ADXL382

RECOMMENDED FOR NEW DESIGNS

Low Noise, Low Power, Wide Bandwidth, 3-Axis MEMS Accelerometer

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Overview

  • Ultra low noise density: 44 μg/√Hz (XY), 55 μg/√Hz (Z)
  • Low power consumption
    • High performance: 520 μA
    • Ultra low power: 33 μA
  • Wide bandwidth: 8 kHz
    • Relative flatness with equalization: <0.5 dB
    • Relative flatness without equalization: <3.5 dB
  • Low latency: group delay: <85 μs
  • Digital features
    • 16-bit ADC
    • Multiprotocol serial interfaces: SPI or I2C
    • Multiprotocol audio data output: I2S, TDM, and PDM
    • Programmable LPF and HPF
    • Data synchronous or asynchronous sampling
    • Output FIFO: 320 word
  • Built-in features for system-level power savings
    • Single tap, double tap, and triple tap detection
    • Activity and inactivity detection
    • Configurable interrupt modes
  • Integrated temperature sensor
  • Voltage range options
    • VS with internal regulators: 2.25 V to 3.6 V (or V1P8 at 1.8 V)
    • VDDIO: 1.14 V to 3.6 V (1.62 V to 3.6 V for full temperature range)
  • Electromechanical self test
  • 10,000 g shock survival
  • RoHS compliant
  • Operating temperature range: −40°C to +125°C
  • 14-terminal, 2.9 mm × 2.8 mm × 0.87 mm, LGA plastic package

The ADXL382 is a low noise density, low power, 3-axis accelerometer with selectable measurement ranges. The ADXL382 supports ±15 g, ±30 g, and ±60 g ranges.

The ADXL382 offers industry leading noise, enabling precision applications with minimal calibration. The low noise and low power of the ADXL382 enables accurate measurements of audio signals or heart sounds even in high vibration environments.

The ADXL382 multifunction pin names may be referenced only by their relevant function for either the serial peripheral interface (SPI) or inter-IC (I2C) interface, or these pin names can be referenced by their audio function (pulse density modulation (PDM), inter-IC sound (I2S), or time division multiplexing (TDM)).

In addition to its low power consumption, the ADXL382 has many features to enable true system level performance. These features include a built-in micropower temperature sensor, single tap, double tap, or triple tap detection, and a state machine to prevent false triggering. In addition, the ADXL382 has provisions for external control of the sampling time and/or an external clock.

The ADXL382 operates on a wide, 2.25 V to 3.6 V supply range (or 1.8 V supply) and can interface, if necessary, to a host operating on a separate supply voltage. The ADXL382 is available in a 14-terminal, 2.9 mm × 2.8 mm × 0.87 mm, LGA package.

APPLICATIONS

  • Condition-based monitoring
  • Structural health monitoring
  • Seismic Imaging
  • Robotics
  • Audio and active noise cancellation (ANC)
  • Wearables and low power motion detection

ADXL382
Low Noise, Low Power, Wide Bandwidth, 3-Axis MEMS Accelerometer
ADXL380/ADXL382 Functional Block Diagram ADXL382 Pin Configuration
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Evaluation Kits

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Voyager4

Wireless Asset Health Monitoring with Edge AI

Features and Benefits

The MEMS-based Wireless Vibration Monitoring Platform is a complete evaluation solution that includes:

  • Intelligent, smarter, and secure decisions at the EDGE
  • Decision making at the edge reduces network overhead and improves battery life
  • Mechanical mounting and measurement capability up to 8 kHz bandwidth
  • 3-axis ultra-low power, ultra-low noise MEMS accelerometer technology
  • Ultra-low power microcontroller and robust low power Bluetooth Low Energy (BLE) technology

It enables users to:

  • Develop and deploy artificial intelligence at the EDGE
  • Rapidly deploy a wireless solution to a machine or test setup
  • Evaluate ADI MEMS sensor technology for vibration monitoring
  • Evaluate ADI BLE technology for industrial wireless sensing
  • Accelerate asset monitoring and solution development
  • Evaluate and develop EDGE AI solutions for industrial condition-based monitoring

Product Details

Voyager4 uses triaxial digital out MEMS sensors including the ADXL382 and ADXL367. The design also includes the MAX32666 BLE and MAX78000 AI microcontrollers. Flexible and PCB area efficient PMIC power devices have been added as load switches for enhanced wireless sensor power savings. A BLE 5.3 Adapter with Antenna is included in every Voyager4 kit. Voyager4 uses BLE which makes it compatible with any PC with a Bluetooth Radio, but to ensure optimal performance and range, using the adapter when communicating with Voyager4 is recommended.

The solution operates in two modes:

Data Collection/Streaming mode – In this mode, the data is sent to the Host PC for AI model development.

Normal Operation/AI mode – In this mode, the anomaly alert is sent to the Host PC and user can decide to gather more ADXL382 data.

Voyager4
Wireless Asset Health Monitoring with Edge AI
VOYAGER 4 Board Photo Front 1 View VOYAGER 4 Board Photo Angle View Voyager 4 Block Diagram

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