ADXL1002

RECOMMENDED FOR NEW DESIGNS

Low Noise, High Frequency +/-50g MEMS Accelerometer

Part Models
3
1ku List Price
Starting From $35.55
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Part Details

  • Single in plane axis accelerometer with analog output
  • Linear frequency response range from dc to 11 kHz (3 dB point)
    • Resonant frequency of 21 kHz
  • Ultralow noise density
  • 25 μg/√Hz in ±50 g range
  • Overrange sensing plus dc coupling allows fast recovery time
  • Complete electromechanical self-test
  • Sensitivity performance
    • Sensitivity stability over temperature 5%
    • Linearity to ±0.1% of full-scale range
    • Cross axis sensitivity ±1% (ZX), ±1% (YX),
  • Single-supply operation
    • Output voltage ratiometric to supply
    • Low power consumption 1.0 mA
    • Power saving standby operation mode with fast recovery
  • RoHS compliant
  • −40°C to +125°C temperature range
  • 5 mm × 5 mm × 1.80 mm LFCSP package
ADXL1002
Low Noise, High Frequency +/-50g MEMS Accelerometer
ADXL1001-1002 Functional Block Diagram ADXL1001-1002 Pin Configuration
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Evaluation Kits

eval board
EVAL-ADXL100X

ADXL1001/ADXL1002 Evaluation Board

Features and Benefits

  • 2 sets of spaced vias for populating 6-pin headers
  • Easily attaches to prototyping board or PCB
  • Small size and board stiffness minimizes impact on the user system and acceleration measurements

Product Details

The EVAL-ADXL1001Z and EVAL-ADXL1002Z are simple evaluation boards that allow users to quickly evaluate the performance of the ADXL1001 and ADXL1002 vibration sensors. The EVAL-ADXL1001Z and EVAL-ADXL1002Z are specifically designed to mount onto a mechanical shaker and are constructed of an extra thick printed circuit board (PCB), measuring 0.8 inches square. Screw holes are supplied for rigid mounting to the shaker block. This design allows users to evaluate the full performance range of the ADXL1001 or ADXL1002 vibration sensor without having to solder the device to a separate test board. A simple RC low-pass filter is provided at the output with a −3 dB bandwidth of about 20 kHz. Components can be replaced to allow users to implement their own application specific low-pass filter on the output of the device.


Full details on the microelectromechanical systems (MEMS) ADXL1001/ADXL1002 accelerometers are provided in the ADXL1001/ADXL1002 data sheet, available from Analog Devices, Inc., which must be consulted in conjunction with evaluation board user guide (UG-1121).

EVAL-ADXL100X
ADXL1001/ADXL1002 Evaluation Board
EVAL-ADXL1001Z Image EVAL-ADXL1002Z Image

Reference Designs

CN-0549 System Block Diagram
CN0549 Circuits from the lab

Condition-Based Monitoring Development Platform

Features and Benefits

  • Wide bandwidth MEMs accelerometer sensor data is output in the popular IEPE format
  • Easy mounting to machines (like pumps, fans, and motors) while maintaining sensor signal integrity
  • The DAQ solution provides a high fidelity, IEPE analog input bandwidth from DC – 54 kHz
  • Embedded FPGA Software captures and stores the raw data for local embedded or networked processing
  • IIO Oscilloscope application allows users to quickly visualize the data for evaluation purposes.

Part Used


Resources


Design & Integration Tools


Videos

  • lazy blur
    VIDEO · 2021-03-05 03:34
    ADI Sensor Interface Series - CbM and Vibration Analysis
  • lazy blur
    VIDEO · 2021-01-25 01:52
    CN0549: Condition-Based Monitoring Development Platform
  • lazy blur
    VIDEO · 2022-02-09 02:34
    CN0549 New Condition-Based Monitoring Platform from ADI
  • lazy blur
    VIDEO · 2021-01-29 02:43
    CN0549 - CbM Development Platform
Complete ADXL1002 with IEPE Compatible Circuit Diagram
CN0532 Circuits from the lab

IEPE-Compatible Interface for Wideband MEMS Accelerometer Sensors 

Features and Benefits

  • Industry Standard IEPE Interface
  • Wideband MEMs Accelerometer
  • Direct Replacement for Piezo Sensors

Part Used


Resources


Videos

  • lazy blur
    VIDEO · 2021-01-29 02:43
    CN0549 - CbM Development Platform
EVAL-CN0533-EBZ Simplified Circuit Diagram
CN0533 Circuits from the lab

10 kHz MEMS Accelerometer with 4 mA to 20 mA Output for Condition-Based Monitoring Applications

Features and Benefits

  • 10kHz MEMs Vibration Sensor
  • 4mA to 20mA Industrial Output
  • Compatible with the EVAL-XLMOUNT1 Mounting Cube
Figure 1. CN0588 Simplified Block Diagram.
CN0588 Circuits from the lab

DC to 10 kHz MEMS-Based IEPE Vibration Sensor

Features and Benefits

  • Mechanically enclosed and machine mountable
  • IEPE interface to retrofit into existing machines
  • Power and data over a single wire, power comes from host
  • Has a frequency range from DC up to 10 kHz and response within ±3 dB
  • Resonant frequency around 12.5 kHz
CN0549
Condition-Based Monitoring Development Platform
CN-0549 System Block Diagram
CN0549 Kit - Angle View
CN0549 Kit - Top View
CN0532
IEPE-Compatible Interface for Wideband MEMS Accelerometer Sensors 
Complete ADXL1002 with IEPE Compatible Circuit Diagram
CN0533
10 kHz MEMS Accelerometer with 4 mA to 20 mA Output for Condition-Based Monitoring Applications
EVAL-CN0533-EBZ Simplified Circuit Diagram
CN0588
DC to 10 kHz MEMS-Based IEPE Vibration Sensor
Figure 1. CN0588 Simplified Block Diagram.
EVAL CN0588 EBZ ANGLE web
EVAL CN0588 EBZ TOP web
EVAL CN0588 EBZ BOTTOM web
CN0588 Mechnical Enclosure front

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