LIS3DSH Triaxial Accelerometer Module Low-power Consumption High-resolution Three-axis Accelerometer Module Built-in Self Test
Feature:
1. Built-in 2
Finite State Machines: The CJMCU-LIS3DSH module features two built-in finite state machines, providing high-resolution three-axis acceleration measurement capabilities for various applications.
2.
Ultra-Low Power Consumption: The LIS3DSH is a high-performance, ultra-low power consumption three-axis linear accelerometer that belongs to the "nano" embedded state machine family. It enables autonomous applications through programming.
3. Wide Range of
Full Scale Options: The LIS3DSH offers dynamic selectable full scale options of 2g/4g/6g/8g/16g, allowing precise measurements of acceleration. It supports output data rates from 3.125 Hz to 1.6 kHz.
4. Self-Test Functionality and
Interrupt Signals: The self-test function enables users to check the functionality of the sensor in their final applications. The device can be configured to generate interrupt signals when specific motion patterns are detected.
5.
Integrated FIFO Buffer: The LIS3DSH features an integrated first-in, first-out (FIFO) buffer, allowing users to store data to reduce intervention from the host processor. It is packaged in a small thin plastic grid array (LGA), ensuring reliable operation across an extended temperature range from -40C to +85C.
Specification:
Size: approximately 28mm * 13mm/ 1.1 * 0.51 in
Weight: 3g
Main features:
Wide power supply voltage 1.71 V to 3.6 V
Independent IO power supply ( 1.8V ) and compatible with power supply voltage
Ultra low power consumption of 2g/ 4G/ 6g/ 8G/ 16g dynamically selectable full scale
IIC/SPI digital output interface
16 bit data output
Programmable embedded state machine
Embedded temperature sensor
Embedded Self Test
Embedded First In First Out
10000g high impact resistance
Note:
Due to the different monitor and light effect, the actual color of the item might be slightly different from the color showed on the pictures. Thank you!
Please allow 1-2cm measuring deviation due to manual measurement.
1 x LIS3DSH Module