Motion Sensors - IMUs (Inertial Measurement Units)

Image Part Number Description / PDF Quantity Rfq
ICM-20689

ICM-20689

TDK InvenSense

IMU ACCEL/GYRO/TEMP I2C/SPI QFN

2445

MPU-6500

MPU-6500

TDK InvenSense

IMU ACCEL/GYRO 3-AXIS I2C 24QFN

0

IAM-20680

IAM-20680

TDK InvenSense

AUTOMOTIVE QUALIFIED 6-AXIS INTE

7836

ICM-20789

ICM-20789

TDK InvenSense

MOTION SENSOR IC

201

ICM-20601

ICM-20601

TDK InvenSense

IMU ACCEL/GYRO/TEMP I2C/SPI LGA

1525

ICM-20948

ICM-20948

TDK InvenSense

IMU ACCEL/GYRO/COMPI2C/SPI 24QFN

0

ICM-20648

ICM-20648

TDK InvenSense

IMU ACCEL/GYRO/TEMP I2C/SPI QFN

142

ICM-20608-G

ICM-20608-G

TDK InvenSense

IMU ACCEL/GYRO I2C/SPI 16LGA

6515

ICM-20600

ICM-20600

TDK InvenSense

LOW-POWER, HIGH-PERFORMANCE INTE

1015

ICM-42688-P

ICM-42688-P

TDK InvenSense

MOTION SENSOR

0

ICM-42605

ICM-42605

TDK InvenSense

IMU ACCEL/GYRO/TEMP I2C/SPI LGA

8175

MPU-6000

MPU-6000

TDK InvenSense

IMU ACCEL/GYRO I2C/SPI 24QFN

5999

ICG-20660L

ICG-20660L

TDK InvenSense

6-AXIS MOTIONTRACKING DEVICE THA

72

IAM-20680HP

IAM-20680HP

TDK InvenSense

6 AXIS GYROSCOPE

0

ICM-20649

ICM-20649

TDK InvenSense

WIDE-FULL SCALE RANGE 6-AXIS MEM

1661

MPU-6050

MPU-6050

TDK InvenSense

IMU ACCEL/GYRO 3-AXIS I2C 24QFN

1251

ICM-20602

ICM-20602

TDK InvenSense

IMU ACCEL/GYRO/TEMP I2C/SPI LGA

32891

MPU-9150

MPU-9150

TDK InvenSense

IMU ACCEL/GYRO/MAG I2C 24LGA

0

MPU-9250

MPU-9250

TDK InvenSense

IMU ACCEL/GYRO/MAG I2C/SPI 24QFN

0

ICM-30630

ICM-30630

TDK InvenSense

IMU ACCEL/GYRO I2C/SPI 24LGA

0

Motion Sensors - IMUs (Inertial Measurement Units)

1. Overview

Inertial Measurement Units (IMUs) are electronic devices that measure and report specific force, angular rate, and orientation. They combine multiple sensors (typically accelerometers, gyroscopes, and sometimes magnetometers) to provide six degrees of freedom (6-DoF) data. IMUs are critical in navigation systems, robotics, and motion tracking, enabling precise spatial awareness in applications ranging from aerospace to consumer electronics.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
6-Axis IMUCombines 3-axis accelerometer and 3-axis gyroscopeSmartphones, wearable devices
9-Axis IMUAdds 3-axis magnetometer for heading accuracyAR/VR headsets, navigation systems
Tactical-Grade IMUHigh-precision MEMS with temperature compensationUnmanned aerial vehicles (UAVs), industrial robotics
Consumer-Grade IMULow-cost, low-power MEMS sensorsIoT devices, gaming controllers

3. Structure and Components

A typical IMU consists of:

  • Accelerometer: Measures linear acceleration using micro-electromechanical systems (MEMS)
  • Gyroscope: Detects angular velocity via Coriolis effect in MEMS structures
  • Magnetometer (optional): Provides heading reference using Earth's magnetic field
  • Signal Conditioning Circuitry: Analog-to-digital converters and temperature sensors
  • Microcontroller: Executes sensor fusion algorithms (e.g., Kalman filters)

4. Key Technical Specifications

ParameterDescriptionImportance
Measurement RangeMaximum acceleration/angular rate detectableDetermines suitability for high-dynamic environments
Accuracy (Bias/Noise)Error margins under static/dynamic conditionsImpacts long-term stability and precision
Data Update RateSampling frequency (Hz)Higher rates improve real-time responsiveness
Power ConsumptionOperating current/voltage requirementsCrucial for battery-powered devices
Operating TemperatureFunctional temperature rangeAffects reliability in harsh environments

5. Application Fields

  • Autonomous Vehicles: Navigation, lane-keeping, collision avoidance
  • Consumer Electronics: Gesture control in smartphones and gaming consoles
  • Healthcare: Motion analysis in rehabilitation devices
  • Industrial: Predictive maintenance of rotating machinery
  • Aerospace: Flight control systems in drones and satellites

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
STMicroelectronicsLSM6DSOX6-axis IMU with AI motion recognition engine
Analog DevicesADIS16495Tactical-grade IMU with 40g range and 0.005 /hr bias instability
Invensense (TDK)ICM-206896-axis IMU with 8 MHz SPI interface for gaming applications
Bosch SensortecBMI270Low-power 6-axis IMU for wearables with step detection

7. Selection Guidelines

Key considerations:

  • Application Requirements: Consumer vs. industrial grade
  • Environmental Factors: Vibration, temperature extremes
  • Integration Complexity: Communication protocols (I2C/SPI), mounting constraints
  • Cost vs. Performance: Trade-offs between precision and budget
  • Calibration Needs: Factory calibration vs. field adjustment

8. Industry Trends

Emerging developments include:

  • Integration of AI accelerators for edge computing
  • Miniaturization through advanced MEMS packaging (e.g., 3D wafer-level bonding)
  • Multi-sensor fusion with GNSS and LiDAR for enhanced navigation
  • Increased adoption in medical wearables for fall detection
  • Advancements in fiber optic gyroscopes (FOGs) for defense applications

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