nanoFramework.Iot.Device.Bmxx80 1.2.217

Prefix Reserved
There is a newer version of this package available.
See the version list below for details.
dotnet add package nanoFramework.Iot.Device.Bmxx80 --version 1.2.217                
NuGet\Install-Package nanoFramework.Iot.Device.Bmxx80 -Version 1.2.217                
This command is intended to be used within the Package Manager Console in Visual Studio, as it uses the NuGet module's version of Install-Package.
<PackageReference Include="nanoFramework.Iot.Device.Bmxx80" Version="1.2.217" />                
For projects that support PackageReference, copy this XML node into the project file to reference the package.
paket add nanoFramework.Iot.Device.Bmxx80 --version 1.2.217                
#r "nuget: nanoFramework.Iot.Device.Bmxx80, 1.2.217"                
#r directive can be used in F# Interactive and Polyglot Notebooks. Copy this into the interactive tool or source code of the script to reference the package.
// Install nanoFramework.Iot.Device.Bmxx80 as a Cake Addin
#addin nuget:?package=nanoFramework.Iot.Device.Bmxx80&version=1.2.217

// Install nanoFramework.Iot.Device.Bmxx80 as a Cake Tool
#tool nuget:?package=nanoFramework.Iot.Device.Bmxx80&version=1.2.217                

BMxx80 Device Family

BMxx80 is a device family that senses temperature, barometric pressure, altitude, humidity and VOC gas.

SPI and I2C can be used to communicate with the device (only I2C implemented so far).

Documentation

The implementation supports the following devices:

  • BMP280 temperature and barometric pressure sensor (Datasheet)
  • BME280 temperature, barometric pressure and humidity sensor (Datasheet)
  • BME680 temperature, barometric pressure, humidity and VOC gas sensor (Datasheet)

Usage

BME280

Important: make sure you properly setup the I2C pins especially for ESP32 before creating the I2cDevice, make sure you install the nanoFramework.Hardware.ESP32 nuget:

//////////////////////////////////////////////////////////////////////
// when connecting to an ESP32 device, need to configure the I2C GPIOs
// used for the bus
Configuration.SetPinFunction(21, DeviceFunction.I2C1_DATA);
Configuration.SetPinFunction(22, DeviceFunction.I2C1_CLOCK);

For other devices like STM32, please make sure you're using the preset pins for the I2C bus you want to use.

// bus id on the MCU
const int busId = 1;
I2cConnectionSettings i2cSettings = new(busId, Bme280.DefaultI2cAddress);
using I2cDevice i2cDevice = I2cDevice.Create(i2cSettings);
using Bme280 bme80 = new Bme280(i2cDevice)
{
    // set higher sampling
    TemperatureSampling = Sampling.LowPower,
    PressureSampling = Sampling.UltraHighResolution,
    HumiditySampling = Sampling.Standard,

};

// Perform a synchronous measurement
var readResult = bme80.Read();

// Note that if you already have the pressure value and the temperature, you could also calculate altitude by using
// var altValue = WeatherHelper.CalculateAltitude(preValue, defaultSeaLevelPressure, tempValue) which would be more performant.
bme80.TryReadAltitude(defaultSeaLevelPressure, out var altValue);

Debug.WriteLine($"Temperature: {readResult.Temperature?.DegreesCelsius:0.#}\u00B0C");
Debug.WriteLine($"Pressure: {readResult.Pressure?.Hectopascals:0.##}hPa");
Debug.WriteLine($"Altitude: {altValue.Meters:0.##}m");
Debug.WriteLine($"Relative humidity: {readResult.Humidity?.Percent:0.#}%");

BMP680

// The I2C bus ID on the MCU
const int busId = 1;

I2cConnectionSettings i2cSettings = new(busId, Bme680.DefaultI2cAddress);
I2cDevice i2cDevice = I2cDevice.Create(i2cSettings);

using Bme680 bme680 = new Bme680(i2cDevice, Temperature.FromDegreesCelsius(20.0));

// reset will change settings back to default
bme680.Reset();

// Perform a synchronous measurement
var readResult = bme680.Read();

// Print out the measured data
Debug.WriteLine($"Gas resistance: {readResult.GasResistance?.Ohms:0.##}Ohm");
Debug.WriteLine($"Temperature: {readResult.Temperature?.DegreesCelsius:0.#}\u00B0C");
Debug.WriteLine($"Pressure: {readResult.Pressure?.Hectopascals:0.##}hPa");
Debug.WriteLine($"Relative humidity: {readResult.Humidity?.Percent:0.#}%");

BMP280

// bus id on the MCU
const int busId = 1;

I2cConnectionSettings i2cSettings = new(busId, Bmp280.DefaultI2cAddress);
I2cDevice i2cDevice = I2cDevice.Create(i2cSettings);
using var i2CBmp280 = new Bmp280(i2cDevice);

// set higher sampling
i2CBmp280.TemperatureSampling = Sampling.LowPower;
i2CBmp280.PressureSampling = Sampling.UltraHighResolution;

// Perform a synchronous measurement
var readResult = i2CBmp280.Read();

// Print out the measured data
Debug.WriteLine($"Temperature: {readResult.Temperature?.DegreesCelsius:0.#}\u00B0C");
Debug.WriteLine($"Pressure: {readResult.Pressure?.Hectopascals:0.##}hPa");

You also have 3 examples on how to use this device binding are available in the samples folder.

The following fritzing diagram illustrates one way to wire up the BMP280 with an MCU like ESP32 using I2C:

ESP32 Breadboard diagram

General:

Bmp280 MCU
Vin Power pin
GND Ground

I2C:

Bmp280 MCU
SCK I2C clock pin
SDI I2C data pin

Connection Type

The following connection types are supported by this binding.

  • I2C
  • SPI
Product Compatible and additional computed target framework versions.
.NET Framework net is compatible. 
Compatible target framework(s)
Included target framework(s) (in package)
Learn more about Target Frameworks and .NET Standard.

NuGet packages

This package is not used by any NuGet packages.

GitHub repositories (2)

Showing the top 2 popular GitHub repositories that depend on nanoFramework.Iot.Device.Bmxx80:

Repository Stars
dotnet/samples
Sample code referenced by the .NET documentation
nanoframework/Samples
🍬 Code samples from the nanoFramework team used in testing, proof of concepts and other explorational endeavours
Version Downloads Last updated
1.2.639 124 9/6/2024
1.2.631 112 8/28/2024
1.2.613 138 8/9/2024
1.2.601 82 7/26/2024
1.2.590 129 7/17/2024
1.2.573 140 6/19/2024
1.2.570 105 6/14/2024
1.2.560 132 5/29/2024
1.2.552 128 5/17/2024
1.2.536 189 4/15/2024
1.2.514 165 3/22/2024
1.2.494 176 2/28/2024
1.2.474 189 1/24/2024
1.2.462 189 1/5/2024
1.2.458 162 12/20/2023
1.2.456 132 12/13/2023
1.2.442 231 11/15/2023
1.2.436 131 11/10/2023
1.2.416 155 11/8/2023
1.2.403 225 10/6/2023
1.2.396 211 9/27/2023
1.2.384 217 9/6/2023
1.2.378 183 8/16/2023
1.2.369 258 8/2/2023
1.2.363 160 7/28/2023
1.2.357 151 7/19/2023
1.2.354 208 7/14/2023
1.2.345 181 6/21/2023
1.2.341 155 6/14/2023
1.2.337 191 6/7/2023
1.2.335 138 6/2/2023
1.2.329 149 5/26/2023
1.2.316 185 5/16/2023
1.2.313 150 5/12/2023
1.2.308 178 5/11/2023
1.2.302 151 5/10/2023
1.2.297 170 5/3/2023
1.2.273 327 3/17/2023
1.2.267 278 3/10/2023
1.2.263 259 3/8/2023
1.2.259 301 2/27/2023
1.2.256 249 2/24/2023
1.2.253 239 2/22/2023
1.2.222 376 1/9/2023
1.2.217 339 1/6/2023
1.2.215 295 1/6/2023
1.2.212 311 1/5/2023
1.2.210 345 1/4/2023
1.2.208 308 1/3/2023
1.2.203 322 12/28/2022
1.2.159 410 11/14/2022
1.2.157 353 11/9/2022
1.2.155 352 11/6/2022
1.2.153 368 11/5/2022
1.2.141 427 10/25/2022
1.2.128 409 10/22/2022
1.2.125 417 10/12/2022
1.2.87 528 9/15/2022
1.2.66 423 9/4/2022
1.2.63 417 9/3/2022
1.2.47 446 8/15/2022
1.2.40 458 8/6/2022
1.2.38 453 8/5/2022
1.2.28 467 8/1/2022
1.2.13 477 7/24/2022
1.2.10 441 7/23/2022
1.1.147.4251 538 7/8/2022
1.1.145.58726 438 7/7/2022
1.1.135.7416 465 7/1/2022
1.1.133.52556 475 6/30/2022
1.1.123.24311 463 6/27/2022
1.1.121.35854 435 6/26/2022
1.1.116.8772 478 6/24/2022
1.1.113.2032 457 6/23/2022
1.1.109.32999 481 6/16/2022
1.1.102.51394 435 6/15/2022
1.1.99.36719 434 6/14/2022
1.1.97.17326 452 6/13/2022
1.1.92.53000 483 6/8/2022
1.1.75.16702 462 6/1/2022
1.1.72.29765 455 5/31/2022
1.1.67.25390 462 5/27/2022
1.1.64.21380 446 5/26/2022
1.1.59.7661 463 5/24/2022
1.1.58.10097 457 5/23/2022
1.1.54.28879 445 5/23/2022
1.1.44.45306 491 5/6/2022
1.1.40 475 5/5/2022
1.1.11 500 4/19/2022
1.1.3 511 4/15/2022
1.1.1 450 4/14/2022
1.0.300 527 3/31/2022
1.0.288-preview.114 123 3/25/2022
1.0.288-preview.113 114 3/25/2022
1.0.288-preview.104 106 3/22/2022
1.0.288-preview.103 106 3/21/2022
1.0.288-preview.100 114 3/19/2022
1.0.288-preview.99 126 3/18/2022
1.0.288-preview.98 110 3/18/2022
1.0.288-preview.95 119 3/15/2022
1.0.288-preview.93 110 3/15/2022
1.0.288-preview.87 121 3/10/2022
1.0.288-preview.86 136 3/8/2022
1.0.288-preview.77 130 2/27/2022
1.0.288-preview.75 120 2/26/2022
1.0.288-preview.65 173 2/18/2022
1.0.288-preview.63 117 2/16/2022
1.0.288-preview.61 125 2/12/2022
1.0.288-preview.58 127 2/10/2022
1.0.288-preview.53 118 2/9/2022
1.0.288-preview.48 146 2/4/2022
1.0.288-preview.41 140 1/31/2022
1.0.288-preview.29 137 1/28/2022
1.0.288-preview.20 140 1/27/2022
1.0.288-preview.19 128 1/27/2022
1.0.288-preview.18 135 1/27/2022
1.0.288-preview.5 138 1/24/2022
1.0.288-preview.1 128 1/21/2022
1.0.272 514 1/10/2022
1.0.259 515 12/9/2021
1.0.258 343 12/7/2021
1.0.164 1,042 9/9/2021
1.0.157 373 9/4/2021
1.0.154 333 8/30/2021
1.0.153 361 8/14/2021
1.0.151 357 8/6/2021
1.0.146 366 7/22/2021
1.0.138 382 7/18/2021
1.0.136 414 7/17/2021
1.0.135 164 7/16/2021
1.0.134 172 7/15/2021
1.0.133 187 7/14/2021
1.0.131 189 7/8/2021
1.0.130 487 7/6/2021
1.0.129 167 7/6/2021
1.0.127 179 7/5/2021
1.0.126 180 7/5/2021
1.0.125 189 7/5/2021
1.0.122 219 6/30/2021
1.0.121 203 6/29/2021
1.0.120 193 6/29/2021
1.0.119 229 6/28/2021
1.0.118 237 6/20/2021
1.0.111 194 6/14/2021
1.0.110 243 6/9/2021
1.0.109 163 6/8/2021
1.0.106 201 6/1/2021
1.0.104 247 5/29/2021
1.0.103 211 5/28/2021
1.0.97 180 5/28/2021
1.0.90 183 5/27/2021
1.0.64 174 5/26/2021
1.0.19 228 5/21/2021