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What is the difference between a high magnetic permeability ring and a low magnetic permeability ring?

What is the difference between a high magnetic permeability ring and a low magnetic permeability ring?

  • Categories:News
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  • Time of issue:2021-08-18 17:52
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(Summary description) When it comes to high permeability magnetic rings, we have to say nickel-zinc ferrite magnetic rings. Why do you say that? Everyone knows that the magnetic ring is divided into nickel-zinc and manganese-zinc according to the material. The magnetic permeability of nickel-zinc ferrite magnetic ring materials is currently used ranging from 15-2000, and the magnetic permeability of commonly used materials is between 100-1000. , According to the magnetic permeability classification, it is divided into low magnetic permeability materials. The magnetic permeability of the manganese-zinc ferrite magnetic ring material goes to a high initial permeability, which is generally above 1000, so the magnetic ring produced by the manganese-zinc material is called a high-permeability magnetic ring. Nickel-zinc ferrite magnetic rings are generally used for various wires, circuit boards, and anti-interference in computer equipment. Manganese-zinc ferrite magnetic rings can be used to make inductors, transformers, filter cores, magnetic heads and antenna rods. Usually, the lower the material permeability, the wider the applicable frequency range; the higher the material permeability, the narrower the applicable frequency range.

What is the difference between a high magnetic permeability ring and a low magnetic permeability ring?

(Summary description)
When it comes to high permeability magnetic rings, we have to say nickel-zinc ferrite magnetic rings. Why do you say that?

Everyone knows that the magnetic ring is divided into nickel-zinc and manganese-zinc according to the material. The magnetic permeability of nickel-zinc ferrite magnetic ring materials is currently used ranging from 15-2000, and the magnetic permeability of commonly used materials is between 100-1000. ,

According to the magnetic permeability classification, it is divided into low magnetic permeability materials. The magnetic permeability of the manganese-zinc ferrite magnetic ring material goes to a high initial permeability, which is generally above 1000, so the magnetic ring produced by the manganese-zinc material is called a high-permeability magnetic ring.

Nickel-zinc ferrite magnetic rings are generally used for various wires, circuit boards, and anti-interference in computer equipment. Manganese-zinc ferrite magnetic rings can be used to make inductors, transformers, filter cores, magnetic heads and antenna rods.

Usually, the lower the material permeability, the wider the applicable frequency range; the higher the material permeability, the narrower the applicable frequency range.

  • Categories:News
  • Author:
  • Origin:
  • Time of issue:2021-08-18 17:52
  • Views:

When it comes to high permeability magnetic rings, we have to say nickel-zinc ferrite magnetic rings. Why do you say that?

Everyone knows that the magnetic ring is divided into nickel-zinc and manganese-zinc according to the material. The magnetic permeability of nickel-zinc ferrite magnetic ring materials is currently used ranging from 15-2000, and the magnetic permeability of commonly used materials is between 100-1000. ,

According to the magnetic permeability classification, it is divided into low magnetic permeability materials. The magnetic permeability of the manganese-zinc ferrite magnetic ring material goes to a high initial permeability, which is generally above 1000, so the magnetic ring produced by the manganese-zinc material is called a high-permeability magnetic ring.

Nickel-zinc ferrite magnetic rings are generally used for various wires, circuit boards, and anti-interference in computer equipment. Manganese-zinc ferrite magnetic rings can be used to make inductors, transformers, filter cores, magnetic heads and antenna rods.

Usually, the lower the material permeability, the wider the applicable frequency range; the higher the material permeability, the narrower the applicable frequency range.

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