// =============================================================================
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// SENSORS - General data
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// =============================================================================
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#define SENSOR_DEBUG 0 // Debug sensors
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#define SENSOR_READ_INTERVAL 6 // Read data from sensors every 6 seconds
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#define SENSOR_READ_MIN_INTERVAL 6 // Minimum read interval
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#define SENSOR_READ_MAX_INTERVAL 3600 // Maximum read interval
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#define SENSOR_INIT_INTERVAL 10000 // Try to re-init non-ready sensors every 10s
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#define SENSOR_REPORT_EVERY 10 // Report every this many readings
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#define SENSOR_REPORT_MIN_EVERY 1 // Minimum every value
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#define SENSOR_REPORT_MAX_EVERY 12 // Maximum
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#define SENSOR_USE_INDEX 0 // Use the index in topic (i.e. temperature/0)
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// even if just one sensor (0 for backwards compatibility)
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#ifndef SENSOR_POWER_CHECK_STATUS
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#define SENSOR_POWER_CHECK_STATUS 1 // If set to 1 the reported power/current/energy will be 0 if the relay[0] is OFF
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#endif
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#ifndef SENSOR_TEMPERATURE_CORRECTION
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#define SENSOR_TEMPERATURE_CORRECTION 0.0 // Offset correction
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#endif
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#ifndef TEMPERATURE_MIN_CHANGE
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#define TEMPERATURE_MIN_CHANGE 0.0 // Minimum temperature change to report
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#endif
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#ifndef SENSOR_HUMIDITY_CORRECTION
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#define SENSOR_HUMIDITY_CORRECTION 0.0 // Offset correction
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#endif
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#ifndef HUMIDITY_MIN_CHANGE
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#define HUMIDITY_MIN_CHANGE 0 // Minimum humidity change to report
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#endif
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#define SENSOR_PUBLISH_ADDRESSES 0 // Publish sensor addresses
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#define SENSOR_ADDRESS_TOPIC "address" // Topic to publish sensor addresses
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#ifndef SENSOR_TEMPERATURE_UNITS
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#define SENSOR_TEMPERATURE_UNITS TMP_CELSIUS // Temperature units (TMP_CELSIUS | TMP_FAHRENHEIT)
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#endif
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#ifndef SENSOR_ENERGY_UNITS
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#define SENSOR_ENERGY_UNITS ENERGY_JOULES // Energy units (ENERGY_JOULES | ENERGY_KWH)
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#endif
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#ifndef SENSOR_POWER_UNITS
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#define SENSOR_POWER_UNITS POWER_WATTS // Power units (POWER_WATTS | POWER_KILOWATTS)
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#endif
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// =============================================================================
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// Specific data for each sensor
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// =============================================================================
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//------------------------------------------------------------------------------
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// AM2320 Humidity & Temperature sensor over I2C
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// Enable support by passing AM2320_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef AM2320_SUPPORT
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#define AM2320_SUPPORT 0
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#endif
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#ifndef AM2320_ADDRESS
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#define AM2320_ADDRESS 0x00 // 0x00 means auto
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#endif
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//------------------------------------------------------------------------------
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// Analog sensor
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// Enable support by passing ANALOG_SUPPORT=1 build flag
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//--------------------------------------------------------------------------------
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#ifndef ANALOG_SUPPORT
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#define ANALOG_SUPPORT 0
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#endif
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#ifndef ANALOG_SAMPLES
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#define ANALOG_SAMPLES 10 // Number of samples
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#endif
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#ifndef ANALOG_DELAY
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#define ANALOG_DELAY 0 // Delay between samples in micros
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#endif
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//------------------------------------------------------------------------------
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// BH1750
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// Enable support by passing BH1750_SUPPORT=1 build flag
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// http://www.elechouse.com/elechouse/images/product/Digital%20light%20Sensor/bh1750fvi-e.pdf
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//------------------------------------------------------------------------------
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#ifndef BH1750_SUPPORT
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#define BH1750_SUPPORT 0
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#endif
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#ifndef BH1750_ADDRESS
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#define BH1750_ADDRESS 0x00 // 0x00 means auto
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#endif
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#define BH1750_MODE BH1750_CONTINUOUS_HIGH_RES_MODE
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//------------------------------------------------------------------------------
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// BME280/BMP280
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// Enable support by passing BMX280_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef BMX280_SUPPORT
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#define BMX280_SUPPORT 0
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#endif
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#ifndef BMX280_ADDRESS
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#define BMX280_ADDRESS 0x00 // 0x00 means auto
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#endif
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#define BMX280_MODE 1 // 0 for sleep mode, 1 or 2 for forced mode, 3 for normal mode
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#define BMX280_STANDBY 0 // 0 for 0.5ms, 1 for 62.5ms, 2 for 125ms
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// 3 for 250ms, 4 for 500ms, 5 for 1000ms
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// 6 for 10ms, 7 for 20ms
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#define BMX280_FILTER 0 // 0 for OFF, 1 for 2 values, 2 for 4 values, 3 for 8 values and 4 for 16 values
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#define BMX280_TEMPERATURE 1 // Oversampling for temperature (set to 0 to disable magnitude)
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#define BMX280_HUMIDITY 1 // Oversampling for humidity (set to 0 to disable magnitude, only for BME280)
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#define BMX280_PRESSURE 1 // Oversampling for pressure (set to 0 to disable magnitude)
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//------------------------------------------------------------------------------
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// Dallas OneWire temperature sensors
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// Enable support by passing DALLAS_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef DALLAS_SUPPORT
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#define DALLAS_SUPPORT 0
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#endif
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#ifndef DALLAS_PIN
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#define DALLAS_PIN 14
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#endif
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#define DALLAS_RESOLUTION 9 // Not used atm
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#define DALLAS_READ_INTERVAL 2000 // Force sensor read & cache every 2 seconds
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//------------------------------------------------------------------------------
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// DHTXX temperature/humidity sensor
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// Enable support by passing DHT_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef DHT_SUPPORT
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#define DHT_SUPPORT 0
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#endif
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#ifndef DHT_PIN
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#define DHT_PIN 14
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#endif
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#ifndef DHT_TYPE
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#define DHT_TYPE DHT_CHIP_DHT22
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#endif
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//------------------------------------------------------------------------------
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// CSE7766 based power sensor
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// Enable support by passing CSE7766_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef CSE7766_SUPPORT
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#define CSE7766_SUPPORT 0
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#endif
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#ifndef CSE7766_PIN
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#define CSE7766_PIN 1 // TX pin from the CSE7766
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#endif
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#ifndef CSE7766_PIN_INVERSE
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#define CSE7766_PIN_INVERSE 0 // Signal is inverted
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#endif
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#define CSE7766_SYNC_INTERVAL 300 // Safe time between transmissions (ms)
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#define CSE7766_BAUDRATE 4800 // UART baudrate
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#define CSE7766_V1R 1.0 // 1mR current resistor
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#define CSE7766_V2R 1.0 // 1M voltage resistor
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//------------------------------------------------------------------------------
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// Digital sensor
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// Enable support by passing DIGITAL_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef DIGITAL_SUPPORT
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#define DIGITAL_SUPPORT 0
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#endif
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#ifndef DIGITAL_PIN
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#define DIGITAL_PIN 2
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#endif
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#ifndef DIGITAL_PIN_MODE
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#define DIGITAL_PIN_MODE INPUT_PULLUP
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#endif
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#ifndef DIGITAL_DEFAULT_STATE
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#define DIGITAL_DEFAULT_STATE 1
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#endif
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//------------------------------------------------------------------------------
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// ECH1560 based power sensor
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// Enable support by passing ECH1560_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef ECH1560_SUPPORT
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#define ECH1560_SUPPORT 0
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#endif
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#ifndef ECH1560_CLK_PIN
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#define ECH1560_CLK_PIN 4 // CLK pin for the ECH1560
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#endif
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#ifndef ECH1560_MISO_PIN
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#define ECH1560_MISO_PIN 5 // MISO pin for the ECH1560
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#endif
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#ifndef ECH1560_INVERTED
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#define ECH1560_INVERTED 0 // Signal is inverted
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#endif
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//------------------------------------------------------------------------------
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// Energy Monitor general settings
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//------------------------------------------------------------------------------
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#define EMON_MAX_SAMPLES 1000 // Max number of samples to get
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#define EMON_MAX_TIME 250 // Max time in ms to sample
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#define EMON_FILTER_SPEED 512 // Mobile average filter speed
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#define EMON_MAINS_VOLTAGE 230 // Mains voltage
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#define EMON_REFERENCE_VOLTAGE 3.3 // Reference voltage of the ADC
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#define EMON_CURRENT_RATIO 30 // Current ratio in the clamp (30V/1A)
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#define EMON_REPORT_CURRENT 0 // Report current
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#define EMON_REPORT_POWER 1 // Report power
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#define EMON_REPORT_ENERGY 1 // Report energy
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//------------------------------------------------------------------------------
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// Energy Monitor based on ADC121
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// Enable support by passing EMON_ADC121_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef EMON_ADC121_SUPPORT
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#define EMON_ADC121_SUPPORT 0 // Do not build support by default
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#endif
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#define EMON_ADC121_I2C_ADDRESS 0x00 // 0x00 means auto
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//------------------------------------------------------------------------------
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// Energy Monitor based on ADS1X15
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// Enable support by passing EMON_ADS1X15_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef EMON_ADS1X15_SUPPORT
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#define EMON_ADS1X15_SUPPORT 0 // Do not build support by default
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#endif
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#define EMON_ADS1X15_I2C_ADDRESS 0x00 // 0x00 means auto
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#define EMON_ADS1X15_TYPE ADS1X15_CHIP_ADS1115
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#define EMON_ADS1X15_GAIN ADS1X15_REG_CONFIG_PGA_4_096V
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#define EMON_ADS1X15_MASK 0x0F // A0=1 A1=2 A2=4 A3=8
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//------------------------------------------------------------------------------
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// Energy Monitor based on interval analog GPIO
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// Enable support by passing EMON_ANALOG_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef EMON_ANALOG_SUPPORT
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#define EMON_ANALOG_SUPPORT 0 // Do not build support by default
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#endif
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//------------------------------------------------------------------------------
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// Counter sensor
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// Enable support by passing EVENTS_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef EVENTS_SUPPORT
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#define EVENTS_SUPPORT 0 // Do not build with counter support by default
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#endif
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#ifndef EVENTS_PIN
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#define EVENTS_PIN 2 // GPIO to monitor
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#endif
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#ifndef EVENTS_PIN_MODE
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#define EVENTS_PIN_MODE INPUT // INPUT, INPUT_PULLUP
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#endif
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#ifndef EVENTS_INTERRUPT_MODE
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#define EVENTS_INTERRUPT_MODE RISING // RISING, FALLING, BOTH
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#endif
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#define EVENTS_DEBOUNCE 50 // Do not register events within less than 50 millis
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//------------------------------------------------------------------------------
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// Geiger sensor
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// Enable support by passing GEIGER_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef GEIGER_SUPPORT
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#define GEIGER_SUPPORT 0 // Do not build with geiger support by default
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#endif
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#ifndef GEIGER_PIN
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#define GEIGER_PIN D1 // GPIO to monitor "D1" => "GPIO5"
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#endif
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#ifndef GEIGER_PIN_MODE
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#define GEIGER_PIN_MODE INPUT // INPUT, INPUT_PULLUP
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#endif
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#ifndef GEIGER_INTERRUPT_MODE
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#define GEIGER_INTERRUPT_MODE RISING // RISING, FALLING, BOTH
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#endif
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#define GEIGER_DEBOUNCE 25 // Do not register events within less than 25 millis.
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// Value derived here: Debounce time 25ms, because https://github.com/Trickx/espurna/wiki/Geiger-counter
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#define GEIGER_CPM2SIEVERT 240 // CPM to µSievert per hour conversion factor
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// Typically the literature uses the invers, but I find an integer type more convienient.
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#define GEIGER_REPORT_SIEVERTS 1 // Enabler for local dose rate reports in µSv/h
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#define GEIGER_REPORT_CPM 1 // Enabler for local dose rate reports in counts per minute
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//------------------------------------------------------------------------------
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// GUVAS12SD UV Sensor (analog)
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// Enable support by passing GUVAS12SD_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef GUVAS12SD_SUPPORT
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#define GUVAS12SD_SUPPORT 0
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#endif
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#ifndef GUVAS12SD_PIN
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#define GUVAS12SD_PIN 14
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#endif
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//------------------------------------------------------------------------------
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// HC-SR04
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// Enable support by passing HCSR04_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef HCSR04_SUPPORT
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#define HCSR04_SUPPORT 0
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#endif
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#ifndef HCSR04_TRIGGER
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#define HCSR04_TRIGGER 12 // GPIO for the trigger pin (output)
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#endif
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#ifndef HCSR04_ECHO
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#define HCSR04_ECHO 14 // GPIO for the echo pin (input)
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#endif
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//------------------------------------------------------------------------------
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// HLW8012 Energy monitor IC
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// Enable support by passing HLW8012_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef HLW8012_SUPPORT
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#define HLW8012_SUPPORT 0
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#endif
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#ifndef HLW8012_SEL_PIN
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#define HLW8012_SEL_PIN 5
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#endif
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#ifndef HLW8012_CF1_PIN
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#define HLW8012_CF1_PIN 13
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#endif
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#ifndef HLW8012_CF_PIN
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#define HLW8012_CF_PIN 14
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#endif
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#ifndef HLW8012_SEL_CURRENT
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#define HLW8012_SEL_CURRENT HIGH // SEL pin to HIGH to measure current
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#endif
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#ifndef HLW8012_CURRENT_R
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#define HLW8012_CURRENT_R 0.001 // Current resistor
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#endif
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#ifndef HLW8012_VOLTAGE_R_UP
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#define HLW8012_VOLTAGE_R_UP ( 5 * 470000 ) // Upstream voltage resistor
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#endif
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#ifndef HLW8012_VOLTAGE_R_DOWN
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#define HLW8012_VOLTAGE_R_DOWN ( 1000 ) // Downstream voltage resistor
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#endif
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#ifndef HLW8012_CURRENT_RATIO
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#define HLW8012_CURRENT_RATIO 0 // Set to 0 to use factory defaults
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#endif
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#ifndef HLW8012_VOLTAGE_RATIO
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#define HLW8012_VOLTAGE_RATIO 0 // Set to 0 to use factory defaults
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#endif
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#ifndef HLW8012_POWER_RATIO
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#define HLW8012_POWER_RATIO 0 // Set to 0 to use factory defaults
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#endif
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#ifndef HLW8012_USE_INTERRUPTS
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#define HLW8012_USE_INTERRUPTS 1 // Use interrupts to trap HLW8012 signals
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#endif
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#ifndef HLW8012_INTERRUPT_ON
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#define HLW8012_INTERRUPT_ON CHANGE // When to trigger the interrupt
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// Use CHANGE for HLW8012
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// Use FALLING for BL0937 / HJL0
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#endif
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//------------------------------------------------------------------------------
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// MHZ19 CO2 sensor
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// Enable support by passing MHZ19_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef MHZ19_SUPPORT
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#define MHZ19_SUPPORT 0
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#endif
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#ifndef MHZ19_RX_PIN
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#define MHZ19_RX_PIN 13
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#endif
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#ifndef MHZ19_TX_PIN
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#define MHZ19_TX_PIN 15
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#endif
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//------------------------------------------------------------------------------
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// SenseAir CO2 sensor
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// Enable support by passing SENSEAIR_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef SENSEAIR_SUPPORT
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#define SENSEAIR_SUPPORT 0
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#endif
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#ifndef SENSEAIR_RX_PIN
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#define SENSEAIR_RX_PIN 0
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#endif
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#ifndef SENSEAIR_TX_PIN
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#define SENSEAIR_TX_PIN 2
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#endif
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//------------------------------------------------------------------------------
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// Particle Monitor based on Plantower PMS
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// Enable support by passing PMSX003_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef PMSX003_SUPPORT
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#define PMSX003_SUPPORT 0
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#endif
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#ifndef PMS_TYPE
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#define PMS_TYPE PMS_TYPE_X003
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#endif
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// You can enable smart sleep (read 6-times then sleep on 24-reading-cycles) to extend PMS sensor's life.
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// Otherwise the default lifetime of PMS sensor is about 8000-hours/1-years.
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// The PMS's fan will stop working on sleeping cycle, and will wake up on reading cycle.
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#ifndef PMS_SMART_SLEEP
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#define PMS_SMART_SLEEP 0
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#endif
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#ifndef PMS_RX_PIN
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#define PMS_RX_PIN 13
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#endif
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#ifndef PMS_TX_PIN
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#define PMS_TX_PIN 15
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#endif
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//------------------------------------------------------------------------------
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// PZEM004T based power monitor
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// Enable support by passing PZEM004T_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef PZEM004T_SUPPORT
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#define PZEM004T_SUPPORT 0
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#endif
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#ifndef PZEM004T_USE_SOFT
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#define PZEM004T_USE_SOFT 0 // Software serial is not working atm, use hardware serial
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#endif
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#ifndef PZEM004T_RX_PIN
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#define PZEM004T_RX_PIN 13 // Software serial RX GPIO (if PZEM004T_USE_SOFT == 1)
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#endif
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#ifndef PZEM004T_TX_PIN
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#define PZEM004T_TX_PIN 15 // Software serial TX GPIO (if PZEM004T_USE_SOFT == 1)
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#endif
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#ifndef PZEM004T_HW_PORT
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#define PZEM004T_HW_PORT Serial // Hardware serial port (if PZEM004T_USE_SOFT == 0)
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#endif
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//------------------------------------------------------------------------------
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// SHT3X I2C (Wemos) temperature & humidity sensor
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// Enable support by passing SHT3X_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef SHT3X_I2C_SUPPORT
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#define SHT3X_I2C_SUPPORT 0
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#endif
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#ifndef SHT3X_I2C_ADDRESS
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#define SHT3X_I2C_ADDRESS 0x00 // 0x00 means auto
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#endif
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//------------------------------------------------------------------------------
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// SI7021 temperature & humidity sensor
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// Enable support by passing SI7021_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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|
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#ifndef SI7021_SUPPORT
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#define SI7021_SUPPORT 0
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#endif
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#ifndef SI7021_ADDRESS
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#define SI7021_ADDRESS 0x00 // 0x00 means auto
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#endif
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//------------------------------------------------------------------------------
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// TMP3X analog temperature sensor
|
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// Enable support by passing TMP3X_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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|
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#ifndef TMP3X_SUPPORT
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#define TMP3X_SUPPORT 0
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#endif
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#ifndef TMP3X_TYPE
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#define TMP3X_TYPE TMP3X_TMP35
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#endif
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//------------------------------------------------------------------------------
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// V9261F based power sensor
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// Enable support by passing SI7021_SUPPORT=1 build flag
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//------------------------------------------------------------------------------
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#ifndef V9261F_SUPPORT
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#define V9261F_SUPPORT 0
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#endif
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#ifndef V9261F_PIN
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#define V9261F_PIN 2 // TX pin from the V9261F
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#endif
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#ifndef V9261F_PIN_INVERSE
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#define V9261F_PIN_INVERSE 1 // Signal is inverted
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#endif
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#define V9261F_SYNC_INTERVAL 600 // Sync signal length (ms)
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#define V9261F_BAUDRATE 4800 // UART baudrate
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// Default ratios
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#define V9261F_CURRENT_FACTOR 79371434.0
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#define V9261F_VOLTAGE_FACTOR 4160651.0
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#define V9261F_POWER_FACTOR 153699.0
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#define V9261F_RPOWER_FACTOR V9261F_CURRENT_FACTOR
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// =============================================================================
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// Sensor helpers configuration - can't move to dependencies.h
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// =============================================================================
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#ifndef SENSOR_SUPPORT
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#define SENSOR_SUPPORT ( \
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AM2320_SUPPORT || \
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ANALOG_SUPPORT || \
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BH1750_SUPPORT || \
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BMX280_SUPPORT || \
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CSE7766_SUPPORT || \
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DALLAS_SUPPORT || \
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DHT_SUPPORT || \
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DIGITAL_SUPPORT || \
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ECH1560_SUPPORT || \
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EMON_ADC121_SUPPORT || \
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EMON_ADS1X15_SUPPORT || \
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EMON_ANALOG_SUPPORT || \
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EVENTS_SUPPORT || \
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GEIGER_SUPPORT || \
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GUVAS12SD_SUPPORT || \
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HCSR04_SUPPORT || \
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HLW8012_SUPPORT || \
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MHZ19_SUPPORT || \
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SENSEAIR_SUPPORT || \
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PMSX003_SUPPORT || \
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PZEM004T_SUPPORT || \
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SHT3X_I2C_SUPPORT || \
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SI7021_SUPPORT || \
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TMP3X_SUPPORT || \
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V9261F_SUPPORT \
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)
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#endif
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// -----------------------------------------------------------------------------
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// ADC
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// -----------------------------------------------------------------------------
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// Default ADC mode is to monitor internal power supply
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#ifndef ADC_MODE_VALUE
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#define ADC_MODE_VALUE ADC_VCC
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#endif
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// -----------------------------------------------------------------------------
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// I2C
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// -----------------------------------------------------------------------------
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#ifndef I2C_SUPPORT
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#define I2C_SUPPORT 0 // I2C enabled (1.98Kb)
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#endif
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#define I2C_USE_BRZO 0 // Use brzo_i2c library or standard Wire
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#ifndef I2C_SDA_PIN
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#define I2C_SDA_PIN SDA // SDA GPIO (Sonoff => 4)
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#endif
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#ifndef I2C_SCL_PIN
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#define I2C_SCL_PIN SCL // SCL GPIO (Sonoff => 14)
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#endif
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#define I2C_CLOCK_STRETCH_TIME 200 // BRZO clock stretch time
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#define I2C_SCL_FREQUENCY 1000 // BRZO SCL frequency
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#define I2C_CLEAR_BUS 0 // Clear I2C bus on boot
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#define I2C_PERFORM_SCAN 1 // Perform a bus scan on boot
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//--------------------------------------------------------------------------------
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// Class loading
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//--------------------------------------------------------------------------------
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#if SENSOR_SUPPORT
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#if SENSOR_DEBUG
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#include "../config/debug.h"
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#endif
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#include "../sensors/BaseSensor.h"
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#if AM2320_SUPPORT
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#include "../sensors/AM2320Sensor.h"
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#endif
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#if ANALOG_SUPPORT
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#include "../sensors/AnalogSensor.h"
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#endif
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#if BH1750_SUPPORT
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#include "../sensors/BH1750Sensor.h"
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#endif
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#if BMX280_SUPPORT
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#include "../sensors/BMX280Sensor.h"
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#endif
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#if CSE7766_SUPPORT
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#include <SoftwareSerial.h>
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#include "../sensors/CSE7766Sensor.h"
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#endif
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#if DALLAS_SUPPORT
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#include <OneWire.h>
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#include "../sensors/DallasSensor.h"
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#endif
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#if DHT_SUPPORT
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#include "../sensors/DHTSensor.h"
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#endif
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#if DIGITAL_SUPPORT
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#include "../sensors/DigitalSensor.h"
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#endif
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#if ECH1560_SUPPORT
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#include "../sensors/ECH1560Sensor.h"
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#endif
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#if EMON_ADC121_SUPPORT
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#include "../sensors/EmonADC121Sensor.h"
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#endif
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#if EMON_ADS1X15_SUPPORT
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#include "../sensors/EmonADS1X15Sensor.h"
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#endif
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#if EMON_ANALOG_SUPPORT
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#include "../sensors/EmonAnalogSensor.h"
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#endif
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#if EVENTS_SUPPORT
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#include "../sensors/EventSensor.h"
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#endif
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#if GEIGER_SUPPORT
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#include "../sensors/GeigerSensor.h" // The main file for geiger counting module
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#endif
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#if GUVAS12SD_SUPPORT
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#include "../sensors/GUVAS12SDSensor.h"
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#endif
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#if HCSR04_SUPPORT
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#include "../sensors/HCSR04Sensor.h"
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#endif
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#if HLW8012_SUPPORT
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#include <HLW8012.h>
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#include "../sensors/HLW8012Sensor.h"
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#endif
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#if MHZ19_SUPPORT
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#include <SoftwareSerial.h>
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#include "../sensors/MHZ19Sensor.h"
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#endif
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#if SENSEAIR_SUPPORT
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#include <SoftwareSerial.h>
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#include "../sensors/SenseAirSensor.h"
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#endif
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#if PMSX003_SUPPORT
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#include <SoftwareSerial.h>
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#include "../sensors/PMSX003Sensor.h"
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#endif
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#if PZEM004T_SUPPORT
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#include <SoftwareSerial.h>
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#include "../sensors/PZEM004TSensor.h"
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#endif
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#if SI7021_SUPPORT
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#include "../sensors/SI7021Sensor.h"
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#endif
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#if SHT3X_I2C_SUPPORT
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#include "../sensors/SHT3XI2CSensor.h"
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#endif
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#if TMP3X_SUPPORT
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#include "../sensors/TMP3XSensor.h"
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#endif
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|
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#if V9261F_SUPPORT
|
|
#include <SoftwareSerial.h>
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#include "../sensors/V9261FSensor.h"
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#endif
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#endif // SENSOR_SUPPORT
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