STMicroelectronics Announces Miniature Motion Sensor Improving Comfort and Measurement Accuracy for Medical Wearable and Implantable Devices
Key facts
- STMicroelectronics Announces Miniature Motion Sensor Improving Comfort and Measurement Accuracy for Medical Wearable and Implantable Devices
- STMicroelectronics has unveiled the MIS2DU12, an ultra-small, ultra-low power MEMS accelerometer designed for medical wearable and implantable devices. Featuring biocompatible materials, it offers extended operating life with minimal power consumption (20nA in power-down, <1µA active). Its compact size (0.74mm thin, 2x2mm footprint) enhances comfort for patch sensors. The MIS2DU12 includes sensor fusion for high accuracy even with movement, a dedicated motion processing engine for various detections, and an anti-aliasing filter to reduce host processor load and overall system power. It supports selectable full-scale ranges, wide output data rates, and an extended temperature range, with a 128-level FIFO buffer for efficient data management. An evaluation board, STEVAL-MKI255A, is also available.
- Date: March 30, 2026
Direct answer
STMicroelectronics has unveiled the MIS2DU12, an ultra-small, ultra-low power MEMS accelerometer designed for medical wearable and implantable devices. Featuring biocompatible materials, it offers extended operating life with minimal power consumption (20nA in power-down, <1µA active). Its compact size (0.74mm thin, 2x2mm footprint) enhances comfort for patch sensors. The MIS2DU12 includes sensor fusion for high accuracy even with movement, a dedicated motion processing engine for various detections, and an anti-aliasing filter to reduce host processor load and overall system power. It supports selectable full-scale ranges, wide output data rates, and an extended temperature range, with a 128-level FIFO buffer for efficient data management. An evaluation board, STEVAL-MKI255A, is also available.
- Citation
- STMicroelectronics Announces Miniature Motion Sensor Improving Comfort and Measurement Accuracy for Medical Wearable and Implantable Devices (March 30, 2026)
- Source
- PR Times
- Date
- March 30, 2026
STMicroelectronics has unveiled the MIS2DU12, an ultra-small, ultra-low power MEMS accelerometer designed for medical wearable and implantable devices. Featuring biocompatible materials, it offers extended operating life with minimal power consumption (20nA in power-down, <1µA active). Its compact size (0.74mm thin, 2x2mm footprint) enhances comfort for patch sensors. The MIS2DU12 includes sensor fusion for high accuracy even with movement, a dedicated motion processing engine for various detections, and an anti-aliasing filter to reduce host processor load and overall system power. It supports selectable full-scale ranges, wide output data rates, and an extended temperature range, with a 128-level FIFO buffer for efficient data management. An evaluation board, STEVAL-MKI255A, is also available.
📋 Article Processing Timeline
- 📰 Published: March 30, 2026 at 05:11
- 🤖 AI Analyzed: May 26, 2026 at 21:27 (1384h 15m after Published)

FAQ
What is the primary function of the newly announced MIS2DU12 from STMicroelectronics?
The MIS2DU12 is a MEMS accelerometer designed for medical wearable and implantable devices, offering ultra-low power consumption, signal processing, and an ultra-small size.
What makes the MIS2DU12 suitable for implantable medical devices like heart monitors and pacemakers?
Its ultra-low power consumption, with current consumption of just 20nA in power-down mode and less than 1µA in active mode, enables a long operating life for these critical devices.
How does the MIS2DU12 contribute to the comfort and design of patch-type medical sensors?
With a thickness of only 0.74mm and a mounting area of 2x2mm, it allows for the creation of ultra-thin, lightweight, and more comfortable patch-type sensors.
What advanced motion processing capabilities does the MIS2DU12 incorporate?
It includes a dedicated motion processing engine for features like free-fall, wake-up, single/double-tap detection, active/inactive detection, and 6-axis/4-axis orientation detection.
How does the MIS2DU12 enhance the accuracy of biometric parameter sensors?
Through sensor fusion, it maintains high accuracy even under macroscopic movements and environmental stress, while also providing high sensitivity to minute movements.