
ADXL345 Datasheet and Product Info | Analog Devices
The ADXL345 is a digital-output, 3-axis accelerometer whose low power consumption and built-in features make it ideal for use in a wide variety of applications.
ADXL345 Digital Accelerometer - Adafruit Learning System
Mar 26, 2013 · The ADXL345 is a low-power, 3-axis MEMS accelerometer modules with both I2C and SPI interfaces. The Adafruit Breakout boards for these modules feature on-board 3.3v …
ADXL345 by Analog Devices Inc. Datasheet | DigiKey
View ADXL345 by Analog Devices Inc. datasheet for technical specifications, dimensions and more at DigiKey.
SparkFun Triple Axis Accelerometer Breakout - ADXL345
The ADXL345 is a small, thin, low power, 3-axis MEMS accelerometer with high resolution (13-bit) measurement at up to +-16 g. Digital output data is formatted as 16-bit twos complement and …
The ADXL345 is a complete 3-axis acceleration measurement system with a selectable measurement range of ±2 g, ±4 g, ±8 g, or ±16 g. It measures both dynamic acceleration …
ADXL345 - Triple-Axis Accelerometer (+-2g/4g/8g/16g) w/ …
The ADXL345 is the latest and greatest from Analog Devices, known for their exceptional quality MEMS devices. We added an on-board 3.3V regulator and logic-level shifting circuitry, making …
How to Use ADXL345 Accelerometer: Examples, Pinouts, and Specs
The ADXL345 is a small, thin, low-power, 3-axis accelerometer capable of high-resolution (13-bit) measurements at up to ±16g. It is designed for applications requiring precise motion sensing, …
ADXL345BCCZ Analog Devices Inc. | Sensors, Transducers | DigiKey
Order today, ships today. ADXL345BCCZ – Accelerometer X, Y, Z Axis ±2g, 4g, 8g, 16g 0.05Hz ~ 1.6kHz 14-LGA (3x5) from Analog Devices Inc.. Pricing and Availability on millions of …
The ADXL345 is a complete 3-axis acceleration measurement system with a selectable measurement range of ±2 g, ±4 g, ±8 g, or ±16 g. It measures both dynamic acceleration …
AN-1077: ADXL345 Quick Start Guide | Analog Devices
The ADXL345 provides a self-test feature that enables an electromechanical test on the device without external mechanical stimulus. Figure 8 outlines a recommended self-test sequence.