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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.

Besonderheiten

  • 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

Technische Daten

BrandLORDWORLD

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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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