High Performance Ultra-Low Power 3-Axis Accelerometer

STMicro's IIS2DLPC is a MEMS digital output motion sensor for industrial applications

Image of STMicro's IIS2DLPCTR Low Power AccelerometerSTMicro's IIS2DLPC is an ultra-low-power high-performance three-axis linear accelerometer with digital I²C/SPI output interface. The dedicated internal engine allows to process motion and acceleration detection including free-fall, wakeup, highly configurable single/double-tap recognition, activity/inactivity, stationary.

The IIS2DLPC has one high-performance mode and 4 low-power modes which can be changed on the fly, providing outstanding versatility and adaptability to the requirements of the application. It has an integrated 32-level first-in, first-out (FIFO) buffer allowing the user to store data in order to limit intervention by the host processor. The embedded self-test capability allows the user to check the functioning of the sensor in the final application.

Features and Benefits
  • ±2g/±4g/±8g/±16g full scale
  • Multiple operating modes reconfigurable on the fly
  • Ultra-low-power consumption
  • Output data rates from 1.6 Hz to 1600 Hz; bandwidth up to 800 Hz
  • Single data conversion on demand
  • Very low noise: down to 90 µg/√Hz
  • 32-level FIFO and 2 independent programmable interrupts
  • High-speed I²C/SPI digital output interface
  • Supply voltage: 1.62 V to 3.6 V
  • Embedded temperature sensor
  • Self-test
  • 10,000 g high shock survivability
  • ECOPACK®, RoHS, and green compliant
Applications
  • Industrial, IoT, and connected devices
  • Anti-tampering devices
  • Appliances and robotics
  • Industrial tools and factory equipment
  • Portable healthcare devices and hearing aids
  • Vibration monitoring
  • Tilt/inclination measurements
  • Smart power saving and motion-activated functions
  • Impact recognition and logging

IIS2DLPCTR Low Power Accelerometer

图片制造商零件编号描述加速度范围可供货数量价格查看详情
ACCEL 2-16G I2C/SPI 12LGAIIS2DLPCTRACCEL 2-16G I2C/SPI 12LGA±2g,4g,8g,16g3846 - 立即发货$28.54查看详情
发布日期: 2018-11-14