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340 lines
14 KiB
ReStructuredText
340 lines
14 KiB
ReStructuredText
PipSolar PV Inverter
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====================
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.. seo::
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:description: Instructions for setting up PipSolar Compatible PV Inverter in ESPHome.
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:image: pipsolar.jpg
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The PipSolar component allows you to integrate PIP-compatible Inverters in ESPHome.
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It uses :ref:`UART <uart>` for communication.
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Once configured, you can use sensors, binary sensors, switches and outputs as described below for your projects.
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.. warning::
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All functionality is working fine on esp8266 and esp32 chips.
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If you configure a lot of the possible sensors etc. from below it could be that you run out of memory (on esp8266).
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If you configure more than one if this devices with nearly all sensors etc. you run in a stack-size issue. In this case you have to increase stack size.
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.. figure:: images/pipsolar.jpg
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:align: center
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:width: 50.0%
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pip4048 compatible PV Inverter.
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Overview
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--------
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You can connect a wide variety of PV Inverters as long as they provide a serial interface and talk the commands used (at least those you want to use).
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A documentation about the communication protocol mostly supported can be found |here|_.
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This component will poll the needed polling commands in a loop. If there is a command to send for controlling the inverter this command will be queued and fired as next after the current polling command ends.
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There is a buffer to buffer up to 10 commands.
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.. |here| replace:: ``here``
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.. _here: https://github.com/jblance/mpp-solar/tree/master/docs
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.. code-block:: yaml
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# Example configuration entry
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pipsolar:
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- id: inverter0
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Configuration variables:
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~~~~~~~~~~~~~~~~~~~~~~~~
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- **id** (**Required**, :ref:`config-id`): The id to use for this pipsolar component.
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- **uart_id** (*Optional*): The uart Bus ID
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Sensor
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------
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.. code-block:: yaml
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# Example configuration entry
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sensor:
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- platform: pipsolar
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pipsolar_id: inverter0
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grid_rating_voltage:
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id: inverter0_grid_rating_voltage
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name: inverter0_grid_rating_voltage
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grid_rating_current:
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id: inverter0_grid_rating_current
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name: inverter0_grid_rating_current
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ac_output_apparent_power:
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id: inverter0_ac_output_apparent_power
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name: inverter0_ac_output_apparent_power
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ac_output_active_power:
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id: inverter0_ac_output_active_power
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name: inverter0_ac_output_active_power
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Configuration variables:
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~~~~~~~~~~~~~~~~~~~~~~~~
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All sensors are normal sensors... so all sensor variables are working to.
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- **grid_rating_voltage** (*Optional*): grid rating voltage
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- **grid_rating_current** (*Optional*): grid rating current
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- **ac_output_rating_voltage** (*Optional*): AC output rating voltage
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- **ac_output_rating_frequency** (*Optional*): AC output rating frequency
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- **ac_output_rating_current** (*Optional*): AC output rating current
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- **ac_output_rating_apparent_power** (*Optional*): AC output rating apparent power
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- **ac_output_rating_active_power** (*Optional*): AC output rating active power
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- **battery_rating_voltage** (*Optional*): battery rating voltage
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- **battery_recharge_voltage** (*Optional*): battery recharge voltage
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- **battery_under_voltage** (*Optional*): battery under voltage
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- **battery_bulk_voltage** (*Optional*): battery bulk voltage
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- **battery_float_voltage** (*Optional*): battery float voltage
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- **battery_type** (*Optional*): battery type
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- **current_max_ac_charging_current** (*Optional*): current max ac charging current
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- **current_max_charging_current** (*Optional*): current max charging current
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- **input_voltage_range** (*Optional*): input voltage range
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- **output_source_priority** (*Optional*): output source priority
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- **charger_source_priority** (*Optional*): charger source priority
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- **parallel_max_num** (*Optional*): parallel max num
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- **machine_type** (*Optional*): machine type
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- **topology** (*Optional*): topology
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- **output_mode** (*Optional*): output mode
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- **battery_redischarge_voltage** (*Optional*): battery re-discharge voltage
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- **pv_ok_condition_for_parallel** (*Optional*): PV OK condition for parallel
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- **pv_power_balance** (*Optional*): PV power balance mode
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- **grid_voltage** (*Optional*): grid voltage
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- **grid_frequency** (*Optional*): grid frequency
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- **ac_output_voltage** (*Optional*): ac output voltage
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- **ac_output_frequency** (*Optional*): ac output frequency
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- **ac_output_apparent_power** (*Optional*): ac output apparent power
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- **ac_output_active_power** (*Optional*): ac output active power
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- **output_load_percent** (*Optional*): output load percentage
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- **bus_voltage** (*Optional*): bus voltage
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- **battery_voltage** (*Optional*): battery voltage
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- **battery_charging_current** (*Optional*): battery charging current
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- **battery_capacity_percent** (*Optional*): battery capacity percent
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- **inverter_heat_sink_temperature** (*Optional*): inverter heatsink temperature
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- **pv_input_current_for_battery** (*Optional*): pv input current for battery
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- **pv_input_voltage** (*Optional*): pv input voltage
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- **battery_voltage_scc** (*Optional*): battery voltage from scc
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- **battery_discharge_current** (*Optional*): battery discharge current
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- **battery_voltage_offset_for_fans_on** (*Optional*): battery voltage offset for fans on
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- **eeprom_version** (*Optional*): eeprom version
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- **pv_charging_power** (*Optional*): pc charging power
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Binary Sensor
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-------------
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.. code-block:: yaml
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# Example configuration entry
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binary_sensor:
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- platform: pipsolar
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pipsolar_id: inverter0
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add_sbu_priority_version:
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id: inverter0_add_sbu_priority_version
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name: inverter0_add_sbu_priority_version
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configuration_status:
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id: inverter0_configuration_status
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name: inverter0_configuration_status
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Configuration variables:
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~~~~~~~~~~~~~~~~~~~~~~~~
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All sensors are normal binary sensors... so all binary sensor variables are working to.
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- **add_sbu_priority_version** (*Optional*): add sbu priority version
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- **configuration_status** (*Optional*): configuration status
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- **scc_firmware_version** (*Optional*): scc firmware version
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- **load_status** (*Optional*): load status
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- **battery_voltage_to_steady_while_charging** (*Optional*): battery voltage to steady while charging
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- **charging_status** (*Optional*): charging status
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- **scc_charging_status** (*Optional*): scc charging status
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- **ac_charging_status** (*Optional*): ac charging status
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- **charging_to_floating_mode** (*Optional*): charging to floating mode
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- **switch_on** (*Optional*): switch on
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- **dustproof_installed** (*Optional*): dustproof installed
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- **silence_buzzer_open_buzzer** (*Optional*): silence buzzer open buzzer
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- **overload_bypass_function** (*Optional*): overload bypass function
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- **lcd_escape_to_default** (*Optional*): lcd escape to default
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- **overload_restart_function** (*Optional*): overload restart function
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- **over_temperature_restart_function** (*Optional*): over temperature restart function
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- **backlight_on** (*Optional*): backlight on
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- **alarm_on_when_primary_source_interrupt** (*Optional*): alarm on when primary source interrupt
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- **fault_code_record** (*Optional*): fault code record
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- **power_saving** (*Optional*): power saving
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- **warnings_present** (*Optional*): warnings present
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- **faults_present** (*Optional*): faults present
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- **warning_power_loss** (*Optional*): warning power loss
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- **fault_inverter_fault** (*Optional*): fault inverter fault
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- **fault_bus_over** (*Optional*): fault bus over
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- **fault_bus_under** (*Optional*): fault bus under
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- **fault_bus_soft_fail** (*Optional*): fault bus soft fail
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- **warning_line_fail** (*Optional*): warning line fail
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- **fault_opvshort** (*Optional*): fault opvshort
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- **fault_inverter_voltage_too_low** (*Optional*): fault inverter voltage too low
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- **fault_inverter_voltage_too_high** (*Optional*): fault inverter voltage too high
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- **warning_over_temperature** (*Optional*): warning over temperature
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- **warning_fan_lock** (*Optional*): warning fan lock
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- **warning_battery_voltage_high** (*Optional*): warning battery voltage high
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- **warning_battery_low_alarm** (*Optional*): warning battery low alarm
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- **warning_battery_under_shutdown** (*Optional*): warning battery under shutdown
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- **warning_battery_derating** (*Optional*): warning battery derating
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- **warning_over_load** (*Optional*): warning over load
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- **warning_eeprom_failed** (*Optional*): warning eeprom failed
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- **fault_inverter_over_current** (*Optional*): fault inverter over current
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- **fault_inverter_soft_failed** (*Optional*): fault inverter soft failed
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- **fault_self_test_failed** (*Optional*): fault_self_test_failed
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- **fault_op_dc_voltage_over** (*Optional*): fault op dc voltage over
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- **fault_battery_open** (*Optional*): fault battery open
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- **fault_current_sensor_failed** (*Optional*): fault current sensor failed
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- **fault_battery_short** (*Optional*): fault battery short
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- **warning_power_limit** (*Optional*): warning power limit
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- **warning_pv_voltage_high** (*Optional*): warning pv voltage high
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- **fault_mppt_overload** (*Optional*): fault mppt overload
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- **warning_mppt_overload** (*Optional*): warning mppt overload
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- **warning_battery_too_low_to_charge** (*Optional*): warning battery too low to charge
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- **fault_dc_dc_over_current** (*Optional*): fault dc dc over current
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- **fault_code** (*Optional*): fault code
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- **warning_low_pv_energy** (*Optional*): warning low pv energy
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- **warning_high_ac_input_during_bus_soft_start** (*Optional*): warning high ac input during bus soft start
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- **warning_battery_equalization** (*Optional*): warning battery equalization
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Text Sensor
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-----------
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.. code-block:: yaml
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# Example configuration entry
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text_sensor:
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- platform: pipsolar
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pipsolar_id: inverter0
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device_mode:
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id: inverter0_device_mode
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name: inverter0_device_mode
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last_qpigs:
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id: inverter0_last_qpigs
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name: inverter0_last_qpigs
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last_qpiri:
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Configuration variables:
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~~~~~~~~~~~~~~~~~~~~~~~~
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All sensors are normal text sensors... so all text sensor variables are working to.
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- **device_mode** (*Optional*): device mode response
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- **last_qpigs** (*Optional*): last qpigs reponse
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- **last_qpiri** (*Optional*): last qpiri reponse
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- **last_qmod** (*Optional*): last qmod reponse
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- **last_qflag** (*Optional*): last qflag reponse
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- **last_qpiws** (*Optional*): last qpiws reponse
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- **last_qt** (*Optional*): last qt reponse
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- **last_qmn** (*Optional*): last qmn reponse
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Switch
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------
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Not all possible switches are exposed as they lead to the possibility to make serious damage. They should only be set at the physical device itself.
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.. code-block:: yaml
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# Example configuration entry
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switch:
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- platform: pipsolar
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pipsolar_id: inverter0
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output_source_priority_utility:
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name: inverter0_output_source_priority_utility
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output_source_priority_solar:
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name: inverter0_output_source_priority_solar
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output_source_priority_battery:
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name: inverter0_output_source_priority_battery
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output_source_priority_hybrid:
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name: inverter0_output_source_priority_hybrid
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input_voltage_range:
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name: inverter0_input_voltage_range
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pv_ok_condition_for_parallel:
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name: inverter0_pv_ok_condition_for_parallel
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pv_power_balance:
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name: inverter0_pv_power_balance
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Configuration variables:
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~~~~~~~~~~~~~~~~~~~~~~~~
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All sensors are normal text sensors... so all text sensor variables are working to.
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- **output_source_priority_utility** (*Optional*): output source priority utility
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- **output_source_priority_solar** (*Optional*): output source priority solar
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- **output_source_priority_battery** (*Optional*): output source priority battery
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- **output_source_priority_hybrid** (*Optional*): output source priority hybrid
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- **input_voltage_range** (*Optional*): input voltage range
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- **pv_ok_condition_for_parallel** (*Optional*): pv ok condition for parallel
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- **pv_power_balance** (*Optional*): pv power balance
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Output
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------
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Not all possible outputs are exposed as they lead to the possibility to make serious damage. They should only be set at the physical device itself.
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.. code-block:: yaml
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# Example configuration entry
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output:
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- platform: pipsolar
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pipsolar_id: inverter0
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battery_recharge_voltage:
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id: inverter0_battery_recharge_voltage_out
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Configuration variables:
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~~~~~~~~~~~~~~~~~~~~~~~~
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All sensors are normal text sensors... so all text sensor variables are working to.
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- **battery_recharge_voltage** (*Optional*): battery recharge voltage;
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- **possible_values** (*Optional*, list): a list of possible values default: 44.0,45.0,46.0,47.0,48.0,49.0,50.0,51.0
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- **battery_under_voltage** (*Optional*): battery under voltage;
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- **possible_values** (*Optional*, list): a list of possible values default: 40.0,40.1,42,43,44,45,46,47,48.0
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- **battery_float_voltage** (*Optional*): battery float voltage;
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- **possible_values** (*Optional*, list): a list of possible values default: 48.0,49.0,50.0,51.0
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- **battery_type** (*Optional*): battery type;
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- **possible_values** (*Optional*, list): a list of possible values default: 0,1,2
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- **current_max_ac_charging_current** (*Optional*): current max ac charging current;
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- **possible_values** (*Optional*, list): a list of possible values default: 2,10,20
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- **current_max_charging_current** (*Optional*): current max charging current;
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- **possible_values** (*Optional*, list): a list of possible values default: 10,20,30,40
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- **output_source_priority** (*Optional*): output source priority;
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- **possible_values** (*Optional*, list): a list of possible values default: 0,1,2
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- **charger_source_priority** (*Optional*): charger source priority;
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- **possible_values** (*Optional*, list): a list of possible values default: 0,1,2,3
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- **battery_redischarge_voltage** (*Optional*): battery redischarge voltage;
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- **possible_values** (*Optional*, list): a list of possible values default: 00.0,48.0,49,50.0,51.0,52,53,54,55,56,57,58
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.. _pipsolaroutput_set_level_action:
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``output.pipsolar.set_level`` Action
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------------------------------------
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To use your outputs in :ref:`automations <automation>` or templates, you can use this action to set the
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target level of the output.
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.. code-block:: yaml
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on_...:
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then:
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- output.pipsolar.set_level:
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id: my_pipsolar_output
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value: 48.0
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Configuration options:
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- **id** (**Required**, :ref:`config-id`): The ID of the output.
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- **value** (*Optional*, percentage, :ref:`templatable <config-templatable>`): The target level.
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See Also
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--------
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- :ref:`uart`
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- :ghedit:`Edit`
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