Magnetic Sensors - Compass, Magnetic Field (Modules)

Image Part Number Description / PDF Quantity Rfq
TLE4946-2K

TLE4946-2K

HALL EFFECT SENSOR

0

S18MB W/50

S18MB W/50

Banner Engineering

S18MB W/50 MAGNETIC SENSOR

8

TLE4964-1M

TLE4964-1M

IR (Infineon Technologies)

TLE4964 - HALL SWITCH

16295

TLE4998P3C

TLE4998P3C

IR (Infineon Technologies)

TLE4998 - PROGRAMMABLE LINEAR HA

0

TLE4961-4M

TLE4961-4M

IR (Infineon Technologies)

TLE4961 - HALL SWITCH

447

HMC6343

HMC6343

Honeywell Aerospace

3-AXIS DIGITAL COMPASS SOLUTION

313

TLE4961-3M

TLE4961-3M

IR (Infineon Technologies)

TLE4961 - HALL SWITCH

479

HMR2300-D00-485

HMR2300-D00-485

Honeywell Aerospace

MAGNETOMETER RS485

19

TLV4961-1TB

TLV4961-1TB

IR (Infineon Technologies)

TLV4961 - HALL SWITCH

1963

HMC2003

HMC2003

Honeywell Aerospace

SENSOR HYBRID MAGN 3 AXIS 20-DIP

203

TLV4961-1M

TLV4961-1M

IR (Infineon Technologies)

TLV4961 - HALL SWITCH

9000

PDRV5056A2EDBZTQ1

PDRV5056A2EDBZTQ1

Texas Instruments

HALL EFFECT SENSOR

451

PDRV5056A3EDBZTQ1

PDRV5056A3EDBZTQ1

Texas Instruments

HALL EFFECT SENSOR

1179

HMR2300-D21-232

HMR2300-D21-232

Honeywell Aerospace

MAGNETOMETER RS232 W/CASE

0

HMR3300-D00-232

HMR3300-D00-232

Honeywell Aerospace

MODULE DIGITAL COMPASS 3-AXIS

5

TLE4906L

TLE4906L

IR (Infineon Technologies)

TLE4906 - HALL SWITCH

303

PDRV5056A1EDBZTQ1

PDRV5056A1EDBZTQ1

Texas Instruments

HALL EFFECT SENSOR, -1-1MA, RECT

986

TLE4961-1K

TLE4961-1K

IR (Infineon Technologies)

TLE4961 - HALL SWITCH

163007

SD214+T

SD214+T

Analog Devices, Inc.

SD214 HIGH-SPEED ANALOG N CHANNE

17961

TLE4961-3K

TLE4961-3K

IR (Infineon Technologies)

TLE4961 - HALL SWITCH

339000

Magnetic Sensors - Compass, Magnetic Field (Modules)

1. Overview

Magnetic sensors/modules detect and measure magnetic fields, providing critical data for navigation, positioning, and electromagnetic environment monitoring. Compass modules specifically determine directional orientation relative to Earth's magnetic field, while general magnetic field modules quantify field strength and variations. These devices are fundamental in applications ranging from consumer electronics to industrial automation and aerospace systems.

2. Major Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
Hall Effect SensorsMeasure DC/AC magnetic fields via voltage generation across a conductorCurrent sensing, position detection
Anisotropic Magnetoresistive (AMR) SensorsHigh sensitivity to weak magnetic fields (<1 T), low power consumptionElectronic compasses, pedestrian navigation
Fluxgate SensorsHigh precision for AC fields, excellent stabilityGeophysical surveys, submarine detection
Magnetoresistive (GMR/TMR) SensorsNano-scale sensitivity (nT levels), wide dynamic rangeHard disk drives, biomedical devices

3. Structure & Components

Typical modules integrate: (1) Sensing element (Hall plate/AMR bridge/GMR multilayers), (2) Signal conditioning ASIC (amplification/filtering), (3) Temperature compensation circuitry, (4) Digital interface (I2C/SPI). Advanced packages incorporate 3-axis sensing and embedded calibration memory. Hermetic sealing with non-magnetic alloys ensures environmental durability.

4. Key Technical Specifications

ParameterDescriptionImportance
Field RangeMeasurement capability ( 25 T to 100mT)Determines application suitability
SensitivitymV/ T or T/LSBResolution for weak field detection
Non-LinearityDeviation from ideal response (<0.1%)Accuracy assurance
Operating Temperature-40 C to +125 CEnvironmental reliability
Current Consumption100 A - 10mABattery life consideration

5. Application Fields

  • Consumer Electronics: Smartphone compasses (e.g., Apple iPhone 14), AR headsets
  • Automotive: Electric vehicle battery management, ADAS heading detection
  • Industrial: Non-destructive testing, magnetic field mapping
  • Aerospace: Aircraft attitude control, satellite attitude determination

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Specifications
HoneywellHMC63522 T resolution, 8Oe range, I2C interface
InfineonTLE5012B360 angle measurement, 0.1 accuracy
STMicroelectronicsLSM303DLHC3D compass, 16-bit output, 0.1 T sensitivity
Bosch SensortecBMC150Ultra-low power, 0.1 T/LSB resolution

7. Selection Recommendations

Key considerations: (1) Match field range to application (e.g., geomagnetic ~50 T vs. motor monitoring ~10mT), (2) Environmental factors (vibration/shock resistance), (3) Interface compatibility (analog/digital), (4) Calibration requirements, (5) Cost vs. performance trade-offs.

Industry Trends

Future developments focus on: (1) MEMS-based magnetic sensors with sub- T resolution, (2) Integrated IMU (Inertial Measurement Units) with magnetometers, (3) Energy-harvesting magnetic sensors, (4) AI-enhanced noise cancellation algorithms, (5) Standardization of wireless magnetic sensor networks.

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