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Use standard units for pressure measures, let user choose conversion
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@ -57,7 +57,7 @@ try:
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if sensor.get_sensor_data():
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if sensor.get_sensor_data():
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output = '{0:.2f} C,{1:.2f} hPa,{2:.2f} %RH'.format(
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output = '{0:.2f} C,{1:.2f} hPa,{2:.2f} %RH'.format(
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sensor.data.temperature,
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sensor.data.temperature,
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sensor.data.pressure,
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sensor.data.pressure / 100.0,
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sensor.data.humidity)
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sensor.data.humidity)
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if sensor.data.heat_stable:
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if sensor.data.heat_stable:
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@ -24,7 +24,7 @@ def display_data(offset=0):
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sensor.get_sensor_data()
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sensor.get_sensor_data()
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output = '{0:.2f} C, {1:.2f} hPa, {2:.3f} %RH'.format(
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output = '{0:.2f} C, {1:.2f} hPa, {2:.3f} %RH'.format(
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sensor.data.temperature,
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sensor.data.temperature,
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sensor.data.pressure,
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sensor.data.pressure / 100.0,
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sensor.data.humidity)
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sensor.data.humidity)
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print(output)
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print(output)
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print('')
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print('')
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@ -31,7 +31,7 @@ try:
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output = '{0:.2f} C,{1:.2f} hPa,{2:.3f} %RH'.format(
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output = '{0:.2f} C,{1:.2f} hPa,{2:.3f} %RH'.format(
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sensor.data.temperature,
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sensor.data.temperature,
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sensor.data.pressure,
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sensor.data.pressure / 100.0,
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sensor.data.humidity)
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sensor.data.humidity)
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print(output)
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print(output)
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@ -291,7 +291,7 @@ class BME680(BME680Data):
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self.data.temperature = temperature / 100.0
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self.data.temperature = temperature / 100.0
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self.ambient_temperature = temperature # Saved for heater calc
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self.ambient_temperature = temperature # Saved for heater calc
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self.data.pressure = self._calc_pressure(adc_pres) / 100.0
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self.data.pressure = self._calc_pressure(adc_pres)
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self.data.humidity = self._calc_humidity(adc_hum) / 1000.0
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self.data.humidity = self._calc_humidity(adc_hum) / 1000.0
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self.data.gas_resistance = self._calc_gas_resistance(adc_gas_res, gas_range)
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self.data.gas_resistance = self._calc_gas_resistance(adc_gas_res, gas_range)
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return True
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return True
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