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Update Register 101, 102, 200 and added COP #54

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Oct 21, 2024
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4 changes: 4 additions & 0 deletions CHANGELOG.md
Original file line number Diff line number Diff line change
Expand Up @@ -9,6 +9,10 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0

### Changed

- Add COP -Heat pump efficiency factor
- Update Register: 103 -Convert valve open position to percent representation
- Update Register: 101 is moved to text sensor with status
- Update Register: 200 is moved to text sensor with Homapliance decode value code to text names
- Update Register: 211 to be fully configurable except reserved values
- Update Register: 210 to be fully configurable except reserved values

Expand Down
140 changes: 101 additions & 39 deletions heatpump.yaml
Original file line number Diff line number Diff line change
Expand Up @@ -335,6 +335,17 @@ sensor:
name: Uptime
id: "${devicename}_uptime"
icon: mdi:timelapse
- platform: template
name: "Coefficient of Performance"
id: "${devicename}_coefficient_of_performance"
icon: mdi:copyleft
accuracy_decimals: 2
unit_of_measurement: "COP"
lambda: |-
// Verify that electricity_consumption is <> 0 to avoid division by 0 error
if (id(${devicename}_electricity_consumption).state != 0) {
return id(${devicename}_power_output).state / id(${devicename}_electricity_consumption).state;
} else return {};
# Register: 0 -> Config is present as select, but now we need get value from heatpump and save it as global var
- platform: modbus_controller
modbus_controller_id: "${devicename}"
Expand Down Expand Up @@ -436,15 +447,7 @@ sensor:
address: 0x64
value_type: U_WORD
unit_of_measurement: Hz
# Register: 101
- platform: modbus_controller
modbus_controller_id: "${devicename}"
name: "Operating Mode"
id: "${devicename}_operating_mode"
icon: mdi:state-machine
register_type: holding
address: 0x65
value_type: U_WORD
# Register: 101 -> Is present in this config as a 'text_sensor'
# Register: 102
- platform: modbus_controller
modbus_controller_id: "${devicename}"
Expand All @@ -465,6 +468,11 @@ sensor:
address: 0x67
value_type: U_WORD
unit_of_measurement: "%"
filters:
- calibrate_linear:
# York, MIDEA have movement 0-480
- 0 -> 0.0
- 480 -> 100.0
# Register: 104
- platform: modbus_controller
modbus_controller_id: "${devicename}"
Expand Down Expand Up @@ -862,36 +870,7 @@ sensor:

# The following register address 200-208 can only use 03H (Read register) function code.
# Register address 209 and after can use 03H, 06H (write single register), 10H (write multiple register).
# Register: 200 (High byte)
- platform: modbus_controller
modbus_controller_id: "${devicename}"
name: "Home Appliance Type"
id: "${devicename}_home_appliance_type"
icon: mdi:state-machine
register_type: holding
address: 0xc8
value_type: U_WORD
bitmask: 0x00FF
# Register: 200 (Low byte, first 4 bits)
- platform: modbus_controller
modbus_controller_id: "${devicename}"
name: "Home Appliance Sub Type"
id: "${devicename}_home_appliance_sub_type"
icon: "mdi:information-box-outline"
register_type: holding
address: 0xc8
value_type: U_WORD
bitmask: 0xF000
# Register: 200 (Low byte, second 4 bits)
- platform: modbus_controller
modbus_controller_id: "${devicename}"
name: "Home Appliance Product Code"
id: "${devicename}_home_appliance_product_code"
icon: "mdi:information-box-outline"
register_type: holding
address: 0xc8
value_type: U_WORD
bitmask: 0x0F00
# Register: 200 -> Is present in this config as a 'text_sensor'
# Register: 201 (Low), default: 25, TODO: verify default
- platform: modbus_controller
modbus_controller_id: "${devicename}"
Expand Down Expand Up @@ -4547,3 +4526,86 @@ text_sensor:
- 141 -> L7
- 142 -> L8
- 143 -> L9
# Register: 101
- platform: modbus_controller
modbus_controller_id: "${devicename}"
name: "Operating Mode"
id: "${devicename}_operating_mode"
icon: mdi:state-machine
register_type: holding
address: 0x65
response_size: 2
lambda: |-
int idx = item->offset;
uint16_t rawdata = (uint16_t(data[idx]) << 8) + uint16_t(data[idx + 1]);
std::string output = "Unknown: ";
output += to_string(rawdata);
if (rawdata == 0) output = "OFF";
else if (rawdata == 2) output = "Cooling";
else if (rawdata == 3) output = "Heating";
else if (rawdata == 5) output = "DHW Heating";
// ESP_LOGD("Register 101","Operating mode %s (%d)", output.c_str(), rawdata);
return output;
# Register: 200 (High byte)
- platform: modbus_controller
modbus_controller_id: "${devicename}"
name: "Home Appliance Type"
id: "${devicename}_home_appliance_type"
icon: mdi:state-machine
register_type: holding
address: 0xc8
response_size: 2
raw_encode: HEXBYTES
lambda: |-
int idx = item->offset;
std::string z = "";
uint16_t rawdata = (uint16_t(data[idx]) << 8) + uint16_t(data[idx + 1]);
// ESP_LOGD("Register 200", "The home appliance type is 0x%x", rawdata);
if ((rawdata >> 8) == 7) {
z = "Air to water heat pump";
} else {
z = std::to_string(data[idx]);
}
return {z};
# Register: 200 (Low byte, first 4 bits)
- platform: modbus_controller
modbus_controller_id: "${devicename}"
name: "Home Appliance Sub Type"
id: "${devicename}_home_appliance_sub_type"
icon: "mdi:information-box-outline"
register_type: holding
address: 0xc8
response_size: 2
raw_encode: HEXBYTES
lambda: |-
int idx = item->offset;
std::string z = "";
uint16_t rawdata = (uint16_t(data[idx]) << 8) + uint16_t(data[idx + 1]);
// ESP_LOGD("Register 200", "The home appliance sub type is 0x%x", rawdata);
if (((rawdata & 0x000F) ) == 2) {
z = "R32";
} else {
z = std::to_string(rawdata & 0x0F) ;
}
return {z};
# Register: 200 (Low byte, second 4 bits)
- platform: modbus_controller
modbus_controller_id: "${devicename}"
name: "Home Appliance Product Code"
id: "${devicename}_home_appliance_product_code"
icon: "mdi:information-box-outline"
register_type: holding
response_size: 2
raw_encode: HEXBYTES
address: 0xc8
lambda: |-
int idx = item->offset;
std::string z = "";
uint16_t rawdata = (uint16_t(data[idx]) << 8) + uint16_t(data[idx + 1]);
// ESP_LOGD("Register 200", "The home appliance product code is 0x%x rawdata ", rawdata);
if (((rawdata & 0x00F0) >> 4) == 4) {
z = "4";
} else {
z = std::to_string((rawdata & 0x00F0) >> 4);
}
return {z};
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