Accel&Qvar Click Board

MIKROE-6025
Regular price
£18.00
Sale price
£18.00
Regular price
£0
Sold out
Unit price
Quantity must be 1 or more

Introducing the revolutionary Accel&Qvar Click Board! This compact add-on board is perfect for capturing precise acceleration measurements and detecting electric charge variations. Crafted with care and precision, it features the LIS2DUXS12 ultralow-power accelerometer from STMicroelectronics.

Designed to meet the needs of developers and innovators, the Accel&Qvar Click Board offers unparalleled precision and flexibility. Its adjustable full scales (±2g to ±16g) and output data rates (1.6Hz to 800Hz) ensure optimal performance in various applications. Plus, its multiple operating modes provide superior functionality and reliability.

Elevate your user interaction with the unique Qvar technology. This cutting-edge sensor enhances touch, press, and swipe detection, making it an ideal choice for wearable technology, portable healthcare devices, and motion-activated user interfaces.

  • Unparalleled precision: The Accel&Qvar Click Board captures precise acceleration measurements with its ultralow-power accelerometer.
  • Enhanced user interaction: Thanks to Qvar technology, this board detects touch, press, and swipe movements with exceptional accuracy.

Compatibility is never an issue with the Accel&Qvar Click Board. It seamlessly integrates with the mikroBUS™ socket and can be used on any host system that supports the mikroBUS™ standard. With the mikroSDK open-source libraries, evaluation and customization have never been easier.

But what truly sets this Click board™ apart is the groundbreaking ClickID feature. Your host system can effortlessly and automatically detect and identify this add-on board, streamlining the setup process and saving you time and effort.

Elevate your smart device or IoT application with the Accel&Qvar Click Board. Its precision, flexibility, and user interaction capabilities will open up new possibilities for your projects. Get yours today!

Go to full site