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LORDWORLD

LORDWORLD BME680 Environmental Sensor Development Board

SKU CH-FK1V-8F2PZ

Measures temperature, humidity, barometric pressure and gas via an onboard BME680 sensor with configurable I2C address, SPI support and 3.3 V/5 V logic compatibility

  • Measures temperature, humidity, pressure and gas with onboard BME680 sensor
  • Configurable I2C address and bus cascading simplify multi-sensor projects
  • SPI mode available via CS pin for flexible interfacing
  • Onboard voltage translator enables direct 3.3V and 5V logic compatibility
  • Online examples for Raspberry Pi, Pico, Arduino and ESP32 speed development

Environmental Sensor Board

The LORDWORLD BME680 board integrates temperature, humidity, barometric pressure and gas detection into a single module. It communicates over I2C with a configurable address and supports bus cascading for multi-sensor setups. SPI mode is available via the chip-select pin. An onboard voltage translator allows direct connection to 3.3 V or 5 V logic.

Makers Adding Air-Quality Data

This board suits developers building weather stations, indoor-air monitors or IoT nodes that need four environmental parameters from one footprint. Example code is provided for Raspberry Pi, Pico, Arduino and ESP32 platforms. Projects requiring particulate-matter counting, CO₂-specific sensing or radar-based presence detection will need different sensors.

Dual-Interface With Level Translation

The decisive feature is the combined I2C and SPI interface paired with a 3.3 V regulator and logic-level translator. It lets the same module work on 3.3 V and 5 V hosts without external shifting circuitry, and the configurable I2C address prevents bus conflicts when stacking multiple units.

Highlights

  • Measures temperature, humidity, pressure and gas with onboard BME680 sensor
  • Configurable I2C address and bus cascading simplify multi-sensor projects
  • SPI mode available via CS pin for flexible interfacing
  • Onboard voltage translator enables direct 3.3V and 5V logic compatibility
  • Online examples for Raspberry Pi, Pico, Arduino and ESP32 speed development

Specifications

BrandLORDWORLD

Questions about this item

Does this BME680 board use I2C or SPI, and what is the default bus?

The board uses I2C by default with a configurable address and supports cascading on the same bus; SPI is available when the CS pin is asserted.

What physical connections does the module need to sit on a Raspberry Pi header?

It plugs into the standard 40-pin GPIO header; the onboard voltage translator lets it work with 3.3 V or 5 V logic without extra level-shifting.

How do I switch from I2C to SPI mode, and what is the common mistake?

Drive the CS pin low to enable SPI; the common mistake is leaving CS floating while expecting SPI traffic, which keeps the device in I2C mode.

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