GaAs Hall Element (Matrix Brand)
Brand: Matrix
Operating Temperature Range: -40℃ ~ 125℃
Storage Temperature Range: -40℃ ~ 150℃
Maximum Input Current: 13 mA
Thin Profile
Similar Sensitivity
Similar Offset Voltage
Similar Temperature Stability
High Offset Voltage Stability
Application Scenarios
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Product Description
Brief Introduction to MG610:
MG610 is a gallium arsenide (GaAs) Hall element with high sensitivity and excellent temperature stability, making it ideal for industrial sensing applications.
As a linear GaAs Hall element featuring superior thermal characteristics, the MG610 comes in an ultra-thin SSOT-4 package with a device thickness of 0.6±0.05mm. It is widely suitable for the assembly design of current clamp meters and is shipped in tape-and-reel packaging (4000pcs per reel).
It is a pin-to-pin alternative to the comparable product HG-106C.
Both the MG610 and HG-106C deliver high sensitivity at room temperature, and the MG610 boasts excellent distribution consistency, enabling direct drop-in replacement.
(For detailed specifications, please refer to the datasheet.)

Applications of MG610:

Precision Motor Field: Rotor position detection and speed feedback for brushless DC motors and small precision stepper motors.
Industrial Control Field: Position detection for industrial servo systems and valve actuators; current detection for frequency converters and power modules.
Consumer Electronics Field: Position detection for paper feed mechanisms of printers and scanners; non-contact key and stroke detection for smart home devices.
Storage Equipment Field: Speed detection and position positioning for spindle motors of DVD drives and CD-ROM drives.
Sensor Module Field: Core detection component for linear magnetic sensors, magnetic flux sensors and non-contact current sensors.


Product Features

Operating Temperature Range: -40℃ ~ 125℃

Storage Temperature Range: -40℃ ~ 150℃

Maximum Input Current: 13mA

Ultra-thin Profile

Equivalent Sensitivity

Equivalent Offset Voltage

Equivalent Temperature Stability

High Offset Voltage Stability