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BME680 Digital Humidity Temperature Pressure High Altitude Sensor Module

SKU: ELC1078S

₹ 1,249.99 ₹ 3,200.00

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BME680 Digital Humidity Temperature Pressure High Altitude Sensor ModuleWith Soldered Pins₹ 1,249.99
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The long awaited BME680 from Bosch gives you all the environmental sensing you want in one small package. This little sensor contains temperaturehumiditybarometric pressure, and VOC gas sensing capabilities. All over SPI or I2C at a great price!

Like the BME280 & BMP280, this precision sensor from Bosch can measure humidity with ±3% accuracy, barometric pressure with ±1 hPa absolute accuracy, and temperature with ±1.0°C accuracy. Because pressure changes with altitude, and the pressure measurements are so good, you can also use it as an altimeter with  ±1 meter or better accuracy!

The BME680 takes those sensors to the next step in that it contains a small MOX sensor. The heated metal oxide changes resistance based on the volatile organic compounds (VOC) in the air, so it can be used to detect gasses & alcohols such as Ethanol, Alcohol and Carbon Monoxide, and perform air quality measurements. Note it will give you one resistance value, with overall VOC content, but it cannot differentiate gasses or alcohols.

Please note this sensor, like all VOC/gas sensors, has variability and to get precise measurements you will want to calibrate it against known sources! That said, for general environmental sensors, it will give you a good idea of trends and comparisons. We recommend that you run this sensor for 48 hours when you first receive it to "burn it in", and then 30 minutes in the desired mode every time the sensor is in use. This is because the sensitivity levels of the sensor will change during early use, and the resistance will slowly rise over time as the MOX warms up to its baseline reading.

For your convenience we've pick-and-placed the sensor on a PCB with a 3.3V regulator and some level shifting, so it can be easily used with your favorite 3.3V or 5V microcontroller.

Specifications

Resources
Datasheet
Library
Sample Code
Tutorial
What interfaces does the module support and how do I connect it to my microcontroller?
The device supports SPI and I2C communication, and the board includes a 3.3V regulator and level shifting so it works with 3.3V or 5V microcontrollers.
What are the accuracy specifications for temperature, humidity and pressure?
Humidity accuracy is 3 percent, pressure accuracy is 1 hPa absolute, and temperature accuracy is 1.0 degree Celsius.
Can this sensor be used as an altimeter?
Yes, pressure measurements enable use as an altimeter with about 1 meter or better accuracy.
How should I burn in and calibrate the sensor for best results?
It is recommended to run the sensor for 48 hours when you first receive it to burn it in, and then 30 minutes in the desired mode each time it is used. For precise measurements you should calibrate against known sources.
What is the VOC sensing capability and what are its limitations?
The MOX sensor provides a single resistance value reflecting overall VOC content and can detect gases and alcohols such as Ethanol and Carbon Monoxide, but it cannot differentiate between gases or alcohols.
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Description
Ask AI about this product

The long awaited BME680 from Bosch gives you all the environmental sensing you want in one small package. This little sensor contains temperaturehumiditybarometric pressure, and VOC gas sensing capabilities. All over SPI or I2C at a great price!

Like the BME280 & BMP280, this precision sensor from Bosch can measure humidity with ±3% accuracy, barometric pressure with ±1 hPa absolute accuracy, and temperature with ±1.0°C accuracy. Because pressure changes with altitude, and the pressure measurements are so good, you can also use it as an altimeter with  ±1 meter or better accuracy!

The BME680 takes those sensors to the next step in that it contains a small MOX sensor. The heated metal oxide changes resistance based on the volatile organic compounds (VOC) in the air, so it can be used to detect gasses & alcohols such as Ethanol, Alcohol and Carbon Monoxide, and perform air quality measurements. Note it will give you one resistance value, with overall VOC content, but it cannot differentiate gasses or alcohols.

Please note this sensor, like all VOC/gas sensors, has variability and to get precise measurements you will want to calibrate it against known sources! That said, for general environmental sensors, it will give you a good idea of trends and comparisons. We recommend that you run this sensor for 48 hours when you first receive it to "burn it in", and then 30 minutes in the desired mode every time the sensor is in use. This is because the sensitivity levels of the sensor will change during early use, and the resistance will slowly rise over time as the MOX warms up to its baseline reading.

For your convenience we've pick-and-placed the sensor on a PCB with a 3.3V regulator and some level shifting, so it can be easily used with your favorite 3.3V or 5V microcontroller.

Specifications

Resources
Datasheet
Library
Sample Code
Tutorial
FAQ
What interfaces does the module support and how do I connect it to my microcontroller?
The device supports SPI and I2C communication, and the board includes a 3.3V regulator and level shifting so it works with 3.3V or 5V microcontrollers.
What are the accuracy specifications for temperature, humidity and pressure?
Humidity accuracy is 3 percent, pressure accuracy is 1 hPa absolute, and temperature accuracy is 1.0 degree Celsius.
Can this sensor be used as an altimeter?
Yes, pressure measurements enable use as an altimeter with about 1 meter or better accuracy.
How should I burn in and calibrate the sensor for best results?
It is recommended to run the sensor for 48 hours when you first receive it to burn it in, and then 30 minutes in the desired mode each time it is used. For precise measurements you should calibrate against known sources.
What is the VOC sensing capability and what are its limitations?
The MOX sensor provides a single resistance value reflecting overall VOC content and can detect gases and alcohols such as Ethanol and Carbon Monoxide, but it cannot differentiate between gases or alcohols.
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Welcome to the discussion thread for BME680 Digital Humidity Temperature Pressure High Altitude Sensor Module
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