Motion Sensors - Accelerometers

Image Part Number Description / PDF Quantity Rfq
LIS3DHTR

LIS3DHTR

STMicroelectronics

ACCEL 2-16G I2C/SPI 16LGA LIS3DHTR

74324

820M1-0050

820M1-0050

TE Connectivity Measurement Specialties

ACCELEROMETER

29

ADXL50JH

ADXL50JH

Analog Devices, Inc.

SINGLE-AXIS IMEMS ACCELEROMETER

13783

797R

797R

Wilcoxon (Amphenol Wilcoxon Sensing Technologies)

ACCEL IEPE SENSOR

0

MMA8452QT

MMA8452QT

NXP Semiconductors

ACCELEROMETER 2-8G I2C 16QFN

0

ADXL202JQC-A-REEL

ADXL202JQC-A-REEL

Analog Devices, Inc.

DUAL-AXIS IMEMS ACCELEROMETER

21000

FXLN8372QR1

FXLN8372QR1

NXP Semiconductors

ACCELEROMETER 4-16G ANALOG 12QFN

0

805-0050-01

805-0050-01

TE Connectivity Measurement Specialties

ACCELEROMETER 50G IEPE TO5-3

0

SCA830-D06-1

SCA830-D06-1

TOKO / Murata

ACCELEROMETER 2G SPI 12SMD

0

MMA6262QR2-FR

MMA6262QR2-FR

Freescale Semiconductor, Inc. (NXP Semiconductors)

PLUS/MINUS 1.5G DUAL AXIS MICROM

974

LIS2DE12TR

LIS2DE12TR

STMicroelectronics

ACCEL 2-16G I2C/SPI 12LGA

0

AD22035Z

AD22035Z

Analog Devices, Inc.

ACCELEROMETER 18G ANALOG 8CLCC

0

ADXL377BCPZ-RL

ADXL377BCPZ-RL

Analog Devices, Inc.

ACCEL 200G ANALOG 16LFCSP

0

HV201LF

HV201LF

Wilcoxon (Amphenol Wilcoxon Sensing Technologies)

ACCEL IEPE SENSOR

0

MMA621010AKEGR2

MMA621010AKEGR2

NXP Semiconductors

ACCELEROMETER 100G ANALOG 20SOIC

0

ADXL356BEZ

ADXL356BEZ

Analog Devices, Inc.

ACCEL 10-20G ANALOG 14CLCC

0

KXCJK-1013-FR

KXCJK-1013-FR

ROHM Semiconductor

ACCELEROMETER 2-8G I2C 16LGA

0

PXLS82333AESR2

PXLS82333AESR2

NXP Semiconductors

2 AXIS HI/HI XY

0

PXLS63333AESR2

PXLS63333AESR2

NXP Semiconductors

XTRINSIC 2 AXIS HIGH/HIGH XY PSI

0

MMA5124LCWR2

MMA5124LCWR2

NXP Semiconductors

ACCELEROMETER 240G PCM/SPI 16QFN

0

Motion Sensors - Accelerometers

1. Overview

Accelerometers are motion sensors that measure acceleration forces (static or dynamic) along one or multiple axes. These devices convert mechanical motion into electrical signals, enabling quantitative analysis of vibration, tilt, shock, and dynamic movement. As core components in modern sensing systems, accelerometers play critical roles in consumer electronics, industrial automation, automotive safety systems, and aerospace navigation.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Capacitive MEMSHigh sensitivity, low power consumption, digital outputSmartphones, wearable devices
PiezoelectricSelf-powered, excellent frequency responseVibration analysis, impact detection
PiezoresistiveHigh shock tolerance, analog outputAutomotive crash testing, industrial monitoring
Servo (Force-Balance)Ultra-high precision, low noiseInertial navigation, seismic monitoring
Optical MEMSImmune to electromagnetic interferenceHigh-precision scientific instruments

3. Structure and Components

Typical accelerometers consist of: - Seismic mass with specific inertial properties - Elastic suspension elements (springs or beams) - Displacement detection circuit (capacitive, piezoelectric, or resistive) - Temperature compensation circuitry - Signal conditioning electronics - Protective housing (metal/ceramic/polymer) Modern MEMS devices integrate microstructures on silicon substrates with digital interfaces (I2C/SPI).

4. Key Technical Specifications

ParameterDescriptionImportance
Measurement Range 2g to 500gDetermines application suitability
Resolution0.1mg to 10mgImpacts measurement precision
Frequency ResponseDC to 10kHzAffects dynamic signal capture
Nonlinearity 0.1% to 1% FSMeasurement accuracy indicator
Temperature Range-40 C to +150 CEnvironmental reliability
Power Consumption5 A to 10mABattery life consideration

5. Application Fields

  • Consumer Electronics: Smartphones (screen rotation), gaming controllers
  • Automotive: Airbag deployment, electronic stability control (ESC)
  • Industrial: Predictive maintenance systems, vibration monitoring
  • Healthcare: Fall detection devices, rehabilitation equipment
  • Aerospace: Flight control systems, structural health monitoring
  • Case Study: iPhone's ADXL345 MEMS accelerometer enables step counting and orientation detection

6. Leading Manufacturers

ManufacturerRepresentative ProductKey Features
Analog DevicesADXL3453-axis, 13-bit resolution, I2C interface
STMicroelectronicsLSM6DSO6-axis IMU, AI-enabled edge computing
Bosch SensortecBMI270Low-power wearable sensor, 16Hz noise
TE ConnectivityKX134-1211 400g high-shock measurement
HoneywellQA-750Tactical-grade servo accelerometer

7. Selection Guidelines

  • Determine required measurement axes (1D/2D/3D)
  • Match range/sensitivity with application requirements
  • Assess environmental conditions (temperature, vibration)
  • Select appropriate output interface (analog/digital)
  • Evaluate power consumption constraints
  • Consider calibration requirements and long-term stability

8. Industry Trends

Key development directions include: - MEMS technology advancement towards atomic-scale sensitivity - Integration with gyroscopes and AI processing (smart sensors) - Wireless sensor network compatibility - Increased adoption in autonomous vehicles and IoT edge devices - Development of ultra-low-power wake-up accelerometers - Fiber optic accelerometer systems for aerospace applications - Enhanced shock survivability for industrial harsh environments

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