update telemetry proto
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@ -15,27 +15,27 @@ message DeviceMetrics {
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/*
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* 0-100 (>100 means powered)
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*/
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uint32 battery_level = 1;
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optional uint32 battery_level = 1;
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/*
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* Voltage measured
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*/
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float voltage = 2;
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optional float voltage = 2;
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/*
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* Utilization for the current channel, including well formed TX, RX and malformed RX (aka noise).
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*/
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float channel_utilization = 3;
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optional float channel_utilization = 3;
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/*
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* Percent of airtime for transmission used within the last hour.
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*/
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float air_util_tx = 4;
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optional float air_util_tx = 4;
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/*
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* How long the device has been running since the last reboot (in seconds)
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*/
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uint32 uptime_seconds = 5;
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optional uint32 uptime_seconds = 5;
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}
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/*
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@ -45,38 +45,95 @@ message EnvironmentMetrics {
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/*
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* Temperature measured
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*/
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float temperature = 1;
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optional float temperature = 1;
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/*
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* Relative humidity percent measured
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*/
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float relative_humidity = 2;
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optional float relative_humidity = 2;
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/*
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* Barometric pressure in hPA measured
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*/
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float barometric_pressure = 3;
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optional float barometric_pressure = 3;
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/*
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* Gas resistance in MOhm measured
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*/
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float gas_resistance = 4;
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optional float gas_resistance = 4;
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/*
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* Voltage measured (To be depreciated in favor of PowerMetrics in Meshtastic 3.x)
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*/
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float voltage = 5;
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optional float voltage = 5;
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/*
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* Current measured (To be depreciated in favor of PowerMetrics in Meshtastic 3.x)
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*/
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float current = 6;
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optional float current = 6;
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/*
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/*
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* relative scale IAQ value as measured by Bosch BME680 . value 0-500.
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* Belongs to Air Quality but is not particle but VOC measurement. Other VOC values can also be put in here.
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*/
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uint32 iaq = 7;
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optional uint32 iaq = 7;
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/*
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* RCWL9620 Doppler Radar Distance Sensor, used for water level detection. Float value in mm.
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*/
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optional float distance = 8;
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/*
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* VEML7700 high accuracy ambient light(Lux) digital 16-bit resolution sensor.
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*/
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optional float lux = 9;
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/*
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* VEML7700 high accuracy white light(irradiance) not calibrated digital 16-bit resolution sensor.
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*/
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optional float white_lux = 10;
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/*
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* Infrared lux
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*/
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optional float ir_lux = 11;
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/*
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* Ultraviolet lux
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*/
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optional float uv_lux = 12;
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/*
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* Wind direction in degrees
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* 0 degrees = North, 90 = East, etc...
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*/
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optional uint32 wind_direction = 13;
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/*
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* Wind speed in m/s
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*/
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optional float wind_speed = 14;
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/*
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* Weight in KG
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*/
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optional float weight = 15;
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/*
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* Wind gust in m/s
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*/
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optional float wind_gust = 16;
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/*
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* Wind lull in m/s
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*/
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optional float wind_lull = 17;
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/*
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* Radiation in µR/h
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*/
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optional float radiation = 18;
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}
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/*
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@ -86,32 +143,32 @@ message PowerMetrics {
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/*
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* Voltage (Ch1)
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*/
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float ch1_voltage = 1;
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optional float ch1_voltage = 1;
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/*
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* Current (Ch1)
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*/
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float ch1_current = 2;
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optional float ch1_current = 2;
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/*
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* Voltage (Ch2)
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*/
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float ch2_voltage = 3;
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optional float ch2_voltage = 3;
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/*
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* Current (Ch2)
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*/
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float ch2_current = 4;
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optional float ch2_current = 4;
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/*
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* Voltage (Ch3)
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*/
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float ch3_voltage = 5;
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optional float ch3_voltage = 5;
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/*
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* Current (Ch3)
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*/
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float ch3_current = 6;
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optional float ch3_current = 6;
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}
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/*
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@ -121,62 +178,147 @@ message AirQualityMetrics {
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/*
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* Concentration Units Standard PM1.0
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*/
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uint32 pm10_standard = 1;
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optional uint32 pm10_standard = 1;
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/*
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* Concentration Units Standard PM2.5
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*/
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uint32 pm25_standard = 2;
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optional uint32 pm25_standard = 2;
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/*
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* Concentration Units Standard PM10.0
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*/
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uint32 pm100_standard = 3;
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optional uint32 pm100_standard = 3;
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/*
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* Concentration Units Environmental PM1.0
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*/
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uint32 pm10_environmental = 4;
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optional uint32 pm10_environmental = 4;
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/*
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* Concentration Units Environmental PM2.5
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*/
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uint32 pm25_environmental = 5;
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optional uint32 pm25_environmental = 5;
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/*
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* Concentration Units Environmental PM10.0
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*/
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uint32 pm100_environmental = 6;
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optional uint32 pm100_environmental = 6;
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/*
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* 0.3um Particle Count
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*/
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uint32 particles_03um = 7;
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optional uint32 particles_03um = 7;
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/*
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* 0.5um Particle Count
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*/
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uint32 particles_05um = 8;
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optional uint32 particles_05um = 8;
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/*
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* 1.0um Particle Count
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*/
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uint32 particles_10um = 9;
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optional uint32 particles_10um = 9;
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/*
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* 2.5um Particle Count
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*/
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uint32 particles_25um = 10;
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optional uint32 particles_25um = 10;
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/*
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* 5.0um Particle Count
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*/
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uint32 particles_50um = 11;
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optional uint32 particles_50um = 11;
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/*
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* 10.0um Particle Count
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*/
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uint32 particles_100um = 12;
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optional uint32 particles_100um = 12;
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/*
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* 10.0um Particle Count
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*/
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optional uint32 co2 = 13;
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}
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/*
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* Local device mesh statistics
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*/
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message LocalStats {
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/*
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* How long the device has been running since the last reboot (in seconds)
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*/
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uint32 uptime_seconds = 1;
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/*
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* Utilization for the current channel, including well formed TX, RX and malformed RX (aka noise).
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*/
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float channel_utilization = 2;
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/*
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* Percent of airtime for transmission used within the last hour.
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*/
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float air_util_tx = 3;
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/*
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* Number of packets sent
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*/
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uint32 num_packets_tx = 4;
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/*
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* Number of packets received (both good and bad)
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*/
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uint32 num_packets_rx = 5;
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/*
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* Number of packets received that are malformed or violate the protocol
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*/
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uint32 num_packets_rx_bad = 6;
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/*
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* Number of nodes online (in the past 2 hours)
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*/
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uint32 num_online_nodes = 7;
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/*
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* Number of nodes total
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*/
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uint32 num_total_nodes = 8;
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/*
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* Number of received packets that were duplicates (due to multiple nodes relaying).
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* If this number is high, there are nodes in the mesh relaying packets when it's unnecessary, for example due to the ROUTER/REPEATER role.
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*/
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uint32 num_rx_dupe = 9;
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/*
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* Number of packets we transmitted that were a relay for others (not originating from ourselves).
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*/
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uint32 num_tx_relay = 10;
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/*
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* Number of times we canceled a packet to be relayed, because someone else did it before us.
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* This will always be zero for ROUTERs/REPEATERs. If this number is high, some other node(s) is/are relaying faster than you.
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*/
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uint32 num_tx_relay_canceled = 11;
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}
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/*
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* Health telemetry metrics
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*/
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message HealthMetrics {
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/*
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* Heart rate (beats per minute)
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*/
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optional uint32 heart_bpm = 1;
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/*
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* SpO2 (blood oxygen saturation) level
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*/
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optional uint32 spO2 = 2;
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/*
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* Body temperature in degrees Celsius
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*/
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optional float temperature = 3;
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}
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/*
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@ -208,6 +350,16 @@ message Telemetry {
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* Power Metrics
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*/
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PowerMetrics power_metrics = 5;
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/*
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* Local device mesh statistics
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*/
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LocalStats local_stats = 6;
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/*
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* Health telemetry metrics
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*/
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HealthMetrics health_metrics = 7;
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}
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}
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@ -294,4 +446,115 @@ enum TelemetrySensorType {
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* BMP085/BMP180 High accuracy temperature and pressure (older Version of BMP280)
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*/
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BMP085 = 15;
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/*
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* RCWL-9620 Doppler Radar Distance Sensor, used for water level detection
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*/
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RCWL9620 = 16;
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/*
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* Sensirion High accuracy temperature and humidity
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*/
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SHT4X = 17;
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/*
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* VEML7700 high accuracy ambient light(Lux) digital 16-bit resolution sensor.
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*/
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VEML7700 = 18;
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/*
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* MLX90632 non-contact IR temperature sensor.
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*/
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MLX90632 = 19;
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/*
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* TI OPT3001 Ambient Light Sensor
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*/
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OPT3001 = 20;
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/*
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* Lite On LTR-390UV-01 UV Light Sensor
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*/
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LTR390UV = 21;
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/*
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* AMS TSL25911FN RGB Light Sensor
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*/
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TSL25911FN = 22;
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/*
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* AHT10 Integrated temperature and humidity sensor
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*/
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AHT10 = 23;
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/*
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* DFRobot Lark Weather station (temperature, humidity, pressure, wind speed and direction)
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*/
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DFROBOT_LARK = 24;
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/*
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* NAU7802 Scale Chip or compatible
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*/
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NAU7802 = 25;
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/*
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* BMP3XX High accuracy temperature and pressure
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*/
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BMP3XX = 26;
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/*
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* ICM-20948 9-Axis digital motion processor
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*/
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ICM20948 = 27;
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/*
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* MAX17048 1S lipo battery sensor (voltage, state of charge, time to go)
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*/
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MAX17048 = 28;
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/*
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* Custom I2C sensor implementation based on https://github.com/meshtastic/i2c-sensor
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*/
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CUSTOM_SENSOR = 29;
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/*
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* MAX30102 Pulse Oximeter and Heart-Rate Sensor
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*/
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MAX30102 = 30;
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/*
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* MLX90614 non-contact IR temperature sensor
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*/
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MLX90614 = 31;
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/*
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* SCD40/SCD41 CO2, humidity, temperature sensor
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*/
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SCD4X = 32;
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/*
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* ClimateGuard RadSens, radiation, Geiger-Muller Tube
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*/
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RADSENS = 33;
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/*
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* High accuracy current and voltage
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*/
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INA226 = 34;
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}
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/*
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* NAU7802 Telemetry configuration, for saving to flash
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*/
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message Nau7802Config {
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/*
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* The offset setting for the NAU7802
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*/
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int32 zeroOffset = 1;
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/*
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* The calibration factor for the NAU7802
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*/
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float calibrationFactor = 2;
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}
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