[2]사용할 수 있도록 제작 되었습니다.

    WIZ752SR-125은 이더넷 네트워크를 통해 시리얼 장치를 제어하기 위한 최적의 솔루션이 될 것입니다.


    Features


    Product Contents

    WIZ752SR-125 모듈 제품 구성

    Ordering InformationItemQ'tyRemarks
    WIZ752SR-125WIZ752SR-125 module1-

    WIZ752SR-125 개발보드 제품 구성

    Ordering InformationCategoryItemQ'tyRemarks
    PakageDeviceWIZ752SR-1251-
    :::CableD-SUB9-FEMALE serial cable1Data port
    ::::::24AWG CAT5e UTP cable1LAN cable
    :::AdapterDC5V/2A Adapter1-

    * 본 구성은 제품의 성능 향상을 위해 더 나은 구성품으로 대체 될 수 있습니다.

    1. 하드웨어 핀 호환

    2. AT command

    - + \ No newline at end of file diff --git a/Product/S2E-Module/s2e_module.html b/Product/S2E-Module/s2e_module.html index bb4bbeaa4c0..e532e97b007 100644 --- a/Product/S2E-Module/s2e_module.html +++ b/Product/S2E-Module/s2e_module.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ gauging, managing and control of TCP/IP devices through a UART serial interface.

    WIZnet S2E module supports a wide range of pin header types and hardware interfaces.


    Product Family

    ImageUARTLAN InterfacePin Header & PitchOperation Temp (℃)Dimension (mm)Evaluation Board
    WIZ500SR-RPWIZ500SR-RP1xTTL(3.3V)Transformer1x12
    2.0mm
    Pin Header x 3ea
    -20 ~ 8550mm x 30mm x 5.7mmWIZ500SR-RP-EVB
    WIZ505SR-RPWIZ505SR-RP1xTTL(3.3V)RJ-452x7
    2.54mm
    Pin Header
    x 1ea
    -20 ~ 8540mm x 66.5mm x 15mmWIZ505SR-RP-EVB
    WIZ510SR-RPWIZ510SR-RP1xTTL(3.3V)RJ-451x4
    2.54mm
    Pin Header
    x 1ea
    -20 ~ 8576mm x 45mm x 15mmN/A
    W7500S2E-R1W7500S2E-R11xTTL(3.3V)Transformer1x11, 1x12 2.54mm-40~8544.45×31.75×23.00 (mm)Breakout board
    W5500S2E-Z1W5500S2E-Z11xTTL(3.3V)Transformer1x11, 1x12 2.54mm-40~8544.45×31.75×15.75 (mm)Breakout board
    W5500S2E-S1W5500S2E-S11xTTL(3.3V)Transformer2x7, 1x7 2.54mm-40~8534×24×12.40 (mm)Breakout board
    WIZ550SRWIZ550SR1xTTL(3.3V)RJ45Two 1x11-40 ~ 8522x24x13WIZ550SR-EVB
    WIZ750SRWIZ750SR1xTTL or 1xRS232 or 1xRS485RJ452x60~7048x30x18WIZ750SR-EVB (RS422/485)

    WIZ750SR-EVB (TTL/RS232)
    WIZ750SR-100WIZ750SR-1001xTTL(3.3V)TransformerTwo 1x12 2mm-40 ~ 8550x30x12WIZ750SR-100-EVB
    WIZ750SR-105WIZ750SR-1051xTTL(3.3V)RJ-452x6 2mm pitch-40 ~ 8562x40x18WIZ750SR-105-EVB
    WIZ750SR-110WIZ750SR-1101xRS232RJ-45N/A-40 ~ 8575x45x18N/A
    WIZ752SR-120WIZ752SR-1201xTTL(3.3V)Transformer2.00mm Pin Header 1x14 2ea-40 ~ 8550x30x9WIZ120SR-EVB
    WIZ752SR-125WIZ752SR-1252xRS232RJ-45N/A-40 ~ 8560x89x18N/A
    WIZ550S2E1xTTL(3.3V)RJ-451x8, 1x9 2.54mm-40 ~ 8555x30x23.49WIZ550S2E-EVB
    WIZ100SR
    not recommended for new design
    WIZ100SR1xTTL(3.3V)TransformerTwo 1x12 2mm0 ~ 8050x30x12WIZ100SR-EVB
    WIZ105SR
    not recommended for new design
    WIZ105SR1xTTL(3.3V)RJ-452x6 2mm0 ~ 8040x62x17WIZ105SR-EVB
    WIZ110SR
    not recommended for new design
    WIZ110SR1xRS232 (DB-9)RJ-45N/A0 ~ 8075x50x17N/A
    WIZ107SR
    not recommended for new design
    WIZ107SR1xTTL(3.3V) or 1xRS232 (Optional)RJ-452x6 2.5mm-40 ~ 8548x30x18WIZ107SR-EVB
    WIZ108SR
    not recommended for new design
    WIZ108SR1x RS422/485RJ-452x6 2.5mm-40 ~ 8548x30x18WIZ108SR-EVB
    WIZ120SR
    not recommended for new design
    WIZ120SR2xTTL(3.3V)TransformerTwo 1x14 2mm0 ~ 7050x30x9WI120SR-EVB
    WIZ125SR
    not recommended for new design
    WIZ125SR2xRS32 DB-9RJ-45N/A0 ~ 7060x89x18N/A
    WIZ140SR
    not recommended for new design
    WIZ140SR4xTTL(3.3V)Transformer1x14 2.5mm0 ~ 7048x36x16 WIZ140SR-EVB
    WIZ145SR
    not recommended for new design
    WIZ145SR4xTTL(3.3V)RJ-451x14, 2x140 ~ 7048x61x25WIZ145SR-EVB
    W7100A-S2E
    not recommended for new design
    Serial to Ethernet Chip (WIZ107SR or WIZ108SR firmware programmed)

    S2E Tools


    - + \ No newline at end of file diff --git a/Product/S2E-Module/serial-to-ethernet-guide-ko.html b/Product/S2E-Module/serial-to-ethernet-guide-ko.html index f6f1ece28d0..0d060370186 100644 --- a/Product/S2E-Module/serial-to-ethernet-guide-ko.html +++ b/Product/S2E-Module/serial-to-ethernet-guide-ko.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ WIZ107/108SR & WIZ750SR Configuration Tool

    Download WIZ107/108SR & WIZ750SR Configuration Tool

    WIZ100/105/110SR Series

    WIZ100SR/ WIZ105SR/ WIZ110SR Configuration Tool v3.0.2

    Download WIZ100SR/ WIZ105SR/ WIZ110SR Configuration Tool

    WIZ120/125SR


    WIZ120/125SR Configuration Tool v1.1.0

    Download WIZ120/125SR Configuration Tool

    WIZ140/145SR

    Download WIZ140/145SR Configuration Tool

    W7500(P) ISP Tool

    Go to ISP tool manual & Program download


    WIZ Mac Tool

    WIZMacTool은 제품의 펌웨어 업그레이드 과정에서 MAC 주소가 삭제된 경우 다시 입력할 수 있도록 도와주는 프로그램입니다.

    다음 장치에서 사용할 수 있습니다.

    사용 방법은 아래 링크를 참조하세요.

    WizMACTool Program 다운로드

    WIZ VSP

    시스템 요구사항

    info

    WIZVSP end user license agreement 페이지로 이동:
    http://wizvsp.wiznet.io


    - + \ No newline at end of file diff --git a/Product/S2E-Module/serial-to-ethernet-guide.html b/Product/S2E-Module/serial-to-ethernet-guide.html index 92370f0e684..f4b2e3d06f2 100644 --- a/Product/S2E-Module/serial-to-ethernet-guide.html +++ b/Product/S2E-Module/serial-to-ethernet-guide.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ WIZ107/108SR & WIZ750SR Configuration Tool

    💾 Download WIZ107/108SR & WIZ750SR Configuration Tool

    WIZ100/105/110SR Series

    WIZ100SR/ WIZ105SR/ WIZ110SR Configuration Tool v3.0.2

    Download WIZ100SR/ WIZ105SR/ WIZ110SR Configuration Tool

    WIZ120/125SR


    WIZ120/125SR Configuration Tool v1.1.0

    💾 Download WIZ120/125SR Configuration Tool

    WIZ140/145SR

    💾 Download WIZ140/145SR Configuration Tool

    W7500(P) ISP Tool

    Go to ISP tool manual & Program download


    WIZ Mac Tool

    WIZMacTool is a tool that helps you re-enter the MAC address if it is deleted during the process of upgrading the product's firmware.

    The WIZMacTool is available on the following devices:

    For detailed instructions, see the link below.

    💾 Download the WizMACTool Program

    WIZ VSP

    Requirement

    info

    Go to WIZVSP end user license agreement page:
    http://wizvsp.wiznet.io


    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi210.html b/Product/Wi-Fi-Module/WizFi210.html index 74cde5d5629..571f2cff506 100644 --- a/Product/Wi-Fi-Module/WizFi210.html +++ b/Product/Wi-Fi-Module/WizFi210.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WizFi210 / 220

    caution

    This product is discontinued.

    Technical support for this product has officially ended.

    Overview

    WizFi210 is a Wi-Fi module that provides a robust and stable Wi-Fi connectivity with low power consumption. WizFi210 performs all functions for Wi-Fi connectivity and TCP/IP processing. All you have to do is just send commands to the module via serial interface.

    Features

    • Single band 2.4GHz IEEE802.11b Wi-Fi module
    • Host Interface : UART & SPI
    • Quick booting time : under 20msec
    • Ultra low power through dynamic power management (34µA at the standby mode)
    • Security protocols : WEP, WPA/WPA2-PSK, Enterprise (EAP-FAST, EAP-TLS, EAP-TTLS, PEAP)
    • Operation temperature : -40 ~ 85℃
    • CE, FCC, KCC, TELEC certified
    • Dimension : 32 x 23.5 x 2.9(mm)
    • Provides chip antenna mounted version

    Hardware Block Diagram

    Ordering Information

    Download

    Datasheet

    WizFi210/ WizFi220 Datasheet 1.2.0

    Last Update: 2013.05.29

    Programmer's Guide

    WizFi210/ WizFi220 Programmer’s Guide V1.3.1

    Last Update: 2013.06.24

    Quick Start Guide

    WizFi210/ WizFi220 Quick Start Guide V1.0.0

    Last Update: 2013.05.29

    Application Note

    WizFi210/ WizFi220 Application Note
    • (AP310)WIZSmartScript-Description_EN_V1.01
    • (AP320)WIZSmartScript-Firmware Upgrade_EN_V1.01
    • (AP330)WizFi Range Test_EN_V1.0
    • (AP340)Antenna Type Description
    • (AP350)HTTP Data Transfer
    • (AP370)Using New Firmware version in Old EVB Type
    • (AP400)Multi Connections
    • (AP450)How to Set Low Power Mode
    • (AP460)Power State Management for WizFi210

    Firmware

    WizFi210/ WizFi220 Firmware
    • V1.1.1.0 (2013.04.23) : The lastest Version
    • V1.1.0.5 (2012.03.20)
    • V1.1.0.0 (2011.10.18)

    SPI Interface

    If you need the material, please contact to our local office.

    Enterprise Firmware

    This firmware support EAP feature(AT+WEAPCONF command), HTTP feature(AT+HTTPCONF command) and SSL feature(AT+SSLOPEN command).The version of this firmware is 1.2.0.2(E).(‘E’ means the enterprise version). This firmware can be uploaded from the hardware version 1.0.1? If you need the material, please contact to our local office.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi210/wizfi210-evb.html b/Product/Wi-Fi-Module/WizFi210/wizfi210-evb.html index f0f05dad523..ed085a55d28 100644 --- a/Product/Wi-Fi-Module/WizFi210/wizfi210-evb.html +++ b/Product/Wi-Fi-Module/WizFi210/wizfi210-evb.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WizFi210-EVB

    Overview

    WizFi210-EVB is a evaluation board for WizFi210.

    WizFi210 is a Wi-Fi module in 2.4GHz, 802.11b standard and also provides a robust and stable Wi-Fi connectivity with low power consumption. WizFi210 performs all functions for Wi-Fi connectivity and TCP/IP processing. All you have to do is just send commands to the module via serial interface.

    Features & Benefits

    • Fast Evaluation for WizFi210 module
    • Support the UART interface test
    • Quick booting time : under 20msec
    • Ultra low power through dynamic power management (34μA at the standby mode)
    • Security protocols : WEP, WPA/WPA2-PSK, Enterprise (EAP-FAST, EAP-TLS, EAP-TTLS, PEAP)

    WizFi210-EVB User Interface

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250.html b/Product/Wi-Fi-Module/WizFi250.html index 71846a3f769..0f8d52a2334 100644 --- a/Product/Wi-Fi-Module/WizFi250.html +++ b/Product/Wi-Fi-Module/WizFi250.html @@ -15,7 +15,7 @@ - + @@ -40,7 +40,7 @@ 🌎WizFi210/220 module family:
    Please use this link for a comparison

    Material

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250/comparison.html b/Product/Wi-Fi-Module/WizFi250/comparison.html index 4c0324b4cf9..4ef75fbc365 100644 --- a/Product/Wi-Fi-Module/WizFi250/comparison.html +++ b/Product/Wi-Fi-Module/WizFi250/comparison.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ EX = external = 50ohm GND-ANT-GND pins
    PA = Pattern or PCB Antenna

    More about WizFi210/220 and WizFi250 you can find on our 🌎WIZnet wireless product page.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250/reference_youtube.html b/Product/Wi-Fi-Module/WizFi250/reference_youtube.html index 980a342e8b1..9ea4c70bdd9 100644 --- a/Product/Wi-Fi-Module/WizFi250/reference_youtube.html +++ b/Product/Wi-Fi-Module/WizFi250/reference_youtube.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250/wizfi250_datasheet.html b/Product/Wi-Fi-Module/WizFi250/wizfi250_datasheet.html index 70fceb4df2c..80af94ec817 100644 --- a/Product/Wi-Fi-Module/WizFi250/wizfi250_datasheet.html +++ b/Product/Wi-Fi-Module/WizFi250/wizfi250_datasheet.html @@ -15,7 +15,7 @@ - + @@ -122,7 +122,7 @@ distance of 20cm must be maintained between the antenna and the person for this appliance to satisfy the RF exposure requirements.

    Host labeling requirement: "Contains transmitter module IC: 20560-WIZFI250"

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250/wizfi250_evb_if_fimension.html b/Product/Wi-Fi-Module/WizFi250/wizfi250_evb_if_fimension.html index 9b795190c76..9f2df2a0b06 100644 --- a/Product/Wi-Fi-Module/WizFi250/wizfi250_evb_if_fimension.html +++ b/Product/Wi-Fi-Module/WizFi250/wizfi250_evb_if_fimension.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250/wizfi250_evb_sch.html b/Product/Wi-Fi-Module/WizFi250/wizfi250_evb_sch.html index 5763ed90c22..888ce01d5b2 100644 --- a/Product/Wi-Fi-Module/WizFi250/wizfi250_evb_sch.html +++ b/Product/Wi-Fi-Module/WizFi250/wizfi250_evb_sch.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ removable. We put the SMD type WizFi250 module on a Interface adapter board (that is than named WizFi250-H).
    The pin headers have a distance of exactly 17mm.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250/wizfi250_firmware.html b/Product/Wi-Fi-Module/WizFi250/wizfi250_firmware.html index f0408d741a3..9623e494d4c 100644 --- a/Product/Wi-Fi-Module/WizFi250/wizfi250_firmware.html +++ b/Product/Wi-Fi-Module/WizFi250/wizfi250_firmware.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    WizFi250 Firmware

    Official Latest firmware release

    FW VersionHardwareDateDownloadDescription
    1.0.3.3Rev 1.02015-02-161.0.3.3/Applicationlatest release

    Firmware history/Beta firmware

    FW VersionHardwareDateDownloadDescription
    1.0.0.0Rev 1.02014-01-161.0.0.0/Application
    1.0.1.1Rev 1.02014-05-121.0.1.1/Application
    1.0.1.8Rev 1.02014-08-061.0.1.8/Application
    1.0.3.1Rev 1.02015-01-161.0.3.1/Application
    1.0.3.3Rev 1.02015-02-161.0.3.3/Application
    1.0.4.2Rev 1.02015-07-011.0.4.2/Application
    1.0.4.9Rev 1.02015-12-041.0.4.9/Applicationlatest release
    1.0.5.2Rev 1.02016-06-301.0.5.2/ApplicationBeta version

    Update History

    1.0.0.0

    • Official release

    v1.0.1.1

    • Added WiFi Direct(P2P) feature (limitations : WizFi250 can not operate as group owner.)
    • Added manual antenna settings and bgn mode setting
    • Fixed non-printable SSID problem
    • Fixed SSL TCP Server problem
    • Fixed < blank username/password> problem in Web
    • Fixed < adding Root CA problem> in AT+MCERT
    • Changed < Web server option> to < manual> by default (for potential memory leaks)
    • Improved Linkup/Linkdown event callback mechanism
    • Enabled user to stop the association retry with < ESC>
    • Added the following AT Commands :
      AT+WANT
      AT+WBGN
      AT+WP2P_START
      AT+WP2P_STOP
      AT+WP2P_PEERLIST
      AT+WP2P_INVITE
      AT+MCSTGPIO
      AT+MCUSTOM
      AT+FWEBSOPT
      AT+SOPT1
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250/wizfi250_programmersguide.html b/Product/Wi-Fi-Module/WizFi250/wizfi250_programmersguide.html index 2c5ef76f337..270bd83d30d 100644 --- a/Product/Wi-Fi-Module/WizFi250/wizfi250_programmersguide.html +++ b/Product/Wi-Fi-Module/WizFi250/wizfi250_programmersguide.html @@ -15,7 +15,7 @@ - + @@ -183,7 +183,7 @@

    at+scon=o,tsn,,,4000,0
    [OK]

    [CONNECT 0]

    {0,192.168.49.1,47160,19}Hello WizFi250.....
    {0,192.168.49.1,47160,19}Hello WizFi250.....`

    Appendix

    WizFi250 UART Throughput Test Report

    Test Environment


    Test Result


    1. Send 10Mbyte data to PC
    Baud rateTime
    (Using Command Mode)
    Speed(bit/s)Flow Control
    368640047s1.74MH/W
    18432001m 20s1.00MH/W
    9216002m 20s585KH/W
    1. Send 1Mbyte data to PC
    Baud rateData ModeCommand ModeFlow Control
    :::TimeSpeed(bit/s)TimeSpeed(bit/s):::
    368640024s341K5s1.63MH/W
    184320025s327K6s1.36MH/W
    92160026s315K12s682KH/W
    1152001m 35s86K1m 36s85KH/W
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi250/wizfi250_quickstart.html b/Product/Wi-Fi-Module/WizFi250/wizfi250_quickstart.html index 6c5f6c151ed..65fcbe6a39f 100644 --- a/Product/Wi-Fi-Module/WizFi250/wizfi250_quickstart.html +++ b/Product/Wi-Fi-Module/WizFi250/wizfi250_quickstart.html @@ -15,7 +15,7 @@ - + @@ -46,7 +46,7 @@ serial data will be sent to peer system immediately and Wizfi250 can receive data from peer system.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310.html b/Product/Wi-Fi-Module/WizFi310.html index 12b8244419e..5e125bc445d 100644 --- a/Product/Wi-Fi-Module/WizFi310.html +++ b/Product/Wi-Fi-Module/WizFi310.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ bandwidth
  • Low power consumption & excellent power management performance extend battery life.
  • Easy for integration into mobile and handheld device with flexible system configuration.
  • Serial Interface : UART
  • UART Max Baud : 921600 bps
  • Soft AP

  • comparison to WizFi250 module family:

    Material

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/at_commands.html b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/at_commands.html index 2ae8dd32192..73e04ad4301 100644 --- a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/at_commands.html +++ b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/at_commands.html @@ -15,7 +15,7 @@ - + @@ -303,7 +303,7 @@ Command. You can send data to specific socket opened through AT+SSEND command and receive data with information header which informs you on the socket number, the peer address and the received data length.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/examples.html b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/examples.html index 06362de7060..422e7a90e10 100644 --- a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/examples.html +++ b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/examples.html @@ -15,7 +15,7 @@ - + @@ -133,7 +133,7 @@ link.

    Refer to MQTT Example

    Example - GMMP

    You can find the examples of gmmp using the WizFi310 at following link.

    Refer to GMMP Example(written korean)

    Example - ThingPlug

    You can find the examples of connecting to ThingPlug using the WizFi310 at following link.

    Refer to ThingPlug Example(written in Korean)

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/firmware_upgrade_using_ota.html b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/firmware_upgrade_using_ota.html index 55f93134d18..b8d05a80b52 100644 --- a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/firmware_upgrade_using_ota.html +++ b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/firmware_upgrade_using_ota.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ click <Start OTA> button.

    If it is done successfully, you can see message as below.

    If this tool is displayed error message as below, you have to check WizFi310 or your binary whether it is right.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/firmware_upgrade_using_serial_interface.html b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/firmware_upgrade_using_serial_interface.html index 91df3e38b5c..973255f478f 100644 --- a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/firmware_upgrade_using_serial_interface.html +++ b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/firmware_upgrade_using_serial_interface.html @@ -15,7 +15,7 @@ - + @@ -37,7 +37,7 @@

    Step 3

    Select binary file. ( In this case, you have to use CRC option. )

    Step 4

    After select binary, Teraterm will send binary via XMODEM and If it is done successfully, WizFi310 will restart and display firmware version as below.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/gmmp_example.html b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/gmmp_example.html index 2beaaad04fd..92eb24f0fd9 100644 --- a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/gmmp_example.html +++ b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/gmmp_example.html @@ -15,7 +15,7 @@ - + @@ -50,7 +50,7 @@ 받아야 한다.

    데이터 조회

    장치 제어


    Application을 이용해서 WizFi310을 제어하는 과정은 위와 같은 절차에 따라서 진행된다.

    Open API로 테스트 하는 방법은 데이터 조회와 동일하다. 대부분의 제어 명령은 "제어 요청"과 "결과 조회" 두가지로 되어있다. 아래 예제는 WizFi310(GW)의 상태를 확인하는 "GW Status Check" 이다.

    5. GMMP 프로토콜을 사용하기 위한 WizFi310 AT Commands

    사용하는 AT command List

    AT+MMSG

    ElementParameterDescription
    level1응답을 출력하지 않는다.
    :::2응답과 이벤트 로그를 출력한다.(Default)
    :::3응답, 이벤트, 디버그를 출력한다.

    AT+GMMPSET

    ElementExampleDescription
    Start1 or 01: GMMP_GW_Registration과 GMMP_Delivery를 수행한다. GMMP_Delivery는 AT+GMMPDATA가 설정되어있어야 한다.
    0: GMMP_Delivery를 중지한다.
    ThingPlug IP61.250.21.211ThingPlug의 IP를 입력한다.
    ThingPlug Port31002ThingPlug의 TCP Listen Port를 입력한다.
    ThingPlug->마이페이지->서비스 정보수정에서 확인 가능
    Domain CodeThingPlugThingPlug의 서비스명을 입력한다.
    ThingPlug->마이페이지->서비스 정보수정에서 확인 가능
    Auth ID0008dc1e000000디바이스 등록시 입력한 MAC Address를 입력한다.
    ThingPlug->디바이스 정보->디바이스 조회에서 확인 가능
    Manufacture IDWIZnet_GWMFID제조사 ID를 입력한다.
    ThingPlug->디바이스 정보->디바이스 조회에서 확인 가능
    Device IDdeviceID디바이스 ID를 입력한다.
    디바이스 고유의 ID를 사용한다.

    AT+GMMPDATA

    ElementExampleDescription
    Option0 or 10: 설정된 주기마다 보낼 데이터를 설정한다.
    1: AT명령 즉시 데이터를 보낸다.
    DataDATA데이터

    AT+GMMPOPT

    1. 이벤트 로그. 디버그 프린트를 설정
    2. Heartbeat 주기 설정
    3. Reporting 주기 설정

    < Option > = 10

    ElementExampleDescription
    set0 or 10: 현재 설정된 값을 읽는다.
    1: val1, val2의 값으로 설정한다.
    val10 or 10: 이벤트 로그를 프린트 하지 않는다.
    1: 이벤트 로그를 프린트 한다.
    val20 or 10: 디버그 메세지를 프린트하지 않는다.
    1: 디버그 메세지를 프린트 한다.

    < Option > = 11

    ElementExampleDescription
    period10Heartbeat 패킷 전송 주기(단위: 분)

    < Option > = 12

    ElementExampleDescription
    period10Delivery 패킷 전송 주기(단위: 분)

    6. EXAMPLE

    GMMP Delivery 데이터 설정

    AT
    [OK]
    AT+WSET=0,SSID
    [OK]
    AT+WSEC=0,,12345678
    [OK]
    AT+WNET=1
    [OK]
    AT+WJOIN
    Joining : SSID
    Successfully joined : SSID

    [Link-Up Event]

    IP Addr : 192.168.1.4
    Gateway : 192.168.1.1

    [OK] <<< WiFi Association

    AT+MMSG=3 <<< GMMP 디버그 프린트
    [OK]
    AT+GMMPOPT=10,1,1,1
    [OK]
    AT+GMMPSET=1,61.250.21.211,31002,ThingPlug,0008dc000000,WIZnet,deviceID
    GMMPStartService : 61.250.21.211, 31002, ThingPlug, 0008dc000000,
    WIZnet, deviceID, 1 GMMPStartService : GMMP Thread is running
    [OK]
    GmmpRecvThread : connect try 61.250.21.211:31002, 34208

    [GMMP Connect]
    <OMP><Marker:OPS> [GW->OMP]GW GMMP_SetReg Start
    .
    .
    .
    GMMP Trace : Result Code\[0x0\], STATUS\_OK \</code\>

    GMMP Delivery 데이터 설정

    <<< GMMP로 ThingPlug 서버로 접속 된 이후 >>>

    AT+GMMPDATA=0,test data
    [OK]

    <<< 전송 주기가 되면 아래 패킷 전송 >>>
    <OMP><Marker:OPS> [GW->OMP]GMMP_SetDelivery Start
    <OMP><Marker:REQ>
    GMMP Trace : AuthID =0008dc000000
    GMMP Trace : Auth Key =SP10000000key
    GMMP Trace : T-ID =89
    GMMP Trace : Domain Code =ThingPlug
    GMMP Trace : GW ID=SC10000000
    GMMP Trace : Device ID =
    GMMP Trace : ucReportType[0x1]
    GMMP Trace : ucMediaType[0x1]
    GMMP Trace : usMessageBody = test data <<< 설정한 데이터
    GMMP Trace : [GW->OMP]GMMP_SetDelivery End
    GMMP Trace : Recv Header Type = c, Read Body Size = 43
    <OMP><Marker:RSP> [OMP->GW]OPERATION_DELIVERY_RSP Start
    GMMP Trace : AuthID =0008dc000000
    GMMP Trace : Auth Key =SP10000000key
    GMMP Trace : T-ID =89
    GMMP Trace : Domain Code =ThingPlug
    GMMP Trace : GW ID=SC10000000
    GMMP Trace : Device ID =
    GMMP Trace : Result Code[0x0], STATUS_OK
    GMMP Trace : unBackOffTime = 0
    <OMP><Marker:OPE>
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/mqtt_example.html b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/mqtt_example.html index ec1882446cd..483043e5ac3 100644 --- a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/mqtt_example.html +++ b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/mqtt_example.html @@ -15,7 +15,7 @@ - + @@ -45,7 +45,7 @@ feed's topic to be notified when the feed has a new value. Any one of the following topic forms is valid for a feed
    For Examples.

    AT+MQTTPUB=wiznet/f/WizFi310,4
    [4]
    ...
    Input 4bytes to Serial interface.
    ...
    [OK]

    2nd parameter of AT+MQTTPUB command is '4'. it means that you can publish the 4 byte.

    Display the message in io.adafruit.com

    You can see the published data in io.adafruit.com.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/overview.html b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/overview.html index 658442d34f2..1b7ba2b9ab6 100644 --- a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/overview.html +++ b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/overview.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ operates and how programmers have to handle those commands to get the expected response.
    For WizFi250 fans, the WizFi310 comes with compatible AT Commands

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/thingplug_example.html b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/thingplug_example.html index 63b25117b04..b165f00597b 100644 --- a/Product/Wi-Fi-Module/WizFi310/Programers-Guide/thingplug_example.html +++ b/Product/Wi-Fi-Module/WizFi310/Programers-Guide/thingplug_example.html @@ -15,7 +15,7 @@ - + @@ -36,7 +36,7 @@ 대시보드에서 데이터 확인이 가능하다.

    Data 전송 포맷(TTV)

    ThingPlug에 등록된 디바이스 제어

    1. 대시보드에 제어 위젯을 추가한다.


    1. 대시보드에 생성된 제어 위젯의 버튼을 누르면, 다음과 같이 디바이스의 응답을 기다린다.

    1. 설정된 디바이스의 동작에 따라, 제어 위젯에서 결과를 나타낸다.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/datasheet.html b/Product/Wi-Fi-Module/WizFi310/datasheet.html index f395d946f3d..14198fe1013 100644 --- a/Product/Wi-Fi-Module/WizFi310/datasheet.html +++ b/Product/Wi-Fi-Module/WizFi310/datasheet.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Datasheet

    WizFi310 Datasheet v0.0.0 - English

    Datasheet History

    VersionDateDescription
    V0.0.02016-05-20release version

    Introduction

    WizFi310 is a small size wireless module for the highest level of integration, featuring 802.11b/g and 802.11n.

    It has an onboard antenna, and an external antenna interface, RF output PIN also exists in the board.

    WizFi310 internally integrated TCP / IP protocol stack, supporting numerous protocols such as ARP, IP, ICMP, TCP, UDP, DHCP CLIENT, DHCP SERVER, DNS and other etc. It supports AP mode, Station mode. It also support rich AT commands for most kinds of application needs. Users can easily and quickly use it on wifi networking and data transmission. The baud rate of module serial port up to 921600bps, which can fully meet on low-rate applications.

    In the networking part, WizFi310 supports network parameters storage in the module that reduces time to connect to a network. It also supports WPS. For application protocols, MQTT and SSL were supported in this module.

    For software and driver development, WIZnet provides extensive technical documents and reference software codes for system integration.

    Features

    • Application
      • UART serial AT command set operation
      • Support for multiple baud rate
      • Support wireless configuration and OTA firmware upgrade
      • Support on fast networking application functions (WPS function)
      • Support MQTT, GMMP, TLS applications protocols
    • Standards Supported
      • 802.11b/g/n compatible WLAN
      • Light Weight TCP/IP protocol
      • WPA, WPA2, Open, shared key
      • WPS support
    • WLAN MAC Features
      • CMOS MAC, Baseband PHY, and RF in a single chip for 802.11b/g/n compatible WLAN
      • Complete 802.11n solution for 2.4GHz band
      • 72.2Mbps receive PHY rate and 72.2Mbps transmit PHY rate using 20MHz bandwidth
      • 150Mbps receive PHY rate and 150Mbps transmit PHY rate using 40MHz bandwidth
      • PHY-level spoofing to enhance legacy compatibility
      • Power saving mechanism
    • WLAN PHY Features
      • 802.11n OFDM
      • One Transmit and one Receive path (1T1R)
      • Short Guard Interval (400ns)
      • DSSS with DBPSK and DQPSK, CCK modulation with long and short preamble
      • Maximum data rate 54Mbps in 802.11g and 150Mbps in 802.11n
      • Fast receiver Automatic Gain Control (AGC)

    Block Diagram

    Module Hardware Description

    Pictures

    Pin Map

    Pin Description

    NoNameTypeDescription
    1GND-Ground
    2RF_OUT-2.4GHz RF output
    3GND-Ground
    4VDDIO-3.3V for Digital IO or Digital blocks
    5JTAG_CLK-For normal operation, if JTAG is not used, this pin can be left unconnected (NC)
    6JTAG_TMS-For normal operation, if JTAG is not used, this pin can be left unconnected (NC)
    7JTAG_TDO-For normal operation, if JTAG is not used, this pin can be left unconnected (NC)
    8JTAG_TDI-For normal operation, if JTAG is not used, this pin can be left unconnected (NC)
    9JTAG_TRST-For normal operation, if JTAG is not used, this pin can be left unconnected (NC)
    10NC(ADC)--
    11Reset-Module reset pin(Active low)
    12NC(GPIOA0)-Ground
    13NC(GPIOA1)--
    14NC(GPIOA2)--
    15Mode LED--
    16NC(GPIOA4)--
    17WiFi LED--
    18NC(GPIOA7)--
    19NC(GPIOA6)--
    20GND-Ground
    21GND-Ground
    22VCC 3.3V-3.3V power supply
    23TXD-Serial data communication interface send
    24RTS-Serial flow control pin, ready to receive data/request the other party to send data (Active low)
    25CTS-Serial flow control pin, ready to send data/request each other to send data (Active low, High level cannot send/Low level can send data)
    26RXD-Serial data communication interfece receive
    27NC(GPIOC7)--
    28FUNC--
    29NC(GPIOB3)--
    30NC(GPIOB2)--
    31LOG RX--
    32LOG TX--
    33GND-Groun
    34NC--
    35NC--

    Electrical Specification

    General specification

    **ITEMSCONTENTS**
    Operating frequency2.400 ~ 2.4835Ghz
    WiFi standard802.11b/g/n
    Modulation11b: DBPSK,DQPSK and CCK and DSSS,11g: BPSK,QPSK16Qam,64QAM and OFDM,
    11n: MCSO-15 OFD
    Data rates11b: 1,2,5.5 and 11Mbps,11g:6,9,12,18,24,36,48, and 54Mbps,11n:MCSO-15, up to 150Mbps
    Host interfaceUART
    DimensionsTypical (L x W): 21mm x 18mm
    Operation Temperature-20°C to +85°C
    Storage Temperature-55°C to +125°C
    Operation Voltage3.3V±0.2V

    802.11g Mode

    ITEMSCONTENTS
    SpecificationIEEE802.11g
    ModeOFDM
    ChannelCH1 to CH13
    Data rate6, 9, 12, 18, 24, 36, 48, 54Mbps

    Power level(calibrated)MinimumTypicalMaximumUnitNote
    16dBm Target(For each antenna Port)121416dBm

    Constellation error(EVM)@target powerMinimumTypicalMaximumUnitNote
    54Mbps--30-28dB
    Frequency error-250+25kHz

    Minimum input level sensitivityMinimumTypicalMaximumUnitNote
    54Mbps--78-dBm
    Maximum input level(PER ≤ 10 %)--10-dBM

    802.11n HT20 Mode

    ITEMSCONTENTS
    SpecificationIEEE802.11n HT20 @2.4Ghz
    ModeOFDM
    ChannelCH1 to CH13
    Data rateMCS0/1/2/3/4/5/6/7/8/9/10/11/12/13/14/15

    Power level(calibrated)MinimumTypicalMaximumUnit.
    16dBm Target(For each antenna Port)121416dBm

    Constellation error(EVM)@target powerMinimumTypicalMaximumUnitNote
    MCS7--30-28dB
    Frequency error-250+25kHz

    Minimum input level sensitivityMinimumTypicalMaximumUnitNote
    MCS7(PER ≤ 10 %)--76-dBm
    Maximum input level(PER ≤ 10 %)--10-dBM

    802.11n HT40 Mode

    ITEMSCONTENTS
    SpecificationIEEE802.11n HT40 @2.4Ghz
    ModeOFDM
    ChannelCH1 to CH13\
    Data rateMCS0/1/2/3/4/5/6/7/8/9/10/11/12/13/14/15

    Power level(calibrated)MinimumTypicalMaximumUnitNote
    16dBm Target(For each antenna Port)121416dBm

    Constellation error(EVM)@target powerMinimumTypicalMaximumUnitNote
    MCS7--30-28dB
    Frequency error-250+25kHz

    Minimum input level sensitivityMinimumTypicalMaximumUnitNote
    MCS7(PER ≤ 10 %)--74-dBm
    Maximum input level(PER ≤ 10 %)--10-dBM

    NVM specification

    ITEMSCONTENTS
    SpecificationNVM Flash
    Space160KByte
    Operate write timesTotal 10000 times

    Note: NVM flash is used to store user configuration or firmware, do not use to store these often changed configuration or user data.

    Power Consumption

    StateCurrent(3.3V)Description
    Deep Sleep5.5uALow Power Timer and GPIO Event Wake up
    Deep Standby25uALow Power Timer and GPIO Event Wake up
    Associated Idle(DTIM=1)3.3mAAssociated with AP but no traffic
    Associated Idle(DTIM=2)2.41mAAssociated with AP but no traffic
    Associated Idle(DTIM=3)1.98mAAssociated with AP but no traffic
    Sleep0.5mAAssociated with AP but no traffic
    Run in active clock25mACPU full run, UART available,WiFi is disable
    11n RX mode62mACPU full run, UART available,WiFi is in 11n RX
    11n TX mode@13dBm162mACPU full run, UART available,WiFi is in 11n TX
    Peak current240mACPU full run, UART available,WiFi is in 11n TX

    Dimensions

    TypeThickness (Height)
    with CAN3.15 (+/-) 0.15mm

    Reference schematic

    WizFi310 Ref.Schematic
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/quick_start_guide.html b/Product/Wi-Fi-Module/WizFi310/quick_start_guide.html index a3dbefcbd74..ee152982a4d 100644 --- a/Product/Wi-Fi-Module/WizFi310/quick_start_guide.html +++ b/Product/Wi-Fi-Module/WizFi310/quick_start_guide.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ In order to exit data mode or enter into command mode again, You have to send a single '+++' string without CR or LF (0x0D, 0x0A) - just the three (0x2B = '+') characters.

    Exchanging data with a peer system

    This section explains how to exchange data between WizFi310 and Peer System. This picture describes the flow for data communication.

    After TCP connection is done successfully and then if WizFi310 receives serial data, the serial data will be sent to peer system immediately. And WizFi310 can receive data from peer system.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/wizfi310_evb_if_dimension.html b/Product/Wi-Fi-Module/WizFi310/wizfi310_evb_if_dimension.html index 8cc29135e91..bc7c2219e37 100644 --- a/Product/Wi-Fi-Module/WizFi310/wizfi310_evb_if_dimension.html +++ b/Product/Wi-Fi-Module/WizFi310/wizfi310_evb_if_dimension.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/wizfi310_evb_sch.html b/Product/Wi-Fi-Module/WizFi310/wizfi310_evb_sch.html index 2f8017d14c6..b4fa366f609 100644 --- a/Product/Wi-Fi-Module/WizFi310/wizfi310_evb_sch.html +++ b/Product/Wi-Fi-Module/WizFi310/wizfi310_evb_sch.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/wizfi310_firmware_using_ota.html b/Product/Wi-Fi-Module/WizFi310/wizfi310_firmware_using_ota.html index 641ea7b5a58..fb49528d5f3 100644 --- a/Product/Wi-Fi-Module/WizFi310/wizfi310_firmware_using_ota.html +++ b/Product/Wi-Fi-Module/WizFi310/wizfi310_firmware_using_ota.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WizFi310 Firmware(Using OTA)

    Official Latest firmware release

    FW VersionHardwareDateDownloadDescription
    1.0.3.3Rev 1.02017-04-211.0.3.3/Binary for OTAlatest release

    Firmware history/Beta firmware

    FW VersionHardwareDateDownloadDescription
    1.0.0.0Rev 1.02016-06-171.0.0.0/Binary for OTA
    1.0.3.3Rev 1.02017-04-211.0.3.3/Binary for OTA

    Update History

    < v1.0.0.0>

    • Official release
    • AT Commands is compatible with WizFi250

    < v1.0.3.3>

    • Fixed UDP remote IP address bug (1.0.3.2)
    • Add DNS service for MQTT CONNECT (1.0.3.2)
    • Add Telco's IoT Platform Command(KT, SKT) (1.0.3.2)
    • Modify SKT ThingPlug MQTT Topic rule
    • Modify MQTT Client ID, Password, Username Length
    • Client ID: 128byte, Username: 128byte, Password 256byte

    WizFi310_OTA_Tool

    VersionDateDownloadDescription
    1.0.0.02016-06-17WizFi310_OTA_Tool_V1.0.0.0/Application

    Guide for WizFi310 OTA Tool

    Refer to How to use WizFi310 OTA Tool

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi310/wizfi310_firmware_using_serial.html b/Product/Wi-Fi-Module/WizFi310/wizfi310_firmware_using_serial.html index e8bfee62dbb..fff4d2e3e4e 100644 --- a/Product/Wi-Fi-Module/WizFi310/wizfi310_firmware_using_serial.html +++ b/Product/Wi-Fi-Module/WizFi310/wizfi310_firmware_using_serial.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WizFi310 Firmware(Using Serial)

    Official Latest firmware release

    FW VersionHardwareDateDownloadDescription
    1.0.3.3Rev 1.02017-04-211.0.3.3/Applicationlatest release

    Firmware history/Beta firmware

    FW VersionHardwareDateDownloadDescription
    1.0.0.0Rev 1.02016-06-171.0.0.0/Application
    1.0.3.3Rev 1.02017-04-221.0.3.3/Applicationlatest release

    Update History

    < v1.0.0.0>

    • Official release
    • AT Commands is compatible with WizFi250

    < v1.0.3.3>

    • Fixed UDP remote IP address bug (1.0.3.2)
    • Add DNS service for MQTT CONNECT (1.0.3.2)
    • Add Telco's IoT Platform Command(KT, SKT) (1.0.3.2)
    • Modify SKT ThingPlug MQTT Topic rule
    • Modify MQTT Client ID, Password, Username Length
    • Client ID: 128byte, Username: 128byte, Password 256byte

    WizFi310_Update_Tool(Serial)

    VersionDateDownloadDescription
    1.0.0.02016-06-171.0.0.0/Application

    Guide for using upgrade tool

    Refer to How to use upgrade tool for serial interface

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi360.html b/Product/Wi-Fi-Module/WizFi360.html index 9e6020a2473..2a74e3c6796 100644 --- a/Product/Wi-Fi-Module/WizFi360.html +++ b/Product/Wi-Fi-Module/WizFi360.html @@ -15,7 +15,7 @@ - + @@ -39,7 +39,7 @@ The AT command comparison with esp8266
  • 🌎Ref schematic: Support the schematic of WizFi360-EVB to Gerber, Partlist, Schematic format.

  • For more information visit the 🌎WizFi360 Github.


    Q & A

    🌎WizFi360 Forum : WIZnet Forum for Technical support and Project sharing


    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi360/Other-Resource/w600_sdk.html b/Product/Wi-Fi-Module/WizFi360/Other-Resource/w600_sdk.html index 7915136a66e..4f953ab2e78 100644 --- a/Product/Wi-Fi-Module/WizFi360/Other-Resource/w600_sdk.html +++ b/Product/Wi-Fi-Module/WizFi360/Other-Resource/w600_sdk.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ Protocol and other public function modules.


    Software SDK

    Software SDK User Manual

    Chip vendor original page

    🌎W600 : WinnerMicro W600 download Page


    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi360/application_examples.html b/Product/Wi-Fi-Module/WizFi360/application_examples.html index 2ada6603cc0..043b83955e9 100644 --- a/Product/Wi-Fi-Module/WizFi360/application_examples.html +++ b/Product/Wi-Fi-Module/WizFi360/application_examples.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ Client, MQTT Client and MS-AZure Cloud example. Also, this provides a TCP performance test result with a UART interface.

    TCP Performance Test (UART I/F)

    HTTP Server

    Please visit 🌎https://github.com/wizfi/WizFi360EVB-Arduino for the code.

    HTTP Client

    MQTT Client

    MS-Azure cloud example

    Airkiss

    AP configration setting and TCP communication using Smartphone App.

    SPI mode

    SPI Slave Communication mode.

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi360/documents.html b/Product/Wi-Fi-Module/WizFi360/documents.html index f8f6cdfbd37..d2c4319400b 100644 --- a/Product/Wi-Fi-Module/WizFi360/documents.html +++ b/Product/Wi-Fi-Module/WizFi360/documents.html @@ -15,7 +15,7 @@ - + @@ -37,7 +37,7 @@ Hub.

    VersionDateDecription
    V 1.1.1.8JUN2022Modify AT+MQTTTOPIC, Add AT+MQTTQOS, AT+MQTTPUBSEND

    Old Datasheet History

    VersionDateDecription
    V 1.0.0AUG2019Initial Release
    V 1.0.1AUG2019Please refer to document
    V 1.0.2AUG2019Add AT+WPS, AT+SLEEP, AT+GLSP Command, renewal layout
    V 1.0.3AUG2019Add MQTT Commands
    V 1.0.4SEP2019Fix typo
    V 1.0.5OCT2019Modify CWMODE Factory Default
    V 1.0.6OCT2019Add Azure commands, AT+SSLCONF command and AT+CASEND command, Fix typo, Add Command History
    V 1.0.7MAR2020Add AT+WIZ_NETCONFIG, Modify AT+CWSTARTSMART, Modify minor typos and error
    V 1.0.7.2MAR2020Modify AT+WIZ_NETCONFIG, Modify AT+CWSTARTSMART, Modify minor typos and error
    V 1.1.1.1JAN2021Modify AT+MQTTCON
    V 1.1.1.2APR2021Add AT+AWSCON, AT+AWSPKSEND, AT+CLICASEND
    V 1.1.1.7MAY2022Modify AT+CIUPDATE firmware download link

    AT Command Comparison Sheet

    The AT Command Comparison Sheet provides comparison with ESP8266 AT command.

    VersionDateDecription
    V1.0.0AUG2019Initial Release
    V1.0.1OCT2019Modify AT+CIPSSLCCONF and Add AT+AZCON, AT+AZSET and AT+CASEND command
    V1.0.2APR2021Add AT+AWSCON, AT+AWSPKSEND and AT+CLICASEND command

    AT Command examples

    The AT command examples document include TCP/UDP/SSL connection result and AT command used example.

    VersionDateDecription
    V1.0.3OCT2019Add “Auto TCP Connection on Transparent Mode”

    Old Datasheet History

    VersionDateDecription
    V1.0.0AUG2019Initial Release
    V1.0.1OCT2019Fixed typo
    V1.0.2OCT2019Modified Overview description

    Quick Start Guide

    WizFi360-EVB-Shield / WizFi360-EVB-Mini

    VersionDateDecription
    V1.1.3SEP2019Modified the Environment setting and the Example

    Old Reference Manual History

    VersionDateDecription
    V1.0.0AUG2019Initial version
    V1.1.0SEP2019Modified environment setting
    V1.1.1OCT2019Fixed Typo
    V1.1.2OCT2019Fixed Typo and Modified Section 1 description

    Firmware Update Guide

    VersionDateDecription
    V1.2.4OCT2019Modified to WizFi360-EVB-Shield from WizFi360-EVB

    Old Reference Manual History

    VersionDateDecription
    V1.0.0AUG2019Initial Release
    V1.1.0AUG2019Added explanation about firmware updates using the cloud
    V1.2.0AUG2019Modified explanation about Using upgrade tool
    V1.2.1AUG2019Modified explanation about UART
    V1.2.2SEP2019Added explanation about UART1
    V1.2.3SEP2019Fixed typo and Modified github link

    Hardware Design Guide

    VersionDateDecription
    V1.0.3NOV2019Initial Release
    V1.0.4JUN2022Edited “Figure 1. WizFi360 Pinout”
    Edited “Figure 1. Reference Schematic”
    Edited “Figure 2. UART”
    Edited “Figure 3. SPI Interface”
    Edited “Figure 4. UART Flow Control”
    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi360/wizfi360_evb_mini.html b/Product/Wi-Fi-Module/WizFi360/wizfi360_evb_mini.html index c4442d3d54f..47874c7357c 100644 --- a/Product/Wi-Fi-Module/WizFi360/wizfi360_evb_mini.html +++ b/Product/Wi-Fi-Module/WizFi360/wizfi360_evb_mini.html @@ -15,7 +15,7 @@ - + @@ -30,7 +30,7 @@ values
  • Support up to 5 TCP / UDP links
  • Obtaining IP address automatically from the DHCP server (Station mode)
  • DHCP service for Wireless LAN clients (AP mode)
  • Support DNS for communication with servers by domain name
  • Support “Keep-Alive” to monitor TCP connection
  • Support “Ping” for monitoring network status
  • Built-in SNTP client for receiving the network time
  • Support built-in unique MAC address and user configurable
  • Support firmware upgrade by UART Download / OTA (via WLAN)
  • Industrial grade (operating temperature range: -40 ° C ~ 85 ° C)
  • CE, FCC certification 
  • ETC
  • Quick Start Guide


    Datasheet


    Technical Reference

    Ref Schematic & Other Board Schematics


    Library


    ETC

    Serial Port Driver


    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi360/wizfi360_evb_shield.html b/Product/Wi-Fi-Module/WizFi360/wizfi360_evb_shield.html index 82b7f79b3db..c6eb2cb1ff1 100644 --- a/Product/Wi-Fi-Module/WizFi360/wizfi360_evb_shield.html +++ b/Product/Wi-Fi-Module/WizFi360/wizfi360_evb_shield.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ mode)
  • DHCP service for Wireless LAN clients (AP mode)
  • Support DNS for communication with servers by domain name
  • Support “Keep-Alive” to monitor TCP connection
  • Support “Ping” for monitoring network status
  • Built-in SNTP client for receiving the network time
  • Support built-in unique MAC address and user configurable
  • Support firmware upgrade by UART Download / OTA (via WLAN)
  • Industrial grade (operating temperature range: -40 ° C ~ 85 ° C)
  • CE, FCC certification 
  • ETC
  • Quick Start Guide


    Datasheet


    Technical Reference

    Ref Schematic & Other Board Schematics


    Library


    ETC

    Serial Port Driver

    Sensor Datasheets


    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi360/wizfi360io.html b/Product/Wi-Fi-Module/WizFi360/wizfi360io.html index 388e9bcd11e..0d3158c9328 100644 --- a/Product/Wi-Fi-Module/WizFi360/wizfi360io.html +++ b/Product/Wi-Fi-Module/WizFi360/wizfi360io.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ values
  • Support up to 5 TCP / UDP links
  • Obtaining IP address automatically from the DHCP server (Station mode)
  • DHCP service for Wireless LAN clients (AP mode)
  • Support DNS for communication with servers by domain name
  • Support “Keep-Alive” to monitor TCP connection
  • Support “Ping” for monitoring network status
  • Built-in SNTP client for receiving the network time
  • Support built-in unique MAC address and user configurable
  • Support firmware upgrade by UART Download / OTA (via WLAN)
  • Industrial grade (operating temperature range: -40 ° C ~ 85 ° C)
  • CE, FCC certification 
  • WizFi360io-C
  • WizFi360-H
  • Quick Start Guide


    Datasheet


    Technical Reference

    Schematic & Partlist & Gerber


    Library


    ETC

    WizFi360io-C Connector Datasheet


    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi630A.html b/Product/Wi-Fi-Module/WizFi630A.html index 5380aa2dc45..5498db05068 100644 --- a/Product/Wi-Fi-Module/WizFi630A.html +++ b/Product/Wi-Fi-Module/WizFi630A.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ serial commands for simple Wi-Fi settings; not only serial devices but 8/16/32 bit micro controllers can also use UART for simple Wi-Fi settings.


    Material

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi630S.html b/Product/Wi-Fi-Module/WizFi630S.html index a0fb344bf65..10886f3bd28 100644 --- a/Product/Wi-Fi-Module/WizFi630S.html +++ b/Product/Wi-Fi-Module/WizFi630S.html @@ -15,7 +15,7 @@ - + @@ -43,7 +43,7 @@ : This section provides guide documents for HW design with the WizFi630S.
  • Certificate : This section provides WizFi630S certificate and test reports.

  • Q & A

    WizFi630S Forum : WIZnet Forum for Technical support and Project sharing


    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi630S/certificate.html b/Product/Wi-Fi-Module/WizFi630S/certificate.html index a05e72d6799..14a6a665564 100644 --- a/Product/Wi-Fi-Module/WizFi630S/certificate.html +++ b/Product/Wi-Fi-Module/WizFi630S/certificate.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    Certification

    This section provides WizFi630S certificate and test reports.

    CE Certification

    Certificate ID: RE-19071601
    CE Test Standard
    • EN 62386-1:2014+A11:2017
    • EN 62311:2008
    • EN 301 489-1 V2.1.1
    • EN 301 489-17 V3.1.1
    • EN 300 328 V2.1.1
    Issue DateExpiry Date
    JUL2019JUL2024

    FCC Certification

    Certificate ID: 2AKKWWIZFI630S
    FCC Test Standard
    Issue Date
    JUL2019

    KC Certification

    Certificate ID: 19-048271-01
    KC Test Standard
    Issue Date
    AUG2019

    Japan MIC(TELEC) Certification

    Certificate ID: 208-190118
    Japan MIC Test Standard
    Issue Date
    AUG2019

    RoHS Certification

    RoHS Test Standard
    • 2011/65/EU Annex II amending Annex (EU)2015/863 and amending Annex (EU)2017/2102
    Issue Date
    AUG2019

    Reliability test Report

    Test Standard Condition
    • IEC 60068-2-1 : Cold
    • IEC 60068-2-2 : Dry heat
    • IEC 60068-2-14 : Rapid change of temperature with prescibed time of transfer
    Test Condition
    Issue Date
    Nov2019

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi630S/datasheet.html b/Product/Wi-Fi-Module/WizFi630S/datasheet.html index 723d0c3edcd..b25a280e0d0 100644 --- a/Product/Wi-Fi-Module/WizFi630S/datasheet.html +++ b/Product/Wi-Fi-Module/WizFi630S/datasheet.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ WizFi630S-EVB and how to migrate from the previous model the WizFi630A to WizFi630S.

    WizFi630S

    This document provides features and pin map of the WizFi630S.

    VersionDateDescription
    V 1.0.0SEP2019Initial Release

    WizFi630S-EVB

    This document provides features of the WizFi630S-EVB and how to use it.

    VersionDateDescription
    V 1.0.0DEC2019Initial Release

    WizFi630S Migration Guide

    This document provides a guide for users to migrate from the old WizFi630A, the new WizFi630S.

    VersionDateDescription
    V 1.0.0SEP2019Initial Release

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi630S/hw_reference.html b/Product/Wi-Fi-Module/WizFi630S/hw_reference.html index 98ff1b53616..413868d0fb1 100644 --- a/Product/Wi-Fi-Module/WizFi630S/hw_reference.html +++ b/Product/Wi-Fi-Module/WizFi630S/hw_reference.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    HW Reference

    This section provides guide documents to help you design the Hardware with the WizFi630S.

    Hardware Design Guide

    This document provides a user manual for Hardware developer.

    VersionDateDescription
    V 1.0.0NOV2019Initial Release

    WizFi630S Reference

    Reference schematics of WizFi630S.

    VersionDateDescription
    V 1.0.0SEP2019Initial Release
    VersionDateDescription
    V 1.0.0SEP2019Initial Release

    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/WizFi630S/user_guide.html b/Product/Wi-Fi-Module/WizFi630S/user_guide.html index 2db80dbd8ad..479953db1b4 100644 --- a/Product/Wi-Fi-Module/WizFi630S/user_guide.html +++ b/Product/Wi-Fi-Module/WizFi630S/user_guide.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ routers, OpenWrt is built from the ground up to be a full-featured, easily modifiable operating system for embedded devices.

    Quick start guide

    This document provides basic operating method for beginner.

    VersionDateDescription
    V 1.1.0NOV2019Typo correction

    External Progamming

    This documents provide how to use the WizFi630S for Software developer.

    VersionDateDescription
    V 1.2.0NOV2019Update
    VersionDateDescription
    V 1.0.0SEP2019Initial Release
    VersionDateDescription
    V 1.0.0NOV2019Initial Release
    VersionDateDescription
    V 1.0.0NOV2019Initial Release

    Test Reports

    This document provide test result we tested.

    VersionDateDescription
    V 1.0.0MAR2020Initial Release

    OpenWrt Documents

    This parts provides links to virtually all the information about OpenWrt for Newcomer, User, Developer.


    - + \ No newline at end of file diff --git a/Product/Wi-Fi-Module/wi_fi_module.html b/Product/Wi-Fi-Module/wi_fi_module.html index 67385a6f68a..7a8121c7432 100644 --- a/Product/Wi-Fi-Module/wi_fi_module.html +++ b/Product/Wi-Fi-Module/wi_fi_module.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ device and appliance manufacturers to add WiFi capabilities to their products. They provide UART or SPI interfaces which enable connections to any 8/16/32-bit microcontroller via simple AT commands.


    Product Family

    WizFi630SWizFi360WizFi250
    ImageWizFi630SWizFi360-PA(PCB Antena)
    Operation ModeStation(Client), AP, Gateway, AP-STAStation(Client), Soft APStation(Client), Soft AP
    Wireless Standard802.11b/g/n, 2.4G802.11b/g/n, 2.4G802.11b/g/n, 2.4G
    InterfaceUART, PHY, GPIO, I2C, I2S, PWMUART, SPI, GPIO, ADCUART, SPI, GPIO, ADC
    PackageMini PCIe (electrical)SMD Type/ Pin HeaderSMD Type/ Pin Header
    Power ConsumptiontbdReceive=100-110mA (11b/g/n)
    Transmit = 230mA(11b)
    210mA(11g & 11b)
    Peak=TBD(230mA)
    Receive=120mA
    Transmit = 265-385mA
    ConfigurationWeb, SSH, serial consoleAT CommandAT Command, Web
    Output Power802.11b: 11dBm@1Mbps
    802.11g: 10dBm@6Mbps
    802.11n HT20: 9.5dBm@MCS0
    802.11n HT40: 7dBm@MCS0
    802.11b: 19dBm
    802.11g: 13.5dBm
    802.11n: 12dBm
    802.11b: 16.5dBm
    802.11g: 13-15dBm
    802.11n: 12-14.5dBm
    Booting Time30 - 50 secnder 100msunder 100ms
    Operation Temp (℃)-25°C .. +80°C-40 .. 85-20 .. 85
    Dimension (mm)33 x 43 x 3PA : 24x16x3, CON : 17x16x328x20x1.9
    CertificationKC, CE, FCC, TELECKC, CE, FCC, TELECKC, CE, FCC
    Evaluation BoardWizFi630S-EVBWizFi360-EVB-Pico
    WizFi360-EVB-Shield
    WizFi360-EVB-Mini
    WizFi250-EVB
    caution

    Please note that WizFi630A, WizFi310, WizFi210 Wi-Fi modules are discontinued.

    We do not recommend using them in new design.

    WizFi630AWizFi310WizFi210
    ImageWizFi630AWizFi210
    Operation ModeStation(Client), AP, Gateway, Ad hocStation(Client), Soft APStation(Client), Soft AP, Ad hoc
    Wireless Standard802.11b/g/n, 2.4G802.11b/g/n, 2.4G802.11b, 2.4G
    Interface2x UART, 3x PHY, GPIO, I2C, u.FLUART, GPIO, ADCUART, SPI, GPIO, ADC
    PackageMini PCIe (electrical)SMD TypeSMD Type
    Power Consumption240 ~ 600 mAReceive=62mA (11n)
    Transmit = 162mA(11n)
    Peak=240mA
    Standby = 35 μA
    Receive = 125 mA
    Transmit = 135 mA
    ConfigurationWeb, SSH, serial consoleAT CommandAT Command
    Output Power802.11b:17dBm@11Mbps
    802.11g:13dBm@54Mbps
    802.11n:13dBm@150Mbps/72Mbps
    802.11b: 17dBm
    802.11g: 14dBm
    802.11n: 14dBm
    8 dBm
    Booting Time30 - 50 secunder 100msunder 100ms
    Operation Temp (℃)0°C .. +50°C-20 .. 85-40 .. 85
    Dimension (mm)33 x 43 x 6.324.5x18.6x.1532x23.3x2.9
    CertificationCE, FCCKC, CE, FCCKC, CE, FCC, TELEC
    Evaluation BoardWizFi630A-EVBWizFi310-EVBWizFi210
    - + \ No newline at end of file diff --git a/Product/iEthernet.html b/Product/iEthernet.html index 860865ba292..eaab49fa831 100644 --- a/Product/iEthernet.html +++ b/Product/iEthernet.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    iEthernet

    Overview

    iEthernet is the Ethernet controller chip that includes hardwired TCP/IP Core & MAC (\&PHY).


    Product Family

    caution

    W5200 is not recommended for new design. This chip is not supported by ioLibrary.

    If there are any questions, please use our Forum or contact us.

    W6100W5100SW5500W5300W5100W3150A+
    not recommended for new design
    W5200
    not recommended for new design
    ImageW6100W5100SW5500W5300W5100W3150A
    Embedded CoreTCP/IPv4/IPv6, MAC & PHYTCP/IP, MAC & PHYTCP/IP, MAC & PHYTCP/IP, MAC & PHYTCP/IP, MAC & PHYTCP/IP & MACTCP/IP, MAC & PHY
    Host I/F8bit BUS, Fast SPI8bit BUS, SPIFast SPI8/16bit BUS8bit BUS, SPI8bit BUS, SPIFast SPI
    TX/RX Buffer32KB16KB32KB128KB16KB16KB32KB
    HW Socket #8488448
    Network PerformanceMax.25MbpsMax.25MbpsMax.15MbpsMax.80MbpsMax.25MbpsMax.25MbpsMax.10Mbps
    Operation Temp (℃)-40 .. +85-40 .. +85-40 .. +85-40 .. +85-40 .. +85-40 .. +85-40 .. +85
    Package48LQFP / QFN48LQFP / QFN48LQFP100LQFP80LQFP64LQFP48QFN
    Size7x77x77x714x1410x1010x107x7
    Evaluation BoardW6100-EVBW5100S-EVB

    W5100S-EVB-Pico
    W5500-EVBW5300-E01-ARMW5100E01-AVREVB-B1+W5200E01-M3

    Product Application Project

    We put together the projects about W5x00, W6100 and W7500. Currently, We are adding as integration version projects called W5x00. Also the projects of W5100,W5200 and W5300 were implemented as AVRs and It is not specified here.

    For more detailed information, please visit the Github


    WIZnet ioLibrary Examples

    We put together the projects about W5x00, W6100 and W7500. Currently, We are adding as integration version projects called W5x00. Also the projects of W5100,W5200 and W5300 were implemented as AVRs and It is not specified here.

    Example Table

    W6100W5x00W5100S-EVBW5500-EVB
    Loopback[LINK][LINK][LINK][LINK]
    SPI DMA[LINK][LINK]
    DHCP[LINK][LINK]
    DNS[LINK][LINK]
    DDNS[LINK]
    FTP Client[LINK]
    FTP Server[LINK][LINK]
    MQTT[LINK][LINK]
    SNMPv1[LINK][LINK]
    SMTP[LINK]
    SNTP[LINK][LINK]
    TFTP[LINK]
    HTTP Server[LINK][LINK][LINK]
    HTTP Client[LINK][LINK]
    PPPoE
    IPRAW
    NTP[LINK]
    TLS[LINK][LINK]--
    Multicast[LINK]
    UpnP
    Twitter
    ModBUS
    Telnet
    S2E
    Addr Auto[LINK]---

    Example List

    - + \ No newline at end of file diff --git a/Product/iEthernet/W3150.html b/Product/iEthernet/W3150.html index 23625185a5a..dd77744ce68 100644 --- a/Product/iEthernet/W3150.html +++ b/Product/iEthernet/W3150.html @@ -15,13 +15,13 @@ - +
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    - + \ No newline at end of file diff --git a/Product/iEthernet/W3150/document.html b/Product/iEthernet/W3150/document.html index 06f31e40b14..589ab23484d 100644 --- a/Product/iEthernet/W3150/document.html +++ b/Product/iEthernet/W3150/document.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Documents

    Download

    Datasheet

    Download the latest version

    W3150A+ Chip Datasheet v2.0.6

    Last Update: 2019.05.23

    Errata Sheet

    W3150A+ Chip Erratasheet v2.6.0

    Last Update: 2015.10.05

    Limitation Note

    Limitation Note – ARP problem in the NLB environment

    Last Update: 2018.03.12

    Qualification Report

    W3150A+ Qualification Report
    • W3150A+ Temperature Test Report (High & Low Temperature)
    • W3150A+ RoHS Report

    Application Notes

    W3150A+ Application Note
    • W3150A+ SPI Guide (W5100)
    • How to implement ADLS (PPPoE)
    • How to implement Multi-Casting

    Drivers / Libraries

    W5100 ioLibrary (Driver)

    • W3150A+ Driver V1.0.9

    Hardware Design Guide

    W3150A+ Reference Schematic
    • Last Update: 2009.01.09
    • Version : 1.0
    - + \ No newline at end of file diff --git a/Product/iEthernet/W3150/overview.html b/Product/iEthernet/W3150/overview.html index 9d72e42c5ee..033e67e38e2 100644 --- a/Product/iEthernet/W3150/overview.html +++ b/Product/iEthernet/W3150/overview.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    Overview

    caution

    Please note that this product was discontinued. We do not recommend using it in new design.

    Hardwired Dual TCP/IP Stack Controller

    The W3150A+ chip is a Hardwired TCP/IP embedded Ethernet controller that enables easier Internet connection for embedded systems.

    W3150A+ suits users in need of stable Internet connectivity best, using a single chip to implement TCP/IP Stack & 10/100 Ethernet MAC . Hardwired TCP/IP stack supports TCP, UDP, IPv4, ICMP, ARP, IGMP, and PPPoE, …, which has been proven through various applications over many years. W3150A+ uses a 16Kbytes internal buffer as its data communication memory.

    By using W3150A+, users can implement the Ethernet application they need by using a simple socket program instead of handling a complex Ethernet Controller.

    It is possible to use 4 independent hardware sockets simultaneously. BUS & SPI (Serial Peripheral Interface) is provided for easy integration with the external MCU.

    As it doesn’t have the PHY, users can interface any external PHY such as switching PHY according to their requirement.


    Features

    • Hardwired TCP/IP protocols : TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
    • Un-attackable hardware network engine for preventing network attacks such as flooding, spoofing, injection
    • Host Interface : Direct/Indirect BUS & Serial Peripheral Interface (SPI MODE 0,3)
    • 4 Independent hardware socket
    • Internal 16Kbytes memory for TCP/IP packet processing
    • MII Interface for Ethernet PHY chip
    • 3.3V Operation with 5V I/O signal tolerance
    • 64LQFP lead-free package (10x10mm)

    - + \ No newline at end of file diff --git a/Product/iEthernet/W3150/w3150-evb.html b/Product/iEthernet/W3150/w3150-evb.html index 1cd07e742e8..db66ed1923f 100644 --- a/Product/iEthernet/W3150/w3150-evb.html +++ b/Product/iEthernet/W3150/w3150-evb.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    EVB-B1+

    Key Features

    • ATMEL Atmega 128 based evaluation board for W3150A+ chip
    • 96 pin expansion connectors for using all pins of AVR
    • Provide various application source codes : Loopback, Webserver, Ping
    • Support ISP & JTAG Interface

    Hardware Specification

    Base Board

    • UART : RS-232 Serial port
    • Display : Text LCD (Gray 16×2)

    PM-A1

    • MCU : Atmega128 (128K Flash & 4K EEPROM)
    • Clock : 8MHz Crystal
    • External Memory : SRAM (32K Bytes)

    NM7010B+

    • TCP/IP : W3150A+
    • PHY : IP101A-LF (Ethernet PHY)
    • MAG Jack : RB1-125BAG1A

    Download

    User Manual

    EVB-B1+ User Manual V1.1

    Firmware

    EVB-B1+ Firmware V1.4.1

    EVB-B1+ Hardware

    EVB-B1+ Hardware
    • EVB-B1+ Schematic
    • EVB-B1+ Part List
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100.html b/Product/iEthernet/W5100.html index cf7e5970cde..2bf4644abdc 100644 --- a/Product/iEthernet/W5100.html +++ b/Product/iEthernet/W5100.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100/document.html b/Product/iEthernet/W5100/document.html index a2ce78ac6cf..165475e5b01 100644 --- a/Product/iEthernet/W5100/document.html +++ b/Product/iEthernet/W5100/document.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Documents

    Download

    Datasheet

    Download the latest version

    W5100 Chip Datasheet v1.2.8

    Last Update: 2019.05.23

    Errata Sheet

    W5100 Chip Erratasheet v2.6

    Last Update: 2015.10.05

    Limitation Note

    Limitation Note – ARP problem in the NLB environment

    Last Update: 2018.03.12

    Qualification Report

    W5100 Qualification Report
    • W5100 Temperature Test Report (High & Low Temperature)
    • W5100 RoHS Report

    Application Notes

    W5100 Application Note
    • How to implement DNS
    • How to implement DHCP
    • How to use Multi-casting
    • How to use ADSL (PPPoE)

    Drivers / Libraries

    W5100 ioLibrary (Driver)

    • W5100 Driver V1.9

    Hardware Design Guide

    W5100 Reference Schematic
    • Reference Schematic (V2.1)
    • W5100 Layout Guide
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100/overview.html b/Product/iEthernet/W5100/overview.html index c73e329d965..149b202082d 100644 --- a/Product/iEthernet/W5100/overview.html +++ b/Product/iEthernet/W5100/overview.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Overview

    Hardwired Dual TCP/IP Stack Controller

    The W5100 chip is a Hardwired TCP/IP embedded Ethernet controller that enables easier Internet connection for embedded systems.

    W5100 suits users in need of stable Internet connectivity best, using a single chip to implement TCP/IP Stack, 10/100 Ethernet MAC and PHY. Hardwired TCP/IP stack supports TCP, UDP, IPv4, ICMP, ARP, IGMP, and PPPoE, …, which has been proven through various applications over many years. W5100 uses a 16ytes internal buffer as its data communication memory.

    By using W5100, users can implement the Ethernet application they need by using a simple socket program instead of handling a complex Ethernet Controller.

    It is possible to use 4 independent hardware sockets simultaneously. BUS (Direct & Indirect) & SPI (Serial Peripheral Interface) are provided for easy integration with the external MCU.


    Features

    • Hardwired TCP/IP protocols : TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
    • Un-attackable hardware network engine for preventing network attacks such as flooding, spoofing, injection
    • Host Interface : Direct/Indirect Bus & Serial Peripheral Interface (SPI MODE 0, 3)
    • 4 Independent hardware socket
    • Internal 16Kbytes memory for TCP/IP packet processing
    • 10BaseT / 100Base TX Ethernet PHY Embedded
    • Support Auto-Negotiation (Full & Half Duplex, 10 & 100 Based)
    • Support Auto-MDIX
    • 3.3V Operation with 5V I/O signal tolerance
    • LED outputs (TX, RX, full/half duplex, Collision, link, speed)
    • 80LQFP lead-free package (10x10mm)

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100/w5100-evb.html b/Product/iEthernet/W5100/w5100-evb.html index 3993ee2d72f..438194af191 100644 --- a/Product/iEthernet/W5100/w5100-evb.html +++ b/Product/iEthernet/W5100/w5100-evb.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    W5100-EVB

    Key Features

    • ATMEL Atmega 128 based evaluation board for W5100 chip
    • 96 pin expansion connectors for using all pins of AVR
    • Provide various application source codes : Loopback, Webserver, Ping
    • Support ISP & JTAG Interface

    Hardware Specification

    Base Board

    • UART : 2 x RS232 serial port
    • Display : 16 x 2 Text LCD
    • PAL : Address Decoder
    • TCP/IP & PHY : W5100
    • RJ-45 : RDA-125BAG1A, Transformer Integrated (1:1)

    PM-A1 Module

    • MCU : ATMEGA128 (128K Flash & 4K EEPROM)
    • Clock : 8MHz Crystal
    • External Memory : SRAM (32KBytes)

    Download

    User Manual

    W5100E01-AVR User Manual V1.1.0

    AVR Tool Guide

    AVR Tool Guide V2.2

    W5100E01-AVR Firmware Source

    W5100E01-AVR Firmware Source Code V1.4.6

    Hardware

    W5100E01-AVR Hardware
    • W5100E01-AVR Schematic
    • W5100E01-AVR Part List
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/Application-Note/dma.html b/Product/iEthernet/W5100S/Application-Note/dma.html index a6516ecfb89..ecaa9f52e81 100644 --- a/Product/iEthernet/W5100S/Application-Note/dma.html +++ b/Product/iEthernet/W5100S/Application-Note/dma.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    DMA

    Overview

    W5100S-EVB support DMA(Direct Memory Addressing) of SPI Mode. To operate at its maximum speed, the SPI needs to be fed with the data for transmission and the data received on the Rx buffer should be read to avoid overrun.

    Development Environment


    • MCU : STM32F103VC

      • System Clock : 72MHz, SPI2 clock : 18MHz(Max clock))
    • Used program: Atollic True STUDIO

    • W5100S Setting

      • Socket size : 8K, No Delay Ack

      Application note


    Revision history

    VersionDateDownload
    1.0.02018-12-14W5100S_AN_DMA_V100K.pdf
    :::2019-04-16W5100S_AN_DMA_V100E.pdf

    Reference Code


    Note : DMA reference code is designed for W5100S. But if you use the MCU of STM32F1xx,the other chips(W5100, W5100S, W5200, W5300, W5500) can use this application.

    Revision history

    VersionDateDownloadETC
    1.0.02018-12-14https://github.com/Wiznet/W5100S-EVBInitial Version

    Comparison table

    Opearation PeripheralsFigureOpearation PeripheralsFigure
    SPISPI_DMA
    BUSBUS_DMA
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/Application-Note/interrupt.html b/Product/iEthernet/W5100S/Application-Note/interrupt.html index 560f00bf884..3cf69bffa69 100644 --- a/Product/iEthernet/W5100S/Application-Note/interrupt.html +++ b/Product/iEthernet/W5100S/Application-Note/interrupt.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ (IP Collision, WOL Packet Reception, Data Transmission, Reception for each SOCKET, etc.) occurs, the INTn is asserted low

    Development Environment


    Application note


    Revision history

    VersionDateDownload
    1.0.02018-04-01w5100s_an_interrupt_v110k.pdf
    w5100s_an_interrupt_v100e.pdf

    Reference Code


    Revision history

    VersionDateDownloadETC
    1.0.0w5100s_an_interrupt_v110k.pdf
    w5100s_an_interrupt_v100e.pdf
    Initial Version

    For more information W5100s chip please also refer to the chip's datasheet:

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/Application-Note/ipraw.html b/Product/iEthernet/W5100S/Application-Note/ipraw.html index 2179cf162c2..8417c1e6a14 100644 --- a/Product/iEthernet/W5100S/Application-Note/ipraw.html +++ b/Product/iEthernet/W5100S/Application-Note/ipraw.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ PING Message by Hardware and SOCKET-less Command. But also, IPRAW Mode supports PING Message and the other types of ICMP Messages by HOST Process.

    Development Environment


    Application note


    Revision history

    VersionDateDownload
    1.0.02018-04-01w5100s_an_ipraw_v110k.pdf
    w5100s_an_ipraw_v110e.pdf

    Reference Code


    VersionDateDownloadEtc
    1.0.02018-05-25W5100S_EVB_AN_CoIDE_IPRAW_V100.zipInitial Version

    For more information about W5100S chip please also refer to the chip's datasheet.

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/Application-Note/pppoe.html b/Product/iEthernet/W5100S/Application-Note/pppoe.html index de43f95446c..acdbec13754 100644 --- a/Product/iEthernet/W5100S/Application-Note/pppoe.html +++ b/Product/iEthernet/W5100S/Application-Note/pppoe.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ Communication by Telephone Line, it is used widely.

    Development Environment


    Application note


    Revision history

    VersionDateDownload
    1.0.02018-04-01w5100s_an_pppoe_v100k.pdf
    w5100s_an_pppoe_v100e.pdf

    Reference Code


    Note : PPPoE reference code is designed for W5100S. But PPPoE application is implemented by 'MACRAW' mode so other chips(W5100, W5100S, W5200, W5300, W5500, W7100, W7200) can use this application.

    Revision history

    VersionDateDownloadETC
    1.0.02018-05-25W5100S_EVB_AN_CoIDE_PPPoE_V100.zipInitial Version
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/Application-Note/socket-less-command.html b/Product/iEthernet/W5100S/Application-Note/socket-less-command.html index 45ea55d64a1..2291f0ffb4f 100644 --- a/Product/iEthernet/W5100S/Application-Note/socket-less-command.html +++ b/Product/iEthernet/W5100S/Application-Note/socket-less-command.html @@ -15,14 +15,14 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/Application-Note/tcp.html b/Product/iEthernet/W5100S/Application-Note/tcp.html index ca1f9c772b2..3a27ada1498 100644 --- a/Product/iEthernet/W5100S/Application-Note/tcp.html +++ b/Product/iEthernet/W5100S/Application-Note/tcp.html @@ -15,7 +15,7 @@ - + @@ -97,7 +97,7 @@ SERVER’ and ‘TCP CLIENT’ is completed. If there is no response from Peer against of transmitted SYN Packet within the Retransmission Time, Sn_IR [TIMEOUT] is set to ‘1’.

    Others flow

    Refer to "TCP SERVER" flow.

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/Application-Note/udp.html b/Product/iEthernet/W5100S/Application-Note/udp.html index 8ae9be1af68..97d62cf262a 100644 --- a/Product/iEthernet/W5100S/Application-Note/udp.html +++ b/Product/iEthernet/W5100S/Application-Note/udp.html @@ -15,7 +15,7 @@ - + @@ -125,7 +125,7 @@ destination any more. Therefore, copy the transmission data to internal TX memory and executes SEND command.

    {
    /* first, get the free TX memory size */
    FREESIZE:
    freesize = Sn_TX_FSR;
    if (freesize<len) goto FREESIZE; // len is send size
    /* calculate offset address */
    dst_mask = Sn_TX_WR0 &gSn_TX_MASK; // dst_mask is offset address
    /* calculate start address(physical address) */
    dst_ptr = gSn_TX_BASE + dst_mask; // dst_ptr is physical start address
    /* if overflow SOCKETTX memory */
    if ( (dst_mask + len) > (gSn_TX_MASK + 1) )
    {
    /* copy upper_size bytes of source_addr to destination_address */
    upper_size = (gSn_TX_MASK + 1) ? dst_mask;
    memcpy((0x0000 + source_addr), (0x0000 + dst_ptr), upper_size);
    /* update source_addr*/
    source_addr += upper_size;
    /* copy left_size bytes of source_addr to gSn_TX_BASE */
    left_size = len ? upper_size;
    memcpy( source_addr, gSn_TX_BASE, left_size);
    }
    else
    {
    /* copy len bytes of source_addr to dst_ptr */
    memcpy( source_addr, dst_ptr, len);
    }
    /* increase Sn_TX_WR as length of len */
    Sn_TX_WR0 += send_size;
    /* set SEND command */
    Sn_CR = SEND;
    }
    Check complete sending / Timeout

    Since the host manages all protocol process for data communication, timeout cannot occur.

    {
    /* check SEND command completion */
    while(S0_IR(SENDOK)==0); /* wait interrupt of SEND completion */
    S0_IR(SENDOK) =1; /* clear previous interrupt of SEND completion */
    }
    Check finished / SOCKET close

    Refer to the “Unicast & Broadcast.” section. Unicast & Broadcast

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/Application-Note/w5100s-application.html b/Product/iEthernet/W5100S/Application-Note/w5100s-application.html index 80844c5bf22..5caa730cb82 100644 --- a/Product/iEthernet/W5100S/Application-Note/w5100s-application.html +++ b/Product/iEthernet/W5100S/Application-Note/w5100s-application.html @@ -15,13 +15,13 @@ - +
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    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/comparison-sheet.html b/Product/iEthernet/W5100S/comparison-sheet.html index efc6f9b98c0..9d2321aa0dd 100644 --- a/Product/iEthernet/W5100S/comparison-sheet.html +++ b/Product/iEthernet/W5100S/comparison-sheet.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ Hardware for the W5100S. However, there are some differences between W5100S and W5100/W5500 in Software and Hardware. The difference are described in the document titled "Comparison Sheet" below.


    document

    VersionDateDownload
    1.0.02018-04-01Comparison Sheet (Korean)
    Comparison Sheet (English)
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/document.html b/Product/iEthernet/W5100S/document.html index d12a5da79ec..1470ef62e06 100644 --- a/Product/iEthernet/W5100S/document.html +++ b/Product/iEthernet/W5100S/document.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/driver.html b/Product/iEthernet/W5100S/driver.html index 8ac54063a87..9da3e1babb3 100644 --- a/Product/iEthernet/W5100S/driver.html +++ b/Product/iEthernet/W5100S/driver.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ of this ioLibrary_BSD are the same as the function names of the ioLibrary.

    Download

    ioLibrary : latest version

    ioLibrary GitHub Repository

    https://github.com/Wiznet/ioLibrary_Driver

    For more information on ioLibrary, click 🌎W5500 Driver

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/overview.html b/Product/iEthernet/W5100S/overview.html index 2fa1d301146..d0acb130c14 100644 --- a/Product/iEthernet/W5100S/overview.html +++ b/Product/iEthernet/W5100S/overview.html @@ -15,7 +15,7 @@ - + @@ -39,7 +39,7 @@ firmware using W5100 can be used on W5100S without modification. W5100S has two types of packages, 48 Pin LQFP & QFN Lead-Free Package.

    W5100S Block diagram


    Pin MAP

    W5100S Pin map


    Features


    Target Application


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    Skip to main content
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/w5100s-evb-pico.html b/Product/iEthernet/W5100S/w5100s-evb-pico.html index 71240bd9305..85c7e52a748 100644 --- a/Product/iEthernet/W5100S/w5100s-evb-pico.html +++ b/Product/iEthernet/W5100S/w5100s-evb-pico.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    W5100S-EVB-Pico

    Overview

    W5100S-EVB-Pico is a microcontroller evaluation board based on the Raspberry Pi RP2040 and fully hardwired TCP/IP controller W5100S – and basically works the same as Raspberry Pi Pico board but with additional Ethernet via W5100S.

    W5100S-EVB-RP2040

    Powered By Raspberry Pi logo

    Revision history

    DateVersionDescription
    Oct 20211.0Initial board release
    Apr 20221.1Added SW RUN

    Features

    • RP2040 microcontroller with 2MByte Flash
      • Dual-core cortex M0+ at up to 133MHz
      • 264kByte multi-bank high performance SRAM
      • External Quad-SPI Flash with eXecute In Place (XIP)
      • High performance full-crossbar bus fabric
      • 30 multi-function General Purpose IO (4 can be used for ADC)
        • 1.8-3.3V IO Voltage (NOTE. Pico IO voltage is fixed at 3.3V)
      • 12-bit 500ksps Analogue to Digital Converter (ADC)
      • Various digital peripherals
        • 2 × UART, 2 × I2C, 2 × SPI, 16 × PWM channels
        • 1 × Timer with 4 alarms, 1 × Real Time Counter
      • 2 × Programmable IO (PIO) blocks, 8 state machines total
      • Flexible, user-programmable high-speed IO
      • Can emulate interfaces such as SD Card and VGA
    • Includes W5100S
      • Supports Hardwired Internet Protocols: TCP, UDP, WOL over UDP, ICMP, IGMPv1/v2, IPv4, ARP, PPPoE
      • Supports 4 Independent Hardware SOCKETs simultaneously
      • Internal 16 Kbytes Memory for TX/ RX Buffers
      • SPI Interface
    • Micro-USB B port for power and data (and for reprogramming the Flash)
    • 40 pin 21x51 'DIP' style 1mm thick PCB with 0.1" through-hole pins also with edge castellations
    • 3-pin ARM Serial Wire Debug (SWD) port
    • 10 / 100 Ethernet PHY embedded
    • Supports Auto Negotiation
      • Full / Half Duplex
      • 10 / 100 Based
    • Built-in RJ45(RB1-125BAG1A)
    • Built-in LDO (LM8805SF5-33V)

    Hardware Specification

    Pin-out v1.1

    W5100S-EVB-Pico_PINOUT
    Above image presents pinout for v1.1. If you are looking for pinout of version 1.0, click here.
    W5100S-EVB-Pico_PINOUT

    W5100S-EVB-Pico pinout is directly connected to the GPIO of RP2040 as shown in the picture above. It has the same pinout as the Raspberry Pi Pico board. However, GPIO16, GPIO17, GPIO18, GPIO19, GPIO20, GPIO21 are connected to W5100S inside the board. These pins enable SPI communication with W5100S to use Ethernet function. If you are using the Ethernet function, these pins cannot be used for any other purpose.

    The RP2040 GPIO used inside W5100S-EVB-Pico is as follows.

    I/OPin NameDescription
    IGPIO16Connected to MISO on W5100S
    OGPIO17Connected to CSn on W5100S
    OGPIO18Connected to SCLK on W5100S
    OGPIO19Connected to MOSI on W5100S
    OGPIO20Connected to RSTn on W5100S
    IGPIO21Connected to INTn on W5100S
    IGPIO24VBUS sense - high if VBUS is present, else low
    OGPIO25Connected to user LED
    IGPIO29Used in ADC mode (ADC3) to measure VSYS/3

    Apart from GPIO and ground pins, there are 7 other pins on the main 40-pin interface:

    Pin No.Pin NameDescription
    PIN40VBUSMicro-USB input voltage, connected to micro-USB port pin 1. Nominally 5V.
    PIN39VSYSMain system input voltage, which can vary in the allowed range 4.3V to 5.5V, and is used by the on-board LDO to generate the 3.3V .
    PIN373V3_ENConnects to the on-board LDO enable pin. To disable the 3.3V (which also de-powers the RP2040 and W5100S), short this pin low.
    PIN363V3Main 3.3V supply to RP2040 and W5100S, generated by the on-board LDO.
    PIN35ADC_VREFADC power supply (and reference) voltage, and is generated on W5100S-EVB-Pico by filtering the 3.3V supply.
    PIN33AGNDGround reference for GPIO26-29.
    PIN30RUNRP2040 enable pin, To reset RP2040, short this pin low.

    Operation Condition

    ItemDescription
    Operation Temperature MAX85C (including self-heating)
    Operation Temperature MIN-20C
    VBUSDC 5V (+/- 10%)
    VSYS MinDC 4.3V
    VSYS MaxDC 5.5V

    Recommended maximum ambient temperature of operation is 70C.

    Technical Reference

    RP2040 Datasheet

    W5100S Datasheet

    Schematic v1.1

    W5100S-EVB_Pico_schematic
    Above image presents schematic for v1.1. If you are looking for schematic of version 1.0, click here.
    W5100S-EVB_Pico_schematic

    Schematic & Part list & Gerber File

    Dimension v1.1 (Unit : mm)

    W5100S-EVB-RP2040_Dimension
    Above image presents dimension for v1.1. If you are looking for dimension of version 1.0, click here.
    W5100S-EVB-RP2040_Dimension

    Firmware Example

    Please refer to below links to find firmware example.

    AWS Qualification

    W5100S-EVB-Pico is first RP2040-based device that got AWS IoT Core Qualification.

    Microsoft Azure Certification

    W5100S-EVB-Pico is first RP2040-based device certified to run with Microsoft Azure.

    How to buy

    WIZnetUS Online Shop, USA WIZnetKorea Online Shop, Korea

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/w5100s-evb.html b/Product/iEthernet/W5100S/w5100s-evb.html index 10f04bdeddc..c0400f4a4c3 100644 --- a/Product/iEthernet/W5100S/w5100s-evb.html +++ b/Product/iEthernet/W5100S/w5100s-evb.html @@ -15,7 +15,7 @@ - + @@ -44,7 +44,7 @@ to the project.

    Download the Libraries and Application example source code for W5100S-EVB

    https://github.com/Wiznet/W5100S-EVB

    DMA User Guide

    W5100S DMA V1.0.0 Korean.pdf

    For More information about DMA, click DMA


    Getting Started

    Getting Started

    How to upload firmware


    Make New W5100S-EVB Projects

    Make New W5100S-EVB Projects using Eclipse

    Make New W5100S-EVB Projects using TrueSTUDIO


    Technical Reference

    Datasheet

    Schematic & Part list

    Dimension


    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/w5100s-getting-started.html b/Product/iEthernet/W5100S/w5100s-getting-started.html index 6b522cdf774..4964583be43 100644 --- a/Product/iEthernet/W5100S/w5100s-getting-started.html +++ b/Product/iEthernet/W5100S/w5100s-getting-started.html @@ -15,7 +15,7 @@ - + @@ -60,7 +60,7 @@

    5. Run the new program

    After finish to flash programming and board reset, The MCU do running the program
    When the running to loopback program, as below picture serial debug message print out.


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    From now on, you can make your own application project based on the newly created project for W5100S-EVB!
    Enjoy W5100S-EVB !!


    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/w5100s-projects-stm32cubeide.html b/Product/iEthernet/W5100S/w5100s-projects-stm32cubeide.html index f691afb7528..d5f3451eed4 100644 --- a/Product/iEthernet/W5100S/w5100s-projects-stm32cubeide.html +++ b/Product/iEthernet/W5100S/w5100s-projects-stm32cubeide.html @@ -15,7 +15,7 @@ - + @@ -42,7 +42,7 @@


    From now on, you can make your own application project based on the newly created project for W5100S-EVB!
    Enjoy W5100S-EVB !!


    - + \ No newline at end of file diff --git a/Product/iEthernet/W5100S/w5100s-projects-truestudio.html b/Product/iEthernet/W5100S/w5100s-projects-truestudio.html index a990b3da01b..b3e9120fe21 100644 --- a/Product/iEthernet/W5100S/w5100s-projects-truestudio.html +++ b/Product/iEthernet/W5100S/w5100s-projects-truestudio.html @@ -15,7 +15,7 @@ - + @@ -59,7 +59,7 @@

    From now on, you can make your own application project based on the newly created project for W5100S-EVB!
    Enjoy W5100S-EVB !!


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    Skip to main content

    W5200

    caution

    W5200 is not recommended for new design. This chip is not supported by ioLibrary.

    If there are any questions, please use our Forum or contact us.

    Overview

    • Fully hardwired network protocol
    • High Speed SPI for Host Interface
    • Compact Size : 48QFN Lead-free package (7x7mm)
    • Stable Data Communication

    The W5200 chip is a Hardwired TCP/IP embedded Ethernet controller that enables easier Internet connection for embedded systems.

    W5200 suits users in need of stable Internet connectivity best, using a single chip to implement TCP/IP Stack, 10/100 Ethernet MAC and PHY. Hardwired TCP/IP stack supports TCP, UDP, IPv4, ICMP, ARP, IGMP, and PPPoE, …, which has been proven through various applications over many years. W5200 uses a 32Kbytes internal buffer as its data communication memory.

    By using W5200, users can implement the Ethernet application they need by using a simple socket program instead of handling a complex Ethernet Controller.

    It is possible to use 8 independent hardware sockets simultaneously. SPI (Serial Peripheral Interface) is provided for easy integration with the external MCU. In order to reduce power consumption of the system, W5200 provides WOL (Wake on LAN) and a power down mode.

    Key Features

    • Hardwired TCP/IP protocols : TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
    • Un-attackable hardware network engine for preventing network attacks such as flooding, spoofing, injection
    • Host Interface : High Speed Serial Peripheral Interface (SPI Mode 0,3)
    • More efficient power operation : power down & wake-on LAN
    • 8 Independent hardware socket
    • Internal 32Kbytes memory for TCP/IP packet processing
    • 10BaseT / 100Base TX Ethernet PHY Embedded
    • Support Auto-Negotiation (Full & Half Duplex, 10 & 100 Based)
    • Support Auto-MDIX
    • 3.3V Operation with 5V I/O signal tolerance
    • LED outputs (TX, RX, full/half duplex, Collision link speed)
    • 48QFN lead-free package (7x7mm)

    Block diagram

    Documents

    Datasheet

    W5200 Chip Datasheet v1.4.0
    • Last Update: 2015.10.23

    Erratasheet

    W5200 Chip Erratasheet v1.0.6
    • Last Update: 2014.07.08

    Limitation Note

    Limitation Note – ARP problem in the NLB environment
    • Last Update: 2018.03.12

    Qualification Report

    W5200 Qualification Report
    • W5200 Temperature Test Report (High & Low Temperature
    • W5200 RoHS Report

    Application Note

    W5200 Application Note
    • How to use W5200 Power Down Mode (Note & Reference Code)
    • How to use W5200 WOL (Wake On Lan) (Note & Reference Code)
    • How to use Indirect BUS (Note & AVR Reference Code)
    • How to implement Basic TCP/UDP (Note & Cortex-M3 Reference Code)
    • How to implement Basic TCP (Note & Cortex-M3 Reference Code)
    • How to implement Telnet (Note & Cortex-M3 Reference Code)

    Drivers / Protocol library

    W5200 library (driver)
    • W5200E01-M3 (Cortex-M3 based EVB) Firmware Code

    Hardware Design Guide

    W5200 Reference Schematic
    • Last Update: 2014. 06. 25
    • Version : 1.1.5
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    W5300


    Chip Overview

    Hardwired Dual TCP/IP Stack Controller

    The W5300 chip is a Hardwired TCP/IP embedded Ethernet controller that enables easier internet connection for embedded systems that require high network performance.

    W5300 suits users in need of stable internet connectivity best, using a single chip to implement TCP/IP Stack, 10/100 Ethernet MAC and PHY. Hardwired TCP/IP stack supports TCP, UDP, IPv4, ICMP, ARP, IGMP, and PPPoE, …, which has been proven through various applications over many years. W5300 uses a 128Kbytes internal buffer as its data communication memory.

    By using W5300, users can implement the Ethernet application they need by using a simple socket program instead of handling a complex Ethernet Controller. It is possible to use 8 independent hardware sockets simultaneously. BUS (Direct & Indirect) is provided for easy integration with the external MCU. The W5300 supports max. 80Mbps network throughput.


    Features

    • Hardwired TCP/IP protocols : TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
    • Un-attackable hardware network engine for preventing network attacks such as flooding, spoofing, injection
    • Host Interface : 8/16 bit Data Bus (Direct & Indirect Address Mode)
    • High Network Performance : Max 80Mbps (by DMA)
    • Support embedded OS driver : Linux (kernel 2.6.24)
    • 8 Independent hardware socket
    • Internal 128Kbytes memory for TCP/IP packet processing
    • Flexible memory allocation
    • 10BaseT / 100Base TX Ethernet PHY Embedded
    • Support Auto-Negotiation (Full & Half Duplex, 10 & 100 Based)
    • Support Auto-MDIX
    • 3.3V Operation with 5V I/O signal tolerance
    • LED outputs (TX, RX, full/half duplex, Collision link speed)
    • 100LQFP lead-free package (14x14mm)

    Documents

    Schematic


    Application Notes

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    W5300 TOE Shield

    Key Features

    Description

    The W5300 TOE Shield is a board that enables high-speed bus communication with the W5300 and ST's Cortex MCU. The W5300-TOE-Shield is a board that can be mounted on a Nucleo board. Individual actions cannot be performed without the Nucleo-144 board, and the NUCLEO-F207ZG, NUCLEO-F429ZI, NUCLEO-F439ZI, NUCLEO-F722ZE, NUCLEO-F756ZG and NUCLEO-F767ZI boards are currently supported. It also supports various shield boards compatible with Arduino pins. However, the pin-out has changed a little in the process of using the W5300, so please refer to the pin map below.

    Download

    Datasheet

    W5300 ToE Shield-Datasheet V1.0

    Schematic

    Download

    Pin-out

    Download
    • Arduino Shield
    • STM32 Nucleo-144 board

    Hardware

    Download
    • W5300 TOE Shield Schematic
    • W5300 TOE Shield Part List

    Firmware Example

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    Documents

    Download

    Datasheet

    Download the latest version

    W5300 Chip Datasheet v1.3.4

    Last Update: 2019. 05.23

    Reference Schematics

    Reference Schematics

    Qualification Report

    Download
    • W5300 Temperature Test Report (High & Low Temperature)
    • W5300 RoHS Report

    Comparison Sheet

    Comparison sheet of W5300 & W5100 (V 1.1)

    Last Update: 2010.03.08

    Errata Sheet

    W5300 Chip Erratasheet v1.2.3

    Last Update: 2015. 03. 19

    Limitation Note

    Limitation Note – ARP problem in the NLB environment

    Last Update: 2018.03.12

    Application Notes

    W5300 Application Note
    • How to test Internal Tx/Rx Memory
    • How to use PPPoE

    Drivers / Libraries

    W5300 ioLibrary (Driver)

    • W5300 Driver Description
    • Driver for 8bit MCU (V1.2.5)
    • Driver for 16bit MCU (V1.2.6)

    Hardware Design Guide

    W5300 Reference Schematic

    Last Update: 2010.02.10

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    Skip to main content

    Overview

    Hardwired Dual TCP/IP Stack Controller

    The W5300 chip is a Hardwired TCP/IP embedded Ethernet controller that enables easier internet connection for embedded systems that require high network performance.

    W5300 suits users in need of stable internet connectivity best, using a single chip to implement TCP/IP Stack, 10/100 Ethernet MAC and PHY. Hardwired TCP/IP stack supports TCP, UDP, IPv4, ICMP, ARP, IGMP, and PPPoE, …, which has been proven through various applications over many years. W5300 uses a 128Kbytes internal buffer as its data communication memory.

    By using W5300, users can implement the Ethernet application they need by using a simple socket program instead of handling a complex Ethernet Controller. It is possible to use 8 independent hardware sockets simultaneously. BUS (Direct & Indirect) is provided for easy integration with the external MCU. The W5300 supports max. 80Mbps network throughput.


    Features

    • Hardwired TCP/IP protocols : TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
    • Un-attackable hardware network engine for preventing network attacks such as flooding, spoofing, injection
    • Host Interface : 8/16 bit Data Bus (Direct & Indirect Address Mode)
    • High Network Performance : Max 80Mbps (by DMA)
    • Support embedded OS driver : Linux (kernel 2.6.24)
    • 8 Independent hardware socket
    • Internal 128Kbytes memory for TCP/IP packet processing
    • Flexible memory allocation
    • 10BaseT / 100Base TX Ethernet PHY Embedded
    • Support Auto-Negotiation (Full & Half Duplex, 10 & 100 Based)
    • Support Auto-MDIX
    • 3.3V Operation with 5V I/O signal tolerance
    • LED outputs (TX, RX, full/half duplex, Collision link speed)
    • 100LQFP lead-free package (14x14mm)

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5300/w5300-evb.html b/Product/iEthernet/W5300/w5300-evb.html index 2c9e269c71d..e9ab8f55505 100644 --- a/Product/iEthernet/W5300/w5300-evb.html +++ b/Product/iEthernet/W5300/w5300-evb.html @@ -15,13 +15,13 @@ - +
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    W5300-EVB

    caution

    Please note that this product was discontinued.

    Key Features

    • Samsung ARM(S3C2410) based evaluation board for W5300 chip
    • Testing high-speed network performance (data transfer over 50Mbps)
    • Operating on OS Linux (Kernel 2.6.24)
    • 64M SDRAM for operating various applications

    Hardware Specification

    • MCU : 200MHz Samsung S3C2410A ARM RISC Processor
    • RAM : SDRAM 64MB
    • ROM : NAND Flash 64MB
    • Serial : RS-232C 1port
    • USB : USB Host 1port
    • Ethernet : WIZ830MJ (W5500 + RJ-45,BS-RB10005 )
    • LCD : 16 characters x 2 line characters LCD Port (C-LCD option)
    • Button : 2 Tack switch for debugging
    • JTAG : On board JTAG Connector
    • Module Connector : 56 pin (28Pin x 2), 2.54mm pitch pin-header socket
    • Extension Port : 120 pin (40pin x 3) 2.54mm pitch pin-header port
    • Power : DC 5V, Adaptor
    • PCB Size (mm) : 118 x 97

    Download

    User Manual

    W5300E01-ARM User Manual V1.0.0

    Cross Compiler Manual

    W5300E01-ARM Cross Compiler Manual V1.0.0

    Linux Materials

    Download
    • W5300 Linux Kernel Source
    • W5300 Linux Patch File
    • W5300 Linux Driver Porting Guide (V1.0)
    • W5300 Linux Driver
    • W5300E01-ARM Linux Image
    • W5300E01-ARM Linux Bootloader

    Hardware

    Download
    • W5300E01-ARM Schematic
    • W5300E01-ARM Part List
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    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/Application/ipraw.html b/Product/iEthernet/W5500/Application/ipraw.html index 4c2bd11f741..f6711e8bcce 100644 --- a/Product/iEthernet/W5500/Application/ipraw.html +++ b/Product/iEthernet/W5500/Application/ipraw.html @@ -15,7 +15,7 @@ - + @@ -30,7 +30,7 @@ number. The 'Ping' of ICMP is already implemented in W5500 as the Hardwired but when the user needs, the host can directly process the ICMP function include ping by opening the Socket n as an IPRAW mode.

    Development Environment

    Application note & Source code

    Application note

    VersionDateDownload
    1.0.02014-02-21W5500_AP_IPRAW_V100K.pdf
    W5500_AP_IPRAW_V100E.pdf
    1.1.02014-04-09W5500_AP_IPRAW_V110K.pdf
    W5500_AP_IPRAW_V110E.pdf

    APPlication Source Code

    VersionDateDownloadEtc
    1.0.02014-02-21W5500_APC_IPRAW_V100.zipInitial Version
    1.1.02015-05-10W5500_APC_IPRAW_V110.zipModify - Use all socket

    Reference Video(Test Result)

    For more information W5500 chip please also refer to the chip's datasheet:

    Datasheet

    Datasheet History

    VersionDateDescription
    1.0.02013-08-01Initial Release
    1.0.12013-09-13Corrected duplicated statements and typing errors (P.14, 23, 24, 28, 39, 51) Corrected descriptions (P.35)
    1.0.22013-11-14Changed “descriptions of pin at 1.1 Pin Descriptions” (P.10) starting ”It must be tied to GND to NC (PIN38..42)” / 2. corrected typing error: starting “0x02 to 0x42 value of SOCK_MACRAW at 4.2 Socket Registers(P.50)”
    1.0.32014-05-29Corrected “Sn_MSSR at 4.2 Socket Register” (P.53): wrong descriptions of Sn_MSSR about FMTU/MTU
    1.0.42014-06-131. Added Note about reading size register value (P.56, 58) / 2. Added IR Reflow Temperature Profile (P.66)
    1.0.52014-11-111. Added description for MISO pin (P.11):The SCSn signal defines MISO pin output value / 2. Modified the register notation (P.33), Modified the register notation “Sn_IR at 4.2 Socket Register” (P.49) :from [R] to [RCW1] / 3. Corrected typing error: from DICON to DISCON of Sn_SR at 4.2 Socket Register (P.50)
    1.0.62014-12-30Corrected typing error : from 0x02 to 0x42 value of SOCK_MACRAW “Sn_CR at 4.2 Socket Registers”(P.46)
    1.0.72016-02-241. Corrected Interrupt Assert Wait Time function (P.34) / 2. Notice PLLclk is 150MHz (P.34)
    1.0.82017-05-191. Corrected Driver Level Range Unit uW/MHz to uW (P.60)
    1.0.92019-05-221. Corrected Sn_IMR Description (P.55) 2. Corrected Junction temperature Min value TJ (P.57) 3. Added Maximum junction temperature TJMAX (P.58)

    WIZ550io History

    VersionDateDescription
    1.02013-08-01Initial Release
    1.12014-01-17Changed “External Transformer + RJ-45 to MAGJACK(inside transformer)”
    1.22015-04-20Added “Resistor 33R in MDI line. because EMI issue.”Changed “PCB artwork. because changed develop tool(PADS → Altium) ”
    1.32018-08-10Modified “inner 2 layer copper foil (3V3D). This copper foil plated below of CHAND area. It may affect ESD.”
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/Application/pppoe.html b/Product/iEthernet/W5500/Application/pppoe.html index b3edba3267c..3cdd1812506 100644 --- a/Product/iEthernet/W5500/Application/pppoe.html +++ b/Product/iEthernet/W5500/Application/pppoe.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ is used widely.

    Development Environment


    Application note


    Revision history

    VersionDateDownload
    1.0.02014-02an_macrawpppoe_v100k.pdf
    1.0.12014-04an_macrawpppoe_v101k.pdf
    an_macrawpppoe_v101e.pdf

    Reference Code


    Note : PPPoE reference code is designed for W5500. But PPPoE application is implemented by 'MACRAW' mode so other chips(W5100, W5200, W5300, W7100, W7200) can use this application.

    Revision history

    VersionDateDownload
    1.0.12014-04
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/Application/spi-performance.html b/Product/iEthernet/W5500/Application/spi-performance.html index b0ad24efc09..c9eba9fd549 100644 --- a/Product/iEthernet/W5500/Application/spi-performance.html +++ b/Product/iEthernet/W5500/Application/spi-performance.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ 36MHz/18MHz/9MHz/4.5MHz/2.25MHz/1.12MHz/0.562Mz/0.281MHz - Test Project: SPI_SPEEP_TEST.zip
  • Test Setting : Only TCPs / 1CH / Databuf(2K) / No Delay ack X - Test Tool : AX2, unit of measure : Mbps
  • Hz /socket(KB)124816
    0.281M0.1240.1260.1290.1290.129
    0.562M0.2430.2490.2570.2570.257
    1.12M0.4470.4560.4840.4840.484
    2.25M0.7610.7790.8630.8630.863
    4.5M1.1961.2261.4171.4181.418
    9M1.6211.6712.0902.0902.093
    18M2.0552.1082.7382.7382.738
    36M2.4352.5343.5013.5013.501
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/Application/tcp.html b/Product/iEthernet/W5500/Application/tcp.html index 4a1956e39f3..16eeccb5133 100644 --- a/Product/iEthernet/W5500/Application/tcp.html +++ b/Product/iEthernet/W5500/Application/tcp.html @@ -15,7 +15,7 @@ - + @@ -106,7 +106,7 @@ above "TCP SERVER” section.

    TCP CLIENT Operation Flow

    CONNECT

    Transmit the connect-request (SYN packet) to “TCP SERVER”. It may occurs the timeout such as ARPTO, TCPTO when make the “connection SOCKET” with “TCP SERVER”

    {
    Sn_DIPR0 = server_ip; /* set TCP SERVER IP address*/
    Sn_DPORT0 = server_port; /* set TCP SERVER listen port number*/
    Sn_CR = CONNECT; /* set CONNECT command */
    }
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/Application/udp.html b/Product/iEthernet/W5500/Application/udp.html index 0ca09d89db0..855d4f1e7df 100644 --- a/Product/iEthernet/W5500/Application/udp.html +++ b/Product/iEthernet/W5500/Application/udp.html @@ -15,7 +15,7 @@ - + @@ -133,7 +133,7 @@ destination any more. Therefore, copy the transmission data to internal TX memory and executes SEND command.

    {
    /* first, get the free TX memory size */
    FREESIZE:
    freesize = Sn_TX_FSR;
    if (freesize<len) goto FREESIZE; // len is send size
    /* calculate offset address */
    dst_mask = Sn_TX_WR0 &gSn_TX_MASK; // dst_mask is offset address
    /* calculate start address(physical address) */
    dst_ptr = gSn_TX_BASE + dst_mask; // dst_ptr is physical start address
    /* if overflow SOCKETTX memory */
    if ( (dst_mask + len) > (gSn_TX_MASK + 1) )
    {
    /* copy upper_size bytes of source_addr to destination_address */
    upper_size = (gSn_TX_MASK + 1) – dst_mask;
    memcpy((0x0000 + source_addr), (0x0000 + dst_ptr), upper_size);
    /* update source_addr*/
    source_addr += upper_size;
    /* copy left_size bytes of source_addr to gSn_TX_BASE */
    left_size = len – upper_size;
    memcpy( source_addr, gSn_TX_BASE, left_size);
    }
    else
    {
    /* copy len bytes of source_addr to dst_ptr */
    memcpy( source_addr, dst_ptr, len);
    }
    /* increase Sn_TX_WR as length of len */
    Sn_TX_WR0 += send_size;
    /* set SEND command */
    Sn_CR = SEND;
    }
    Check complete sending / Timeout

    Since the host manages all protocol process for data communication, timeout cannot occur.

    {
    /* check SEND command completion */
    while(S0_IR(SENDOK)==0); /* wait interrupt of SEND completion */
    S0_IR(SENDOK) =1; /* clear previous interrupt of SEND completion */
    }
    Check finished / SOCKET close

    Refer to the “Unicast & Broadcast.” section. Unicast & Broadcast

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/W5500-EVB.html b/Product/iEthernet/W5500/W5500-EVB.html index 0c78a6db403..9f271255f59 100644 --- a/Product/iEthernet/W5500/W5500-EVB.html +++ b/Product/iEthernet/W5500/W5500-EVB.html @@ -15,7 +15,7 @@ - + @@ -47,7 +47,7 @@ 🌎https://github.com/Wiznet/W5500_EVB


    Getting Started

    🌎Hello World!

    🌎Downloading a new program


    Make New W5500 EVB Projects

    🌎Make a new W5500 EVB project with LPCXpresso IDE


    Technical Reference

    Datasheet

    Schematic

    Part list

    W5500-EVB DXF files

    Dimension


    Etc.

    Virtual COM Port Drivers


    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/W5500-EVB/getting-started.html b/Product/iEthernet/W5500/W5500-EVB/getting-started.html index 499c7031eb6..1024e4dbbb6 100644 --- a/Product/iEthernet/W5500/W5500-EVB/getting-started.html +++ b/Product/iEthernet/W5500/W5500-EVB/getting-started.html @@ -15,7 +15,7 @@ - + @@ -49,7 +49,7 @@ The figure below shows the default configuration for W5500 EVB.

    4. Flash programming start

    Press the 'Start' button on main window of Flash Magic program.

    5. Run the new program

    After flash programming and board reset, The MCU is now running the program;


    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/W5500-EVB/how-to-install-and-activate-lpcxpresso.html b/Product/iEthernet/W5500/W5500-EVB/how-to-install-and-activate-lpcxpresso.html index 90885a8d879..107162c322d 100644 --- a/Product/iEthernet/W5500/W5500-EVB/how-to-install-and-activate-lpcxpresso.html +++ b/Product/iEthernet/W5500/W5500-EVB/how-to-install-and-activate-lpcxpresso.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    How to Install and Activate LPCXpresso IDE

    Download the LPCXpresso IDE


    Create an Acount at LPCXpresso website


    Free Lisence Activation

    1. Click the [Help >> Activate >> Create serial number and register(Free Edition)]

    1. Just Serial number check
    2. Copy Serial Number to clipboard check
    3. Click "OK"

    1. Web Site Login
    2. Register LPCXpresso Click

    1. Copy LPCXpresso Activation Key (Copy & Paste)

    1. Help >> Activate >> Activate (Free Edition..) Click

    1. Insert the Activation code (Paste)

    1. Restart LPCXpresso Tool
    2. Check the Lisence

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/W5500-EVB/make-new-projects.html b/Product/iEthernet/W5500/W5500-EVB/make-new-projects.html index f0b97e18d82..34f205e7669 100644 --- a/Product/iEthernet/W5500/W5500-EVB/make-new-projects.html +++ b/Product/iEthernet/W5500/W5500-EVB/make-new-projects.html @@ -15,7 +15,7 @@ - + @@ -59,7 +59,7 @@ created project for W5500 EVB!
    Please refer to NXP LPCXpresso Getting started user guide for more details.


    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/datasheet.html b/Product/iEthernet/W5500/datasheet.html index 49332ff3063..e1d7f30c060 100644 --- a/Product/iEthernet/W5500/datasheet.html +++ b/Product/iEthernet/W5500/datasheet.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Datasheet

    Datasheet History

    VersionDateDescription
    1.0.02013-08-01Initial Release
    1.0.12013-09-13Corrected duplicated statements and typing errors (P.14, 23, 24, 28, 39, 51) Corrected descriptions (P.35)
    1.0.22013-11-14Changed “descriptions of pin at 1.1 Pin Descriptions” (P.10) starting ”It must be tied to GND to NC (PIN38..42)”
    2. corrected typing error: starting “0x02 to 0x42 value of SOCK_MACRAW at 4.2 Socket Registers(P.50)”
    1.0.32014-05-29Corrected “Sn_MSSR at 4.2 Socket Register” (P.53): wrong descriptions of Sn_MSSR about FMTU/MTU
    1.0.42014-06-131. Added Note about reading size register value (P.56, 58)
    2. Added IR Reflow Temperature Profile (P.66)
    1.0.52014-11-111. Added description for MISO pin (P.11):The SCSn signal defines MISO pin output value
    2. Modified the register notation (P.33), Modified the register notation “Sn_IR at 4.2 Socket Register” (P.49) :from [R] to [RCW1]
    3. Corrected typing error: from DICON to DISCON of Sn_SR at 4.2 Socket Register (P.50)
    1.0.62014-12-30Corrected typing error : from 0x02 to 0x42 value of SOCK_MACRAW “Sn_CR at 4.2 Socket Registers”(P.46)
    1.0.72016-02-241. Corrected Interrupt Assert Wait Time function (P.34)
    2. Notice PLLclk is 150MHz (P.34)
    1.0.82017-05-191. Corrected Driver Level Range Unit uW/MHz to uW (P.60)
    1.0.92019-05-221. Corrected Sn_IMR Description (P.55)
    2. Corrected Junction temperature Min value TJ (P.57)
    3. Added Maximum junction temperature TJMAX (P.58)
    1.1.02022-11-171. Modify Pull-Up Resister Min Value RPU (P.59)
    2. Updated latest Package Descriptions (P.64)

    WIZ550io History

    VersionDateDescription
    1.02013-08-01Initial Release
    1.12014-01-17Changed "External Transformer + RJ-45 to MAGJACK(inside transformer)"
    1.22015-04-20Added “Resistor 33R in MDI line. because EMI issue.”
    Changed "PCB artwork. because changed develop tool(PADS -> Altium) "
    1.32018-08-10Modified "inner 2 layer copper foil (3V3D). This copper foil plated below of CHAND area. It may affect ESD."

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/driver.html b/Product/iEthernet/W5500/driver.html index 4bd29fd8c61..04c71e608ca 100644 --- a/Product/iEthernet/W5500/driver.html +++ b/Product/iEthernet/W5500/driver.html @@ -15,7 +15,7 @@ - + @@ -53,7 +53,7 @@ This code has been evaluated on the CooCox Cookie Board with ARM Cortex-M0 MCU.

    Please refer to this link for more details.

    The figure below shows the folder structure of this ioLibrary.


    3. BSD Type driver for W5200 User

    This driver has the same BSD as the API for W5200 users. We have been evaluating this code on the ARM-CortexM3(STM32F103 series) chipset

    This type of driver is the final version. We will not update it later. Please use the new (well coded) driver code for new projects.

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/japanese-v.html b/Product/iEthernet/W5500/japanese-v.html index 4d7dee6f4d5..3d6088c9e2e 100644 --- a/Product/iEthernet/W5500/japanese-v.html +++ b/Product/iEthernet/W5500/japanese-v.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Overview JP

    W5500

    オーバービュー

    W5500 Photo 1

    W5500はイーサネットに簡単にリンクするためのSPIを使用したハードワイヤードTCP/IPエンべデッド・イーサネットコントローラーです。W5500はTCP/IPスタック、10/100イーサネットMACまたはPHYを一つのチップで処理するために安定的なインターネットコネクションを求める使用者に適しています。ハードワイヤードTCP/IPスタックは多くの応用分野で以下(TCP, UDP, IPv4, ICMP, ARP, IGMP, and PPPoE)の機能を提供しました。W5500はデータ通信用メモリとして32キロバイトの内部バッファーを使用します。W5500を使うことによって使用者は複雑なイーサネットコントローラを使う代わりに、簡単なソケットプログラムを使うことによってイーサネットアプリケーションを実行できます。またW5500は8つの独立ハードウェアソケットからSPIで外部MCUと簡単な統合を提供します。80MHzの速度のW5500の新しい効率的SPIプロトコルは使用者に高速度ネットワークコミュニケーションを提供します。最後にシステムの消費電力を下げるためにW5500はWOL(Wake on LAN)とパワーダウンモードを搭載しました。

    Features

    • 以下のハードワイヤードTCP/IPプロトコルサポート:TCP,UDP,ICMP,IPv4,ARP,IGMP,PPPoE
    • 8つの独立的なハードウェアソケット同時接続
    • パワーダウン・モード
    • UDPを通じてWake on LAN機能サポート
    • 高速SPI(シリアル・ペリフェラル・インターフェース)対応 (SPIモード0及び3対応)
    • Tx/Rxバッファー用内蔵メモリ32Kbytes
    • 10BaseT/100BaseTX イーサネットPHY搭載
    • 自動ネゴシエーション(Full and half duplex, 10 and 100-based) サポート
    • IPフラグメンテーション未サポート
    • I/O信号は3.3Vで動作誤差は5Vまで
    • 48 Pin LQFP Lead-Free Package (7x7mm, 0.5mm pitch)

    Language

    Material

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/migration-from-w5200.html b/Product/iEthernet/W5500/migration-from-w5200.html index 477308da240..3c1123f849c 100644 --- a/Product/iEthernet/W5500/migration-from-w5200.html +++ b/Product/iEthernet/W5500/migration-from-w5200.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Migration from W5200 to W5500

    This page explains migration materials to W5200 users.


    Driver for W5200 Users

    This driver is provided only for current W5200 users to help with a fast migration to W5500. TTo get the new or latest BSD version driver, please refer to the W5500 Driver page.

    W5500 vs W5200 Chip in Comparison

    DeviceW5500W5200
    Process0.13um0.18um
    Package48 LQFP (7*7 mm^2)48 QFN (7*7 mm^2)
    IO Voltage / Core Voltage3.3V / 1.2V 3.3V / 1.8V
    Number of sockets8 ea8 ea
    SPI FrameADD1|ADD2|Control|Data0|Data1…ADD1|ADD0|OP+LEN1|LEN0|Data…
    8bit |8bit |8bit |8bit | 8bit8bit |8bit |1bit +7bit |8bit | 8bit
    Control 1 byte (Block selection, Read/Write selection, SPI mode selection)OP Code 1 bit (Read/Write Selection)
    No Data Length fieldData Length 15bit
    Memory AccessTX Memory and RX Memory can be used for general data memory.TX Memory can be used for general data memory.
    MCU Bus InterfaceSPISPI / 8bit parallel indirect bus mode
    Regulator Related CircuitLDO output pin needs the capacitor. No need to supply the chip power (1.2V).LDO output voltage (1.8V) must be applied to the chip power (1.8V) at the outer side of the chip package.
    PHY Power Down SettingPHY's power down mode can be set by configuring PHY Register.PHY's power down mode can be set by external pin.
    WOL FunctionWOL over UDP SupportWOL over Ethernet Support
    PHY Mode SettingPHY mode can be set by Firmware
    Status LED4 LEDs (SPD / DUP / ACT / Link)3 LEDs (SPD / DUP / Link)
    PHY Auto MDIX FunctionNo SupportSupport
    Operating Current @100Mbps Full LinkTypical 132mATypical 160mA
    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/overview.html b/Product/iEthernet/W5500/overview.html index 78c2411dea8..1f8e1dd0d90 100644 --- a/Product/iEthernet/W5500/overview.html +++ b/Product/iEthernet/W5500/overview.html @@ -15,7 +15,7 @@ - + @@ -34,7 +34,7 @@ handling a complex Ethernet controller. W5500 also provides WOL (Wake on LAN) and a Power Down Mode in order to reduce power consumption.

    Features

    Language

    Material

    - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/ref-schematic.html b/Product/iEthernet/W5500/ref-schematic.html index ae65eaeb704..90d8bd076d9 100644 --- a/Product/iEthernet/W5500/ref-schematic.html +++ b/Product/iEthernet/W5500/ref-schematic.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ WIZ550S2E and WIZ550web Modules.
  • 2) we use the RB1-125BAG1A from UDE in most of our our W5100 & W7100A related Plug-In and Serial-to-Ethernet (S2E) Modules.

  • - + \ No newline at end of file diff --git a/Product/iEthernet/W5500/w5500-evb-pico.html b/Product/iEthernet/W5500/w5500-evb-pico.html index 7873474ad01..091903da234 100644 --- a/Product/iEthernet/W5500/w5500-evb-pico.html +++ b/Product/iEthernet/W5500/w5500-evb-pico.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    W5500-EVB-Pico

    Overview

    W5500-EVB-Pico is a microcontroller evaluation board based on the Raspberry Pi RP2040 and fully hardwired TCP/IP controller W5500 – and basically works the same as Raspberry Pi Pico board but with additional Ethernet via W5500.

    W5500-EVB-RP2040

    Powered By Raspberry Pi logo

    Features

    • RP2040 microcontroller with 2MByte Flash
      • Dual-core cortex M0+ at up to 133MHz
      • 264kByte multi-bank high performance SRAM
      • External Quad-SPI Flash with eXecute In Place (XIP)
      • High performance full-crossbar bus fabric
      • 30 multi-function General Purpose IO (4 can be used for ADC)
        • 1.8-3.3V IO Voltage (NOTE. Pico IO voltage is fixed at 3.3V)
      • 12-bit 500ksps Analogue to Digital Converter (ADC)
      • Various digital peripherals
        • 2 × UART, 2 × I2C, 2 × SPI, 16 × PWM channels
        • 1 × Timer with 4 alarms, 1 × Real Time Counter
      • 2 × Programmable IO (PIO) blocks, 8 state machines total
      • Flexible, user-programmable high-speed IO
      • Can emulate interfaces such as SD Card and VGA
    • Includes W5500
      • Supports Hardwired Internet Protocols: TCP, UDP, ICMP, IPv4, ARP, IGMP, PPPoE
      • Supports 8 Independent Hardware SOCKETs simultaneously
      • Internal 32 Kbytes Memory for TX/ RX Buffers
      • Supports High Speed Serial Peripheral Interface(SPI MODE 0, 3)
    • Micro-USB B port for power and data (and for reprogramming the Flash)
    • 40 pin 21x51 'DIP' style 1mm thick PCB with 0.1" through-hole pins also with edge castellations
    • 3-pin ARM Serial Wire Debug (SWD) port
    • 10 / 100 Ethernet PHY embedded
    • Supports Auto Negotiation
      • Full / Half Duplex
      • 10 / 100 Based
    • Built-in RJ45
    • Built-in LDO

    Hardware Specification

    Pin-out

    W5500-EVB-RP2040

    W5500-EVB-Pico pinout is directly connected to the GPIO of RP2040 as shown in the picture above. It has the same pinout as the Raspberry Pi Pico board. However, GPIO16, GPIO17, GPIO18, GPIO19, GPIO20, GPIO21 are connected to W5500 inside the board. These pins enable SPI communication with W5500 to use Ethernet function. If you are using the Ethernet function, these pins cannot be used for any other purpose.

    The RP2040 GPIO used inside W5500-EVB-Pico is as follows.

    I/OPin NameDescription
    IGPIO16Connected to MISO on W5500
    OGPIO17Connected to CSn on W5500
    OGPIO18Connected to SCLK on W5500
    OGPIO19Connected to MOSI on W5500
    OGPIO20Connected to RSTn on W5500
    IGPIO21Connected to INTn on W5500
    IGPIO24VBUS sense - high if VBUS is present, else low
    OGPIO25Connected to user LED
    IGPIO29Used in ADC mode (ADC3) to measure VSYS/3

    Apart from GPIO and ground pins, there are 7 other pins on the main 40-pin interface:

    Pin No.Pin NameDescription
    PIN40VBUSMicro-USB input voltage, connected to micro-USB port pin 1. Nominally 5V.
    PIN39VSYSMain system input voltage, which can vary in the allowed range 4.3V to 5.5V, and is used by the on-board LDO to generate the 3.3V .
    PIN373V3_ENConnects to the on-board LDO enable pin. To disable the 3.3V (which also de-powers the RP2040 and W5500), short this pin low.
    PIN363V3Main 3.3V supply to RP2040 and W5500, generated by the on-board LDO.
    PIN35ADC_VREFADC power supply (and reference) voltage, and is generated on W5500-EVB-Pico by filtering the 3.3V supply.
    PIN33AGNDGround reference for GPIO26-29.
    PIN30RUNRP2040 enable pin, To reset RP2040, short this pin low.

    Operation Condition

    ItemDescription
    Operation Temperature MAX85C (including self-heating)
    Operation Temperature MIN-20C
    VBUSDC 5V (+/- 10%)
    VSYS MinDC 4.3V
    VSYS MaxDC 5.5V

    Recommended maximum ambient temperature of operation is 70C.

    Technical Reference

    RP2040 Datasheet

    W5500 Datasheet

    Schematic

    W5500-EVB-RP2040

    Schematic & Part list & Gerber File

    Dimension (Unit : mm)

    W5500-EVB-RP2040

    Firmware Example

    Please refer to below links to find firmware example.

    AWS Qualification

    W5500S-EVB-Pico is RP2040-based device that got AWS IoT Core Qualification.

    Microsoft Azure Certification

    W5500-EVB-Pico is RP2040-based device certified to run with Microsoft Azure.

    How to buy

    WIZnetUS Online Shop, USA WIZnetKorea Online Shop, Korea

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    Skip to main content
    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/application-note.html b/Product/iEthernet/W6100/application-note.html index 017588d064c..97c04d7a7d6 100644 --- a/Product/iEthernet/W6100/application-note.html +++ b/Product/iEthernet/W6100/application-note.html @@ -15,13 +15,13 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/document.html b/Product/iEthernet/W6100/document.html index d8d1f13c3b2..5d975ac8b80 100644 --- a/Product/iEthernet/W6100/document.html +++ b/Product/iEthernet/W6100/document.html @@ -15,14 +15,14 @@ - +
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/driver-basic-project.html b/Product/iEthernet/W6100/driver-basic-project.html index 177cece1736..40eabd5c38c 100644 --- a/Product/iEthernet/W6100/driver-basic-project.html +++ b/Product/iEthernet/W6100/driver-basic-project.html @@ -15,7 +15,7 @@ - + @@ -35,7 +35,7 @@ Repository 🌎https://github.com/WIZnet-arduinoEthernet

    W6100 Mbed Projects

    W6100 Mbed GitHub Repository

    🌎https://github.com/WIZnet-MbedEthernet

    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/getting-started-w6100evb.html b/Product/iEthernet/W6100/getting-started-w6100evb.html index 64ddc299e01..dabe24424de 100644 --- a/Product/iEthernet/W6100/getting-started-w6100evb.html +++ b/Product/iEthernet/W6100/getting-started-w6100evb.html @@ -15,7 +15,7 @@ - + @@ -69,7 +69,7 @@ the program
    When running to loopback program, ie as below picture serial debug message print out.


    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/new-project-eclipse.html b/Product/iEthernet/W6100/new-project-eclipse.html index ebf93867086..64d856d37df 100644 --- a/Product/iEthernet/W6100/new-project-eclipse.html +++ b/Product/iEthernet/W6100/new-project-eclipse.html @@ -15,7 +15,7 @@ - + @@ -68,7 +68,7 @@

    From now on, you can make your own application project based on the newly created project for W5100S-EVB!
    Enjoy W5100S-EVB !!


    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/new-project-stm32cubeide.html b/Product/iEthernet/W6100/new-project-stm32cubeide.html index 4ad6d92d312..aed6890ad5c 100644 --- a/Product/iEthernet/W6100/new-project-stm32cubeide.html +++ b/Product/iEthernet/W6100/new-project-stm32cubeide.html @@ -15,7 +15,7 @@ - + @@ -42,7 +42,7 @@


    From now on, you can make your own application project based on the newly created project for W6100-EVB!
    Enjoy W6100-EVB !!


    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/new-project-truestudio.html b/Product/iEthernet/W6100/new-project-truestudio.html index f3af68528e7..d60cec0cf0a 100644 --- a/Product/iEthernet/W6100/new-project-truestudio.html +++ b/Product/iEthernet/W6100/new-project-truestudio.html @@ -15,7 +15,7 @@ - + @@ -36,7 +36,7 @@

    From now on, you can make your own application project based on the newly created project for W6100-EVB!
    Enjoy W6100-EVB !!


    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/overview.html b/Product/iEthernet/W6100/overview.html index 37f6b8edc4a..eac5a79c935 100644 --- a/Product/iEthernet/W6100/overview.html +++ b/Product/iEthernet/W6100/overview.html @@ -15,7 +15,7 @@ - + @@ -41,7 +41,7 @@ System Bus with 2 Address signal & 8bit Data
  • Internal 16Kbytes Memory for TX/ RX Buffers
  • 10BaseT / 10BaseTe / 100BaseTX Ethernet PHY Integrated
  • Support Auto Negotiation (Full and half duplex, 10 and 100-based )
  • Support Auto-MDIX only on Auto-Negotiation Mode
  • Not support IP Fragmentation
  • 3V operation with 5V I/O signal tolerance
  • Network Indicator LEDs (Full/Half Duplex, Link, 10/100 Speed, Active)
  • 48 Pin LQFP & QFN Lead-Free Package (7x7mm, 0.5mm pitch)
  • W5100S PIN-2-PIN Compatible

  • Target Application

    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/ref-schematic.html b/Product/iEthernet/W6100/ref-schematic.html index 21d5a695e48..31d6b233053 100644 --- a/Product/iEthernet/W6100/ref-schematic.html +++ b/Product/iEthernet/W6100/ref-schematic.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content
    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/w6100-evb-pico.html b/Product/iEthernet/W6100/w6100-evb-pico.html index d1f2a56c1b6..b87af57083b 100644 --- a/Product/iEthernet/W6100/w6100-evb-pico.html +++ b/Product/iEthernet/W6100/w6100-evb-pico.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    W6100-EVB-Pico

    Overview

    W6100-EVB-Pico is a microcontroller evaluation board based on the Raspberry Pi RP2040 and fully hardwired TCP/IP controller W6100 – and basically works the same as Raspberry Pi Pico board but with additional Ethernet via W6100.

    • Raspberry Pi Pico Clone
    • Ethernet (W6100 Hardwired TCP/IP CHIP)

    w6100-evb-pico

    Powered By Raspberry Pi logo

    Revision history

    DateVersionDescription
    Oct 20221.0Initial board release

    Features

    • RP2040 microcontroller with 2MByte Flash
      • Dual-core cortex M0+ at up to 133MHz
      • 264kByte multi-bank high performance SRAM
      • External Quad-SPI Flash with eXecute In Place (XIP)
      • High performance full-crossbar bus fabric
      • 30 multi-function General Purpose IO (4 can be used for ADC)
        • 1.8-3.3V IO Voltage (NOTE. Pico IO voltage is fixed at 3.3V)
      • 12-bit 500ksps Analogue to Digital Converter (ADC)
      • Various digital peripherals
        • 2 × UART, 2 × I2C, 2 × SPI, 16 × PWM channels
        • 1 × Timer with 4 alarms, 1 × Real Time Counter
      • 2 × Programmable IO (PIO) blocks, 8 state machines total
      • Flexible, user-programmable high-speed IO
      • Can emulate interfaces such as SD Card and VGA
    • Includes W6100
      • Supports Hardwired Internet Protocols: TCP, UDP, IPv6, IPv4, ICMPv6, ICMPv4, IGMP, MLDv1, ARP, PPPoE
      • Supports 8 independent SOCKETs simultaneously with 32KB memory
      • Internal 16 Kbytes Memory for TX/ RX Buffers
      • SPI Interface
    • Micro-USB B port for power and data (and for reprogramming the Flash)
    • 40 pin 21x51 'DIP' style 1mm thick PCB with 0.1" through-hole pins also with edge castellations
    • 3-pin ARM Serial Wire Debug (SWD) port
    • 10 / 100 Ethernet PHY embedded
    • Supports Auto Negotiation
      • Full / Half Duplex
      • 10 / 100 Based
    • Built-in RJ45(RB1-125BAG1A)
    • Built-in LDO (LM8805SF5-33V)

    Hardware Specification

    Pin-out v1.0

    w6100-evb-pico-pinout

    W6100-EVB-Pico pinout is directly connected to the GPIO of RP2040 as shown in the picture above. It has the same pinout as the Raspberry Pi Pico board. However, GPIO16, GPIO17, GPIO18, GPIO19, GPIO20, GPIO21 are connected to W6100 inside the board. These pins enable SPI communication with W5100S to use Ethernet function. If you are using the Ethernet function, these pins cannot be used for any other purpose.

    The RP2040 GPIO used inside W6100-EVB-Pico is as follows.

    I/OPin NameDescription
    IGPIO16Connected to MISO on W6100
    OGPIO17Connected to CSn on W6100
    OGPIO18Connected to SCLK on W6100
    OGPIO19Connected to MOSI on W6100
    OGPIO20Connected to RSTn on W6100
    IGPIO21Connected to INTn on W6100
    IGPIO24VBUS sense - high if VBUS is present, else low
    OGPIO25Connected to user LED
    IGPIO29Used in ADC mode (ADC3) to measure VSYS/3

    Apart from GPIO and ground pins, there are 7 other pins on the main 40-pin interface:

    Pin No.Pin NameDescription
    PIN40VBUSMicro-USB input voltage, connected to micro-USB port pin 1. Nominally 5V.
    PIN39VSYSMain system input voltage, which can vary in the allowed range 4.3V to 5.5V, and is used by the on-board LDO to generate the 3.3V .
    PIN373V3_ENConnects to the on-board LDO enable pin. To disable the 3.3V (which also de-powers the RP2040 and W6100), short this pin low.
    PIN363V3Main 3.3V supply to RP2040 and W6100, generated by the on-board LDO.
    PIN35ADC_VREFADC power supply (and reference) voltage, and is generated on W6100-EVB-Pico by filtering the 3.3V supply.
    PIN33AGNDGround reference for GPIO26-29.
    PIN30RUNRP2040 enable pin, To reset RP2040, short this pin low.

    Operation Condition

    ItemDescription
    Operation Temperature MAX85C (including self-heating)
    Operation Temperature MIN-20C
    VBUSDC 5V (+/- 10%)
    VSYS MinDC 4.3V
    VSYS MaxDC 5.5V

    Recommended maximum ambient temperature of operation is 70C.

    Technical Reference

    RP2040 Datasheet

    W6100 Datasheet

    Schematic v1.0

    w6100-evb-pico-schematic

    Schematic & Part list & Gerber File

    Dimension v1.0 (Unit : mm)

    w6100-evb-pico-dimension

    Firmware Example

    Please refer to below links to find firmware example.

    C/C++

    How to buy

    WIZnetUS Online Shop, USA WIZnetKorea Online Shop, Korea

    - + \ No newline at end of file diff --git a/Product/iEthernet/W6100/w6100-evb.html b/Product/iEthernet/W6100/w6100-evb.html index 9ab25aba057..cae5553bd90 100644 --- a/Product/iEthernet/W6100/w6100-evb.html +++ b/Product/iEthernet/W6100/w6100-evb.html @@ -15,7 +15,7 @@ - + @@ -49,7 +49,7 @@ https://github.com/Wiznet/W6100_EVB


    Getting Started

    🌎Getting Started

    🌎How to upload firmware


    Make New EVB Projects

    It is the same as W5100-EVB

    🌎Make New EVB Projects using Eclipse

    🌎Make New EVB Projects using TrueSTUDIO


    Technical Reference

    Datasheet

    Schematic & Part list

    Dimension


    - + \ No newline at end of file diff --git a/Product/iMCU.html b/Product/iMCU.html index 3e0b8b774f4..fc4175e478d 100644 --- a/Product/iMCU.html +++ b/Product/iMCU.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    iMCU

    Ethernet MCU with Hardwired TCP/IP Core


    Overview

    IOP is the Internet Offload Processor, the one-chip solution that integrates MCU and Hardwired TCP/IP cores.


    Product Family

    W7500PW7500W7100A
    not recommended for new design
    ImageW7500PW7500W7100A
    Embedded CoreCortex-M0, TCP/IP, MAC & PHYCortex-M0, TCP/IP & MAC8051, TCP/IP, MAC & PHY
    TX/RX Buffer32KB32 KB32 KB
    HW Socket #888
    Operation Temp (℃)0 .. 70-40 .. 85-40 .. 85
    Process0.13µm0.13µm0.18µm
    Package & Size64 TQFP : 7x7 (mm)64 TQFP : 7x7 (mm)100LQFP : 14 x 14 (mm)
    64QFN : 10 x 10 (mm)
    Evaluation boardWIZwiki-W7500P
    WIZwiki-W7500
    WIZwiki-W7500ECO
    WIZwiki-W7500ECO
    WIZwiki-W7500
    WIZwiki-W7500
    iMCU7100-EVB
    iMCU7100-EVB

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    Skip to main content

    iMCU7100-EVB

    Key Features

    • Evaluation Board for W7100A
    • Expansion port
    • Provide WizISP for programming
    • Support various interface : serial, Ethernet, DTAG
    • Embedded 64Kbyte Flash memory, 64Kbyte RAM, 256Byte Data flash

    Hardware

    • MCU : iMCU W7100A
      • 64Kbyte Data memory, 64Kbyte Code memory, 2Kbyte Boot code memory, 256Byte Data flash
    • Serial : On board RS-232C 1 port with DB9 connector
    • MAG Jack : On board MAG-Jack (Transformer + RJ-45 connector)
    • LCD : 16 character x 2 line character LCD
    • LED : User debugging LED 3EA / Network status LED 8EA
    • Button : On board debugger socket
    • Expansion Port (MCU port expansion)
      • 32Pin (8pin*4) 2.54mm Pitch Pin-Header Hole
      • 14Pin (7pin*2) 2.54mm Pitch Pin-Header Hole
      • 32Pin (8pin*4) 2.00mm Pitch Pin-Header Hole
      • 14Pin (7pin*2) 2.00mm Pitch Pin-Header Hole
    • Dummy Hole
      • 167Pin 2.54mm Pitch Dummy Hole
      • 236Pin 2.00mm Pitch Dummy Hole
    • Power : DC5V /2A Adaptor
    • PCB Size : 120 x 80mm

    Download

    Schematic

    iMCU7100-EVB Schematic

    Hardware Schematic of iMCU7100-EVB V1.1

    Partlist

    iMCU7100-EVB Part List

    Part List of iMCU7100-EVB V1.0 & V1.1

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    Skip to main content

    W7100A

    caution

    W7100A is not recommended for new design.

    Technical support for this product has officially ended.

    If there are any questions, please use our Forum or contact us.

    Overview

    iMCU W7100A is the one-chip solution which integrates an 8051 compatible microcontroller, 64KB SRAM and hardwired TCP/IP Core for high performance and easy development. The TCP/IP core is a market-proven hardwired TCP/IP stack with an integrated Ethernet MAC & PHY. The Hardwired TCP/IP stack supports the TCP, UDP, IPv4, ICMP, ARP, IGMP and PPPoE which has been used in various applications for years.

    Features

    • Fully software compatible with industrial standard 8051
    • Pipelined architecture which enables execution of instructions 4~5 times faster than a standard 8051
    • 10BaseT/100BaseTX Ethernet PHY embedded
    • Power down mode supported for saving power consumption
    • Hardwired TCP/IP Protocols: TCP, UDP, ICMP, IPv4 ARP, IGMP, PPPoE, Ethernet
    • Auto Negotiation (Full-duplex and half duplex), Auto MDI/MDIX
    • ADSL connection with PPPoE Protocol with PAP/CHAP Authentication mode support
    • independent sockets which are running simultaneously
    • 32Kbytes Data buffer for the Network
    • Network status LED outputs (TX, RX, Full/Half duplex, Collision, Link, and Speed)
    • Not supports IP fragmentation (driver function)
    • 2 Data Pointers (DPTRs) for fast memory blocks processing
    • Advanced INC & DEC modes
    • Auto-switch of current DPTR
    • 64KBytes Data Memory (RAM)
    • 255Bytes data FLASH
    • 64KBytes Code Memory
    • 2KBytes Boot Code Memory
    • Up to 16M bytes of external (off-chip) data memory (100pin version)
    • Interrupt controller
    • 2 priority levels
    • 4 external interrupt sources
    • Watchdog interrupt
    • Four 8-bit I/O Ports
    • Three timers/counters
    • Full-duplex UART (max. 230kBaud)
    • Programmable Watchdog Timer
    • DoCD™ compatible debugger
    • High Product Endurance
    • Minimum 100,000 program/erase cycles (FLASH)
    • Minimum 10 years data retention

    Block Diagram

    Download

    Documents

    Datasheet

    W7100A Datasheet V1.2.5

    Last Update: 2016.08.25

    Erratasheet

    W7100A Chip Erratasheet v1.1.0

    Last Update: 2012.09.18

    Limitation Note

    Limitation Note – ARP problem in the NLB environment

    Last Update: 2018.03.12

    Comparison Sheet

    Comparison Sheet of W7100 & W7100A

    Differences between W7100A and W7100_v1.1

    Application Note

    W7100A Application Note (Docs & Sample Codes)
    • TCP, UDP, DHCP, DNS_Client, DDNS, HTTP_Server, HTTP_Client, Telnet, Serial to Ethernet, IPRAW, MACRAW, UART, Timer, LCD, I2C, Code Flash Programming, Data Flash Programming, External Memory, WDTimer
    • KEIL uVision 3 and 4 IDE Project

    Drivers

    W7100A Driver
    • W7100A/ W7100 Integrated Driver (updated on 2013.04.16)
    • Produced by KEIL uVision 4 IDE

    Utilities

    WIZISP & Programming Guide
    • Last Update: 2012.11.26
    • Version : 2.1.
    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/adc.html b/Product/iMCU/W7500/Peripherals-internal/adc.html index ad8c351ebb8..02ac0d833d4 100644 --- a/Product/iMCU/W7500/Peripherals-internal/adc.html +++ b/Product/iMCU/W7500/Peripherals-internal/adc.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ ADC of various channels can be performed in single mode. The result of the ADC is stored in 12 bit register.

    Features

    Functional description

    Figure 1 ADC block diagram

    Operation ADC with non interrupt

    The below Figure shows the flowchart of ADC operation with non-interrupt.
    ADC can be used as below:

    1. ADC needs to be initialized before operation.
      To initialize the ADC, clear the PWD bit first.
    2. Select the ADC channel from 0 to 7 and 15 (initial core voltage).
    3. Run start ADC conversion by set ADC_SRT bit.
    4. Check INT bit to know finish of conversion.
    5. If INT bit is high (1), read ADC conversion data.
    6. Finally, ADC operation is finished by setting the PWD bit.

    Figure 2 ADC flow chart

    Operation ADC with interrupt

    The below Figure shows the flowchart of ADC operation with interrupt. Operation is almost the same as the non-interrupt mode except checking INT register to know when enabling interrupt mask bit and conversion is completed.

    Figure 3 ADC flow chart2


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/afc.html b/Product/iMCU/W7500/Peripherals-internal/afc.html index b689dc7a425..8ae355683c9 100644 --- a/Product/iMCU/W7500/Peripherals-internal/afc.html +++ b/Product/iMCU/W7500/Peripherals-internal/afc.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    Alternate Function Controller (AFC)

    Introduction

    Each functional PADs have several functions.
    Users can select a function in Alternate Function Controller block.

    Features

    • Each functional pad has 2 ~ 4 functions.
    • Pads can be selected by each registers individually.
    • Each pad can be used as external interrupt source.

    Functional description

    The below Table shows the function table of each functional pad.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/blink-led.html b/Product/iMCU/W7500/Peripherals-internal/blink-led.html index b546599ee83..2e3ede10dfd 100644 --- a/Product/iMCU/W7500/Peripherals-internal/blink-led.html +++ b/Product/iMCU/W7500/Peripherals-internal/blink-led.html @@ -15,7 +15,7 @@ - + @@ -32,7 +32,7 @@ loop:


    Directory contents


    Hardware and Software environment


    How to use it ?

    In order to make the program work, you must do the following :

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/capturemode.html b/Product/iMCU/W7500/Peripherals-internal/capturemode.html index 91c47727710..eac8f1b2f50 100644 --- a/Product/iMCU/W7500/Peripherals-internal/capturemode.html +++ b/Product/iMCU/W7500/Peripherals-internal/capturemode.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ so the PWM0 counter clock is 10 MHz. SystemCoreClock is set to 20 MHz.

    The PWM channel 0 is configured in Timer Mode and duty cycle is 50 %. Timer/Counter is up-count mode and periodic mode. Capture mode is rising edge detection. 1 interrupts out of 3 interrupts are enabled: capture interupt(match and overflow interrupt is excepted).

    The Timer/Counter runs periodically and if capture signal(PC_00) is received, the Timer/Counter value is saved at capture register and capture interrupt is occurred. In capture interrupt handler, RED LED(PC_08) is toggled.


    Directory contents

    Hardware and Software environment

    How to use it ?

    In order to make the program work, you must do the following :

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/countermode.html b/Product/iMCU/W7500/Peripherals-internal/countermode.html index ab266458684..4b8e98ee109 100644 --- a/Product/iMCU/W7500/Peripherals-internal/countermode.html +++ b/Product/iMCU/W7500/Peripherals-internal/countermode.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use the PWM peripheral to run counter mode.

    The PWM channel 0 frequency is set to SystemCoreClock(Hz). SystemCoreClock is set to 20 MHz.

    The PWM channel 0 is configured in rising edge counter mode, up-count mode, periodic mode. So the PWM channel 0 Timer/Counter is counted when input signal is triggered. 2 interrupts out of 3 interrupts are enabled: match and overflow interupt(capture interrupt is excepted).

    The PWM channel 0 output pin(PC_00) is used for input.

    When the Timer/Counter reaches the match value, RED LED(PC_08) is toggled every times, and when the Tiemr/Counter reaches the limit value, GREEN LED(PC_09) is toggled every times.


    Directory contents

    Hardware and Software environment

    How to use it ?

    In order to make the program work, you must do the following :

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/crg.html b/Product/iMCU/W7500/Peripherals-internal/crg.html index 6451e7089b7..6b545c0d787 100644 --- a/Product/iMCU/W7500/Peripherals-internal/crg.html +++ b/Product/iMCU/W7500/Peripherals-internal/crg.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ RC oscillator has the advantage of providing a clock source at low cost (no external components).
    However accuracy of RC oscillator is less than external crystal or ceramic resonator.

    PLL

    The internal PLL can be used to multiply the External Oscillator Clock (OCLK) or RC Oscillator Clock (RCLK). PLL input can be selected by register. PLL output clock can be generated by following the equations below.

    Generated clock

    Each generated clock source can be selected among 3 clock source as independent by each clock source select register

    Each generated clock has own prescaler which can be select individually by each prescale value register

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/deadzonegeneration.html b/Product/iMCU/W7500/Peripherals-internal/deadzonegeneration.html index 0e50c895855..9bdbe7033bc 100644 --- a/Product/iMCU/W7500/Peripherals-internal/deadzonegeneration.html +++ b/Product/iMCU/W7500/Peripherals-internal/deadzonegeneration.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use the PWM peripheral to run Dead-zone generation.

    The PWM channel 0 frequency is set to SystemCoreClock(Hz), the Prescaler is 2 so the PWM channel 0 counter clock is 10 MHz. SystemCoreClock is set to 20 MHz.

    The PWM channel 0 is set as up-count and periodic mode, and the dead-zone counter value is set as 100. The PWM output is enabled. So as a result, the output of PWM channel 1 is inverted the PWM channel 0 output.

    The PWM channel 0 output is mapped to PC_00, and inverted output is mapped to PC_01(The PWM channel 1 output).


    Directory contents

    Hardware and Software environment

    How to use it ?

    In order to make the program work, you must do the following :

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/deladhcpclient.html b/Product/iMCU/W7500/Peripherals-internal/deladhcpclient.html index 4b29b90b79d..35a228f4aee 100644 --- a/Product/iMCU/W7500/Peripherals-internal/deladhcpclient.html +++ b/Product/iMCU/W7500/Peripherals-internal/deladhcpclient.html @@ -15,13 +15,13 @@ - +
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    DHCP Client for TCP/IP Offload Engine example


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : WZTOE/DHCPClient/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of the TCP adn UDP Loopback example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use DHCP Client in UDP mode.

    In this example:


    Directory contents

    • WZTOE/ioLibrary/Ethernet/socket.c (socket APIs)
    • WZTOE/ioLibrary/Ethernet/wizchip_config.c (WZTOE Config.)
    • WZTOE/ioLibrary/Internet/dhcp.c (DHCP Client)
    • WZTOE/ioLibrary/Applications/loopback.c (TCP/UDP Loopback App.)
    • WZTOE/ioLibrary/MDIO/W7500x_miim.c (mdio via gpio)
    • WZTOE/DHCPClient/main.c (Main program)
    • WZTOE/DHCPClient/W7500x_it.c (Interrupt Handlers)
    • WZTOE/DHCPClient/W7500x_it.h (Interrupt Handlers Header file)
    • WZTOE/DHCPClient/W7500x_conf.h (Library Configuration file)
    • WZTOE/DHCPClient/MDK/W7500x_WZTOE_DHCPClient.uvproj (MDK Project file)
    • WZTOE/DHCPClient/GCC/Makefile (GCC Make file)

    Hardware and Software environment

    • This example has been tested with WIZnet WIZwiki W7500 platform.

    • To select the WIZnet WIZwiki platform used to run the example.

    • WIZwiki W7500 Set-up

      • Use PB_14 and PB_15 for MDIO
      • In order to use IC+101 PHY to be set Pull-up and Strength at TXD[3:0] and TXE
    • Hardware Connection

      • PB_14 --- MDIO (@IC+101)
      • PB_15 --- MDC (@IC+101)

    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/delay.html b/Product/iMCU/W7500/Peripherals-internal/delay.html index 3bfc2c7d8c6..279d0f6ac4c 100644 --- a/Product/iMCU/W7500/Peripherals-internal/delay.html +++ b/Product/iMCU/W7500/Peripherals-internal/delay.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Delay example (System tick timer example)


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : SysTick/Delay/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of systic timer delay example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use SysTick of W7500.

    In this example:

    • 1) Configuration SysTick
    • 2) Run delay fucntion with 1sec

    Directory contents

    • SysTick/Delay/main.c (Main program)
    • SysTick/Delay/W7500x_it.c (Interrupt Handlers)
    • SysTick/Delay/W7500x_it.h (Interrupt Handlers Header file)
    • SysTick/Delay/W7500x_conf.h (Library Configuration file)
    • SysTick/Delay/MDK/W7500x_SysTick_Delay.uvproj (MDK Project file)
    • SysTick/Delay/GCC/Makefile (GCC Make file)

    Hardware and Software environment

    • This example has been tested with WIZnet WIZwiki W7500 platform.

    • To select the WIZnet WIZwiki platform used to run the example.

    • WIZwiki W7500 Set-up

      • No need to hardware setup

    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/dma.html b/Product/iMCU/W7500/Peripherals-internal/dma.html index 9801afb9d22..9e7aae4b337 100644 --- a/Product/iMCU/W7500/Peripherals-internal/dma.html +++ b/Product/iMCU/W7500/Peripherals-internal/dma.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    Direct Memory Access (DMA)

    Introduction

    Direct memory access (DMA) is used in order to provide high-speed data transfer between peripherals and memory as well as memory to memory. Data can be quickly moved by DMA without any CPU actions. This keeps CPU resources free for other operations.

    The DMA controller has up to 6 channels in total, each dedicated to managing memory access requests from one or more peripherals. It has an arbiter for handling the priority between DMA requests. For more details, refer to “PrimeCell® μDMA Controller (PL230)” from the Technical Reference Manual

    Features

    • 6 channels
    • Each channel is connected to dedicated hardware DMA requests and software trigger is also supported on each channel.
    • Priorities between requests from the DMA channels are software programmable (2 levels consisting of high, default)
    • Memory-to-memory transfer (software request only)
    • TCP/IP-to-memory transfer (software request only)
    • Access to Flash, SRAM, APB and AHB peripherals as source and destination

    Functional description

    DMA request mapping

    The hardware requests from the peripherals (UART0, UART1, SSP0, SSP1) are simply connected to the DMA. Refer to the below Table Summary of the DMA requests for each channel which lists the DMA requests for each channel.

    Channel 1Channel 2Channel 3Channel 4Channel 5Channel 6
    Hardware requestSSP0_TX
    SSP0_RX
    SSP1_TX
    SSP1_RX
    UART0_TX
    UART0_RX
    UART1_TX
    UART1_RX
    Channel 5Channel 6
    Software requestSupportSupportSupportSupportSupportSupport
    1. Software request is only way to use DMA for memory-to-memory or TCP/IP-to-memory.

    DMA arbitration

    The controller can be configured to perform arbitration during a DMA cycle before and after a programmable number of transfers. This reduces the latency for servicing a higher priority channel. The controller uses four bits in the channel control data structure that configures how many AHB bus transfers occur before the controller re-arbitrates. These bits are known as the R_power bits because the value R is raised to the power of two and this determines the arbitration rate. For example, if R = 4, then the arbitration rate is 2^4, which means the controller arbitrates every 16 DMA transfers.

    Remark: Do not assign a low-priority channel with a large R_power value because this prevents the controller from servicing high-priority requests until it re-arbitrates.

    When N > 2R and is not an integer multiple of 2R then the controller always performs sequences of 2R transfers until N < 2R remain to be transferred. The controller performs the remaining N transfers at the end of the DMA cycle.

    DMA cycle types

    The cycle_ctrl bits in the channel control data structure contril how the DMA controller performs a cycle.

    The controller uses four cycle types described in this manual:

    • Invalid
    • Basic
    • Auto-request
    • Ping-pong

    See ARM micro DMA (PL230) documentation for additional cycle types.

    For all cycle types, the controller arbitrates after 2R DMA transfers. If a low-priority channel is set to a large 2R value then it prevents all other channels from performing a DMA transfer until the low-priority DMA transfer completes. Therefore, the user must be cautious when setting the R_power bit in the channel_cfg data structure so that the latency for high-priority channels is not significantly increased.

    Invalid cycle

    After the controller completes a DMA cycle, it sets the cycle type to invalid to prevent it from repeating the same DMA cycle.

    Basic cycle

    In this mode, the controller can be configured to use either the primary or the alternate channel control data structure. After the channel is enabled and the controller receives a request for this channel, the flow for basic cycle is as below:

    1. The controller performs 2R transfers. If the number of transfers remaining is zero the flow continues at step 3.
    2. The controller arbitrates:
      • If a higher-priority channel is requesting service, then the controller services that channel.
      • If the peripheral or software signals a request to the controller, then it continues at step 1.
    3. The controller sets dma_done[c] signal for this channel HIGH for one system clock cycle. This indicates to the host processor that the DMA cycle is complete.

    Auto request cycle

    When the controller operates in this mode, it is only necessary to receive a single request to enable the controller to complete the entire DMA cycle. This enables a large data transfer to occur, without significantly increasing the latency for servicing higher priority requests or requiring multiple requests from the processor or peripheral.

    The auto-request cycle is typically used for memory-to-memory requests. In this case, software generates the starting request for the 2^R transfers after setting up the DMA control data structure.

    In this mode, the controller can be configured to use either the primary or the alternate channel control data structure. After the channel is enabled and the controller receives a request for this channel, the flow for the auto-request cycle is as below:

    1. The controller performs 2R transfers. If the number of transfers remaining is zero the flow continues at step 3.
    2. The controller arbitrates if there are any transfers remaining after 2R transfers. If the current channel c has the highest priority, the cycle continues at step 1.
    3. The controller sets dma_done[c] signal for this channel HIGH for one system clock cycle. This indicates to the host processor that the DMA cycle is complete.

    Pingpong cycle

    In this mode, the controller performs a DMA cycle using one of the data structures and then performs a DMA cycle using the other data structure. The controller continues to switch between primary and alternate structures until it either reads a data structure that is invalid, or until the user reprograms the cycle_type to basic, or until the host processor disables the channel.

    In ping-pong mode, the user can program or reprogram one of the two channel data structures (primary or alternate) while using the other channel data structure for the active transfer. When a transfer is done, the next transfer can be started immediately using the prepared channel data structure – provided that a higher priority channel does not require servicing. If the user does not reprogram the channel control data structure not in use for a transfer, the cycle type remains invalid (which is the value at the end of the last transfer using that structure) and the ping-pong cycle completes.

    The ping-pong cycle can be used for transfers to or from peripherals or for memory-to-memory transfers.


    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/dmdnsclient.html b/Product/iMCU/W7500/Peripherals-internal/dmdnsclient.html index c4291d41e6d..5cfb310b994 100644 --- a/Product/iMCU/W7500/Peripherals-internal/dmdnsclient.html +++ b/Product/iMCU/W7500/Peripherals-internal/dmdnsclient.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    DNS Client for TCP/IP Offload Engine example


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : WZTOE/DNSClient/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of the TCP adn UDP Loopback example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use DNS Client in UDP mode.

    In this example:


    Directory contents

    • WZTOE/ioLibrary/Ethernet/socket.c (socket APIs)
    • WZTOE/ioLibrary/Ethernet/wizchip_config.c (WZTOE Config.)
    • WZTOE/ioLibrary/Internet/dhcp.c (DHCP Client)
    • WZTOE/ioLibrary/Internet/dns.c (DNS Client)
    • WZTOE/ioLibrary/MDIO/W7500x_miim.c (mdio via gpio)
    • WZTOE/DNSClient/main.c (Main program)
    • WZTOE/DNSClient/W7500x_it.c (Interrupt Handlers)
    • WZTOE/DNSClient/W7500x_it.h (Interrupt Handlers Header file)
    • WZTOE/DNSClient/W7500x_conf.h (Library Configuration file)
    • WZTOE/DNSClient/MDK/W7500x_WZTOE_DNSClient.uvproj (MDK Project file)
    • WZTOE/DNSClient/GCC/Makefile (GCC Make file)

    Hardware and Software environment

    • This example has been tested with WIZnet WIZwiki W7500 platform.

    • To select the WIZnet WIZwiki platform used to run the example.

    • WIZwiki W7500 Set-up

      • Use PB_14 and PB_15 for MDIO
      • In order to use IC+101 PHY to be set Pull-up and Strength at TXD[3:0] and TXE
    • Hardware Connection

      • PB_14 --- MDIO (@IC+101)
      • PB_15 --- MDC (@IC+101)

    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/dualtimer.html b/Product/iMCU/W7500/Peripherals-internal/dualtimer.html index 0291d004034..75af0394ba6 100644 --- a/Product/iMCU/W7500/Peripherals-internal/dualtimer.html +++ b/Product/iMCU/W7500/Peripherals-internal/dualtimer.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ Wrapping mode has two mode: free-running and periodic mode.

    One-shot mode

    The counter generates an interrupt once. When the counter reaches 0, it halts until users reprogram it. Users can do this as below:

    Wrapping mode

    Free-running mode

    The counter wraps after reaching its zero value, and continues to count down from the maximum value. This is the default mode.

    Periodic mode

    The counter generates an interrupt at a constant interval, reloading the original value after wrapping past zero.

    Interrupt

    An interrupt is generated when the counter reaches 0 and is only cleared when the interrupt clear register is accessed.
    The register holds the value until the interrupt is cleared.

    Users can mask interrupts by writing 0 to the Interrupt Enable bit in the control register.
    Users can read the following from status registers:

    The interrupts from the individual timers after masking are logically ORed into a combined interrupt.

    Operation

    The operation of each timer is identical. The timer is loaded by writing to the load register and counts down to 0 if enabled. When a counter is already running, writing to the load register causes the counter to immediately restart at the new value. Writing to the background load value has no effect on the current count. In periodic mode, the counter continues to decrease to 0 and restart from the new load value.

    An interrupt is generated when 0 is reached. Users can clear the interrupt by writing to the clear register. If users select one-shot mode, the counter halts when it reaches 0 until users deselect one-shot mode or write a new load value.

    Otherwise, after reaching a zero count, if the timer is operating in free-running mode, it continues to decrease from its maximum value. If users select periodic mode, the timer reloads the count value from the load register and continues to decrease. In this mode, the counter effectively generates a periodic interrupt.

    How to set the dual timers

    &quot;Figure 2 The DualTimer setting flow&quot;


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/eeprom.html b/Product/iMCU/W7500/Peripherals-internal/eeprom.html index 23d71fd1a6c..037b87326dc 100644 --- a/Product/iMCU/W7500/Peripherals-internal/eeprom.html +++ b/Product/iMCU/W7500/Peripherals-internal/eeprom.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ is defined in the main.c file


    Directory contents


    Hardware and Software environment

     --W7500--        --EEPROM--
    | | | |
    | SDA |------| SDA |
    | SCL |------| SCL |
    | | | |
    | | | |
    --------- -----------

    EEPROM M24Cxx Pin Configuration


    A0|1   8|VCC
    A1|2 7|WP
    A2|3 6|SCL

    GND|4 5|SD

    EEPROM M24Cxx Pin Description


    PINSYMBOLDESCRIPTION
    1A0Digital input. User-defined address bit0.
    2A1Digital input. User-defined address bit1.
    3A2Digital input. User-defined address bit2.
    4GNDGround. To be connected to the system ground.
    5SDADigital I/O. I2C serial bi-directional data line. Open Drain
    6SCLDigital input. I2C serial clock input.
    7WPWrite Protect
    8VCCPower supply.

    EEPROM M24Cxx Write Protect

    Part of the Array Protected
    WP Pin Status24C01A24C0224C0424C08A24C16A
    At VCCFull(1K)ArrayFull(1K)ArrayFull(1K)ArrayFull(1K)ArrayFull(1K)Array
    At GNDNormal Read/Write Operations

    EEPROM M24Cxx Device Address >

           --- --- --- --- --- --- --- ---
    1K/2K | 1 | 0 | 1 | 0 | A2| A1| A0|R/W|
    --- --- --- --- --- --- --- ---
    LSB
    --- --- --- --- --- --- --- ---
    4K | 1 | 0 | 1 | 0 | A2| A1| P0|R/W|
    --- --- --- --- --- --- --- ---
    LSB
    --- --- --- --- --- --- --- ---
    8K | 1 | 0 | 1 | 0 | A2| P1| P0|R/W|
    --- --- --- --- --- --- --- ---
    LSB
    --- --- --- --- --- --- --- ---
    16K | 1 | 0 | 1 | 0 | P2| P1| P0|R/W|
    --- --- --- --- --- --- --- ---
    LSB

    How to use it ?

    In order to make the program work, you must do the following:


    Flow Chart

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/exti.html b/Product/iMCU/W7500/Peripherals-internal/exti.html index 0ef881dfda6..4eebcce9c43 100644 --- a/Product/iMCU/W7500/Peripherals-internal/exti.html +++ b/Product/iMCU/W7500/Peripherals-internal/exti.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    External Interrupt (EXTI)

    Introduction

    Each functional pads are connected to the external interrupt(EXTINT) source.

    Features

    • All functional pads can be used as an external interrupt source regardless of any set of pad function.
    • External Interrupt controller has the following functions and can be controlled by registers.
    • Interrupt mask (enable or disable, default : disable)
    • Interrupt polarity (rising or falling, default : rising)

    Functional description

    All pads are connected to the control register individually. (External interrupt mask register and External Interrupt polarity register)
    External interrupt working as following expression:

    • Each pad interrupt = Interrupt mask & (Interrupt polarity ^ Pad input)
    • EXTINT = any Each pad interrupt


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/flash.html b/Product/iMCU/W7500/Peripherals-internal/flash.html index c6d825fbb1e..90a48845857 100644 --- a/Product/iMCU/W7500/Peripherals-internal/flash.html +++ b/Product/iMCU/W7500/Peripherals-internal/flash.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ 'src_addr' is the buffer pointer user want to program. 'size' is the flash size user chooses. Please refer flash address and size mentioned in the upper table.

    // IAP 'id' paremeter define
    #define IAP_ENTRY 0x1FFF1001 // Because Thum code
    #define IAP_ERAS 0x010
    #define IAP_ERAS_DAT0 (IAP_ERAS + 0) // Erase Data 0 block
    #define IAP_ERAS_DAT1 (IAP_ERAS + 1) // Erase Data 1 block
    #define IAP_ERAS_SECT (IAP_ERAS + 2) // Erase a Sector in Main Flash Memory
    #define IAP_ERAS_BLCK (IAP_ERAS + 3) // Erase a Block in Main Flash Memory
    #define IAP_ERAS_CHIP (IAP_ERAS + 4) // Erase all code
    #define IAP_ERAS_MASS (IAP_ERAS + 5) // Erase all code & data
    #define IAP_PROG 0x022

    This is how to Erase and Program flash memory. Especially, with IAP_ERAS_DAT0 and IAP_ERAS_DAT1, there is no need to put other parameters (there are default values).

    // Step 1 DATA0 Erase, Read, Write Test
    DO_IAP(IAP_ERAS_DAT0,0,0,0);
    DO_IAP(IAP_PROG,DAT0_START_ADDR,buffer,SECT_SIZE);

    Operating program can be deleted when user use 'IAP_ERAS_CHIP' or 'IAP_ERAS_MASS'.

    // Using IAP_ERAS_CHIP or IAP_ERAS_MASS
    DO_IAP(IAP_ERAS_CHIP,0,0,0);
    DO_IAP(IAP_ERAS_MASS,0,0,0);
    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/flowcontrol.html b/Product/iMCU/W7500/Peripherals-internal/flowcontrol.html index cf49e69924b..c56ada92928 100644 --- a/Product/iMCU/W7500/Peripherals-internal/flowcontrol.html +++ b/Product/iMCU/W7500/Peripherals-internal/flowcontrol.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ The interrupts are generated when the fill level progresses through the trigger level.

    UART1 Check Point when RX status operate

    1. The bit RXFF of UARTFR(6) confirm '1'
    2. The bit BUSY of UARTFR(3) confirm '1'
    3. Send RTS as '1' (RTS of UARTCR(11))and the nUARTRTS pin is LOW.

    Directory contents

    Hardware and Software environment

       --------------            --------------
    | UART0 | | UART1 |
    | | | |
    | (PA_13)TXD |----------| RXD(PB_03) |
    | (PA_14)RXD |----------| TXD(PB_02) |
    | (PA_11)CTS |----------| RTS(PB_01) |
    | (PA_12)RTS |----------| CTS(PB_00) |
    | | | |
    | | | |
    -------------- --------------


    How to use it ?

    In order to make the program work, you must do the following:


    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/gpio.html b/Product/iMCU/W7500/Peripherals-internal/gpio.html index 8e5858b2585..b49a9c6f27a 100644 --- a/Product/iMCU/W7500/Peripherals-internal/gpio.html +++ b/Product/iMCU/W7500/Peripherals-internal/gpio.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ Refer to ‘Alternate Function Controller (AFC)’ for more details about each register. The pad control supports pull-down, pull-up, input buffer, and summit trigger input buffer. Refer to ‘Pad Controller (PADCON)’ for more details about each register.

    Masked access

    The masked access feature permits individual bits or multiple bits to be read from or written to in a single transfer. This avoids software-based read-modify-write operations that are not thread safe. With the masked access operations, the 16-bit I/O is divided into two halves, lower byte and upper byte. The bit mask address spaces are defined as two arrays each containing 256 words.

    For example, to set bits[1:0] to 1 and clear bits[7:6] in a single operation, users can carry out the write to the lower byte mask access address space. The required bit mask is 0xC3, and users can write the operation as MASKLOWBYTE[0xC3] = 0x03.

    To update some of the bits in the upper eight bits of the GPIO port, users can use the MASKHIGHBYTE array as Figure below.


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/i2c.html b/Product/iMCU/W7500/Peripherals-internal/i2c.html index 09f45e250b9..f000b85b551 100644 --- a/Product/iMCU/W7500/Peripherals-internal/i2c.html +++ b/Product/iMCU/W7500/Peripherals-internal/i2c.html @@ -15,7 +15,7 @@ - + @@ -37,7 +37,7 @@ In this mode, data is received from master to slave before the master transmitter mode can be entered and setting of I2Cx_SADDR must be done.

    ###Interrupts

    The I2C can generate interrupt when the following conditions are observed:

    I2C bus have separate interrupt signals.

    Master mode

    Initialization

    The below figures that follow show the command sequences available for the I2C master.

    The below figure shows the master operation using a 7-bit slave address.

    below Figure shows the operation of repeated START.
    The repeated START operates for data read operation execution.
    The operation sequences are Slave address, send data, repeated START, and send data.

    Slave mode

    The below Figure shows the command sequences available for the I2C slave.


    Peripheral_Examples

    :!: When data read operation use,you have to use the repeat(restart condition). It use between write and read operation.

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    Skip to main content

    Flash example (IAP example)


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : Flash/IAP_Example/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of IAP example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use IAP of W7500.

    In this example:

    • SET Start address of Data memory & flash memory
    • Data0 area Erase , Read and Write Test (Start address : 0x0003_FE00, Size : 256)
    • Data1 area Erase, Read and Write Test (Start address : 0x0003_FF00, Size : 256)
    • Code Flash Block Rease, Read and Write Test (Start address : 0x0001F000, Size : 4096)

    Directory contents

    • Flash/IAP_Example/main.c (Main program)
    • Flash/IAP_Example/W7500x_it.c (Interrupt Handlers)
    • Flash/IAP_Example/W7500x_it.h (Interrupt Handlers Header file)
    • Flash/IAP_Example/W7500x_conf.h (Library Configuration file)
    • Flash/IAP_Example/MDK/W7500x_IAP_Example.uvproj (MDK Project file)
    • Flash/IAP_Example/GCC/Makefile (GCC Make file)

    Hardware and Software environment

    • This example has been tested with WIZnet WIZwiki W7500 platform.

    • To select the WIZnet WIZwiki platform used to run the example.

    • WIZwiki W7500 Set-up

      • No need to hardware setup

    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/illumination-sensor.html b/Product/iMCU/W7500/Peripherals-internal/illumination-sensor.html index fc4fdd88d5b..48ec3677911 100644 --- a/Product/iMCU/W7500/Peripherals-internal/illumination-sensor.html +++ b/Product/iMCU/W7500/Peripherals-internal/illumination-sensor.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    ADC example (Illumination sensor)


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : Illumination_regled/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of the Illumination sensor & REG led toggle example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use ADC of W7500. In this example, ADC input is connected with illumination sensor. And control RGB led by illumination sensor value.

    In this example:

    • Set the Alternate function of PAD for this example.
    • Sensing analog value of Illumination sensor.
    • If dark, ON the led, if not, OFF the led with GPIO control.

    Directory contents

    • ADC/Illumination_regled/main.c (Main program)
    • ADC/Illumination_regled/W7500x_it.c (Interrupt Handlers)
    • ADC/Illumination_regled/W7500x_it.h (Interrupt Handlers Header file)
    • ADC/Illumination_regled/W7500x_conf.h (Library Configuration file)
    • ADC/Illumination_regled/MDK/W7500x_Illumination_regled.uvproj (MDK Project file)
    • ADC/Illumination_regled/GCC/Makefile (GCC Make file)

    Hardware and Software environment

    • This example has been tested with WIZnet WIZwiki W7500 platform.

    • To select the WIZnet WIZwiki platform used to run the example.

    • WIZwiki W7500 Set-up

      • Use ADC input connected to PC_15(A0) pin.
      • Use LED(R) connected to PC_08 pin.
      • Use LED(G) connected to PC_09 pin.
      • Use LED(B) connected to PC_05 pin.
      • In order to use the LEDs to be changed from PAD_AF0 to PAD_AF1.
    • Hardware Connection

      5V - 10K ohm register - PC_15(A0) - Illumination sensor - GND


    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    Flow Chart

    • Power on ADC
    • Select ADC channel
    • ADC start
    • Wait until EOC (end of conversion)
    • Read ADC value

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/init.html b/Product/iMCU/W7500/Peripherals-internal/init.html index c46d13106ad..44917dc5030 100644 --- a/Product/iMCU/W7500/Peripherals-internal/init.html +++ b/Product/iMCU/W7500/Peripherals-internal/init.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ | SCL |------| SCL | | | | | | | | |

    ---------       -----------

    How to use it ?

    In order to make the program work, you must do the following :


    Flow Chart

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/inter.html b/Product/iMCU/W7500/Peripherals-internal/inter.html index fb94e1f4a9c..5df2c394cf7 100644 --- a/Product/iMCU/W7500/Peripherals-internal/inter.html +++ b/Product/iMCU/W7500/Peripherals-internal/inter.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ by Uart0 and Uart1 are stored respectively in RxBuffer1 and RxBuffer2. The data transfer is managed in Uart0_IRQHandler and Uart1_IRQHandler in W7500x_it.c file

    The UART0/UART1 is configured as follow:

    This example describes that the data send from UART0 to UART1.


    Directory contents

    Hardware and Software environment

     --------------            --------------
    | UART0 | | UART1 |
    | | | |
    | (PA_13)TXD |----------| RXD(PB_03) |
    | (PA_14)RXD |----------| TXD(PB_02) |
    | | | |
    | | | |
    -------------- --------------

    How to use it ?

    In order to make the program work, you must do the following:


    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/led-toggle.html b/Product/iMCU/W7500/Peripherals-internal/led-toggle.html index 52871ba0de9..cb4ce9bccab 100644 --- a/Product/iMCU/W7500/Peripherals-internal/led-toggle.html +++ b/Product/iMCU/W7500/Peripherals-internal/led-toggle.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ In this example:

    After EXTI configuration, a software interrupt is generated on the EXTI toggles LED(R). After that, when rising edge is detected on EXTI, LED(R) toggles. If WIZwiki W7500 is used, when button is pressed, LED(R) toggles but, Button has to be configured separately.


    Directory contents


    Hardware and Software environment


    How to use it ?

    In order to make the program work, you must do the following :

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/lm75-temperature.html b/Product/iMCU/W7500/Peripherals-internal/lm75-temperature.html index f0aa7c08086..fb006f966e3 100644 --- a/Product/iMCU/W7500/Peripherals-internal/lm75-temperature.html +++ b/Product/iMCU/W7500/Peripherals-internal/lm75-temperature.html @@ -15,7 +15,7 @@ - + @@ -23,7 +23,7 @@
    Skip to main content

    I2C and LM75 Temperature Sensor communication example


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : I2C/I2C_Temperture_LM75A/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of the I2C and LM75 Temperature Sensor communication example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example provides a description of how to use I2C to communicate with a LM75 I2C temperature sensor is mounted on the evaluation board and used to get instantaneous external temperature.


    Directory contents

    • I2C/I2C_Temperture_LM75A/main.c (Main program)
    • I2C/I2C_Temperture_LM75A/W7500x_it.c (Interrupt Handlers)
    • I2C/I2C_Temperture_LM75A/W7500x_it.h (Interrupt Handlers Header file)
    • I2C/I2C_Temperture_LM75A/W7500x_conf.h (Library Configuration file)
    • I2C/I2C_Temperture_LM75A/MDK//W7500x_I2C_Temperture_LM75A.uvproj (Project file)
    • I2C/I2C_Temperture_LM75A/GCC/Makefile (GCC Make file)

    Hardware and Software environment

      --W7500--        --LM75--
    | | | |
    | SDA |------| SDA |
    | SCL |------| SCL |
    | | | |
    | | | |
    --------- ---------

    LM75 Pin Configuration

         -----      
    SDA |1 8| VCC
    SCL |2 7| A0
    OS |3 6| A1
    GND |4 5| A2
    -----

    LM75 Pin Description


    PINSYMBOLDESCRIPTION
    1SDADigital I/O. I2C serial bi-directional data line. Open Drain
    2SCLDigital input. I2C serial clock input.
    3OSOvertemp Shutdown output. Open Drain.
    4GNDGround. To be connected to the system ground.
    5A2Digital input. User-defined address bit2.
    6A1Digital input. User-defined address bit1.
    7A0Digital input. User-defined address bit0.
    8VCCPower supply.

    LM75 register

    REG NAMEAddrR/WRST ValueDESCRIPTION
    Temp0x00R/W0x0000Configuration Register.
    Contains a single 8-bit data byte.
    To set the device operating condition
    Default = 0.
    Conf0x01RN/ATemperature Register.
    Contains two 8-bit data bytes.
    To store the measured Temp data.
    Thyrs0x02R/W0x5000Over-temp Shutdown threshold Register.
    Contains two 8-bit data bytes.
    To store the over-temp shut-down Tos limit.
    Default = 80c
    Tos0x03R/W0x4B00Hysteresis Register.
    Contains two 8-bit data bytes.
    To store the hysteresis Thyst limit.
    Default = 75C.

    LM75 Device Address

           --- --- --- --- --- --- --- 
    | 1 | 0 | 0 | 1 |A2 | A1| A0|
    --- --- --- --- --- --- ---
    LSB

    LM75 Temp register table

    Temp MS byteTemp LS byte
    MSBLSBMSBLSB
    B7B6B5B4B3B2B1B0B7B6B5B4B3B2B1B0
    Temp data(11bits)Not Used
    MSBLSBMSBLSB
    D10D9D8D7D6D5D4D3D2D1D0XXXXX

    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    Flow Chart

    • Master Init
    • Slave address send from W7500 to LM75
    • START enable
    • Confirm the Ack Receive
    • Send the data from W7500 to LM75
    • Restart enable
    • Confirm the Ack Receive
    • Receive the data
    • Transmit the Ack transmission
    • STOP enable

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/loopback.html b/Product/iMCU/W7500/Peripherals-internal/loopback.html index 1eb2a9481c1..75a3400656d 100644 --- a/Product/iMCU/W7500/Peripherals-internal/loopback.html +++ b/Product/iMCU/W7500/Peripherals-internal/loopback.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    SSP Loopback example


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : SSP/Loopback/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of the SSP Loopback example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example provides a description of how to set a communication between two SSPs in MO mode and performs a transfer from Master to Slave by Interrnal Loopback.

    SSP0 is configured as master and SSP1 as slave both are with 16bit data size.

    After enabling both SSPs, the first data from set value 0x50 followed by the first data send by the master. The same procedure is done for the remaining data to transfer except the last ones.

    Last data from SSP0 transmit buffer is save to SSP1 receive buffer.

    Once the transfer is completed a comparison is done and TransferStatus gives the data transfer status for each data transfer direction where it is PASSED if transmitted and received data are the same otherwise it is FAILED. After check of TransferStatus, if Status is PASSED LED ON GREEN and if Status is FAILED LED ON RED.


    Directory contents

    • SSP/Loopback/main.c (Main program)
    • SSP/Loopback/W7500x_it.c (Interrupt Handlers)
    • SSP/Loopback/W7500x_it.h (Interrupt Handlers Header file)
    • SSP/Loopback/W7500x_conf.h (Library Configuration file)
    • SSP/Loopback/MDK/W7500x_SSP_Loopback.uvproj (MDK Project file)
    • SSP/Loopback/GCC/Makefile (GCC Make file)

    Hardware and Software environment

    • This example has been tested with WIZnet WIZwiki W7500 platform.

    • To select the WIZnet WIZwiki platform used to run the example.

    • WIZwiki W7500 Set-up

      • Set SSP0 is master and datasize is 16bits
      • Set SSP1 is Slave and datasize is 16bits
      • Connect SSP0 SSEL (PA.05) pin to SSP1 SSEL (PB.00) Pin
      • Connect SSP0 SCLK (PA.06) pin to SSP1 SCLK (PB.01) Pin
      • Connect SSP0 MISO (PA.07) pin to SSP1 MISO (PB.02) Pin
      • Connect SSP0 MOSI (PA.08) pin to SSP1 MOSI (PB.03) Pin
      • Use LED(R) connected to PC_08 pin.
      • Use LED(G) connected to PC_09 pin.
      • In order to use the LED to be changed from PAD_AF0 to PAD_AF1.

    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    © COPYRIGHT 2015 WIZnet Co.,Ltd.>

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/padcon.html b/Product/iMCU/W7500/Peripherals-internal/padcon.html index a13e199500e..b9a65c06e51 100644 --- a/Product/iMCU/W7500/Peripherals-internal/padcon.html +++ b/Product/iMCU/W7500/Peripherals-internal/padcon.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ A – Digital Output
    DS – Driving strength select

    ConditionRise/Fall Time(nSec)Propagation Delay(nSec)
    Driving StrengthCapacitance loadingMinMaxMinMax
    High
    (DS = 1)
    25pF418727
    100pF11531144
    Low
    (DS = 0)
    25pF18416
    100pF4237

    PD – Pull-down enable

    User can set pad condition with IE, CS, PU/PD, DS by register.
    And pads are can be controlled individually.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/polling.html b/Product/iMCU/W7500/Peripherals-internal/polling.html index e582a494ef8..15c588d9add 100644 --- a/Product/iMCU/W7500/Peripherals-internal/polling.html +++ b/Product/iMCU/W7500/Peripherals-internal/polling.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ This implementation output the printf message on the Hyperterminal using UARTx. UARTx can be UART0 or UART1 depending on the board you are using

    The UART0/UART1 is configured as follow:

    This example describes that the data send from UART0 to PC.


    Directory contents

    Hardware and Software environment

       --------------            --------------
    | UART0 | | PC |
    | | | |
    | (PA_13)TXD |----------| RXD |
    | (PA_14)RXD |----------| TXD |
    | | | |
    | | | |
    -------------- --------------

    How to use it ?

    In order to make the program work, you must do the following:


    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/printf.html b/Product/iMCU/W7500/Peripherals-internal/printf.html index 3ea007efa57..1c0f29de024 100644 --- a/Product/iMCU/W7500/Peripherals-internal/printf.html +++ b/Product/iMCU/W7500/Peripherals-internal/printf.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ The received data is then compared with the send ones and the result of this comparison is stored in the "TransferStatus" variable.

    The UART0/UART1 is configured as follow:

    This example describes that the data send from UART0 to UART1.


    Directory contents

    Hardware and Software environment

       --------------            --------------
    | UART0 | | UART1 |
    | | | |
    | (PA_13)TXD |----------| RXD(PB_03) |
    | (PA_14)RXD |----------| TXD(PB_03) |
    | | | |
    | | | |
    -------------- --------------

    How to use it ?

    In order to make the program work, you must do the following:


    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/pwm.html b/Product/iMCU/W7500/Peripherals-internal/pwm.html index 39ece9ce26c..50492060493 100644 --- a/Product/iMCU/W7500/Peripherals-internal/pwm.html +++ b/Product/iMCU/W7500/Peripherals-internal/pwm.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@

    The below Figure is with both rising and falling edge mode.

    Prescaler description

    The PWM has 6-bit prescale counter(PC) and the prescaler can divide the Timer/Counter clock frequency. Users can control it by Prescale Register(PR).

    The below Figures show some examples of the Timer/Counter timing with prescale register is 2, match register is 2, limit register is 12, timer mode, periodic mode, up-count mode, and no interrupt clear.

    The below Figure shows Timer/Counter timing diagram with match interrupt.

    The below Figure Timer/Counter timing diagram with overflow interrupt.

    PWM mode

    Pulse Width Modulation mode generates a waveform with a period determined by the value of limit register and a duty cycle determined by the value of the match register.

    The PWM output becomes always 1 when the Timer/Counter starts to count. Then the PWM output becomes 0 when the Timer/Counter reaches the value of match register. If the Timer/Counter is in periodic mode, the PWM output becomes 1 again when the Timer/Counter reaches the value of limit register. In one-shot mode, the PWM output does not change to 1 but stays 0 and the Timer/Counter stops.

    The PWM mode can be selected independently on each channel(0~7) by PWM output enable and external input enable register. The external input pin and PWM output pin are the same, so external input is disabled in PWM mode.

    The below Figure is an example of the PWM output waveform when the Timer/Counter is reached to the value of match register.

    The below Figure is example of the PWM output waveform when to the Timer/Counter is reached to the value of limit register.

    If match register is set as 0, the PWM output will be 1 while the Timer/Counter is 0. If the match register is bigger than the limit register, the PWM output is always 1.

    Interrupt

    The PWM has 8-bit interrupt enable register(IER) and each bit of IER corresponds to each interrupt of channel. Each PWM channel has Channel-n Interrupt Enable register(CHn_IER). The CHn_IER includes three types of interrupt: match, overflow, and capture. The match interrupt occurs when the Timer/Counter is reached to value of match register. The overflow interrupt occurs when the Timer/Counter is reached to value of limit register. The capture interrupt occurs when external input is entered for capture.

    If interrupt occurs, corresponded bit of Channel-x interrupt register(CHn_IR) bit is set and PWM channel-n interrupt signal is generated. All CHn_IR is cleared by channel-n interrupt clear register(CHn_ICR) and then PWM channel-n interrupt signal is cleared.

    Dead zone generation

    Each PWM channel can output two complementary signals with dead zone time and it can be enabled by Channel-n Dead Zone Enable Register(CHn_DZER). Only 4 channels can be enabled because there are 8 PWM output pins. Channel 0 and 1 are a pair, channel 2 and 3 are a pair, channel 4 and 5 are a pair, and channel 6 and 7 are a pair. If users want to use channel-0 dead zone generation, channel-1 should be disabled. If channel 0 and 1 dead zone generation are enabled both, all outputs are 0. In that case, users should choose 1 channel.

    Dead zone time are generated by the value of Channel-n Dead Zone Counter Register(DZCR). The dead zone counter counts up to value of DZCR. During the dead zone time, both complementary signals are both 0. Users have to adjust the signal depending on the devices that are connected to the outputs and their characteristics. If DZCR is bigger than the limit register, main output signal is toggled 0 to1 and then 1 to 0 while 1 PWMCLK and inverted output signal is always 0.

    The below Figure shows two complementary PWM outputs with dead zone time. During dead zone time, both outputs are 0.

    The below Figure shows a more detailed timing with dead zone counter.

    The dead zone counter and the Timer/Counter starts to count together and PWM output is 0 until dead zone counter is reached to value of dead zone counter register. The PWM output becomes 1 and 0 when the Timer/Counter is reached to value of match register. The inverted PWM output is also 0 until dead zone counter is reached to value of dead zone counter register. Then inverted PWM output becomes 1 after dead zone counter is reached to the value of dead zone counter register.

    Capture event

    Each PWM channel can capture its Timer/Counter value when an external input signal changes. Any channel could use any method of rising or falling edges. If capture interrupt is enabled, capture interrupt occurs when the external input signal is toggled. The Timer/Counter value is saved in Channel-n Capture Register(CHn_CR) and the capture register is not overwritten until capture interrupt is cleared. The below Figure shows the capture event timing diagram. There is no interrupt clear, so second capture does not save during second rising edge detection.

    The below Figure shows, the capture event timing diagram with interrupt clear. The second capture is saved at the second rising edge detection because there is interrupt clear.

    How to set the PWM

    The below Figure shows the PWM setting flow step by step.


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/pwmoutput.html b/Product/iMCU/W7500/Peripherals-internal/pwmoutput.html index c8d213d74c4..959a61ca4cd 100644 --- a/Product/iMCU/W7500/Peripherals-internal/pwmoutput.html +++ b/Product/iMCU/W7500/Peripherals-internal/pwmoutput.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use the PWM peripheral to generate PWM output signal.

    The PWM channel 3, 4, 5 frequency is set to SystemCoreClock(Hz), the Prescaler is 2 so the PWM channel 3, 4, 5 counter clock is 10 MHz. SystemCoreClock is set to 20 MHz.

    The PWM channel 3, 4 is set as up-count and periodic mode and 5 is set as down-count and one-shot mode. So PWM channel 5 generates output signal once. The PWM channel 3, 4, 5 are all PWM output enabled.

    The PWM channel 3 is configured in Timer Mode and duty cycle is 80 % and 4 is 30 %.

    The PWM channel 3 is mapped to PA_06, 4 is mapped to PA_07 and 5 is mapped to PA_08.


    Directory contents

    Hardware and Software environment

    How to use it ?

    In order to make the program work, you must do the following :

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/rng-ex.html b/Product/iMCU/W7500/Peripherals-internal/rng-ex.html index 3dd9df3b1d5..3e7cacbc5db 100644 --- a/Product/iMCU/W7500/Peripherals-internal/rng-ex.html +++ b/Product/iMCU/W7500/Peripherals-internal/rng-ex.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    RNG example (Random number generation example)


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : Random_number_generation/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of random number generation example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use RNG of W7500.

    In this example:

    • 1) Read power on initial random number
    • 2) Read manual random number
    • 3) Change Seed value & polynomial and read manual random number

    Directory contents

    • RNG/Random_number_generation/main.c (Main program)
    • RNG/Random_number_generation/W7500x_it.c (Interrupt Handlers)
    • RNG/Random_number_generation/W7500x_it.h (Interrupt Handlers Header file)
    • RNG/Random_number_generation/W7500x_conf.h (Library Configuration file)
    • RNG/Random_number_generation/MDK/W7500x_Random_number_generation.uvproj (MDK Project file)
    • RNG/Random_number_generation/GCC/Makefile (GCC Make file)

    Hardware and Software environment

    • This example has been tested with WIZnet WIZwiki W7500 platform.

    • To select the WIZnet WIZwiki platform used to run the example.

    • WIZwiki W7500 Set-up

      • No need to hardware setup

    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    Flow Chart

    • Read power on random number
    • Intialize to change RNG mode to manual run
    • Run RNG and STOP
    • Read generated random number
    • Change seed value or polynomial
    • And Run RNG and STOP again & read random number

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/rng.html b/Product/iMCU/W7500/Peripherals-internal/rng.html index 2e8711a42c1..0040950f1c6 100644 --- a/Product/iMCU/W7500/Peripherals-internal/rng.html +++ b/Product/iMCU/W7500/Peripherals-internal/rng.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    Random number generator (RNG)

    Introduction

    RNG is a 32bit random number generator. RNG generates power on random number when power on reset. RNG can run/stop by software. RNG seed value and polynomial of RNG can be modified by software.

    Features

    • 32bit pseudo random number generator
    • Formula of pseudo random number generator (polynomial) can be modified.
    • Seed value of random generator can be modified.
    • Support power on reset random value
    • Random value can be obtained by control start/stop by software.

    Functional description.

    The below Figure shows the RNG block diagram.

    Figure 1 RNG block diagram

    Operation-RNG

    A random number is automatically generated after powering on reset, Follow the procedure below to manually generate a random number.

    1. Change MODE to start/stop by register.
    2. Change clock source/seed value/polynomial value if need.
    3. Run and Stop the RNG.
    4. Read Random value.

    The below Figure show the flowchart of RNG operation.


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/sd-card-led.html b/Product/iMCU/W7500/Peripherals-internal/sd-card-led.html index 6a382d93604..86edc975402 100644 --- a/Product/iMCU/W7500/Peripherals-internal/sd-card-led.html +++ b/Product/iMCU/W7500/Peripherals-internal/sd-card-led.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ After check of TransferStatus1, if Status is PASSED LED ON BLUE and if Status is FAILED LED ON RED.

    After single data block test, the second multi block data to transfer Buffer MultiBlock Tx except the last ones. block size is 512 * 32 and receive Buffer MultiBlock Rx read to SDCard except the last ones.

    Once the transfer is completed a comparison is done and TransferStatus2 gives the data transfer status for each data transfer direction where it is PASSED if transmitted and received data are the same otherwise it is FAILED. After check of TransferStatus2, if Status is PASSED LED ON GREEN and if Status is FAILED LED ON RED.


    Directory contents


    Hardware and Software environment


    How to use it ?

    In order to make the program work, you must do the following :

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/sleep.html b/Product/iMCU/W7500/Peripherals-internal/sleep.html index b69ecc6a7ad..1114a28e237 100644 --- a/Product/iMCU/W7500/Peripherals-internal/sleep.html +++ b/Product/iMCU/W7500/Peripherals-internal/sleep.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ After EXTI configuration, a software interrupt is generated nothing. After that, when rising edge is detected on EXTI, Wake-up!!

    If WIZwiki W7500 is used, when button is pressed, Wake-up!! but, Button has to be configured separately.


    Directory contents


    Hardware and Software environment


    How to use it ?

    In order to make the program work, you must do the following :

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/ssp.html b/Product/iMCU/W7500/Peripherals-internal/ssp.html index b3a69e846d7..5ce29534365 100644 --- a/Product/iMCU/W7500/Peripherals-internal/ssp.html +++ b/Product/iMCU/W7500/Peripherals-internal/ssp.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Random number generator (RNG)


    (C) COPYRIGHT 2015 WIZnet Co.,Ltd.

    • file : Random_number_generation/readme.md
    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of random number generation example.

    THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. AS A RESULT, WIZNET SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use RNG of W7500.

    In this example:

    • 1) Read power on initial random number
    • 2) Read manual random number
    • 3) Change Seed value & polynomial and read manual random number

    Directory contents

    • RNG/Random_number_generation/main.c (Main program)
    • RNG/Random_number_generation/W7500x_it.c (Interrupt Handlers)
    • RNG/Random_number_generation/W7500x_it.h (Interrupt Handlers Header file)
    • RNG/Random_number_generation/W7500x_conf.h (Library Configuration file)
    • RNG/Random_number_generation/MDK/W7500x_Random_number_generation.uvproj (MDK Project file)
    • RNG/Random_number_generation/GCC/Makefile (GCC Make file)

    Hardware and Software environment

    • This example has been tested with WIZnet WIZwiki W7500 platform.

    • To select the WIZnet WIZwiki platform used to run the example.

    • WIZwiki W7500 Set-up

      • No need to hardware setup

    How to use it ?

    In order to make the program work, you must do the following :

    • Open your preferred toolchain.
    • Rebuild all files and load your image into target memory.
    • Run the example.
    • WIZwiki W7500 where the Flash memory density ranges 128Kbytes.
    • If you have any questions, please use the forum site.

    Flow Chart

    • Read power on random number
    • Intialize to change RNG mode to manual run
    • Run RNG and STOP
    • Read generated random number
    • Change seed value or polynomial
    • And Run RNG and STOP again & read random number

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/systick.html b/Product/iMCU/W7500/Peripherals-internal/systick.html index 47e68b60e52..c49265771ef 100644 --- a/Product/iMCU/W7500/Peripherals-internal/systick.html +++ b/Product/iMCU/W7500/Peripherals-internal/systick.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ Since the SysTick timer is a part of the Cortex-M0, it facilitates porting of software by providing a standard timer that is available on Cortex-M0 based devices. The SysTick timer can be used for :


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/tcp-function.html b/Product/iMCU/W7500/Peripherals-internal/tcp-function.html index 3ccd9826dac..00522937e7d 100644 --- a/Product/iMCU/W7500/Peripherals-internal/tcp-function.html +++ b/Product/iMCU/W7500/Peripherals-internal/tcp-function.html @@ -15,7 +15,7 @@ - + @@ -100,7 +100,7 @@ above "TCP SERVER” section.

    TCP CLIENT Operation Flow

    CONNECT

    Transmit the connect-request (SYN packet) to “TCP SERVER”. It may occurs the timeout such as ARPTO, TCPTO when make the “connection SOCKET” with “TCP SERVER”

    {
    Sn_DIPR0 = server_ip; /* set TCP SERVER IP address*/
    Sn_DPORT0 = server_port; /* set TCP SERVER listen port number*/
    Sn_CR = CONNECT; /* set CONNECT command */
    }
    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/timermode.html b/Product/iMCU/W7500/Peripherals-internal/timermode.html index 940276abd1b..3744088b619 100644 --- a/Product/iMCU/W7500/Peripherals-internal/timermode.html +++ b/Product/iMCU/W7500/Peripherals-internal/timermode.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ Timer/Counter is up-count mode and periodic mode. 2 interrupts out of 3 interrupts are enabled: match and overflow interupt(capture interrupt is excepted).

    When the Timer/Counter reaches the match value, RED LED(PC_08) is toggled every times, and when the Tiemr/Counter reaches the limit value, GREEN LED(PC_09) is toggled every times.


    Directory contents

    Hardware and Software environment

    How to use it ?

    In order to make the program work, you must do the following :

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/timerrun.html b/Product/iMCU/W7500/Peripherals-internal/timerrun.html index cb24237f8dd..08d162abfb4 100644 --- a/Product/iMCU/W7500/Peripherals-internal/timerrun.html +++ b/Product/iMCU/W7500/Peripherals-internal/timerrun.html @@ -15,7 +15,7 @@ - + @@ -28,7 +28,7 @@ CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use the Dual timer peripheral to run. Only dual timer 0-0 is working in this example.

    The Dual timer 0-0 frequency is set to SystemCoreClock(Hz), and the clock is divided by 16. SystemCoreClock is set to 20 MHz.

    The dual timer is configured in wrapping mode and periodic mode. The counter size is 32-bit. The interrupt is enabled.

    When the Counter reaches 0, the interrupt is occurred and RED LED(PC.08) is toggled every times.


    Directory contents

    Hardware and Software environment

    How to use it ?

    In order to make the program work, you must do the following :

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/toe.html b/Product/iMCU/W7500/Peripherals-internal/toe.html index e1595143841..99ebddcb21f 100644 --- a/Product/iMCU/W7500/Peripherals-internal/toe.html +++ b/Product/iMCU/W7500/Peripherals-internal/toe.html @@ -15,7 +15,7 @@ - + @@ -27,7 +27,7 @@ Refer to Memory for more information about 16KB TX/RX Memory organization and access method.

    Common register map

    Common Register Block configures the general information of TOE such as IP and MAC address. The below Table defines the offset address of registers in this block. Refer to Memory for more details about each register.

    Offset
    Register
    0x0000
    TOE Version (VERSIONR)
    0x2000
    TICKCLOK (TCLKR)
    0x2100
    Interrupt (IR)
    0x2104
    Interrupt Mask (IMR)
    0x2108
    Interrupt Clear (IRCR)
    0x2110
    Socket Interrupt (SIR)
    0x2114
    Socket Mask (SIMR)
    0x2300
    Mode (MR)
    0x2400
    PPP Timer (PTIMER)
    0x2404
    PPP Magic (PMAGIC)
    0x2408
    PPP Destination MAC Address (PHAR1)
    0x240C
    PPP Destination MAC address (PHAR0)
    0x2410
    PPP Session Identification (PSID)
    0x2414
    PPP Maximum Segment Size (PMSS)
    0x6000
    Source Hardware Address (SHAR1)
    0x6004
    Source Hardware Address (SHAR0)
    0x6008
    Gateway Address (GA)
    0x600C
    Subnet Mask (SUB)
    0x6010
    Source IP Address (SIP)
    0x6020
    Network Configuration Lock (NCONFL)
    0x6040
    Retry Time (RTR)
    0x6044
    Retry Counter (RCR)
    0x6050
    Unreachable IP Address (UIP)
    0x6054
    Unreachable Port Address (UPORT)

    Socket register map

    TOE supports 8 Sockets for communication channel. Each Socket is controlled by Socket n Register (n = 0,…,7 ,where n is socket number). <Table 2> defines the 16bits Offset Address of registers in Socket n Register Block. Refer to Memory for more details about each register.

    Offset
    Register
    0x0000
    Socket Mode (Sn_MR)
    0x0010
    Socket Command (Sn_CR)
    0x0020
    Socket Interrupt (Sn_IR)
    0x0024
    Socket Interrupt Mask (Sn_IMR)
    0x0028
    Socket Interrupt Clear (Sn_ICR)
    0x0030
    Socket Status (Sn_SR)
    0x0100
    Socket Protocol Number (Sn_PNR)
    0x0104
    Socket IP Type of Service (Sn_TOS)
    0x0108
    Socket TTL (Sn_TTLR)
    0x010C
    Socket Fragment Offset (Sn_FRAG)
    0x0110
    Socket Maximum Segment (Sn_MSSR)
    0x0114
    Socket Port Number (Sn_PORT)
    0x0118
    Socket Destination Hardware address0 (Sn_DHAR0)
    0x011C
    Socket Destination Hardware address1 (Sn_DHAR1)
    0x0120
    Socket Destination Port Number (Sn_DPORTR)
    0x0124
    Socket Destination IP Address (Sn_DIPR)
    0x0180
    Socket Keep Alive Timer (Sn_KATMR)
    0x0184
    Socket Retry Time (Sn_RTR)
    0x0188
    Socket Retry Counter (Sn_RCR)
    0x0200
    Socket TX Memory Size (Sn_TMSR)
    0x0204
    Socket TX Free Size (Sn_TXFSR)
    0x0208
    Socket TX Read Pointer (Sn_TXRDR)
    0x020C
    Socket TX Write Pointer (Sn_TXWR)
    0x0220
    Socket RX Memory Size (Sn_TMSR)
    0x0224
    Socket RX Received Size (Sn_RSR)
    0x0228
    Socket RX Read Pointer (Sn_RXRDR)
    0x022C
    Socket RX Write Pointer (Sn_RXWR)
    0x0400
    Socket TCP Status (Sn_TSR)

    Memory

    TOE has one 16KB TX memory for Socket n TX Buffer Blocks and one 16KB RX memory for Socket n RX buffer Blocks.

    16KB TX memory is initially allocated in 2KB size for each Socket TX Buffer Block (2KB X 8 = 16KB). The initial allocated 2KB size of Socket n TX Buffer can be re-allocated by using ‘Socket n TX Buffer Size Register (Sn_TXBUF_SIZE)’. Once all Sn_TXBUF_SIZE registers have been configured, Socket TX Buffer is allocated with the configured size of 16KB TX Memory and is assigned sequentially from Socket 0 to Socket 7. Its physical memory address is automatically determined in 16KB TX memory. Therefore, the total sum of Sn_TXBUF_SIZE should not exceed 16 in case of error in data transmission.

    The 16KB RX memory allocation method is the same as the 16KB TX memory allocation method. 16KB RX memory is initially allocated into 2KB size for each Socket RX Buffer Block (2KB X 8 = 16KB). The initial allocated 2KB size of Socket n RX Buffer can be re-allocated by using ‘Socket n RX Buffer Size Register (Sn_RXBUF_SIZE)’.

    When all Sn_RXBUF_SIZE registers have been configured, the Socket RX Buffer is allocated with the configured size in 16KB RX Memory and is assigned sequentially from Socket 0 to Socket 7. The physical memory address of the Socket RX Buffer is automatically determined in 16KB RX memory. Therefore, the total sum of Sn_RXBUF_SIZE should not exceed 16 or data reception error will occur.

    For 16KB TX/RX memory allocation, refer to Sn_TXBUF_SIZE & Sn_RXBUF_SIZE in Socket register map . The Socket n TX Buffer Block allocated in 16KB TX memory is buffer for saving data to be transmitted by host. The 16bits Offset Address of Socket n TX Buffer Block has 64KB address space ranged from 0x0000 to 0xFFFF, and is configured with reference to ‘Socket n TX Write Pointer Register (Sn_TX_WR)’ & ‘Socket n TX Read Pointer Register(Sn_RX_RD)’. However, the 16bits Offset Address automatically converts into the physical address to be accessible in 16KB TX memory such as The upper Figure. Refer to [Socket register map](/Product/iMCU/W7500/Peripherals-internal/toe#socket register map) for Sn_TX_WR & Sn_TX_RD.

    The Socket n RX Buffer Block allocated in 16KB RX memory is buffer for saving the received data through the Ethernet. The 16bits Offset Address of Socket n RX Buffer Block has 64KB address space ranged from 0x0000 to 0xFFFF, and is configured with reference to ‘Socket n RX RD Pointer Register (Sn_RX_RD)’ & ‘Socket n RX Write Pointer Register (Sn_RX_WR)’. However, the 16bits Offset Address automatically converts into the physical address to be accessible in 16KB RX memory such as The upper Figure. Refer to Socket register map for Sn_RX_RD & Sn_RX_WR.


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/uart.html b/Product/iMCU/W7500/Peripherals-internal/uart.html index 69437261c7c..404ece9e3a1 100644 --- a/Product/iMCU/W7500/Peripherals-internal/uart.html +++ b/Product/iMCU/W7500/Peripherals-internal/uart.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ This is used by the baud rate generator to determine the bit period.

    The below Figure shows UART divider flow chart

    The below Figure shows how to set the UART Initial value.

    Data transmission

    Data transmitted is stored in a 32-byte FIFOs. Transmit data is written into the transmit FIFO for transmission. If UART is enabled, it causes a data frame to start transmitting with parameters indicated in the UARTxLCR_H. Data continues to transmit until there is no data left in the transmit FIFO. The BUSY bit of UARTxFR is ‘1’ as soon as data is written to the transmit FIFO, which means the FIFO is not empty, and remains as ‘1’ while data is being transmitted.

    Data receive

    Received data is stored in the 32-byte FIFOs. When a start bit has been received, it begins running and data is sampled on the eighth cycle of that counter in UART mode. A valid stop bit is confirmed if UARTRXD is ‘1’. When a full word is received, the data is stored in the receive FIFO. Error bit is stored in bit[10:8] of UARTxCR and overrun is stored in bit[11] of UARTxCR.

    The below figure shows Transmit and Receive data flow chart.

    Hardware flow control

    The below Figure shows Hardware flow control description.

    The RTS flow control is enabled by setting the RTSen of UARTxCR. If RTS is enabled, the data flow is controlled as follows. When the receiver FIFO level reaches the programmed trigger level, nUARTRTS(pin) is asserted(to a low value). nUARTRTS is reasserted(to a low level) once the receiver FIFO has reached the previous trigger level. The reasserted of nUARTRTS signals to the sending UART to continue transmitting data.

    The CTS flow control is enabled, the transmitter can only transmit data when nUARTCTS is asserted. When nUARTCTR is re-asserted(to a low) the transmitter sends the next byte. To stop the transmitter from sending the following byte, nUARTCTS must be released before the middle of the last stop bit that is currently being sent.

    The below Figure shows CTS Functinoal Timing.

    The below Figure shows how software should use the RTS/CTR.


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/wdt.html b/Product/iMCU/W7500/Peripherals-internal/wdt.html index 848b48590c6..989c3f7a545 100644 --- a/Product/iMCU/W7500/Peripherals-internal/wdt.html +++ b/Product/iMCU/W7500/Peripherals-internal/wdt.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ PCLK is the main APB system clock and is used by the register interface.

    Interrupt and reset request

    An interrupt is generated when the counter reaches 0 and is only cleared when the interrupt clear register is accessed. The register holds the value until the interrupt is cleared.

    Reset request is asserted when the counter reaches 0 repeatedly and is not reprogrammed. Users can mask interrupts by writing 0 to the Interrupt Enable bit in the control register. Users can read the following from status registers:

    The below Figure shows Watchdog timer operation flow diagram

    &quot;Figure 1 Watchdog timer operation flow diagram&quot;


    Peripheral_Examples

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/Peripherals-internal/wdtreset.html b/Product/iMCU/W7500/Peripherals-internal/wdtreset.html index c0d611b33eb..3297ec46677 100644 --- a/Product/iMCU/W7500/Peripherals-internal/wdtreset.html +++ b/Product/iMCU/W7500/Peripherals-internal/wdtreset.html @@ -15,7 +15,7 @@ - + @@ -26,7 +26,7 @@ DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.


    Example Description

    This example shows how to use the Watchdog timer peripheral to run and generate watchdog reset request signal. External interrupt is used for generating hardfault and watchdog timer reset. EXTI line is mapped to PA_00

    The Watchdog timer frequency is set to SystemCoreClock(Hz). SystemCoreClock is set to 20 MHz.

    Reset information is checked at first, and then if reset is not occurred by watchdog timer, watchdog timer is set and started. Untill external interrupt is occurred, WDT counter is set and RED LED(PC_08) is toggled when WDT counter is under 0x1000.

    If reset is occurred by watchdog timer, WDT interrupt is cleared and RED LED(PC_08) is off and GREEN LED(PC_09) is on.


    Directory contents

    Hardware and Software environment

    How to use it ?

    In order to make the program work, you must do the following :

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/booting-sequence.html b/Product/iMCU/W7500/booting-sequence.html index a5a270b3f01..c55364c4a25 100644 --- a/Product/iMCU/W7500/booting-sequence.html +++ b/Product/iMCU/W7500/booting-sequence.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    Booting Sequence

    W7500 has three different boot modes that can be selected through the BOOT pin and TEST pin.

    Mode SelectionModeAliasing
    TESTBOOT
    00APPUser code execute in Main Flash memory
    01ISPIn this mode, W7500 can support ISP function in order to control flash using serial interface.

    When W7500 is reset by hardware, it will be operated as below in embedded boot code.

    Figure 1 operation of boot code&quot;

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/documents/appnote/how-to-make-keil-new-project-for-w7500.html b/Product/iMCU/W7500/documents/appnote/how-to-make-keil-new-project-for-w7500.html index ff94551d77b..1e928377aea 100644 --- a/Product/iMCU/W7500/documents/appnote/how-to-make-keil-new-project-for-w7500.html +++ b/Product/iMCU/W7500/documents/appnote/how-to-make-keil-new-project-for-w7500.html @@ -15,7 +15,7 @@ - + @@ -39,7 +39,7 @@ and write this command [fromelf --bin -o "$L@L.bin" "#L"] in order CMSIS DAP to use the bin file.

    STEP 10. Compile the example

    keil26

    Let's compile the example code in D:\workspace\project\Projects\Peripheral_Examples\GPIO\Blink_LED This fold consists of main.c, W7500x_conf.h, W7500x_it.c and W7500x_it.h and you should copy these four files to D:\workspace\project\W7500_Test(my project folder)

    keil27

    And copy W7500x_gpio.c into W7500_Periphs folder in order to use gpio peripheral

    keil28

    And copy W7500x_it.c into User folder for interrupt handlers

    Add "Include Path" for W7500x_conf.h and W7500x_it.h

    keil18

    Click "Options for Target..."

    keil19

    Click "Include Paths" in C\C++ tap, "folder icon and ... icon

    keil29

    Set "include path" with D:\workspace\project\W7500_Test

    keil30

    Now compile this project!! by pressing F7 or clicking Build icon

    keil31

    After compile, W7500_Test.bin file will be created. And then WIZwiki-W7500 will upload this bin file on itself via the User program you registered.

    If you want to convert this document to the PDF file? Click to [Export to PDF]

    © COPYRIGHT 2015 WIZnet Co.,Ltd.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/documents/appnote/how-to-use-gcc-for-w7500-peripherals-examples.html b/Product/iMCU/W7500/documents/appnote/how-to-use-gcc-for-w7500-peripherals-examples.html index ea659dd274f..0c93bf87779 100644 --- a/Product/iMCU/W7500/documents/appnote/how-to-use-gcc-for-w7500-peripherals-examples.html +++ b/Product/iMCU/W7500/documents/appnote/how-to-use-gcc-for-w7500-peripherals-examples.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ 2. Download the gcc-arm-none-eabi-4_9-2015q1-20150306-win32.exe because I use the Windows7 32bit.

    1. After choice the Language selection, click the 'OK'

    armgcc

    1. The installation path setup and click the 'NEXT', click the 'NEXT' again.

    armgcc

    1. Finally,Check the box "Add path to environment variale" and click the 'Finish' (If you check the box, It will automatically set the environment variable.)

    armgcc

    1. The command window will be opened,you can know the arm gcc setup path it.

    make

    1. Confirm the version of arm gcc using the command of below.

      arm-none-eabi-gcc --version

    make


    Step 3. Execute the makefile

    1. You set the path, you want to compile gcc compile. and enter the make

      make

    make

    1. You can see the compile as below. make
    1. If success, the files will create. The path of make file is a place the makefile.

    make

    When compile error occur

    If you can't compile or you don't create the files, you directly set the environment variable.

    Computer > click the right of mouse > properties > Advanced > Environment Variables > System variables > Edit> variable value Copy and Paste.

    Copy path is c:\Program Files\GNU Tools ARM Embedded\4.9 2015q1\bin : setup path

    gnuwin32

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    How to use MDK for W7500 Peripherals Examples


    (C) COPYRIGHT 2015 WIZnet

    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of How to use W7500 Peripheral example with Keil project.

    Introduction

    This application note guides user to use W7500 peripheral examples with Keil uVision compiler. Here we use TCP/IP core Offload Engine(TOE) among W7500 peripherals and loopback test example as sample.

    This document is based on Keil uVision MDK-Lite version:5.14.0.0 compiler and WIZwiki-W7500 platform as hardware.

    Download W7500 library and example

    You can download the library and example zip file at [link].

    Download and abstract the file then you can see some folder.

    Directory structure

    The extracted files consist of the CMSIS, driver and peripheral example.

    The W7500 standard peripheral library provides a rich set of examples covering the main features of each peripheral.

    Figure 1 W7500 library and example directory

    Example of WZTOE directory

    In WZTOE folder, directory structure is as follows.

    directory3

    DHCPClient, DNSClient and LoopbackTest are example project and ioLibrary contains library of socket APIs, DHCP APIs, DNS APIs and etc.

    In LoopbackTest folder, directory structure is as follows.

    directory2

    The main.c file is main body of the project.

    The retarget.c file is for using printf function for debug.

    The W7500x_conf.h file contains all peripheral headers.

    If you want to enable/disable peripheral header file, uncomment/comment the line.

    The W7500x_it.c file contains interrupt handlers for the project.

    The readme.md file contains the example description, hardware and software environment and description of how to use.

    The MDK folder is for Keil IDE compiler and the GCC folder is for GCC compiler.

    Open Keil projects

    In MDK directory is here a file: Keil project file. Double click the file, then Keil uVision will be opened.

    project_explorer

    You can see upper image at left side on your uVision. In W7500x_Periph group are peripheral drivers which are used for this project.

    The User group contains main function.

    Compile

    compile

    Click the build icon on menu bar or 'F7'. Then compile will be done. After compile, W7500x_WZTOE_Loopback.bin file is generated in Obj folder.

    Download code

    WIZwiki-W7500 board supports CMSIS-DAP, so you can just drag & drop the code file to download into 'mbed' directory on your system.

    draganddrop

    Connect to WIZwiki-W7500 and do the loopback test

    Now, WIZwiki-W7500 is running TCP server: IP - 192.168.77.9, PORT - 5000. Type IP address and Port number(This application note use Hercules as TCP client program). And then click 'Connect' button.

    tcp_client1

    After connection, send some string and you can see the same as you sent.

    tcp_client2

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    How to install Keil uVision MDK-Lite version


    (C) COPYRIGHT 2015 WIZnet

    • author : IOP Team
    • version : V1.0.0
    • date : 1-May-2015
    • brief : Description of installation Keil uVision MDK-Lite version.

    Introduction

    This application note guides user to install Keil uVision MDK-Lite version:5.14.0.0 compiler.

    Download MDK

    Connect to keil.com. And then click the Downloads button on the top.

    keil_1

    And then click MDK-ARM v5.

    keil_2

    Free version of MDK is required some user information:name, e-mail, company and etc. After fill the blanks, and then click 'Submit' button at the bottom.

    keil_5

    If you click MDK514.EXE, downloading has started.

    keil_3

    Install uVision MDK-Lite

    After downloading is completed, double click the mdk514.exe file and then setup process will be started.

    keil_4

    Install MDK Version 5 - Legacy Support

    After installation is completed, you need to install the MDK version 5 - legacy support because MDK-Lite version does not support W7500 example project devices.

    Download link

    Click Download Legacy Support for Cortex-M Devices button.

    keil_6

    After downloading is completed, double click the MDKCM514.EXE file nad then setup process will be started.

    keil_7

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    The Errata Sheet describes error Phenomenon and solution .
    The Getting Started user's guide describes the installation of MDK: How to make KEIL new project for W7500, How to use MDK for W7500 Peripherals Examples, How to use GCC for W7500 Peripherals Examples and How to use ISP tool from starting a project to using the ISP tool.


    Data Sheet

    W7500x Datasheet v1.1.0 - English
    VersionDateDecription
    V 1.1.020DEC2019Fixed 3.17 UART speed to 460.8 Kbit/s from 3 Mbit/s.

    Old Datasheet History

    VersionDateDecription
    V 1.0.018SEP2017Initial Release
    V 1.0.126OCT2017Fixed value Driving Strength condition in PADCON.
    V 1.0.209NOV2017Fixed Typo I/O Pad Characteristics VOL description (high -> low)
    V 1.0.330NOV2017Fixed figure 8. (W7500P Pin out)
    V 1.0.418DEC2017Add Reset & PLL characteristics.
    V 1.0.530JAN20181. Fixed figure 8 (W7500P Pin layout) / Added subhead (4.2.1 W7500, 4.2.2 W7500P) / Fixed table 8(modified Symbol name)
    ::::::2. Modified SRAM description (2. Description)
    V 1.0.605FEB2018Add info about W7500P power consumption.(Current Characteristics)
    V 1.0.727JUL2018Fixed figure 2. CRG Diagram (Input Information of WDOGCLK, TIMCLK0,TIMCLK1).
    V 1.0.817OCT2018Fixed Power Supply description
    V 1.0.911NOV2019Fixed Power Supply description

    Reference Manual

    VersionDateDecription
    V 1.1.217OCT2018Edit Power supply description

    Old Reference Manual History

    VersionDateDecription
    V 1.0.018SEP2017Initial Release
    V 1.0.112OCT2017Edit Flash Chapter.
    V 1.0.226OCT2017Edit GPIO,PADCON Register and added Open Drain function
    V 1.0.327OCT2017TCKCNTR, RTR, Sn_RTR, Sn_KATMR Additional description added.
    V 1.0.409NOV2017Edit PADCON register description CS,DS inverted value.
    V 1.0.517NOV2017Edit UARTCR register description about UARTEN.
    V 1.0.629NOV2017Edit WZTOE Sn_KATMR description about timer trigger.
    V 1.0.726JAN2018Edit typo about PWM preodic mode
    V 1.0.812FAB2018Edit Base Address about RTC (4000_4000 -> 4000_E000)
    V 1.0.905MAR2018Edit UART2 description & register map.
    V 1.1.011APR2018Edit Systick description & PADCON register table fix
    ::::::Edit Register Table about SSP0, SSP1 (Add FRF)
    ::::::Edit DSS about SSP0, SSP1
    ::::::Edit Register map about SSP0, SSP1 (Add FRF)
    V 1.1.127JUL2018Fixed figure 4. CRG Diagram (Input Information of WDOGCLK, TIMCLK0,TIMCLK1).
    ::::::Flash memory lock function Additional description added (11.1)

    PHY Reference

    VersionDateDecription
    V1.0.07AUG2018Initial Release

    W7500P Internal PHY Datasheet

    VersionDateDecription
    V1.0.07AUG2018Initial Release

    Errata Sheet

    VersionDateDecription
    V1.2.013MAR2019Erratum 3 – IAP Function Call Failure
    ::::::Erratum 4 – Two Image Banks Failure
    ::::::Erratum 5 – Cold Booting Failure

    Old Errata Sheet Histroy

    VersionDateDecription
    V1.0.011JUL2016erratum 1 – W7500x I2C
    V1.0.28DEC2016Correct SCL speed
    V1.0.318JUN2018erratum 2 – W7500P Transmission Delay Case

    Limitation Note ARP problem in the NLB environment

    Limitation Note ARP problem in the NLB environment V1.0

    ARP problem in the NLB environment V1.0

    VersionDateDecription
    V 1.012MAR18Initial Document

    Getting Started


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    Electrical Characteristics

    Absolute maximum ratings

    These are stress ratings only and functional operation of the device at these conditions is not implied. Exposure to maximum rating conditions for extended periods may affect device reliability.

    Voltage Characteristics

    SymbolRatingsMinMaxUnit
    VDD-VSSExternal main supply voltage (VDD)-0.33.6V
    VINInput voltage on IO pinsVSS - 0.33.6V
    SVDDHI/O Power on slope3.3V/Sec1V/uSec-
    △VSSVariations between difference VDD power pins50mV
    △VDDVariations between different ground pins50mV

    Current Characteristics

    SymbolRatingsMaxUnit
    IVDDsUMTotal current into sum of all VDD power lines (source)
    100mA
    IVDDMaximum current into each ADD power pin (source)
    90mA
    IIO_PADTotal output current sunk by sum of all IOs and control pins
    75mA
    IINJ_PADSingle pin input injected current
    ±10mA
    IINJ_SUMSum of all input injected current
    ±50mA

    Thermal Characteristics

    SymbolRatingsMinMaxUnit
    TStorgeStorage temperature range-55+150
    TJuncMaximum junction temperature under bias-40+150

    Operating conditions

    General Operating Conditions

    SymbolParameterConditionsMinMaxUnit
    fFCLKInternal CPU clock frequency

    0
    48
    MHz
    VDD Standard operating voltage

    2.7
    3.6
    V
    VIO Input voltage on PIN

    VSS-0.33.6
    V
    TAAmbient temperature

    -40
    85
    TJJunction Temperature range

    -30
    105

    Supply Current Characteristics

    Normal operation

    SymbolParameterConditions 1Condition 2TypUnit
    IDD_NOR Supply current
    Active mode; code
    While(1)
    Executed from flash memory
    System clock = 10MHz6.14
    mA
    System clock = 20MHz
    8.82
    mA
    System clock = 40MHz
    14.09
    mA

    Sleep mode

    Symbol
    Parameter
    Conditions 1
    Condition 2
    Typ
    Unit
    IDD_SLPSupply current
    After enter sleep mode
    All peripheral clocks ON
    (same as system clock)
    System clock = 10MHz
    3.51
    mA
    System clock = 20MHz
    5.65mA
    System clock = 40MHz
    9.61
    mA

    Deep sleep mode

    Symbol
    Parameter
    Conditions1
    Condition2
    Typ
    Unit
    IDD_SLPSupply currentAfter enter deep sleep mode
    All peripheral clocks OFF
    -2.49

    I/O PAD Characteristics

    DC Specification

    Symbol
    Parameter
    Conditions
    MinMaxUnit
    VIHI/O Input high voltage
    2.145
    V
    VIL
    I/O Input low voltage
    1.155
    V
    VHYSSchmitt trigger hysteresis
    0.33
    V
    IIH
    I/O Input high current
    1
    uA
    IIL
    I/O Input low current
    -1
    uA
    VOH
    I/O Output high voltage
    High driving strength Current load = 6mA
    Low driving strength Current load = 3mA
    2.5
    V
    VOL
    I/O Output low voltage
    High driving strength Current load = 6mA
    Low driving strength Current load = 3mA
    0.5
    V
    Rpup
    Rpdn
    Pull-up/Pull-down resistor
    20
    100
    KOhm

    Flash memory

    Symbol
    Parameter
    Min
    Unit
    NENDSector Endurance
    10,000
    Cycles
    TDRData Retention
    10

    Years

    Electrical Sensitivity Characteristics

    Electostatic discharge (ESD)

    Symbol
    Parameter
    Test Method
    Min
    Max
    Unit
    VESD(HBM) Electostatic discharge (Human body model)
    AEC-Q100-002
    ±2000 -
    V
    VESD(CDM)Electostatic discharge (Charge device model)
    AEC-Q100-011
    ±500
    -
    V

    Static latch-up

    Symbol
    Parameter
    Test Method
    Min
    Max
    Unit
    ILAT Latch up current at 125℃ ambient temperature AEC-Q100-004
    ±100-
    V

    ADC Characteristics

    ADC Electrical characteristics

    Symbol
    Parameter
    Conditions
    Min
    Typ
    Max
    Unit
    IN[15:0]
    Analog input channel
    VSS-VREFP
    V
    VREFP
    Reference voltage of REFP
    VDDV
    RES
    Resolution
    12Bits
    Offset error
    -3.0
    3.0
    LSB
    INL
    Integral non-linearity error
    -2.0
    1.0
    2.0
    LSB
    DNL
    Differential non-linearity error
    -1.0
    0.8
    1.5
    LSB
    Fclk
    Clock frequency


    16
    MHz
    SPS
    Sampling rate
    30
    5001000
    K
    TS
    Sampling time
    4 / FCLK

    TC
    Conversion time
    12
    1 / FCLK
    SNDR
    Signal-noise plus distortion ratio
    At 10KHz64
    dB
    THD
    Total harmonic distortion
    At 10KHz
    -65
    dB
    SFDR
    Spurious-free dynamic range
    At 10KHz
    64
    dB

    ADC Transform function description

    Figure 1 ADC transform function

    I2C interface Characteristics

    SymbolParameterStandardFastUnit
    MinMaxMinMax
    fSCL CLK clock frequency
    0
    100
    0
    400
    KHz
    tLOW Low period of the SCL clock
    4.5
    1.0
    us
    tHIGH High period of SCL clock
    3.8
    0.5us
    tfRise time of SCL and SDA
    1000
    300
    ns
    tfFall time SCL and SDA
    300
    300
    ns
    tHD_DATData hold time
    0
    0
    us
    tVD_DAT Data valid time
    3.5
    1.0
    us
    tSU_DATData setup time
    200
    90
    ns
    tVD_ACK Data valid acknowledge time
    3.5
    1.0
    us
    tHD_STA Hold time START condition
    3.8
    0.5
    us
    tSU_STASet-up time for a repeat START condition
    4.5
    0.5
    us
    tSU_STOSet-up time for STOP condition
    3.8
    0.5

    us

    Figure 2 I2C bus AC waveform

    SSP Interface Characteristics

    SymbolParameterConditionsMinMaxUnit
    fSCL SSP clock frequency
    Master mode

    20MHz
    Slave mode

    20MHz
    tr_SCK SSP clock rising and fall time
    Capacitive load : C = 25pF

    8ns
    tSU_MData input setup time
    Master mode
    5ns
    tSU_SSlave mode
    6ns
    tH_MData input hold time
    Master mode
    5ns
    tH_SSlave mode
    6ns
    tV_MData output valid time
    Master mode
    20ns
    tV_SSlave mode
    5ns
    tH_MData output hold time
    Master mode
    13
    tH_S Slave mode
    3
    DuCy
    SSP slave input clock duty cycle
    Slavemode4555
    %

    Package Characteristics

    Package dimension information

    Figure 3 Package Dimension Information

    SymbolDimension (MM)Dimension (MIL)
    MinNomMaxMinNomMax
    A


    1.20


    47.2
    A1
    0.05
    0.10
    0.15
    2.0
    3.9
    5.9
    A2
    0.95
    1.00
    1.05
    37.4
    39.4
    41.3
    b
    0.13
    0.18
    0.23
    5.1
    7.1
    9.1
    b1
    0.13
    0.16
    0.19
    5.1
    6.3
    7.5
    c
    0.09

    0.20
    3.5

    7.9
    c1
    0.09

    0.16
    3.5

    6.3
    D
    8.90
    9.00
    9.10
    350.4
    354.3
    358.3
    D1
    6.90
    7.00
    7.10
    271.7
    275.6
    279.5
    0.35
    0.40
    0.45
    13.8
    15.7
    17.7
    L
    0.45
    0.60
    0.75
    17.7
    23.6
    29.5
    L1
    0.90
    1.00
    1.10
    35.4
    39.4
    43.3
    R1
    0.08


    3.1


    R2
    0.08

    0.20
    3.1

    7.9
    Y


    0.08


    3.1
    θ

    3.5°


    3.5°

    θ1






    θ2
    11°
    12°
    13°
    11°
    12°
    13°
    θ3
    11°
    12°
    13°
    11°
    12°
    13°

    Package footprint information

    Figure 4 Package Footprint Information

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    Interrupt and Event

    Introduction W7500 contains

    interrupt service and event service as below

    • 25 interrupt request (IRQ) lines
    • One NonMaskable Interrupt(NMI)
    • One event signal

    Interrupt assignments

    IRQ/NMIDeviceDescriptionAddress
    NMIWatchdog timerWatchdog timer interrupt0x0000_0008
    IRQ[0]SSP0SSP0 global interrupt0x0000_0040
    IRQ[1]SSP1SSP1 global interrupt0x0000_0044
    IRQ[2]UART0UART0 global interrupt0x0000_0048
    IRQ[3]UART1UART1 global interrupt0x0000_004C
    IRQ[4]UART2UART2 global interrupt0x0000_0050
    IRQ[5]I2C0I2C0 global interrupt0x0000_0054
    IRQ[6]I2C1I2C1 global interrupt0x0000_0058
    IRQ[7]GPIO0GPIO0 global interrupt0x0000_005c
    IRQ[8]GPIO1GPIO1 global interrupt0x0000_0060
    IRQ[9]GPIO2GPIO2 global interrupt0x0000_0064
    IRQ[10]GPIO3GPIO3 global interrupt0x0000_0068
    IRQ[11]DMADMA channel 1 ~ channel 5 interrupt0x0000_006C
    IRQ[12]Dualtimer0Dualtimer0 global interrupt0x0000_0070
    IRQ[13]Dualtimer1Dualtimer1 global interrupt0x0000_0074
    IRQ[14]PWM0PWM0 global interrupt0x0000_0078
    IRQ[15]PWM1PWM1 global interrupt0x0000_007C
    IRQ[16]PWM2PWM2 global interrupt0x0000_0080
    IRQ[17]PWM3PWM3 global interrupt0x0000_0084
    IRQ[18]PWM4PWM4 global interrupt0x0000_0088
    IRQ[19]PWM5PWM5 global interrupt0x0000_008C
    IRQ[20]PWM6PWM6 global interrupt0x0000_0090
    IRQ[21]PWM7PWM7 global interrupt0x0000_0094
    IRQ[22]Reserved0x0000_0098
    IRQ[23]ADCADC acquisition end interrupt0x0000_009C
    IRQ[24]TCPIPTCPIP global interrupt0x0000_00A0
    IRQ[25]EXT_INTExternal pin interrupt0x0000_00A4
    IRQ[26]Reserved0x0000_00A8
    IRQ[27]Reserved0x0000_00AC
    IRQ[28]Reserved0x0000_00B0
    IRQ[29]Reserved0x0000_00B4
    IRQ[30]Reserved0x0000_00B8
    IRQ[31]Reserved0x0000_00BC

    Event

    W7500 is able to handle internal events in order to wake up the core(WFE). The wakeup event can be generated by

    • When DMA process finished
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  • A single memory mapping file, W7500x.h, is supplied for all peripherals. It contains all the register declarations and bit definition. This is the only file that needs to be included in the user application to interface with the library.
  • Projects
  • Utilities
  • Download

    Library GitHub Repository

    Release Version

    Peripheral description and examples

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    W7500

    Figure 1 W7500 Chip


    The IOP4IoT W7500 chip is the one-chip solution which integrates an ARM Cortex-M0, 128KB Flash and hardwired TCP/IP core for various embedded application platforms. The TCP/IP core is a market-proven hardwired TCP/IP stack with an integrated Ethernet MAC. The Hardwired TCP/IP stack supports the TCP, UDP, IPv4, ICMP, ARP, IGMP and PPPoE which has been used in various applications for more than 15 years. W7500 suits users who need Internet connectivity best.

    Features

    • ARM Cortex-M0
      • 48MHz maximum frequency
    • Hardwired TCP/IP Core
      • 8 Sockets
      • SRAM for socket: 32 KB
      • MII (Medium-Independent Interface)
    • Memories
      • Flash: 128 KB
      • SRAM: 16 KB
      • ROM for boot code: 6 KB
    • Clock, reset and supply management
      • POR (Power-On Reset)
      • Internal Voltage Regulator : 3.3V to 1.5V
      • 8-to-24MHz external crystal oscillator
      • Internal 8MHz RC Oscillator
      • PLL for CPU clock
    • ADC : 12bit, 8ch, 1Mbps
    • DMA
      • 6-channel DMA controller
      • Peripheral supported: UARTs, SPIs
    • GPIO
      • 53 I/Os (16 IO x 3ea, 5 IO x 1ea)
    • Debug mode
      • Serial Wire Debug (SWD)
    • Timer/PWM
      • 1 Watchdog (32-bit down-counter)
      • 4 Timers (32-bit or 16-bit down-counter)
      • 8 PWMs (32-bit counter/timers with programmable 6-bit prescaler)
    • Communication Interfaces
      • 3 UART (2 UARTs with FIFO and Flow Control, 1 simple UART)
      • 2 SPI
      • 2 I2C (Master/Slave, Fast-mode (400 kbps))
    • Crypto
      • 1 RNG (Random Number Generator): 32-bit random number
    • Package
      • 64 TQFP (7x7 mm)

    Details

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    Pin Assignment

    Pin Layout

    W7500 Pin Layout

    pin layout

    Pin Description

    Description
    PinSymbolTypeMain2nd3rd4th
    1PC_08AIOPWM0 / CAP0GPIO3_8SCL0AIN7
    2PC_09AIOPWM1 / CAP1GPIO3_9SDA0AIN6
    3PC_10AIOU_TXD2GPIO3_10PWM2 / CAP2AIN5
    4PC_11AIOU_RXD2GPIO3_11PWM3 / CAP3AIN4
    5PC_12AIOAIN3GPIO3_12SSEL0AIN3
    6PC_13AIOAIN2GPIO3_13SCLK0AIN2
    7PC_14AIOAIN1GPIO3_14MISO0AIN1
    8PC_15AIOAIN0GPIO3_15MOSI0AIN0
    9GNDGNDGround
    10VDDPWRVDD
    11PD_00IOCRS/TXD3GPIO4_0
    12PD_01IORXDV/TXD2GPIO4_1
    13PD_02IORXD0/TXD1GPIO4_2
    14PD_03IORXD1/TXD0GPIO4_3
    15PD_04IORXD2/TXCLKGPIO4_4
    16PB_06IORXD3/DUPGPIO2_6
    17PB_07IORXCLK/RXCLKGPIO2_7
    18PB_08IODUP/RXD3GPIO2_8
    19PB_09IOTXCLK/RXD2GPIO2_9
    20PB_10IOTXD0/RXD1GPIO2_10
    21PB_11IOTXD1/RXD0GPIO2_11
    22PB_12IOTXD2/RXDVGPIO2_12
    23PB_13IOTXD3/CRSGPIO2_13
    24PB_04IOTXENGPIO2_04
    25PB_05IOCOLGPIO2_05
    26PB_14IOMDIO/MDCGPIO2_14
    27PB_15IOMDC/MDIOGPIO2_15
    28RSTnIRSTn
    29PA_00IOGPIO1_0GPIO1_0PWM6/CAP6
    30PA_01IOTXD0/RXD1GPIO1_1PWM7/CAP7
    31PA_02IOGPIO1_2GPIO1_2CLKOUT
    32TESTGNDGround
    33PA_05IOSSEL0GPIO1_5SCL1PWM2/CAP2
    34PA_06IOSCLK0GPIO1_6SDA1PWM3/CAP3
    35PA_07IOMISO0GPIO1_7U_CTS1PWM4/CAP4
    36PA_08IOMOSI0GPIO1_8U_RTS1PWM5/CAP5
    37PA_09IOSCL0GPIO1_9U_TXD1PWM6/CAP6
    38PA_10IOSDA0GPIO1_10U_RXD1PWM7/CAP7
    39BOOTIOBOOT
    40PA_11IOU_CTS0GPIO1_11SSEL1
    41PA_12IOU_RTS0GPIO1_12SCLK1
    42PA_13IOU_TXD0GPIO1_13MISO1
    43PA_14IOU_RXD0GPIO1_14MOSI1
    44PA_15IOGPIO1_15GPIO1_15
    45PB_00IOSSEL1GPIO2_0U_CTS0
    46PB_01IOSCLK1GPIO2_1U_RTS0
    47PB_02IOMISO1GPIO2_2U_TXD0
    48PB_03IOMOSI1GPIO2_3U_RXD0
    49PA_03IOSWCLKGPIO1_3PWM0/CAP0
    50PA_04IOSWDIOGPIO1_4PWM1/CAP1
    51PC_06IOGPIO3_6GPIO3_6U_TXD2
    52PC_07IOGPIO3_7GPIO3_7U_RXD2
    53PC_00IOU_CTS1GPIO3_0PWM0/CAP0
    54PC_01IOU_RTS1GPIO3_1PWM1/CAP1
    55PC_02IOU_TXD1GPIO3_2PWM2/CAP2
    56PC_03IOU_RXD1GPIO3_3PWM3/CAP3
    57PC_04IOSCL1GPIO3_4PWM4/CAP4
    58PC_05IOSDA1GPIO3_5PWM5/CAP5
    59GNDGNDGround
    60NCNCNot Connected
    61VDDPWRVDD
    62GNDGNDGround
    63XTAL_INIXtal in
    64XTAL_OUTOXtal out

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/power-supply.html b/Product/iMCU/W7500/power-supply.html index 0367dd1fcfe..31ddf72e742 100644 --- a/Product/iMCU/W7500/power-supply.html +++ b/Product/iMCU/W7500/power-supply.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ Two of them are almost the same except the clock gated peripherals kinds.

    ModeEntryWakeupEffect-on-clocks
    Sleep modeDEEPSLEEP = 0
    Enable WFI
    Any interruptCPU Clock OFF
    APB Bus Clock ON
    AHB Bus Clock ON
    Memory Clock ON
    DEEPSLEEP = 0
    Enable WFE
    Wakeup event
    Deep Sleep modeDEEPSLEEP = 1
    Enable WFI
    Any interruptCPU Clock OFF
    APB Bus Clock OFF
    AHB Bus Clock OFF
    Memory Clock OFF
    DEEPSLEEP = 1
    Enable WFE
    Wakeup event

    Peripheral clock gating

    In Run mode, individual clocks can be stopped at any time to reduce power. Peripheral clock gating is controlled by the CRG block. Below is the list of clocks which can be gating in CRG block.

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500/system-and-memory.html b/Product/iMCU/W7500/system-and-memory.html index cf1ef15ff1f..ee3347bbc67 100644 --- a/Product/iMCU/W7500/system-and-memory.html +++ b/Product/iMCU/W7500/system-and-memory.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ memory in Little Endian format. The lowest numbered byte in a word is considered the word’s least significant byte and the highest numbered byte the most significant.

    Memory map

    W7500 Memory map

    System Configuration Controller (SYSCFG)

    Main purposes of the system configuration controller are the following

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    W7500 Reference Schematics

    This is for reference only, you don't have to use the PHYs below. Also, we do not provide technical support for the IP101GA (IC+) and RTL8201CP (Realtek) used in the reference circuit, so please contact the manufacturer for technical support.

    IC+ PHY

    W7500 Reference Schematic with IP101GA

    W7500 Reference Schematic with IP101GRI

    Realtek PHY

    W7500 Reference Schematic with RTL8201CP-VD-LF

    W7500 Reference Schematic with RTL8201F-VB-CG

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    Booting Sequence

    W7500 has three different boot modes that can be selected through the BOOT pin and TEST pin.

    Mode SelectionModeAliasing
    TESTBOOT
    00APPUser code execute in Main Flash memory
    01ISPIn this mode, W7500 can support ISP function in order to control flash using serial interface.

    When W7500 is reset by hardware, it will be operated as below in embedded boot code.

    Figure 1 operation of boot code&quot;

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500P/documents.html b/Product/iMCU/W7500P/documents.html index 6885fba3bf3..d1745fd0992 100644 --- a/Product/iMCU/W7500P/documents.html +++ b/Product/iMCU/W7500P/documents.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ The PHY Reference provides the How to Access W7500x PHY Register and description of W7500P Internal PHY.
    The Errata Sheet describes error Phenomenon and solution .
    The Getting Started user's guide describes the installation of MDK: How to make KEIL new project for W7500, How to use MDK for W7500 Peripherals Examples, How to use GCC for W7500 Peripherals Examples and How to use ISP tool from starting a project to using the ISP tool.


    Data Sheet

    W7500x Datasheet v1.1.0 - English
    VersionDateDecription
    V 1.1.020DEC2019Fixed 3.17 UART speed to 460.8 Kbit/s from 3 Mbit/s.

    Old Datasheet History

    VersionDateDecription
    V 1.0.018SEP2017Initial Release
    V 1.0.126OCT2017Fixed value Driving Strength condition in PADCON.
    V 1.0.209NOV2017Fixed Typo I/O Pad Characteristics VOL description (high -> low)
    V 1.0.330NOV2017Fixed figure 8. (W7500P Pin out)
    V 1.0.418DEC2017Add Reset & PLL characteristics.
    V 1.0.530JAN20181. Fixed figure 8 (W7500P Pin layout) / Added subhead (4.2.1 W7500, 4.2.2 W7500P) / Fixed table 8(modified Symbol name)
    ::::::2. Modified SRAM description (2. Description)
    V 1.0.605FEB2018Add info about W7500P power consumption.(Current Characteristics)
    V 1.0.727JUL2018Fixed figure 2. CRG Diagram (Input Information of WDOGCLK, TIMCLK0,TIMCLK1).
    V 1.0.817OCT2018Fixed Power Supply description
    V 1.0.911NOV2019Fixed Power Supply description

    Reference Manual

    VersionDateDecription
    V 1.1.217OCT2018Edit Power supply description

    ++++ Old Reference Manual History |

    VersionDateDecription
    V 1.0.018SEP2017Initial Release
    V 1.0.112OCT2017Edit Flash Chapter.
    V 1.0.226OCT2017Edit GPIO,PADCON Register and added Open Drain function
    V 1.0.327OCT2017TCKCNTR, RTR, Sn_RTR, Sn_KATMR Additional description added.
    V 1.0.409NOV2017Edit PADCON register description CS,DS inverted value.
    V 1.0.517NOV2017Edit UARTCR register description about UARTEN.
    V 1.0.629NOV2017Edit WZTOE Sn_KATMR description about timer trigger.
    V 1.0.726JAN2018Edit typo about PWM preodic mode
    V 1.0.812FAB2018Edit Base Address about RTC (4000_4000 -> 4000_E000)
    V 1.0.905MAR2018Edit UART2 description & register map.
    V 1.1.011APR2018Edit Systick description & PADCON register table fix
    ::::::Edit Register Table about SSP0, SSP1 (Add FRF)
    ::::::Edit DSS about SSP0, SSP1
    ::::::Edit Register map about SSP0, SSP1 (Add FRF)
    V 1.1.127JUL2018Fixed figure 4. CRG Diagram (Input Information of WDOGCLK, TIMCLK0,TIMCLK1).
    ::::::Flash memory lock function Additional description added (11.1)

    PHY Reference

    How to Access W7500x PHY Register

    VersionDateDecription
    V1.0.07AUG2018Initial Release

    W7500P Internal PHY Datasheet

    VersionDateDecription
    V1.0.07AUG2018Initial Release

    Errata Sheet

    VersionDateDecription
    V1.2.013MAR2019Erratum 3 – IAP Function Call Failure
    ::::::Erratum 4 – Two Image Banks Failure
    ::::::Erratum 5 – Cold Booting Failure
    VersionDateDecription
    V1.0.011JUL2016erratum 1 – W7500x I2C
    V1.0.28DEC2016Correct SCL speed
    V1.0.318JUN2018erratum 2 – W7500P Transmission Delay Case

    ++++


    Limitation Note ARP problem in the NLB environment

    Limitation Note ARP problem in the NLB environment V1.0

    ARP problem in the NLB environment V1.0

    VersionDateDecription
    V 1.012MAR18Initial Document

    Getting Started


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    Electrical Characteristics

    Absolute maximum ratings

    These are stress ratings only and functional operation of the device at these conditions is not implied. Exposure to maximum rating conditions for extended periods may affect device reliability.

    Voltage Characteristics

    SymbolRatingsMinMaxUnit
    VDD-VSSExternal main supply voltage (VDD)-0.33.6V
    VINInput voltage on IO pinsVSS - 0.33.6V
    SVDDHI/O Power on slope3.3V/Sec1V/uSec-
    △VSSVariations between difference VDD power pins50mV
    △VDDVariations between different ground pins50mV

    Current Characteristics

    SymbolRatingsMaxUnit
    IVDDsUMTotal current into sum of all VDD power lines (source)
    100mA
    IVDDMaximum current into each ADD power pin (source)
    90mA
    IIO_PADTotal output current sunk by sum of all IOs and control pins
    75mA
    IINJ_PADSingle pin input injected current
    ±10mA
    IINJ_SUMSum of all input injected current
    ±50mA

    Thermal Characteristics

    SymbolRatingsMinMaxUnit
    TStorgeStorage temperature range-55+150
    TJuncMaximum junction temperature under bias0+150

    Operating conditions

    General Operating Conditions

    SymbolParameterConditionsMinMaxUnit
    fFCLKInternal CPU clock frequency

    0
    48
    MHz
    VDD Standard operating voltage

    2.7
    3.6
    V
    VIO Input voltage on PIN

    VSS-0.33.6
    V
    TAAmbient temperature

    0
    70
    TJJunction Temperature range

    0
    105

    Supply Current Characteristics

    Normal operation

    SymbolParameterConditions 1Condition 2TypUnit
    IDD_NOR Supply current
    Active mode; code
    While(1)
    Executed from flash memory
    System clock = 10MHz6.14
    mA
    System clock = 20MHz
    8.82
    mA
    System clock = 40MHz
    14.09
    mA

    Sleep mode

    Symbol
    Parameter
    Conditions 1
    Condition 2
    Typ
    Unit
    IDD_SLPSupply current
    After enter sleep mode
    All peripheral clocks ON
    (same as system clock)
    System clock = 10MHz
    3.51
    mA
    System clock = 20MHz
    5.65mA
    System clock = 40MHz
    9.61
    mA

    Deep sleep mode

    Symbol
    Parameter
    Conditions1
    Condition2
    Typ
    Unit
    IDD_SLPSupply currentAfter enter deep sleep mode
    All peripheral clocks OFF
    -2.49

    I/O PAD Characteristics

    DC Specification

    Symbol
    Parameter
    Conditions
    MinMaxUnit
    VIHI/O Input high voltage
    2.145
    V
    VIL
    I/O Input low voltage
    1.155
    V
    VHYSSchmitt trigger hysteresis
    0.33
    V
    IIH
    I/O Input high current
    1
    uA
    IIL
    I/O Input low current
    -1
    uA
    VOH
    I/O Output high voltage
    High driving strength Current load = 6mA
    Low driving strength Current load = 3mA
    2.5
    V
    VOL
    I/O Output low voltage
    High driving strength Current load = 6mA
    Low driving strength Current load = 3mA
    0.5
    V
    Rpup
    Rpdn
    Pull-up/Pull-down resistor
    20
    100
    KOhm

    Flash memory

    Symbol
    Parameter
    Min
    Unit
    NENDSector Endurance
    10,000
    Cycles
    TDRData Retention
    10

    Years

    Electrical Sensitivity Characteristics

    Electostatic discharge (ESD)

    Symbol
    Parameter
    Test Method
    Min
    Max
    Unit
    VESD(HBM) Electostatic discharge (Human body model)
    AEC-Q100-002
    ±2000 -
    V
    VESD(CDM)Electostatic discharge (Charge device model)
    AEC-Q100-011
    ±500
    -
    V

    Static latch-up

    Symbol
    Parameter
    Test Method
    Min
    Max
    Unit
    ILAT Latch up current at 125℃ ambient temperature AEC-Q100-004
    ±100-
    V

    ADC Characteristics

    ADC Electrical characteristics

    Symbol
    Parameter
    Conditions
    Min
    Typ
    Max
    Unit
    IN[15:0]
    Analog input channel
    VSS-VREFP
    V
    VREFP
    Reference voltage of REFP
    VDDV
    RES
    Resolution
    12Bits
    Offset error
    -3.0
    3.0
    LSB
    INL
    Integral non-linearity error
    -2.0
    1.0
    2.0
    LSB
    DNL
    Differential non-linearity error
    -1.0
    0.8
    1.5
    LSB
    Fclk
    Clock frequency


    16
    MHz
    SPS
    Sampling rate
    30
    5001000
    K
    TS
    Sampling time
    4 / FCLK

    TC
    Conversion time
    12
    1 / FCLK
    SNDR
    Signal-noise plus distortion ratio
    At 10KHz64
    dB
    THD
    Total harmonic distortion
    At 10KHz
    -65
    dB
    SFDR
    Spurious-free dynamic range
    At 10KHz
    64
    dB

    ADC Transform function description

    Figure 1 ADC transform function

    I2C interface Characteristics

    SymbolParameterStandardFastUnit
    MinMaxMinMax
    fSCL CLK clock frequency
    0
    100
    0
    400
    KHz
    tLOW Low period of the SCL clock
    4.5
    1.0
    us
    tHIGH High period of SCL clock
    3.8
    0.5us
    tfRise time of SCL and SDA
    1000
    300
    ns
    tfFall time SCL and SDA
    300
    300
    ns
    tHD_DATData hold time
    0
    0
    us
    tVD_DAT Data valid time
    3.5
    1.0
    us
    tSU_DATData setup time
    200
    90
    ns
    tVD_ACK Data valid acknowledge time
    3.5
    1.0
    us
    tHD_STA Hold time START condition
    3.8
    0.5
    us
    tSU_STASet-up time for a repeat START condition
    4.5
    0.5
    us
    tSU_STOSet-up time for STOP condition
    3.8
    0.5

    us

    Figure 2 I2C bus AC waveform

    SSP Interface Characteristics

    SymbolParameterConditionsMinMaxUnit
    fSCL SSP clock frequency
    Master mode

    20MHz
    Slave mode

    20MHz
    tr_SCK SSP clock rising and fall time
    Capacitive load : C = 25pF

    8ns
    tSU_MData input setup time
    Master mode
    5ns
    tSU_SSlave mode
    6ns
    tH_MData input hold time
    Master mode
    5ns
    tH_SSlave mode
    6ns
    tV_MData output valid time
    Master mode
    20ns
    tV_SSlave mode
    5ns
    tH_MData output hold time
    Master mode
    13
    tH_S Slave mode
    3
    DuCy
    SSP slave input clock duty cycle
    Slavemode4555
    %

    Package Characteristics

    Package dimension information

    Figure 3 Package Dimension Information

    SymbolDimention (MM)Dimention (MIL)
    MinNomMaxMinNomMax
    A


    1.60


    63.0
    A1
    0.05
    0.10
    0.15
    2.0
    3.9
    5.9
    A2
    1.35
    1.40
    1.45
    53.1
    55.1
    57.1
    b
    0.13
    0.18
    0.23
    5.1
    7.1
    9.1
    b1
    0.13
    0.16
    0.19
    5.1
    6.3
    7.5
    c
    0.09

    0.20
    3.5

    7.9
    c1
    0.09

    0.16
    3.5

    6.3
    D
    8.85
    9.00
    9.15
    348.4
    354.3
    360.2
    D1
    6.90
    7.00
    7.10
    271.7
    275.6
    279.5
    0.35
    0.40
    0.45
    13.8
    15.7
    17.7
    L
    0.45
    0.60
    0.75
    17.7
    23.6
    29.5
    L1
    0.85
    1.00
    1.15
    33.5
    39.4
    45.3
    R1
    0.08


    3.1


    R2
    0.08

    0.20
    3.1

    7.9
    Y


    0.08


    3.1
    θ

    3.5°


    3.5°

    θ1






    θ2
    11°
    12°
    13°
    11°
    12°
    13°
    θ3
    11°
    12°
    13°
    11°
    12°
    13°

    Package footprint information

    Figure 4 Package Footprint Information

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    Interrupt and Events

    Introduction

    W7500P contains interrupt service and event service as below

    • 25 interrupt request (IRQ) lines
    • One NonMaskable Interrupt(NMI)
    • One event signal

    Interrupt assignments

    IRQ/NMIDeviceDescriptionAddress
    NMIWatchdog timerWatchdog timer interrupt0x0000_0008
    IRQ[0]SSP0SSP0 global interrupt0x0000_0040
    IRQ[1]SSP1SSP1 global interrupt0x0000_0044
    IRQ[2]UART0UART0 global interrupt0x0000_0048
    IRQ[3]UART1UART1 global interrupt0x0000_004C
    IRQ[4]UART2UART2 global interrupt0x0000_0050
    IRQ[5]I2C0I2C0 global interrupt0x0000_0054
    IRQ[6]I2C1I2C1 global interrupt0x0000_0058
    IRQ[7]GPIO0GPIO0 global interrupt0x0000_005c
    IRQ[8]GPIO1GPIO1 global interrupt0x0000_0060
    IRQ[9]GPIO2GPIO2 global interrupt0x0000_0064
    IRQ[10]GPIO3GPIO3 global interrupt0x0000_0068
    IRQ[11]DMADMA channel 1 ~ channel 5 interrupt0x0000_006C
    IRQ[12]Dualtimer0Dualtimer0 global interrupt0x0000_0070
    IRQ[13]Dualtimer1Dualtimer1 global interrupt0x0000_0074
    IRQ[14]PWM0PWM0 global interrupt0x0000_0078
    IRQ[15]PWM1PWM1 global interrupt0x0000_007C
    IRQ[16]PWM2PWM2 global interrupt0x0000_0080
    IRQ[17]PWM3PWM3 global interrupt0x0000_0084
    IRQ[18]PWM4PWM4 global interrupt0x0000_0088
    IRQ[19]PWM5PWM5 global interrupt0x0000_008C
    IRQ[20]PWM6PWM6 global interrupt0x0000_0090
    IRQ[21]PWM7PWM7 global interrupt0x0000_0094
    IRQ[22]Reserved0x0000_0098
    IRQ[23]ADCADC acquisition end interrupt0x0000_009C
    IRQ[24]TCPIPTCPIP global interrupt0x0000_00A0
    IRQ[25]EXT_INTExternal pin interrupt0x0000_00A4
    IRQ[26]Reserved0x0000_00A8
    IRQ[27]Reserved0x0000_00AC
    IRQ[28]Reserved0x0000_00B0
    IRQ[29]Reserved0x0000_00B4
    IRQ[30]Reserved0x0000_00B8
    IRQ[31]Reserved0x0000_00BC

    Event

    W7500 is able to handle internal events in order to wake up the core(WFE). The wakeup event can be generated by

    • When DMA process finished
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  • A single memory mapping file, W7500x.h, is supplied for all peripherals. It contains all the register declarations and bit definition. This is the only file that needs to be included in the user application to interface with the library.
  • Projects
  • Utilities
  • Download

    Library GitHub Repository

    Release Version

    Peripheral description and examples

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    W7500P

    Figure 1 W7500 Chip


    The IOP4IoT W7500P chip is the one-chip solution which integrates an ARM Cortex-M0, 128KB Flash, hardwired TCP/IP core for various embedded application platform, 10/100 Ethernet MAC and PHY, and especially internet of things. The TCP/IP core is a market-proven hardwired TCP/IP stack and PHY is IC plus IP101G, an IEEE 802.3/802.3u Fast Ethernet Transcevier for 10/100Mbps. The Hardwired TCP/IP stack supports the TCP, UDP, IPv4, ICMP, ARP, IGMP and PPPoE which has been used in various applications for more than 15 years. W7500P suits users who need Internet connectivity best.

    Features

    • ARM Cortex-M0
      • 48MHz maximum frequency
    • Hardwired TCP/IP Core
      • 8 Sockets
      • SRAM for socket: 32 KB
    • PHY
      • IC+(IP101G)
    • Memories
      • Flash: 128 KB
      • SRAM: 16KB
      • ROM for boot code: 6 KB
    • Clock, reset and supply management
      • POR (Power-On Reset)
      • Internal Voltage Regulator : 3.3V to 1.5V
      • 8-to-24MHz external crystal oscillator
      • Internal 8MHz RC Oscillator
      • PLL for CPU clock
    • ADC : 12bit, 8ch, 1Msps
    • DMA
      • 6-channel DMA controller
      • Peripheral supported: UARTs, SPIs
    • GPIO
      • 34 I/Os (15 IO x 2ea, 4 IO x 1ea)
    • Debug mode
      • Serial Wire Debug (SWD)
    • Timer/PWM
      • 1 Watchdog (32-bit down-counter)
      • 4 Timers (32-bit or 16-bit down-counter)
      • 8 PWMs (32-bit counter/timers with programmable 6-bit prescaler)
    • Communication Interfaces
      • 3 UART (2 UARTs with FIFO and Flow Control, 1 simple UART)
      • 2 SPI
      • 2 I2C (Master/Slave, Fast-mode (400 kbps))
    • Crypto
      • 1 RNG (Random Number Generator): 32-bit random number
    • Package
      • 64 LQFP (7x7 mm)

    Details

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    Pin Assignment

    Pin Layout

    20170718_w7500p_pinout

    Pin Description

    PinNameDescription
    1PC_08PWM0/CAP0/GPIO3_8/SCL0/AIN7
    2PC_09PWM1/CAP1/GPIO3_9/SDA0/AIN6
    3PC_10U_TXD2/GPIO3_10/PWM2/CAP2/AIN5
    4PC_11U_RXD2/GPIO3_11/PWM3/CAP3/AIN4
    5PC_12AIN3/GPIO3_12/SSEL0
    6PC_13AIN2/GPIO3_13/SCLK0
    7PC_14AIN1/GPIO14/MISO0
    8PC_15AIN0/GPIO3_15/MOSI0
    9GNDGROUND
    10VDDDigital Power Input: 3.3v
    11PC_06GPIO3_6/U_TXD2 (RS232/485 selection pin)
    12TESTTEST
    13REGINRegister Power Input
    14LED0LED0 and PHY Address[0]
    15DUP/PB_06GPIO2_6/DUP
    16GNDGROUND
    17LED_3LED3 and PHY Address[3]
    18VDD_IODigital Power Input: 3.3v for I/O power supply
    19PA_05SSEL0/GPIO1_5/SCL1/PWM2/CAP2
    20PA_06SCLK0/GPIO1_6/SDA1/PWM3/CAP3
    21PA_07MISO0/GPIO1_7/U_CTS1/PWM4/CAP4
    22PA_08MOSI0/GPIO1_8/U_RTS1/PWM5/CAP5
    23PA_09SCL0/GPIO1_9/U_TXD1/PWM6/CAP6
    24PA_10SDA0/GPIO1_10/U_RXD1/PWM7/CAP7
    25VSS_IOGROUND
    26RSTNExternal RESET
    27PA_00GPIO1_0/PWM6/CAP6
    28PA_01GPIO1_1/PWM7/CAP7
    29PA_02GPIO1_2/CLKOUT
    30PA_03SWCLK/GPIO1_3
    31PA_04SWDIO/GPIO1_4
    32ISETBandgap Circuit Resister: This pin should be connected to GND via a 6.19KΩ (1%) resistor to define the standard current of the internal citcuit
    33GND_1VGROUND
    34,35MDI_RN/MDI_RPReceive Input Pair: Differential Pair shared by 100Base-TX and 10Base-T modes
    36REGOUTRegister Power Output: This is a regulator power output. A 10uF and 0.1uF should be connected to this pin to filter the power noise
    37,38MDI_TN/MDI_TPTransmit Output Pair: Differential pair shared by 100Base-TX and 10Base-T modes. When configured as 100Base-TX, output is an MLT-3 encoded waveform. When configured as 10Base-T, the output is Manchester code
    39GNDGROUND
    40AVDDAnaloge Power input: 3.3V
    41PA_11U_CTS0/GPIO1_11/SSEL1
    42PA_12U_RTS0/GPIO1_12/SCLK1
    43PA_13U_TXD0/GPIO1_13/MISO1
    44PA_14U_RXD0/GPIO1_14/MOSI1
    45PB_00SSEL1/GPIO2_0/U_CTS0
    46PB_01SCLK1/GPIO2_1/U_RTS0
    47PB_02MISO1/GPIO2_2/U_TXD0
    48PB_03MOSI1/GPIO2_3/U_RXD0
    49GNDGROUND
    50XI25MHz Crystal Input: Connects to crystal to provide the 25MHz crystal input. If a 25MHz oscillator is used, connect XI to the oscillator's output. If a 50MHz clock is applied to pin7 TXCLK/50M_CLKI, XI must be connected to GND ot AGND33
    51XO25MHz Crystal Output: Connects to crystal to provide the 25MHz output. It must be left open when XI is driven with an external 25MHz oscillator
    52BOOTBOOT
    53PC_00U_CTS1/GPIO0/PWM0/CAP0
    54PC_01U_RTS1/GPIO3_1/PWM1/CAP1
    55PC_02U_TXD1/GPIO3_2/PWM2/CAP2
    56PC_03U_RXD1/GPIO3_3/PWM3/CAP3
    57PC_04SCL1/GPIO3_4/PWM4/CAP4
    58PC_05SDA1/GPIO3_5/PWM5/CAP5
    61VDDDigital Power Input: 3.3V
    62GNDGROUND
    63XTAL_INOscillator Input
    64XTAL_OUTOscillator Output

    - + \ No newline at end of file diff --git a/Product/iMCU/W7500P/power-supply.html b/Product/iMCU/W7500P/power-supply.html index 404074af104..3a256913565 100644 --- a/Product/iMCU/W7500P/power-supply.html +++ b/Product/iMCU/W7500P/power-supply.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ Both are almost the same except the clock gated peripherals kinds.

    ModeEntryWakeupEffect-on-clocks
    Sleep modeDEEPSLEEP = 0
    Enable WFI
    Any interruptCPU Clock OFF
    APB Bus Clock ON
    AHB Bus Clock ON
    Memory Clock ON
    DEEPSLEEP = 0
    Enable WFE
    Wakeup event
    Deep Sleep modeDEEPSLEEP = 1
    Enable WFI
    Any interruptCPU Clock OFF
    APB Bus Clock OFF
    AHB Bus Clock OFF
    Memory Clock OFF
    DEEPSLEEP = 1
    Enable WFE
    Wakeup event

    Peripheral clock gating

    In Run mode, individual clocks can be stopped at any time to reduce power. Peripheral clock gating is controlled by the CRG block. Below is the list of clocks which can be gating in CRG block.

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    System and Memory overview

    System architecture

    Main system consists of:

    • Ethernet:
      • IP101G
    • Two masters:
      • Cortex-M0 core
      • uDMAC(PL230, 6 channels)
    • Ten slaves
      • Internal BOOT ROM
      • Internal SRAM
      • Internal Flash Memory
      • Two AHB2APB bridge which connects all APB peripherals
      • Four AHB dedicated to 16-bit GPIOs
      • TCP/IP Hardware core

    w7500p_system_architecture

    AHB-Lite BUS

    • This bus connects the two masters (Cortex-M0 and uDMAC) and ten AHB slaves.

    Two APB BUSs

    • These buses connect Seventeen APB peripherals (Watchdog, two dual timers, pwm, two UARTs, simple UART, two I2Cs, two SSPs, random number generator, real time clock, 12bits analog digital converter, clock controller, IO configuration, PAD MUX controller)

    Memory organization

    Program memory, data memory, registers and I/O ports are organized within the same linear 4-Gbyte address space. The bytes are coded in memory in Little Endian format. The lowest numbered byte in a word is considered the word’s least significant byte and the highest numbered byte the most significant.

    Memory map

    w7500_memory_map

    System Configuration Controller (SYSCFG)

    Main purposes of the system configuration controller are the following

    • Control of the memory remap feature
    • The ability to enable an automatic reset if the system locks up
    • Information about the cause of the last reset
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    ioModule

    Overview

    WIZnet Network IO module includes an iEthernet chip & MAG-JACK (RJ45 with X’FMR). As no effort is required to interface iEthernet chip and Transformer, Network module is the ideal option for users who want to develop their Internet enabling system rapidly.


    Product Family

    W5100S-ioW5500-ioW6100-io
    ImageW5100S-ioW5500-ioW6100-io
    Embedded BlockW5100S, No MAG JackW5500, No MAG JackW6100, No MAG Jack
    Host InterfaceSPISPISPI
    HW Socket488
    Auto MDIXYesNoYes
    Pin HeaderTwo 1x7(2.54mm)
    One 1x6(2.54mm)
    (Just soldering point.
    Not include pin header)
    Two 1x7(2.54mm)
    One 1x6(2.54mm)
    (Just soldering point.
    Not include pin header)
    Two 1x7(2.54mm)
    One 1x6(2.54mm)
    (Just soldering point.
    Not include pin header)
    Dimension (mm)24 x 20 x 2.624 x 20 x 2.624 x 20 x 2.6
    Operation Temp (℃)-40..85-40..85-40..85
    MAC AddressNoNoNo
    WIZ610ioWIZ610mjWIZ810SioWIZ810SMJWIZ850ioWIZ550ioWIZ830MJ
    ImageWIZ610ioWIZ610MJWIZ810SioWIZ810SioWIZ850io
    Embedded BlockW6100, MAG JackW6100, MAG JackW5100S, MAG JackW5100S, MAG JackW5500, MAG JackW5500, MAG JackW5300, MAG Jack
    Host InterfaceSPISPI, 8bit busSPISPISPISPI8/16bit Bus
    HW Socket8844888
    Auto MDIXYesYesYesYesNoNoYes
    Pin HeaderTwo 1x6Two 1x6Two 1x6Two 1x10Two 1x61x8, 1x6Two 2x14
    Dimension (mm)23 x 25 x 23.525 x 52 x 2323 x 25 x 23.525 x 52 x 2323 x 25 x 1854 x 26 x 2453.3x34x19.5
    Operation Temp (℃)-40..85-40..85-40..85-40..85-40..85-40..85-40..85
    MAC AddressNoNoNoNoNoYesNo
    WIZ810MJWIZ811MJWIZ812MJNM7010B+
    Not recommended
    for new design
    WIZ820io
    Not recommended
    for new design
    ImageWIZ810MJWIZ811MJWIZ812MJNM71B+WIZ820io
    Embedded blockW5100, MAG JackW5100, MAG JackW5100, MAG JackW3150A+, PHY, MAG JackW5200, MAG Jack
    Host Interface8bit Bus, SPI8bit Bus, SPI8bit Bus, SPI8bit Bus, SPISPI
    HW Socket44448
    Auto MDIXYesYesYesYesYes
    Pin HeaderTwo 2x14Two 2x10Two 2x10Two 2x14Two 1x6
    Pin Pitch2mm2.54mm2.5mm2mm2mm
    Dimension (mm)52x25x2155.5x25x23.555.5x25x23.552x25x2123 x 25 x 18
    Operation Temp (℃)-40 .. 85-40 .. 85-40 .. 85-40 .. 85-40 .. 85
    MAC AddressNoNoNoNoNo

    WIZ81xMJ Comparision Table


    - + \ No newline at end of file diff --git a/Product/ioModule/W5100S-io.html b/Product/ioModule/W5100S-io.html index 7df53be3eb1..6b347465f55 100644 --- a/Product/ioModule/W5100S-io.html +++ b/Product/ioModule/W5100S-io.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ to the W5100S Datasheet.

    W5100S-io


    Hardware Specification

    W5100S-io

    Pin Out

    Pin Description

    Pin No.Pin TypePin NameDescription
    J11IRX_PRX_P
    :::2IRX_NRX_N
    :::3PRCTRX Center Tap
    This pin should be connect with external pulse transformer's RCT pin
    :::4PTCTTX Center Tap
    This pin should be connect with external pulse transformer's TCT pin
    :::5OTX_PTX_P
    :::6OTX_NTX_N
    Pin No.Pin TypePin NameDescription
    J21PGNDGround
    :::2PGNDGround
    :::3IMOSIMaster Out Slave In
    This pin is used for SPI MOSI signal pin
    :::4ISCLKSPI clock input
    :::5ICSnChip select input
    :::6OINTnInterrupt output
    Low: Interrupt asserted from W5100S
    High: No interrupt
    :::7OLINKLINK status output
    Low : Link
    High : Un Link
    Pin No.Pin TypePin NameDescription
    J31PGNDGround
    :::2P3.3VPower : 3.3V power supply
    :::3P3.3VPower : 3.3V power supply
    :::4-NCNot Connect
    :::5IRSTnReset : Low activity
    Hold at least 500us after asserted to LOW and keep HIGH until next Reset needed.
    :::6OMISOSPI Master In Slave Out
    This pin is used for SPI MISO signal pin
    :::7OACTnActive LED
    Low: Carrier sense from the active PMD
    High: No carrier sense
    -----

    Characteristic

    DC Characteristic

    SymbolParameterPinsMinTypMaxUnit
    VDDSupply voltage3.3V2.973.33.63V
    VILHigh level input voltageALL2.05.5V
    VIHLow level input voltageALL-0.30.8V
    VOLLow level output voltageALL0.4V
    VOHHigh level output voltageALL2.4V
    LOLLow level output CurrentALL8.613.918.9mA
    LOHHigh level output CurrentALL12.526.947.1mA
    IDDSupply Current
    (Normal operation mode)
    3.3V132mA
    LOHSupply Current
    (Power Down mode)
    3.3V13mA

    Power Dissipation

    ConditionMinTypMaxUnit
    100M Link-93110mA
    10M Link-93210mA
    Un-Link (Auto-negotiation mode)-43170mA
    Power Down mode-1020mA

    SPI Operations

    As W5100S-io consists of W5100S and others, SPI operation of W5100S-io follows one of W5100S. For more information about SPI operation of W5100S-io, please refer to W5100S Datasheet.


    Schematic & Artwork

    Module

    Reference Schematic


    Part list


    Dimension

    - + \ No newline at end of file diff --git a/Product/ioModule/W5500-io.html b/Product/ioModule/W5500-io.html index 848e2976b3c..e4d0ed7f012 100644 --- a/Product/ioModule/W5500-io.html +++ b/Product/ioModule/W5500-io.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ to the W5500 Datasheet.

    W5500-io


    Hardware Specification

    W5500-io

    Pin Out

    Pin Description

    Pin No.Pin TypePin NameDescription
    J11IRX_PRX_P
    :::2IRX_NRX_N
    :::3PRCTRX Center Tap
    This pin should be connect with external pulse transformer's RCT pin
    :::4PTCTTX Center Tap
    This pin should be connect with external pulse transformer's TCT pin
    :::5OTX_PTX_P
    :::6OTX_NTX_N
    Pin No.Pin TypePin NameDescription
    J21PGNDGround
    :::2PGNDGround
    :::3IMOSIMaster Out Slave In
    This pin is used for SPI MOSI signal pin
    :::4ISCLKSPI clock input
    :::5ICSnChip select input
    :::6OINTnInterrupt output
    Low: Interrupt asserted from W5500
    High: No interrupt
    :::7OLINKLINK status output
    Low : Link
    High : Un Link
    Pin No.Pin TypePin NameDescription
    J31PGNDGround
    :::2P3.3VPower : 3.3V power supply
    :::3P3.3VPower : 3.3V power supply
    :::4-NCNot Connect
    :::5IRSTnReset : Low activity
    Hold at least 500us after asserted to LOW and keep HIGH until next Reset needed.
    :::6OMISOSPI Master In Slave Out
    This pin is used for SPI MISO signal pin
    :::7OACTnActive LED
    Low: Carrier sense from the active PMD
    High: No carrier sense
    -----

    Characteristic

    DC Characteristic

    SymbolParameterPinsMinTypMaxUnit
    VDDSupply voltage3.3V2.973.33.63V
    VILHigh level input voltageALL2.05.5V
    VIHLow level input voltageALL-0.30.8V
    VOLLow level output voltageALL0.4V
    VOHHigh level output voltageALL2.4V
    LOLLow level output CurrentALL8.613.918.9mA
    LOHHigh level output CurrentALL12.526.947.1mA
    IDDSupply Current
    (Normal operation mode)
    3.3V132mA
    LOHSupply Current
    (Power Down mode)
    3.3V13mA

    Power Dissipation

    ConditionMinTypMaxUnit
    100M Link-128-mA
    10M Link-75-mA
    Un-Link (Auto-negotiation mode)-65-mA
    100M Transmitting-132-mA
    10M Transmitting-79-mA
    Power Down mode-13-mA

    SPI Operations

    As W5500-io consists of W5500 and others, SPI operation of W5500-io follows one of W5500. For more information about SPI operation of W5500-io, please refer to W5500 Datasheet.


    Schematic & Artwork

    Module

    Reference Schematic


    Part list


    Dimension

    - + \ No newline at end of file diff --git a/Product/ioModule/W6100-io.html b/Product/ioModule/W6100-io.html index 29ea02c7dcb..04c3109f80b 100644 --- a/Product/ioModule/W6100-io.html +++ b/Product/ioModule/W6100-io.html @@ -15,7 +15,7 @@ - + @@ -29,7 +29,7 @@ to the W6100 Datasheet.


    Hardware Specification

    W5500-io

    Pin Out

    Pin Description

    Pin No.Pin TypePin NameDescription
    J11IRX_PRX_P
    :::2IRX_NRX_N
    :::3PRCTRX Center Tap
    This pin should be connect with external pulse transformer's RCT pin
    :::4PTCTTX Center Tap
    This pin should be connect with external pulse transformer's TCT pin
    :::5OTX_PTX_P
    :::6OTX_NTX_N
    Pin No.Pin TypePin NameDescription
    J21PGNDGround
    :::2PGNDGround
    :::3IMOSIMaster Out Slave In
    This pin is used for SPI MOSI signal pin
    :::4ISCLKSPI clock input
    :::5ICSnChip select input
    :::6OINTnInterrupt output
    Low: Interrupt asserted from W6100
    High: No interrupt
    :::7OLINKLINK status output
    Low : Link
    High : Un Link
    Pin No.Pin TypePin NameDescription
    J31PGNDGround
    :::2P3.3VPower : 3.3V power supply
    :::3P3.3VPower : 3.3V power supply
    :::4-NCNot Connect
    :::5IRSTnReset : Low activity
    Hold at least 500us after asserted to LOW and keep HIGH until next Reset needed.
    :::6OMISOSPI Master In Slave Out
    This pin is used for SPI MISO signal pin
    :::7OACTnActive LED
    Low: Carrier sense from the active PMD
    High: No carrier sense
    -----

    Characteristic

    DC Characteristic

    SymbolParameterPinsMinTypMaxUnit
    VDDSupply voltage3.3V2.973.33.63V
    VILHigh level input voltageALL2.05.5V
    VIHLow level input voltageALL-0.30.8V
    VOLLow level output voltageALL0.4V
    VOHHigh level output voltageALL2.4V
    LOLLow level output CurrentALL8.613.918.9mA
    LOHHigh level output CurrentALL12.526.947.1mA
    IDDSupply Current
    (Normal operation mode)
    3.3V132mA
    LOHSupply Current
    (Power Down mode)
    3.3V13mA

    Power Dissipation

    ConditionMinTypMaxUnit
    100M Link-98115mA
    10M Link-112265mA
    Un-Link (Auto-negotiation mode)-50199mA
    Power Down mode-1420mA

    SPI Operations

    As W6100-io consists of W6100 and others, SPI operation of W6100-io follows one of W6100. For more information about SPI operation of W6100-io, please refer to W6100 Datasheet.


    Schematic & Artwork

    Module

    Reference Schematic


    Part list


    Dimension

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    Skip to main content

    NM7010B+

    caution

    NM7010B+ is not recommended for new design. W5200 chip is not supported by ioLibrary.

    Technical support for this product has officially ended.

    If there are any questions, please use our Forum or contact us.

    Overview

    NM7010B+ is the network module that includes W3150A+ (TCP/IP hardwired chip), Ethernet PHY (RTL8201CP) & MAG-JACK (RJ45 with X’FMR) with other glue logics. It can be used as a component and no effort is required to interface W3150A+ and PHY chip. The NM7010B+ is an ideal option for users who want to develop their Internet enabling systems rapidly.

    Features

    • Plug-in Network Module
    • Usable without H/W design for W3150A+, PHY, transformer & RJ-45
    • Fast evaluation for W3150A+ & MCU in the target board
    • Support BUS & SPI for MCU interface
    • Support 4 hardware sockets
    • Operation Temperature : 0 ~ 70℃
    • 3.3V Internal Operation, 5V Tolerant I/Os
    • Power consumption : Max 160mA (3.3V)

    Block Diagram

    Download

    Datasheet

    NM7010B+ Datasheet v1.3

    Last Update: 2013.06.08

    Hardware Guide

    NM7010B+ Hardware Guide
    • NM7010B+ Reference Schematic (V 1.0)
    • NM7010B+ Part List (V1.0)

    AX1

    AX1 Loopback Test Program, Install version

    Download
    - + \ No newline at end of file diff --git a/Product/ioModule/wiz550io.html b/Product/ioModule/wiz550io.html index 7368ae4becf..dae27f42469 100644 --- a/Product/ioModule/wiz550io.html +++ b/Product/ioModule/wiz550io.html @@ -15,7 +15,7 @@ - + @@ -40,7 +40,7 @@ WIZ550io, please refer to W5500 Datasheet.

    Timing diagram

    SymbolDescriptionMinMax
    TRCReset Cycle Time500us-
    TPLInternal Auto Configuration Time-50ms

    SPI Timing

    SymbolDescriptionMinMaxUnits
    FsckSCLK Clock Frequency-80MHz
    TWHSCLK High duration6-ns
    TWLSCLK Low duration6-ns
    TCSnSCS High duration5-ns

    Block Diagram & Schematic

    Schematic

    PCB

    Partlist

    Dimension

    WIZ550io Ver1.0

    WIZ550io Ver1.1

    54mm(W) x 26mm(L) x 24mm(H) (±0.5)

    WIZ550io Ver1.2

    54mm(W) x 26mm(L) x 24mm(H) (±0.5)

    Same to Ver1.1 and Ver1.2 PCB all size and hole size. There is little change in all parts placement.

    * TOP

    * BOTTOM

    * Drill

    - + \ No newline at end of file diff --git a/Product/ioModule/wiz610io.html b/Product/ioModule/wiz610io.html index 3dc948f744d..867bbe7d239 100644 --- a/Product/ioModule/wiz610io.html +++ b/Product/ioModule/wiz610io.html @@ -15,7 +15,7 @@ - + @@ -24,7 +24,7 @@ W6100. It can be used as a component and no effort is required to interface W6100 and Transformer. The best advantage of the WIZ610io is that it supports IPv6. The WIZ610io is an ideal option for users who want to develop their Internet enabling systems rapidly.

    WIZ610io
    Figure: WIZ610io

    Feature

    Getting Started


    Datasheet


    Technical Reference

    Schematic & Part list & Gerber


    Ethernet Library


    - + \ No newline at end of file diff --git a/Product/ioModule/wiz610mj.html b/Product/ioModule/wiz610mj.html index 2419281d68b..3d44fa92878 100644 --- a/Product/ioModule/wiz610mj.html +++ b/Product/ioModule/wiz610mj.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ Auto-configuration& Network Monitoring
  • Support Ethernet Power down mode & Main Clock Switching for power save
  • Support Wake on LAN over UDP
  • Supports high speed SPI Interface (SPI mode 0/3), Parallel System Bus with 2 Address signal & 8bit Data
  • Internal 32Kbytes Memory for TX/ RX Buffers
  • 10BaseT/10BaseTe/100BaseTX Ethernet PHY Integrated
  • Support Auto Negotiation (Full and half duplex, 10 and 100-based )
  • Support Auto-MDIX only when Auto-Negotiation mode
  • Not support IP Fragmentation
  • 3.3V operation with 5V I/O signal tolerance
  • Interfaces with two 2.54mm pitch 1 x 10 header pin
  • Temperature : -40 ~ 85℃(Operation)
  • Getting Started


    Datasheet


    Technical Reference

    Schematic & Part list & Gerber


    Ethernet Library


    - + \ No newline at end of file diff --git a/Product/ioModule/wiz810mj.html b/Product/ioModule/wiz810mj.html index 18d20023e1a..4ce24567f33 100644 --- a/Product/ioModule/wiz810mj.html +++ b/Product/ioModule/wiz810mj.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ810MJ

    Overview

    WIZ810MJ is the network module that includes W5100 (TCP/IP, MAC & PHY) & MAG-JACK (RJ45 with X’FMR) with other glue logics. It can be used as a component and no effort is required to interface W5100 & MAG Jack. The WIZ810MJ is an ideal option for users who want to develop their Internet enabling systems rapidly.

    Features

    • Plug-in Network Module
    • Usable without H/W design for W5100, transformer & RJ-45
    • Fast evaluation for W5100 & MCU in the target board
    • Support MCU BUS & high speed SPI interface
    • Support 4 hardware sockets
    • Operation Temperature : -40 ~ 85℃
    • H/W design feature : refer the comparison table in the below

    Block Diagram

    Comparison Table

    Download

    Datasheet

    WIZ810MJ Datasheet v1.3

    Last Update: 2013.06.08

    Hardware Guide

    WIZ810MJ, WIZ811MJ, WIZ812MJ Hardware Guide
    • Reference Schematic (V 1.2)
    • Part List (V1.2)

    AX1

    AX1 Loopback Test Program, Install version

    Download
    - + \ No newline at end of file diff --git a/Product/ioModule/wiz810sio.html b/Product/ioModule/wiz810sio.html index 2ac0fa37b77..fafcea27cfe 100644 --- a/Product/ioModule/wiz810sio.html +++ b/Product/ioModule/wiz810sio.html @@ -15,7 +15,7 @@ - + @@ -25,7 +25,7 @@ required to interface W5100S and Transformer. The WIZ810Sio is an ideal option for users who want to develop their Internet enabling systems rapidly.

    WIZ810Sio
    Figure: WIZ810Sio

    Feature

    Getting Started


    Datasheet


    Technical Reference

    Schematic & Part list & Gerber


    Ethernet Library


    - + \ No newline at end of file diff --git a/Product/ioModule/wiz810smj.html b/Product/ioModule/wiz810smj.html index d72130a8b87..4dd8468041d 100644 --- a/Product/ioModule/wiz810smj.html +++ b/Product/ioModule/wiz810smj.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    WIZ810SMJ

    Overview

    WIZ810SMJ is the network module that includes W5100S (TCP/IP hardwired chip, include PHY), MAG-JACK (RJ45 with X’FMR) with other glue logics. It can be used as a component and no effort is required to interface W5100S and Transformer. The WIZ810SMJ is an ideal option for users who want to develop their Internet enabling systems rapidly.

    WIZ810Sio
    Figure: WIZ810SMJ

    Feature

    • Support Hardwired Internet protocols
      • : TCP, UDP, WOL over UDP, ICMP, IGMPv1/v2, IPv4, ARP, PPPoE
    • Support 4 independent SOCKETs simultaneously
    • Supports half/full duplex operation
    • Support SOCKET-less command
      • : ARP-Request, PING-Request
    • Support Ethernet Power down mode & Main Clock gating for power save
    • Support Wake on LAN over UDP
    • Supports high speed SPI Interface (SPI mode 0/3), Parallel System Bus with 2 Address signal & 8bit Data
    • Internal 16Kbytes Memory for TX/ RX Buffers
    • 10BaseT/100BaseTX Ethernet PHY Integrated
    • Support Auto Negotiation (Full and half duplex, 10 and 100-based )
    • Supports Wake On LAN
    • Support Auto-MDIX only when Auto-Negotiation mode
    • 3.3V operation with 5V I/O signal tolerance
    • Interfaces with two 2.54mm pitch 1 x 10 header pin
    • Temperature : -40 ~ 85℃(Operation)

    Getting Started

    • Coming soon

    Datasheet


    Technical Reference

    Schematic & Part list & Gerber


    Ethernet Library


    - + \ No newline at end of file diff --git a/Product/ioModule/wiz811mj.html b/Product/ioModule/wiz811mj.html index afcda58f8fe..ebf515ad0f5 100644 --- a/Product/ioModule/wiz811mj.html +++ b/Product/ioModule/wiz811mj.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ811MJ

    Overview

    WIZ811MJ is the network module that includes W5100 (TCP/IP, MAC & PHY) & MAG-JACK (RJ45 with X’FMR) with other glue logics. It can be used as a component and no effort is required to interface W5100 & MAG Jack. The WIZ811MJ is an ideal option for users who want to develop their Internet enabling systems rapidly.

    Features

    • Plug-in Network Module
    • Usable without H/W design for W5100, transformer & RJ-45
    • Fast evaluation for W5100 & MCU in the target board
    • Support MCU BUS & high speed SPI interface
    • Support 4 hardware sockets
    • Operation Temperature : -40 ~ 85℃
    • H/W design feature : refer the comparison table in the below

    Block Diagram

    Comparison Table

    Comparison Table (WIZ810MJ, WIZ811MJ, WIZ812MJ)

    Download

    Datasheet

    WIZ811MJ Datasheet v1.1

    Last Update: 2013.06.08

    Hardware Guide

    WIZ810MJ, WIZ811MJ, WIZ812MJ Hardware Guide
    • Reference Schematic (V 1.2)
    • Part List (V1.2)

    AX1

    AX1 Loopback Test Program, Install version

    Download
    - + \ No newline at end of file diff --git a/Product/ioModule/wiz812mj.html b/Product/ioModule/wiz812mj.html index c1ffabd84c3..bb9b9e8e1cb 100644 --- a/Product/ioModule/wiz812mj.html +++ b/Product/ioModule/wiz812mj.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ812MJ

    Overview

    WIZ812MJ is the network module that includes W5100 (TCP/IP, MAC & PHY) & MAG-JACK (RJ45 with X’FMR) with other glue logics. It can be used as a component and no effort is required to interface W5100 & MAG Jack. The WIZ812MJ is an ideal option for users who want to develop their Internet enabling systems rapidly.

    Features

    • Plug-in Network Module
    • Usable without H/W design for W5100, transformer & RJ-45
    • Fast evaluation for W5100 & MCU in the target board
    • Support MCU BUS & high speed SPI interface
    • Support 4 hardware sockets
    • Operation Temperature : -40 ~ 85℃
    • H/W design feature : refer the comparison table in the below

    Block Diagram

    Comparison Table

    Comparison Table (WIZ810MJ, WIZ811MJ, WIZ812MJ)

    Download

    Datasheet

    WIZ812MJ Datasheet v1.1

    Last Update: 2013.06.08

    Hardware Guide

    WIZ810MJ, WIZ811MJ, WIZ812MJ Hardware Guide
    • Reference Schematic (V 1.2)
    • Part List (V1.2)

    AX1

    AX1 Loopback Test Program, Install version

    Download
    - + \ No newline at end of file diff --git a/Product/ioModule/wiz820io.html b/Product/ioModule/wiz820io.html index b1ce3875d39..26e61184e23 100644 --- a/Product/ioModule/wiz820io.html +++ b/Product/ioModule/wiz820io.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ820io

    caution

    WIZ820io is not recommended for new design. W5200 chip is not supported by ioLibrary.

    Technical support for this product has officially ended.

    If there are any questions, please use our Forum or contact us.

    WIZ820io

    Overview

    WIZ820io is the compact-sized network module that includes W5200 (TCP/IP & Ethernet MAC & PHY) & MAG-JACK (RJ45 with X’FMR) with other glue logics. It can be used as a component and no effort is required to interface W5200 and MAG Jack. The WIZ820io is an ideal option for users who want to develop their Internet enabling systems rapidly.

    Features

    • Plug-in Network Module
    • Usable without H/W design for W5200, transformer & RJ-45
    • Fast evaluation for W5200 & MCU in the target board
    • Support high speed SPI interface
    • Support 8 hardware sockets
    • Support power down mode and Wake-on-LAN function
    • Very small form factor (PCB size : 23mm x 25mm)

    Pin Assignment

    WIZ820io

    Download

    Datasheet

    WIZ820io Datasheet v1.0

    Last Update: 2013.06.08

    Hardware Guide

    WIZ820io Hardware Guide
    • WIZ820io Schematic (V 1.0.5)
    • WIZ820io Part List (V1.0)

    AX1

    AX1 Loopback Test Program, Install version

    Download
    - + \ No newline at end of file diff --git a/Product/ioModule/wiz830mj.html b/Product/ioModule/wiz830mj.html index 7a9abf02977..71789dbc23c 100644 --- a/Product/ioModule/wiz830mj.html +++ b/Product/ioModule/wiz830mj.html @@ -15,13 +15,13 @@ - +
    Skip to main content

    WIZ830MJ

    Overview

    WIZ830MJ is the network module that includes W5300 (TCP/IP & Ethernet PHY) & MAG-JACK (RJ45 with X’FMR) with other glue logics. It can be used as a component and no effort is required to interface W5300 and MAG Jack. The WIZ830MJ is an ideal option for users who want to develop their Internet enabling systems with high network performance.

    Features

    • Plug-in Network Module
    • Usable without H/W design for W5300, transformer & RJ-45
    • Fast evaluation for W5300 & MCU in the target board
    • Support MCU BUS interface (16/8 bit data bus width)
    • Support 8 hardware sockets
    • Two PCB through-hole (ø 3.00mm)
    • Operation Temperature : -40 ~ 85 ℃

    Block Diagram

    Download

    Datasheet

    WIZ830MJ Datasheet v1.3

    Last Update: 2013.01.08

    Hardware Guide

    WIZ830MJ Hardware Guide
    • WIZ830MJ Schematic (V 1.1)
    • WIZ830MJ Part List (V1.1)

    AX1

    AX1 Loopback Test Program, Install version

    Download
    - + \ No newline at end of file diff --git a/Product/ioModule/wiz850io.html b/Product/ioModule/wiz850io.html index a4be57abbdb..4c6350b380a 100644 --- a/Product/ioModule/wiz850io.html +++ b/Product/ioModule/wiz850io.html @@ -15,7 +15,7 @@ - + @@ -31,7 +31,7 @@ communicate with WIZ850io. (Refer to 5. Timing Diagram)


    Characteristic

    DC Characteristic

    SymbolParameterPinsMinTypMaxUnit
    VDDSupply voltage3.3V2.973.33.63V
    VILHigh level input voltageALL2.05.5V
    VIHLow level input voltageALL-0.30.8V
    VOLLow level output voltageALL0.4V
    VOHHigh level output voltageALL2.4V
    LOLLow level output CurrentALL8.613.918.9mA
    LOHHigh level output CurrentALL12.526.947.1mA
    IDDSupply Current
    (Normal operation mode)
    3.3V132mA
    LOHSupply Current
    (Power Down mode)
    3.3V13mA

    Power Dissipation

    ConditionMinTypMaxUnit
    100M Link-128-mA
    10M Link-75-mA
    Un-Link (Auto-negotiation mode)-65-mA
    100M Transmitting-132-mA
    10M Transmitting-79-mA
    Power Down mode-13-mA

    SPI Operations

    As WIZ850io consists of W5500 and others, SPI operation of WIZ850io follows one of W5500. For more information about SPI operation of WIZ850io, please refer to W5500 Datasheet.


    Timing Diagram

    Reset Timing

    WIZ850io Reset Timing

    SymbolDescriptionMinMax
    TRCReset Cycle Time500us-
    TPLInternal Auto Configuration Time-50ms

    SPI Timing

    WIZ850io SPI Timing

    SymbolDescriptionMinMaxUnits
    FsckSCLK Clock Frequency-80MHz
    TWHSCLK High duration6-ns
    TWLSCLK Low duration6-ns
    TCSnSCS High duration5-ns

    Schematic


    Dimension

    WIZ850io Dimension


    - + \ No newline at end of file diff --git a/VAR-Products-using-WIZnet/ble_to_ethernet.html b/VAR-Products-using-WIZnet/ble_to_ethernet.html index 1135b77335d..de4b7527a93 100644 --- a/VAR-Products-using-WIZnet/ble_to_ethernet.html +++ b/VAR-Products-using-WIZnet/ble_to_ethernet.html @@ -15,7 +15,7 @@ - + @@ -43,7 +43,7 @@ Serial Tab and open the Com port. One of the Hercules Port is set to 5000 in the TCP Server tab and click on the listen.

    Data Input

    Input from the WIZNET PCA10040 Terminal can see that is sent to the TCP Server.

    - + \ No newline at end of file diff --git a/VAR-Products-using-WIZnet/ethernet_shield.html b/VAR-Products-using-WIZnet/ethernet_shield.html index c92e1de05c2..2f486b87931 100644 --- a/VAR-Products-using-WIZnet/ethernet_shield.html +++ b/VAR-Products-using-WIZnet/ethernet_shield.html @@ -15,7 +15,7 @@ - + @@ -357,7 +357,7 @@ pin layout intact and allows another shield to be stacked on top. The most recent revision of the board exposes the 1.0 pinout on rev 3 of the Arduino UNO board.


    - + \ No newline at end of file diff --git a/VAR-Products-using-WIZnet/third_party.html b/VAR-Products-using-WIZnet/third_party.html index f8587535503..686fa64968e 100644 --- a/VAR-Products-using-WIZnet/third_party.html +++ b/VAR-Products-using-WIZnet/third_party.html @@ -15,7 +15,7 @@ - + @@ -166,7 +166,7 @@ needs water, it will post to let you know, and send its thanks when you show it love.

    This kits is based on the 🌎WIZnet 🌎WIZ811MJ > module.


    - + \ No newline at end of file diff --git a/VAR-Products-using-WIZnet/var_products_using_wiznet.html b/VAR-Products-using-WIZnet/var_products_using_wiznet.html index 9a80d10a412..3ec14dec94b 100644 --- a/VAR-Products-using-WIZnet/var_products_using_wiznet.html +++ b/VAR-Products-using-WIZnet/var_products_using_wiznet.html @@ -15,14 +15,14 @@ - +
    Skip to main content

    VAR Products using WIZnet

    The following is the list of open-source hardware projects that uses the WIZnet chip and modules.

    Ethernet Shield

    Arduino Compatible


    WiFi Shield

    using WizFi250:

    using WizFi210:

    using WizFi220:

    using WizFi610:


    3rd Party

    using W5500:

    using W5200:

    using W5100:

    WIZnet Module:


    - + \ No newline at end of file diff --git a/VAR-Products-using-WIZnet/w5500BoB_ESoPe.html b/VAR-Products-using-WIZnet/w5500BoB_ESoPe.html index d78ef2f2309..129866ed5a2 100644 --- a/VAR-Products-using-WIZnet/w5500BoB_ESoPe.html +++ b/VAR-Products-using-WIZnet/w5500BoB_ESoPe.html @@ -15,7 +15,7 @@ - + @@ -34,7 +34,7 @@ Blog is a nice explanation about how to connect RJ45 and make a short test setup.

    - + \ No newline at end of file diff --git a/VAR-Products-using-WIZnet/w5500CoB_ESoPe.html b/VAR-Products-using-WIZnet/w5500CoB_ESoPe.html index 96887da5678..173f76febf0 100644 --- a/VAR-Products-using-WIZnet/w5500CoB_ESoPe.html +++ b/VAR-Products-using-WIZnet/w5500CoB_ESoPe.html @@ -15,7 +15,7 @@ - + @@ -34,7 +34,7 @@ Blog is a nice explanation about how to connect RJ45 and make a short test setup.

    - + \ No newline at end of file diff --git a/VAR-Products-using-WIZnet/wi_fi_shield.html b/VAR-Products-using-WIZnet/wi_fi_shield.html index 3dcecefdd36..3729fe8750b 100644 --- a/VAR-Products-using-WIZnet/wi_fi_shield.html +++ b/VAR-Products-using-WIZnet/wi_fi_shield.html @@ -15,7 +15,7 @@ - + @@ -135,7 +135,7 @@ one of the most stable stacks in the market, without having to spend resources of the processor or microcontroller in communication tasks.

    The Arduino WiFi Shield comes with a complete library of functions for data transmitting and WiFi configuration module developed by MCI.


    - + \ No newline at end of file diff --git a/assets/js/c02d52e4.7b36effb.js b/assets/js/c02d52e4.7b36effb.js deleted file mode 100644 index e855a7399b2..00000000000 --- a/assets/js/c02d52e4.7b36effb.js +++ /dev/null @@ -1 +0,0 @@ -"use strict";(self.webpackChunkwiznet_document=self.webpackChunkwiznet_document||[]).push([[1244],{3905:(A,t,e)=>{e.d(t,{Zo:()=>l,kt:()=>b});var r=e(67294);function a(A,t,e){return t in A?Object.defineProperty(A,t,{value:e,enumerable:!0,configurable:!0,writable:!0}):A[t]=e,A}function s(A,t){var e=Object.keys(A);if(Object.getOwnPropertySymbols){var r=Object.getOwnPropertySymbols(A);t&&(r=r.filter((function(t){return Object.getOwnPropertyDescriptor(A,t).enumerable}))),e.push.apply(e,r)}return e}function n(A){for(var t=1;t=0||(a[e]=A[e]);return a}(A,t);if(Object.getOwnPropertySymbols){var s=Object.getOwnPropertySymbols(A);for(r=0;r=0||Object.prototype.propertyIsEnumerable.call(A,e)&&(a[e]=A[e])}return a}var o=r.createContext({}),u=function(A){var 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driver"),(0,a.kt)("p",null," Surf5 has UART to USB converter IC(CH340N) that need to install driver.\nyou can download driver ",(0,a.kt)("a",{href:"https://github.com/Wiznet/Hardware-Files-of-WIZnet/raw/master/01_iMCU/W7500P/Surf5/Doc/CH340N/Driver.ZIP"},"here")," or CH340 manufacturer's web\nCH340N's manufacture ",(0,a.kt)("a",{parentName:"p",href:"https://wch-ic.com/downloads/CH341SER_ZIP.html"},"link")),(0,a.kt)("a",{target:"_blank",href:e(82273).Z},(0,a.kt)("img",{src:e(82273).Z,alt:"Surf5"})),"After unzipping the downloaded ZIP file, you'll find a SETUP.EXE executable in the folder, which you'll need to run.",(0,a.kt)("a",{target:"_blank",href:e(43970).Z},(0,a.kt)("img",{src:e(43970).Z,alt:"Surf5"})),"When you run SETUP.EXE, the DriverSetup window appears, and you can select INSTALL to install the driver.",(0,a.kt)("h3",{id:"example-source-using-keil"},"Example Source Using Keil"),(0,a.kt)("ul",null,(0,a.kt)("li",{parentName:"ul"},(0,a.kt)("p",{parentName:"li"},(0,a.kt)("a",{parentName:"p",href:"/Product/iMCU/W7500/documents/appnote/how_to_install_KEIL"},"How to install KEIL uVision5"))),(0,a.kt)("li",{parentName:"ul"},(0,a.kt)("p",{parentName:"li"},(0,a.kt)("a",{parentName:"p",href:"/Product/iMCU/W7500/documents/appnote/how-to-make-keil-new-project-for-w7500"},"How to create KEIL uVision5 new project for W7500")),(0,a.kt)("h3",{parentName:"li",id:"example-source-using-vscode"},"Example Source Using VSCODE"))),(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"1. Software Download")),(0,a.kt)("p",null,"\u2022\tARM GCC Compiler"),(0,a.kt)("p",null,"\u2022\tCMake"),(0,a.kt)("p",null,"\u2022\tBuild Tools for Visual Studio 2019"),(0,a.kt)("p",null,"\u2022\tVisual Studio Code"),(0,a.kt)("p",null,"\u2022\tXpack Build Tools"),(0,a.kt)("p",null,"(1)\tInstall ARM GCC Compiler\n",(0,a.kt)("a",{parentName:"p",href:"https://developer.arm.com/downloads/-/gnu-rm"},"Download link")),(0,a.kt)("a",{target:"_blank",href:e(38666).Z},(0,a.kt)("img",{src:e(38666).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(90167).Z},(0,a.kt)("img",{src:e(90167).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(62949).Z},(0,a.kt)("img",{src:e(62949).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(78219).Z},(0,a.kt)("img",{src:e(78219).Z,alt:"Surf5"})),"(2) CMake [Download link](https://visualstudio.microsoft.com/downloads/#build-tools-for-visual-studio-2019)",(0,a.kt)("a",{target:"_blank",href:e(19537).Z},(0,a.kt)("img",{src:e(19537).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(699).Z},(0,a.kt)("img",{src:e(699).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(26552).Z},(0,a.kt)("img",{src:e(26552).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(4735).Z},(0,a.kt)("img",{src:e(4735).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(71825).Z},(0,a.kt)("img",{src:e(71825).Z,alt:"Surf5"})),(0,a.kt)("p",null,"(3)\tBuild Tools for Visual Studio 2019\n",(0,a.kt)("a",{parentName:"p",href:"https://visualstudio.microsoft.com/ko/downloads/"},"Download link")),(0,a.kt)("a",{target:"_blank",href:e(36412).Z},(0,a.kt)("img",{src:e(36412).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(74932).Z},(0,a.kt)("img",{src:e(74932).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(78233).Z},(0,a.kt)("img",{src:e(78233).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(95535).Z},(0,a.kt)("img",{src:e(95535).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(66108).Z},(0,a.kt)("img",{src:e(66108).Z,alt:"Surf5"})),(0,a.kt)("p",null,"(4)\tVisual Studio Code\n",(0,a.kt)("a",{parentName:"p",href:"https://visualstudio.microsoft.com/downloads/#build-tools-for-visual-studio-2019"},"Download link")),(0,a.kt)("a",{target:"_blank",href:e(14093).Z},(0,a.kt)("img",{src:e(14093).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(78871).Z},(0,a.kt)("img",{src:e(78871).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(52746).Z},(0,a.kt)("img",{src:e(52746).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(39917).Z},(0,a.kt)("img",{src:e(39917).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(75552).Z},(0,a.kt)("img",{src:e(75552).Z,alt:"Surf5"})),(0,a.kt)("p",null,"(5)\tXpack Build Tools\n",(0,a.kt)("a",{parentName:"p",href:"https://github.com/xpack-dev-tools/windows-build-tools-xpack/releases/"},"Download link")),(0,a.kt)("p",null,"Click \u201cDownload Now\u201d Button"),(0,a.kt)("a",{target:"_blank",href:e(98233).Z},(0,a.kt)("img",{src:e(98233).Z,alt:"Surf5"})),(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"2. Extract xpack-windows-build-tools-4.x.x.x")),(0,a.kt)("a",{target:"_blank",href:e(15722).Z},(0,a.kt)("img",{src:e(15722).Z,alt:"Surf5"})),"Extract the xpack-windows-build-tool-4.x.x.x.zip archive. Save the extracted folder to the recommended path below. **Recommended storage path for the xpack-windows-build-tools folder** : C:\\Program Files (x86)\\xpack-windows-build-tools-4.x.x.",(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"3. Create a New Workspace (Prevent Changes to Existing Settings)")),(0,a.kt)("p",null,"Create a new workspace. The reason for creating a new workspace is to prevent changes to the existing settings."),(0,a.kt)("a",{target:"_blank",href:e(57784).Z},(0,a.kt)("img",{src:e(57784).Z,alt:"Surf5"})),'First, select "File -> Add Folder to Workspace."',(0,a.kt)("a",{target:"_blank",href:e(73312).Z},(0,a.kt)("img",{src:e(73312).Z,alt:"Surf5"})),'Select the "W7500P" project folder as the target for the workspace, and then click the "Add" button. (The "W7500P" should be the top-level directory.)',(0,a.kt)("a",{target:"_blank",href:e(94713).Z},(0,a.kt)("img",{src:e(94713).Z,alt:"Surf5"})),'If you\'ve added the workspace with the W7500P folder path, then click on "File -> Save Workspace As..." again.',(0,a.kt)("a",{target:"_blank",href:e(52018).Z},(0,a.kt)("img",{src:e(52018).Z,alt:"Surf5"})),'Simply press "Save" with the same file name.',(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"4. Save the CMake Extension Settings for the stored workspace.")),(0,a.kt)("a",{target:"_blank",href:e(62969).Z},(0,a.kt)("img",{src:e(62969).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(31824).Z},(0,a.kt)("img",{src:e(31824).Z,alt:"Surf5"})),'In CMake Tools, go to the gear icon (settings) -> Extension Settings -> Navigate to the Workspace tab. In the top search bar, type "@ext:ms-vscode.cmake-tools" to search.',(0,a.kt)("a",{target:"_blank",href:e(75985).Z},(0,a.kt)("img",{src:e(75985).Z,alt:"Surf5"})),'In the options, press "Add Item" in the Configure Args section and add the following two definitions: CMAKE_MAKE_PROGRAM is the location of the make executable (inside the previously extracted xpack folder). ARM_TOOLCHAIN_DIR is the location of the GNU Arm compiler\'s executable files that you previously downloaded. For example, the author used: -DARM_TOOLCHAIN_DIR=C:/Program Files (x86)/GNU Arm Embedded Toolchain/10 2021.10/bin -DCMAKE_MAKE_PROGRAM=C:/Program Files (x86)/xpack-windows-build-tools-4.4.0-1/bin/make.exe Adjust the Configure Args to match your own file paths according to your setup.',(0,a.kt)("a",{target:"_blank",href:e(22479).Z},(0,a.kt)("img",{src:e(22479).Z,alt:"Surf5"})),'Once you have completed the path configuration, enter "Unix Makefiles" in the "CMake: Generator" field.',(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"5. Build Project in VS Code")),(0,a.kt)("a",{target:"_blank",href:e(33098).Z},(0,a.kt)("img",{src:e(33098).Z,alt:"Surf5"})),'Press the F1 key, and then click on "CMake: Select a Kit."',(0,a.kt)("a",{target:"_blank",href:e(98038).Z},(0,a.kt)("img",{src:e(98038).Z,alt:"Surf5"})),'Select "GCC Arm Embedded" to configure the kit.',(0,a.kt)("a",{target:"_blank",href:e(4141).Z},(0,a.kt)("img",{src:e(4141).Z,alt:"Surf5"})),'Click the "Build" button at the bottom or press F7 to start the build process.',(0,a.kt)("a",{target:"_blank",href:e(47113).Z},(0,a.kt)("img",{src:e(47113).Z,alt:"Surf5"})),"Once the build is completed, you will see a message like the one above in the OUTPUT window.",(0,a.kt)("a",{target:"_blank",href:e(44148).Z},(0,a.kt)("img",{src:e(44148).Z,alt:"Surf5"})),"You will also be able to confirm that the Build directory has been created. The project folder within the Build directory contains the generated bin files. You can save these bin files to the W7500 device and use the project.")}f.isMDXComponent=!0},82273:(A,t,e)=>{e.d(t,{Z:()=>r});const 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the downloaded ZIP file, you'll find a SETUP.EXE executable in the folder, which you'll need to run.",(0,a.kt)("a",{target:"_blank",href:e(43970).Z},(0,a.kt)("img",{src:e(43970).Z,alt:"Surf5"})),"When you run SETUP.EXE, the DriverSetup window appears, and you can select INSTALL to install the driver.",(0,a.kt)("h3",{id:"example-source-using-keil"},"Example Source Using Keil"),(0,a.kt)("ul",null,(0,a.kt)("li",{parentName:"ul"},(0,a.kt)("p",{parentName:"li"},(0,a.kt)("a",{parentName:"p",href:"/Product/iMCU/W7500/documents/appnote/how_to_install_KEIL"},"How to install KEIL uVision5"))),(0,a.kt)("li",{parentName:"ul"},(0,a.kt)("p",{parentName:"li"},(0,a.kt)("a",{parentName:"p",href:"/Product/iMCU/W7500/documents/appnote/how-to-make-keil-new-project-for-w7500"},"How to create KEIL uVision5 new project for W7500")),(0,a.kt)("h3",{parentName:"li",id:"example-source-using-vscode"},"Example Source Using VSCODE"))),(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"1. Software Download")),(0,a.kt)("p",null,"\u2022\tARM GCC Compiler"),(0,a.kt)("p",null,"\u2022\tCMake"),(0,a.kt)("p",null,"\u2022\tBuild Tools for Visual Studio 2019"),(0,a.kt)("p",null,"\u2022\tVisual Studio Code"),(0,a.kt)("p",null,"\u2022\tXpack Build Tools"),(0,a.kt)("p",null,"(1)\tInstall ARM GCC Compiler\n",(0,a.kt)("a",{parentName:"p",href:"https://developer.arm.com/downloads/-/gnu-rm"},"Download link")),(0,a.kt)("a",{target:"_blank",href:e(38666).Z},(0,a.kt)("img",{src:e(38666).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(90167).Z},(0,a.kt)("img",{src:e(90167).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(62949).Z},(0,a.kt)("img",{src:e(62949).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(78219).Z},(0,a.kt)("img",{src:e(78219).Z,alt:"Surf5"})),"(2) Install CMake [Download link](https://visualstudio.microsoft.com/downloads/#build-tools-for-visual-studio-2019)",(0,a.kt)("a",{target:"_blank",href:e(19537).Z},(0,a.kt)("img",{src:e(19537).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(699).Z},(0,a.kt)("img",{src:e(699).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(26552).Z},(0,a.kt)("img",{src:e(26552).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(4735).Z},(0,a.kt)("img",{src:e(4735).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(71825).Z},(0,a.kt)("img",{src:e(71825).Z,alt:"Surf5"})),(0,a.kt)("p",null,"(3)\tInstall Build Tools for Visual Studio 2019\n",(0,a.kt)("a",{parentName:"p",href:"https://visualstudio.microsoft.com/ko/downloads/"},"Download link")),(0,a.kt)("a",{target:"_blank",href:e(36412).Z},(0,a.kt)("img",{src:e(36412).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(74932).Z},(0,a.kt)("img",{src:e(74932).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(78233).Z},(0,a.kt)("img",{src:e(78233).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(95535).Z},(0,a.kt)("img",{src:e(95535).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(66108).Z},(0,a.kt)("img",{src:e(66108).Z,alt:"Surf5"})),(0,a.kt)("p",null,"(4)\tInstall Visual Studio Code\n",(0,a.kt)("a",{parentName:"p",href:"https://visualstudio.microsoft.com/downloads/#build-tools-for-visual-studio-2019"},"Download link")),(0,a.kt)("a",{target:"_blank",href:e(14093).Z},(0,a.kt)("img",{src:e(14093).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(78871).Z},(0,a.kt)("img",{src:e(78871).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(52746).Z},(0,a.kt)("img",{src:e(52746).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(39917).Z},(0,a.kt)("img",{src:e(39917).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(75552).Z},(0,a.kt)("img",{src:e(75552).Z,alt:"Surf5"})),(0,a.kt)("p",null,"(5)\tInstall Xpack Build Tools\n",(0,a.kt)("a",{parentName:"p",href:"https://github.com/xpack-dev-tools/windows-build-tools-xpack/releases/"},"Download link")),(0,a.kt)("p",null,"Click \u201cDownload Now\u201d Button"),(0,a.kt)("a",{target:"_blank",href:e(98233).Z},(0,a.kt)("img",{src:e(98233).Z,alt:"Surf5"})),(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"2. Extract xpack-windows-build-tools-4.x.x.x")),(0,a.kt)("a",{target:"_blank",href:e(15722).Z},(0,a.kt)("img",{src:e(15722).Z,alt:"Surf5"})),(0,a.kt)("p",null,"Extract the xpack-windows-build-tool-4.x.x.x.zip archive. Save the extracted folder to the recommended path below."),(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"Recommended storage path for the xpack-windows-build-tools folder")," : C:\\Program Files (x86)\\xpack-windows-build-tools-4.x.x."),(0,a.kt)("p",null,(0,a.kt)("strong",{parentName:"p"},"3. Create a New Workspace (Prevent Changes to Existing Settings)")),(0,a.kt)("p",null,"Create a new workspace. 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Save the CMake Extension Settings for the stored workspace.")),(0,a.kt)("a",{target:"_blank",href:e(62969).Z},(0,a.kt)("img",{src:e(62969).Z,alt:"Surf5"})),(0,a.kt)("a",{target:"_blank",href:e(31824).Z},(0,a.kt)("img",{src:e(31824).Z,alt:"Surf5"})),(0,a.kt)("p",null,'In CMake Tools, go to the gear icon (settings) -> Extension Settings -> Navigate to the Workspace tab. 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Build Project in VS Code")),(0,a.kt)("a",{target:"_blank",href:e(33098).Z},(0,a.kt)("img",{src:e(33098).Z,alt:"Surf5"})),(0,a.kt)("p",null,'Press the F1 key, and then click on "CMake: Select a Kit."'),(0,a.kt)("a",{target:"_blank",href:e(98038).Z},(0,a.kt)("img",{src:e(98038).Z,alt:"Surf5"})),(0,a.kt)("p",null,'Select "GCC Arm Embedded" to configure the kit.'),(0,a.kt)("a",{target:"_blank",href:e(4141).Z},(0,a.kt)("img",{src:e(4141).Z,alt:"Surf5"})),(0,a.kt)("p",null,'Click the "Build" button at the bottom or press F7 to start the build process.'),(0,a.kt)("a",{target:"_blank",href:e(47113).Z},(0,a.kt)("img",{src:e(47113).Z,alt:"Surf5"})),(0,a.kt)("p",null,"Once the build is completed, you will see a message like the one above in the OUTPUT window."),(0,a.kt)("a",{target:"_blank",href:e(44148).Z},(0,a.kt)("img",{src:e(44148).Z,alt:"Surf5"})),(0,a.kt)("p",null,"You will also be able to confirm that the Build directory has been created. The project folder within the Build directory contains the generated bin files. 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JTqhXUgapT/LuhgaVRenYsDgDw6e4QG4lgbatfTEu2b2dCsGgrnB0stfrUgRrW0f0iABSMkh/D9h24EDB4o7W7wf3sL7wD+2P9Exuj4QazsiCcR8p/kjMR3YuFRFbFRgJYfbEYHiT2csEUoj4McopUzqKG2pz2Iy5wa/L3BNvIHvyMhwvKkdrtSmrlTh3LBEfzhkMG8u7M1beR2SlI7abP2WaUsrI7oZAJIHLSxvwleI3pKfcRkZ1NI6dy8S5ihmI/rArtLdP40jnJ6BdOwTPBVDWbWeLLk8twPfJ+gZ45GHrsmQ4OBmjYz8rfs7amjKjvm9izdE8aDRaqJSFKMrbgxk9VuLqmjEIlFtAQw5EIhHRvWTjdTnQxq3CKuH3iL1dTbq4hg+QiIR1m3D833gA1i5H/UesBLFllLS6z6VjHsqkT2Lr7hMokk7E3qMJSCwPx8VbljgZpUWGZjR2HohBidkCbD8YizTtWBRZvIUTOePwR4q3vsXmsMWIBRGwcDPGhmW7kHnxGoauehn+/EakBvW1QzEyoi8Gh3OuzxauHv0w/bV6HDydgYpae4x9dhi6duUSG2eEhPXH8GeUlH7Qad4J7K+chRfGDsawYDo3CYdf1zGY1FMFXQO1LTSB4pcn8ULcYHgMfAXvDLizF3E3XF3Aqik1PnMZZQ0MeRfS4fnlXASoVLBWNKAsNh+1ZdUY3M8TOl3zlaSGUjUIAx8bgjF9uHcnHGAR1B+jwuKRnc+gizmK/X7dIBlGMnL2a+oO68dn4L0uDCYyEcQxR7DfqzOEw4ZgBPdqitgRNp1mYM27GhSVMtQ6+FGmnIHy+FQoSmtQmVeDgC/nwDc9B1xsv3UmBU7WMnQNsUJNrRI1AjNqhBab/xAM8DGi1J5O7wK3xBugqhuD8U/2QLcgzmRcEBjaHc/PVyIpna/mH8jcjTYLGyHkDLseujNH8cMTL2FkV2f4ck27DcZjEcMwx18JFbdT1iaElHpKIKYFIqIFIuNUGX8U+7y7QjQ8AsO4rQyxE6+b1aSbwkoxNJeO4TevTsDwP3VnHcbVa1FSToGQpGkK2BzB0KrrSTozGEnJzrxJJj9ruLTlMfRQHn4d0Y72kAx/Gr3Udfd4HtFY2FAYi+zfPkHcnC8xSCqAKWvgH9m2BhEp5KUmQK1VQyj8c6ly37U6LRJSs+6xB95m4YPhRLmIWoDa4xdQQorIPXML7iteRgB5Y9tKFaqTi1CaW4phA73RwHfcNL8qcmB90Ct8OMYP5ozIGiaBgzG6cyIKCtSo4S7J2Yt1s3qTnQjg3Z/W/rjzWBosg8WdYNwkcyUqL6zD8PB96P/pNHRwsrzHW0Zc316Y9vlwZGSWYcvSn0jn9Rj67lg4EglsSI1D1KYnsNllIz46XI4qxR/4rJ8JosYvxV6OXxEqt0zHteHPwyckEAEaJXmXe4AMgyMeYvJBqsJKRH3+LbzXzEaQNTfWBl7yRk1oSS/WRDCexdyZfrAy4+YsHOOmusLGtxAnz7XJhB4Kf87+I8DNMwAmFi44HXkVG3/aDSaxh0vobGJkxrANeBFamR+ktv1g6joKdQJXOIbORUWdCZw7LYBK7INShRCFFLQra+5BB9wmYEIHFbrYJ2C353Is6UQLkq/QQRfSAb6eTnf2mIQiOawcJKiuUUInlUJWvQ8rZg2Di6cvQoa8jBXXrCjykypTYnDWLYRs0QaNb3yJIRTLIOcDgJbY3ja8sagOERFP4YUn9S+NNZSg+NKXGOcfgA7BwfD1csOL/7qMRFEPBNs6o3NtIpLVBTi3tw4uYaHomB2FbGUcLudKoauwhbetkBx1Y1ON4PazTWAiN77zCiATG8HUWMtfp62ugZuvN9w9nPW15MyMbeBI/pTbGtMqauDqQ/Vef25kMrEZ7O2EuJV6GxW2ndFNIoarLhnXc4sQfVYE3y4BCIg/jRhhPmISLWFO7Nei8+OI6DcArxdPJ4fbDc//Ug8B6UGkPYeNC8eht7s3fPy80W3gaHx2jQuIJHfnTgh2tYZ9Y7eQyIxhbEn+8VYOGsihcAvw0UEMRqmEf3hn2Jo2RQljGJmawdaETJPMg2X8hFndu6BTQCC8SS9jlm3A8XIpLQbOuZFcdA2vYoVCr7tmr3tKGnWTnJ6F6uJSuHP1NId3IDGHgz3V385CDS1UITcGLTkdUUcE9n8R62WvIyQ4EE/+kIMSDbEmYQwOfzETA9y84Bfoj9Au3fFWJLUTvwmriijLGjgB0zrQubEpzEy4h8At96e5tx9QcRO3Yi/hB/MPsGqCCc8WLSnbMDKzgKneKJqeGnHiODq7U7Bo/QiXsjQKIK4ODjAq2YN3R/ZFVx9/eHu6ImLqW9iS9oC5aKhAVfQ6PEc23TEoCD6eLpj4xQnKaIi8OHihe00iUlgB/vi1BvYhHRFKgaVQEYNLhWKoiuzh4yQgJt/kWDlQhsLIHowax8Ofi8iu5RreofOPphwew5j5q3D0RCR++mwRvH7viR6rr6BEwWV/HEjmgrM4uGI2BnxngUXHvsGcXtaw5ry08gIx3wl4zM0bvn4+CO83FJ9cJtrGuY/g+VjmE4lqexukB87CTC8qU1ObKg2q3Z/DsCFh6BlkBXPTfogY1BEDIwpxI46uiVmDN2qXYMq4cPS2Jboil5P+5WR7VHcX9GPNu4ykYytxqOM6TOlqDFPeKTXPVsgiTUwgCe+KrmYivc8ivkUMSGTEiBxxjLF9aOs5xANRVs7xjwZYWpjCxdmBBKiHqX0YYs6sgXvHichKOkEDdobEyBz513fCNfgZ3Dj1GbzD5yAlajvEJr4oreC2HO7OBbhBC5BP6VceLp+9DUHtBSSzDgjjbY/+K62FiiaiachanQblhXFwCXCBZcp+fHI6G5XuQ/HOm8+gIj0VpZmZxDroPjMzWFvZwUbaGJ8b+2n8xi2ghoYgjBtridgrCbgS4AGvYPJC5DRMXHvi6TlilJCn1BKzcQ93hr3cHHXW9bAz/hUnk/tCKe2JOVJfyCwTUZ5thCvVtnCy9EB3kpJnEy1ADuYOgyIpuO/E6LlFKaQ8tph06axpiu0aMGEZ8hMpAdCRI6VrS6jeRv1n7BcIxZDJdDCTkoXJyZCdP0WeMg0nsp4nhtwLk6ROYOZXkXkrGEcFQRhl6gRfuk/UaShmTlMSmy5E+blJ2OS2Bc928EE3YoQ6116oIcctN7dHSFPMKKqFkqJJ07JSqWpRWZwI8xBLCEhuLaWiIlFTQCX2ITWCrMnj3A9aLfIUdeScmoJ2Deqrq1GcBthQYwLLMIyYPgMdlRqoyIk6dOgMP3KAGnIADTox9amfR73uXO7ojtONBDIp6UZsDgmxIq7eRNVssXC6o3pzctgiIdFqDg1EBuhD7jcAU18ohsazGPk35+JXj1UY29MLIX1G4UXSYzUxeQk50CDvIpz54hNsiLQgcrIV+x1FqC4vQmV+CvJtJwALPsc7w91gJW98o6go6hB+/vBT/Kt0AEr3C1FP86rMuoQ09RSce2IZ5k8dh5F+TcuS5lwmRXxxHeop7ea2fThotDIoSzTw628EZhqEARMmw4kyqHrKBKwp4wq14i+7NwQ0N47d8NQsht50qtGo4NrDE85mcgjoXhfzXTidNAQKSXfMlhAps/yWxqNFdLknjK264nmyy9YvuQkEnF3r9HZN4OyacVtd9JUzCpED3IO5g6tUwN/8PHZM2o9rRIoizKygifoRB85cxHnhGCyd3hsj+rj/ySLFbugYMRZT7Ls32qWZNYIoHvPP9ZCKa4llSD6bCuYYj8yhbvAUE8Fxcoa3jQ9CHWmO+UYoIDrYwC9Mi8isZBzY9xZ+jOmF1INfw9pEjLrCZORTFqwNqoNg/ttY1uwFfv71QuQhJiUWWxKDMOnNQDi16TlJII0OrLgG3JulTdZfWZYBETFte5u2fhTwcGgXo7YSpkCmy4a1jQN8fQNQW10KJ9EluJsk0ucFuMpuwEVyCc6i83A3ugonHG/8ZIfhJj4Hd8kZdHO8QmkNt6HbEpzuy45tx/nEBtj0HYkRplex9rsMfVpCC6/wOM5cTUKs3mOoC+Kwd78DevWwhDJmM3bkOqPLpEWY9dIMzBkVBKMKztnRhf59MSTnJ0SnFYN7C0qACqjKbiE6W0QTzjHfTnjyjWfRi0Vi165DOMjtyQmJ/bo9hgkLF2De/PlYtHgpnu7pDgrAsHe1gLN1CSJ3n0RSh+5wbjBB776myL10BnEKkrNTD5KWGAVd+1AghsICA2AZHYWSq4lQ8oX1KD+/C/uKKeXSUmALaqwvvhRHpt4IQVUUtm03R+cwa3LWNMwO5hTM4hF5PhE5wT3hLDRDj/5S3Nj1GzKdg2DrHQhRYR4KUksh6DEJS5YswUtWp/DrpQyk1Dij49AJmLl0MRYtJB1Om4S+LpyihRDnHcThS9nI4HtlKEu/RezIEf36mEFgbwWLtAQUl2n0AbQAeTEXcEVMWQt/3gZ4J04C+/nCeu8exBc1TWgMEq6exckScvzczVad8cTLczB3wQIsXrIMk4Z2gRf5KyaSwcyKsgjKJnkuHhIEqxvXUXQ5/k5wFFRdx/Yd5ugSag2LHiEwu8HpLraZ7q7zugsLtYE1pbY6cv4CklmtI73fpKAbNh5zX3kFiz1v4I+oeFwusoBHrzGYRvpZSPLMnT0LgzzEMO48EVNIrr6B3Bs3DrQgLWFlStmahT05aLKvxo1cHkK7UAT3p3YHOhHTsoO9vQNsaeJMzK1hbmYKYwoAd8B5ooC+6HDre9xMzODtFqhGYfIlrI0LRE8fGoN5MAa9MAOzFy0k/byKKWMjEGbTnOW1AQExR6eeGEc2/Qpn13TfuD5+tE5J3Q4W8HKrwplthxEf1A0OxJEf622KkpsXEF2ghrhbH9I3ranGlh4MCuDS2+cRd7sAKXd4mRT21g6oN5JBTMFSClpHR6/harE/hs+egOcHNXPSHMTuCHt8/J92OX0y+lNixKk1a+M6XNKGo1dfkr/oEjbsLaP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