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Magnetic Shielding Material
Products
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  • High Precision Mu Metal Clock Movement Stator

    NiFe-based Permalloy Clock Movement Stator

    Made of NiFe based Permalloy, the featured clock movement stator is finely engineered with a high vacuum demagnetization process. Its robust construction ensures lasting durability.

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  • Permalloy Core for HMA Current Transformer

    High Metering Accuracy Current Transformer Mu Metal Core

    The high permeability 80% nickel-iron, Mu Metal alloy is the material used in the manufacture of high metering accuracy (HMA) current transformer cores. Close control of the magnetic properties over a wide flux density range permits the most conomic design of the transformer for requirements in both ratio and phase angle error.

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  • NiFe-based Permalloy Shielding Box for CT

    Nickel Based Mu Metal Shielding Case

    Mu Metal Shielding case is a major protecting method in magetic fields, which obtains double actions: one is to prevent or reduce the electromagnetic interference from outer field, the other is to prevent or reduce the part's own electromagnetic field affecting any other relevant parts.

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  • NiFe-based Permalloy Shielding Pipe

    NiFe-based Mu Metal Shielding Tube for Current Transformer

    Mu Metal shielding tube is a major protecting method in magetic fields, which obtains double actions: one is to prevent or reduce the electromagnetic interference from outer field, the other is to prevent or reduce the part's own electromagnetic field affecting any other relevant parts.

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  • High Permeability Mu Metal Strip for Shilelding

    1J85 Mu Metal Strip with High Permeability

    Mu Metal, a Nickel-Iron-Molybdenum alloy, provides high initial and maximum permeabilities with low coercive force, low hysteresis loss, low eddy-current losses, and low magnetostriction at low field strengths.

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The high permeability 80% nickel-iron, Mu Metal alloy is the material used in the manufacture of high metering accuracy (HMA) current transformer cores. Close control of the magnetic properties over a wide flux density range permits the most conomic design of the transformer for requirements in both ratio and phase angle error.

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