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solis-data-logger.yaml
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# ------- ESPHome defaults for your board go here -------
# Unused deep_sleep block to prevent the sensors from showing as "unavailable" when the sun goes down.
deep_sleep:
id: fake_deep_sleep
# During the first hours of the day, the inverter can power on and off multiple times per minute until there is enough sunlight.
# We don't want this to trigger safe-mode and possibly delay any valid readings.
safe_mode:
disabled: True
# Required for total_daily_energy.
time:
- platform: sntp
# Configuration for the UART bus. Change the pin assignments as needed for your board.
uart:
id: uart_1
rx_pin: GPIO06
tx_pin: GPIO07
baud_rate: 9600
# Configuration for the MODBUS client over UART.
modbus:
id: modbus_1
uart_id: uart_1
role: client
# Configuration for the device (inverter) on the MODBUS bus.
modbus_controller:
- id: modbus_device
address: 0x1
modbus_id: modbus_1
setup_priority: -10
sensor:
# ESP32's internal temperature. Optional and can be removed if your board doesn't support it.
- platform: internal_temperature
name: "Internal Temperature"
# Active power in W, measured in increments of 10W.
- platform: modbus_controller
id: active_power
modbus_controller_id: modbus_device
name: "Active Power"
device_class: power
accuracy_decimals: 0
register_type: read
address: 3004
unit_of_measurement: "W"
value_type: U_DWORD
# The total power generated by the inverter in its entire lifetime.
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Total Power"
device_class: energy
state_class: total_increasing
accuracy_decimals: 0
register_type: read
address: 3008
unit_of_measurement: "kWh"
value_type: U_DWORD
# The amount of power generated today. Very innacurate and inadequate for cloudy days where production is small.
# Kept here for the sake of having the value available if needed.
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Generation Today (reported)"
device_class: energy
state_class: total_increasing
accuracy_decimals: 1
register_type: read
address: 3014
unit_of_measurement: "kWh"
value_type: U_WORD
filters:
- multiply: 0.1
# Same as above, but aggregated from the active power over time. Much more accurate and suitable for use in the Energy dashboard.
- platform: total_daily_energy
power_id: active_power
restore: false
name: "Generation Today (calculated)"
device_class: energy
state_class: total_increasing
accuracy_decimals: 2
unit_of_measurement: "Wh"
# Power generated on the previous day as reported by the inverter.
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Generation Yesterday"
device_class: energy
state_class: total_increasing
accuracy_decimals: 1
register_type: read
address: 3015
unit_of_measurement: "kWh"
value_type: U_WORD
filters:
- multiply: 0.1
# All the sensors down from here should be pretty self-explanatory
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "DC Output Power"
device_class: power
state_class: measurement
accuracy_decimals: 0
register_type: read
address: 3006
unit_of_measurement: "W"
value_type: U_DWORD
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Generation This Month"
device_class: energy
state_class: total_increasing
accuracy_decimals: 0
register_type: read
address: 3010
unit_of_measurement: "kWh"
value_type: U_DWORD
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Generation Last Month"
device_class: energy
state_class: total_increasing
accuracy_decimals: 0
register_type: read
address: 3012
unit_of_measurement: "kWh"
value_type: U_DWORD
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Generation This Year"
device_class: energy
state_class: total_increasing
accuracy_decimals: 0
register_type: read
address: 3016
unit_of_measurement: "kWh"
value_type: U_DWORD
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Generation Last Year"
device_class: energy
state_class: total_increasing
accuracy_decimals: 0
register_type: read
address: 3018
unit_of_measurement: "kWh"
value_type: U_DWORD
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "DC Voltage"
device_class: voltage
state_class: measurement
accuracy_decimals: 1
register_type: read
address: 3021
unit_of_measurement: "V"
value_type: U_WORD
filters:
- multiply: 0.1
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "DC Current"
device_class: current
state_class: measurement
accuracy_decimals: 1
register_type: read
address: 3022
unit_of_measurement: "A"
value_type: U_WORD
filters:
- multiply: 0.1
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "AC Voltage"
device_class: voltage
state_class: measurement
accuracy_decimals: 1
register_type: read
address: 3035
unit_of_measurement: "V"
value_type: U_WORD
filters:
- multiply: 0.1
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "AC Current"
device_class: current
state_class: measurement
accuracy_decimals: 1
register_type: read
address: 3038
unit_of_measurement: "A"
value_type: U_WORD
filters:
- multiply: 0.1
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Grid Frequency"
device_class: frequency
state_class: measurement
accuracy_decimals: 2
register_type: read
address: 3042
unit_of_measurement: "Hz"
value_type: U_WORD
filters:
- multiply: 0.01
- platform: modbus_controller
modbus_controller_id: modbus_device
name: "Inverter Temperature"
device_class: temperature
state_class: measurement
accuracy_decimals: 1
register_type: read
address: 3041
unit_of_measurement: "°C"
value_type: U_WORD
filters:
- multiply: 0.1