磁场测量实验仪-2
磁场测量实验仪-1

Anisotropic Magnetoresistive Sensor and Magnetic Field Measurement Experimental Instrument

Product Features

 

  1. Equipped with imported high-sensitivity sensors, the instrument achieves high measurement accuracy for weak magnetic fields.
  2. The instrument's built-in constant current source module provides a stable current, enabling the coil to generate a uniform magnetic field.
  3. The design is clear and intuitive.

 

 

Instrument Composition:


The instrument consists of an anisotropy tester, a Helmholtz coil, and a magnetoresistive sensor with angle and position adjustment and a readout mechanism.

 

 

Experimental Contents


1. Measurement of magnetoresistive sensor characteristics and anisotropy;
2. Measurement of magnetic field distribution of a Helmholtz coil.

 

 

Experimental Objectives


1. Study the magnetoelectric conversion characteristics of a magnetoresistive sensor;
2. Study the relationship between output voltage and deflection angle at different angles;
3. Study the measurement of magnetic field distribution along the axis of a Helmholtz coil.

 

 

Specifications of Anisotropic Magnetoresistive Sensor and Magnetic Field Measurement Experimental Instrument

 

High-sensitivity, high-precision weak magnetic field measurement sensor

 

Operating voltage:                                     220V/50Hz
Sensor experimental setup:                       360° rotation
Magnetic field measurement range:         ±6GS
Magnetic field measurement accuracy:     1µT
Coil operating current:                               0-300mA
Display:                                                         Adjustable digital meter, continuously adjustable
Sensor operating voltage:                          0-7V, adjustable

 

 

The Magnetoresistive Sensor Anisotropy and Magnetic Field Measurement Experimental Instrument is used to study the anisotropy of magnetoresistive materials, the characteristic of their resistance varying with magnetic field direction, and demonstrate their application in magnetic field direction detection. It is suitable for magnetism teaching and sensor development experiments.
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