Magnetic Sensors - Linear, Compass (ICs)

Image Part Number Description / PDF Quantity Rfq
DRV5053PAQLPG

DRV5053PAQLPG

Texas Instruments

SENSOR HALL EFFECT ANALOG TO92-3

582

DRV5055A3EDBZRQ1

DRV5055A3EDBZRQ1

Texas Instruments

DRIVER

2933

DRV5056A1QDBZT

DRV5056A1QDBZT

Texas Instruments

SENSOR HALL ANALOG SOT23-3

244

DRV5053RAQDBZR

DRV5053RAQDBZR

Texas Instruments

SENSOR HALL ANALOG SOT23-3

2793

DRV5056A4QLPG

DRV5056A4QLPG

Texas Instruments

SENSOR HALL EFFECT ANALOG

813

DRV5057A3QDBZR

DRV5057A3QDBZR

Texas Instruments

DRIVER

0

DRV5056A4QDBZT

DRV5056A4QDBZT

Texas Instruments

SENSOR HALL ANALOG SOT23-3

295

DRV5053RAQLPGM

DRV5053RAQLPGM

Texas Instruments

SENSOR HALL EFFECT ANALOG TO92-3

0

DRV5057A2QLPG

DRV5057A2QLPG

Texas Instruments

DRIVER

1000

DRV425RTJT

DRV425RTJT

Texas Instruments

SENSOR FLUXGATE ANALOG 20QFN

990

DRV5057Z1QDBZR

DRV5057Z1QDBZR

Texas Instruments

LINEAR HALL EFFECT SENSOR WITH D

2996

DRV5056A6QDBZT

DRV5056A6QDBZT

Texas Instruments

DRIVER

500

DRV5053EAQLPG

DRV5053EAQLPG

Texas Instruments

SENSOR HALL EFFECT ANALOG TO92-3

4023

DRV5055A1ELPGQ1

DRV5055A1ELPGQ1

Texas Instruments

DRIVER

701

DRV5055A2EDBZRQ1

DRV5055A2EDBZRQ1

Texas Instruments

DRIVER

5923

DRV5055A2QDBZR

DRV5055A2QDBZR

Texas Instruments

SENSOR HALL ANALOG SOT23-3

909

DRV5056A1EDBZRQ1

DRV5056A1EDBZRQ1

Texas Instruments

DRIVER

0

DRV5053PAEDBZRQ1

DRV5053PAEDBZRQ1

Texas Instruments

DRV5053-Q1 AUTOMOTIVE, 2.7 V TO

38687

DRV5055A2ELPGQ1

DRV5055A2ELPGQ1

Texas Instruments

DRIVER

988

DRV5053VAQLPGM

DRV5053VAQLPGM

Texas Instruments

SENSOR HALL EFFECT ANALOG TO92-3

5368

Magnetic Sensors - Linear, Compass (ICs)

1. Overview

Magnetic sensors - linear compass ICs are semiconductor devices that detect magnetic fields and convert them into electrical signals. These integrated circuits provide precise measurement of magnetic field direction and strength in linear axes, enabling 2D/3D orientation detection. Their importance spans multiple industries due to their ability to provide contactless position sensing, navigation capabilities, and magnetic field monitoring in compact form factors.

2. Main Types & Functional Classification

Type Functional Features Application Examples
Hall Effect Sensors Voltage output proportional to magnetic field strength, simple design Current sensing, proximity detection
Anisotropic Magnetoresistance (AMR) Sensors High sensitivity (0.1 accuracy), low power consumption Electronic compasses, navigation systems
Giant Magnetoresistance (GMR) Sensors Ultra-high sensitivity (nanotesla range), wide bandwidth Biomedical devices, industrial position control
Tunneling Magnetoresistance (TMR) Sensors Lowest power consumption, excellent thermal stability IoT devices, automotive safety systems

3. Structure & Composition

Typical construction includes: - Sensing element (Hall plate/AMR film/TMR junction) - Signal conditioning circuitry (amplifiers, ADCs) - Temperature compensation modules - Digital interface (I2C/SPI) Packaged in LGA/QFN formats (2-8mm sizes) with magnetic shielding layers. Advanced versions integrate sensor fusion algorithms for 3-axis measurement.

4. Key Technical Specifications

Parameter Description & Importance
Sensitivity (mV/Gauss) Determines minimum detectable field strength
Resolution ( T/LSB) Affects angle measurement precision (critical for navigation)
Operating Temperature (-40 to +125 C) Defines environmental suitability
Power Consumption ( A/mA) Crucial for battery-powered devices
Interface Type I2C/SPI for digital output, analog for raw signals

5. Application Fields

Main industries include: - Consumer Electronics: Smartphone compasses, AR/VR headsets - Automotive: EPS systems, vehicle detection - Industrial: Robotics, CNC machine tool positioning - Aerospace: Drone stabilization systems - Medical: Surgical tool tracking

6. Leading Manufacturers & Products

Manufacturer Product Series Key Specifications
STMicroelectronics LIS3MDL 50 Gauss range, 0.08 T/LSB, I2C/SPI
Honeywell HMC5883L 80 Hz bandwidth, 2-4 Gauss accuracy
NXP Semiconductors MFX7755 3D sensing, 0.1 heading accuracy
TDK-InvenSense ICM-20948 9-axis MEMS+mag, 0.15 mA operating current

7. Selection Guidelines

Key consideration factors: - Required measurement axis (2D vs 3D) - Environmental conditions (temperature, vibration) - Power budget constraints - Required accuracy vs cost trade-offs - Interface compatibility with host system - Calibration requirements (hard/soft iron compensation)

8. Industry Trends

Current development directions: - Integration with MEMS IMUs for sensor fusion - AI-based self-calibration algorithms - Sub-10 A ultra-low power consumption - Increased radiation hardness for space applications - Development of 4D magnetic field-time sensors

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