The ADXL344 is a versatile 3-axis, digital-output, low g MEMS accelerometer. Selectable measurement range and bandwidth and configurable, built-in motion detection make it suitable for sensing acceleration in a wide variety of applications. Robustness to 10,000 g/of shock and a wide temperature range (−40°C to +85°C) enable use of the accelerometer even in harsh environments.
The ADXL344 measures acceleration with high resolution (13-bit) measurement at up to ±16 g/. Digital output data is formatted as 16-bit twos complement and is accessible through either a SPI (3- or 4-wire) or I2C digital interface. The ADXL344 can measure the static acceleration of gravity in tilt-sensing appli-cations, as well as dynamic acceleration resulting from motion or shock. Its high resolution (3.9 mg/LSB) enables measurement of inclination changes less than 1.0°.
Several special sensing functions are provided. Activity and inactivity sensing detect the presence or lack of motion. Tap sensing detects single and double taps in any direction. Free-fall sensing detects if the device is falling. Orientation detection reports four- and six-position orientation and can trigger an interrupt upon change in orientation. These functions can be mapped individually to either of two interrupt output pins.
An integrated memory management system with a 32-level first in, first out (FIFO) buffer can be used to store data to minimize host processor activity and lower overall system power consumption.
The ADXL344 is supplied in a small, thin, 3 mm × 3 mm × 0.95 mm, 16-terminal, plastic package.
|ADXL344：3轴、±2 g/±4 g/±8 g/±16 g 超低功耗数字MEMS加速度计 (Rev 0, 11/2012) (pdf, 586 kB)||产品数据手册|
|ADXL344: 3-Axis, ±2 g/±4 g/±8 g/±16 g Ultralow Power Digital MEMS Accelerometer Datasheet (Rev 0, 11/2012) (pdf, 586 kB)||产品数据手册|
Use this complete GUI-based system for real-time evaluation of ADXL344 MEMS accelerometer performance.
Use this board to integrate an ADXL344 MEMS accelerometer into an existing platform.
Use this complete GUI-based system for real-time evaluation of sensor performance
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