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Magnetic Sensors - Linear, Compass (ICs)
Magnetic Sensors - Linear, Compass (ICs)

Magnetic Sensors - Linear, Compass (ICs) - Category Overview

Definition of Magnetic Sensors - Linear, Compass (ICs)

Magnetic Sensors - Linear, Compass (ICs) are specialized semiconductor devices designed to detect, measure, and interpret magnetic fields. These sensors convert magnetic flux into electrical signals, enabling precise linear position tracking, angular measurement (compass functionality), and motion detection. Integrated Circuit (IC) versions enhance performance with embedded signal conditioning, digital interfaces, and low-power operation, making them ideal for modern electronic systems.

Types of Magnetic Sensors in This Category

This classification includes two primary subtypes:
1. Linear Magnetic Sensors Measure the strength and direction of magnetic fields in a straight-line axis, commonly used in industrial automation, automotive (e.g., throttle control, brake systems), and robotics.
2. Compass (Magnetometer) ICs Determine orientation relative to Earth s magnetic field, essential for navigation in smartphones, drones, IoT devices, and automotive ADAS (Advanced Driver Assistance Systems).

Key technologies include:
- Hall Effect Sensors (linear/output proportional to field strength)
- AMR (Anisotropic Magnetoresistive) Sensors (high sensitivity for compass apps)
- GMR (Giant Magnetoresistive) Sensors (ultra-precision for industrial use)

Purchasing Recommendations

When selecting Magnetic Sensor ICs, consider:
1. Application Requirements Prioritize linear range (for position sensing) or angular accuracy (for compass/navigation).
2. Output Type Analog (direct voltage output) or digital (I2C/SPI interfaces) based on system integration needs.
3. Environmental Robustness Automotive-grade (AEC-Q100) or industrial-grade (wider temperature ranges) for harsh conditions.
4. Power Efficiency Critical for battery-powered devices (e.g., wearables).
5. Supplier Support Opt for vendors providing evaluation kits and reference designs (e.g., Texas Instruments, Allegro MicroSystems).

This category serves industries demanding precision motion control and spatial awareness, merging reliability with cutting-edge IC innovation.

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DRV5053OAQDBZTQ1

SENSOR HALL ANALOG SOT23-3


A1324LLHLX-T

SENSOR HALL EFFECT ANALOG SOT23W


TMR2901D

TMR SENSOR MAG FIELD 25MV/V/OE


TMAG5273A1QDBVT

LOW-POWER LINEAR 3D HALL-EFFECT


DRV5057Z4QDBZR

LINEAR HALL EFFECT SENSOR WITH D


A1319LLHLX-5-T

SENSOR HALL EFFECT ANALOG SOT23W


MLX90251LVA-FAA-100-BU

SENSOR HALL EFFECT ANALOG 4SIP


CT100LW-ID6-M

TMR SENSOR: 6-LEAD DFN (1.5 X 1.


DRV5053CAQLPGMQ1

SENSOR HALL EFFECT ANALOG TO92-3


DRV5056Z3QDBZR

RATIOMETRIC UNIPOLAR LINEAR HALL


MLX90363EDC-ABB-000-SP

SENSOR HALL EFFECT SPI 8SOIC


MLX90333LGO-BCT-000-SP

SENSOR HALL ANALOG/PWM 16TSSOP


SI7210-B-13-IM2R

IC HALL SENSOR 0X32 DFN8


MLX90393ELW-ABA-013-SP

SENSOR HALL I2C/SPI 16QFN


A1363LKTTN-5-T

SENSOR HALL EFFECT ANALOG 4SIP


SS496B

SENSOR HALL ANALOG RADIAL LEAD


A1318LUA-2-T

SENSOR HALL EFFECT ANALOG 3SIP


MLX90333KDC-BCH-000-SP

SENSOR HALL ANALOG/PWM 8SOIC


A1388LLHLT-2-T

SENSOR HALL EFFECT ANALOG SOT23W


MLX90290LUA-AAA-540-BU

SENSOR HALL EFFECT ANALOG TO92-3


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