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Hard Ferrite Block Magnet for Fixture/Jig
Hard Ferrite Block Magnet for Fixture/Jig
Hard Ferrite Block Magnet for Fixture/Jig
Hard Ferrite Block Magnet for Fixture/Jig
Hard Ferrite Block Magnet for Fixture/Jig
Hard Ferrite Block Magnet for Fixture/Jig

Hard Ferrite Block Magnet for Fixture/Jig

Payment Type:T/T

Incoterm:FOB,CFR,CIF,EXW,DDP

Min. Order:10000 Piece/Pieces

Transportation:Ocean,Land,Air,Express

Port:Guangzhou,Shanghai,Ningbo

Product Description
Product Attributes

Model No.YB-B

BrandYB

Place Of OriginChina

SpeciesPermanent

CompositionFerrite Magnet

ApplicationIndustrial Magnet

Tolerance±1%

Processing ServiceBending, Welding, Decoiling, Cutting, Punching, Moulding

SizeMulti size available

ShapeBlock

CompositeFerrite magnet

GradeY30

SampleAvailable

Supply Ability & Additional Information

Packagingcarton packing, then in wood pallet

Productivity3 million pieces per month

TransportationOcean,Land,Air,Express

Place of OriginChina

Supply Ability3 million pieces per month

CertificateISO9001

HS Code85051900

PortGuangzhou,Shanghai,Ningbo

Payment TypeT/T

IncotermFOB,CFR,CIF,EXW,DDP

Packaging & Delivery
Selling Units:
Piece/Pieces
Package Type:
carton packing, then in wood pallet
Picture Example:
Download
Round ferrite magnet
sintered area-ceramic magnet
Ferrite magnet warehouse
Anisotropic Ferrite Magnets are a type of Permanent Magnet that has a preferred direction of magnetization, meaning they are magnetized in a specific direction during production. This direction of magnetization provides a higher magnetic strength than Isotropic Ferrite Magnets, which have no preferred direction of magnetization. Anisotropic ferrite magnets are commonly used in various applications such as motors, speakers, and magnetic separators.
Application of Ferrite Ring Magnet
Ferrite Ring Magnets are commonly used in various applications such as:

1. Speakers: Ferrite ring magnets are widely used in speakers to produce sound. The magnet is placed inside the speaker and interacts with the voice coil to produce sound.

2. Motors: Ferrite ring magnets are also used in motors to generate a magnetic field that helps in the rotation of the motor. They are commonly used in small motors such as those found in electric toothbrushes and power tools.

3. Magnetic sensors: Ferrite ring magnets are used in magnetic sensors to detect the presence of a magnetic field. They are commonly used in security systems, door sensors, and speed sensors.

4. Magnetic separators: Ferrite ring magnets are used in magnetic separators to separate magnetic materials from non-magnetic materials. They are commonly used in industries such as mining, recycling, and food processing.

5. MRI machines: Ferrite ring magnets are used in MRI machines to produce a strong magnetic field that helps in the imaging process. They are commonly used in medical facilities for diagnostic purposes.

Overall, ferrite ring magnets are widely used in various industries due to their high magnetic strength, low cost, and durability.



     What's is CRUNCHING STRENTGTH OF FERRITE MAGNET?


As an AI language model, I do not have personal opinions or beliefs. However, I can provide information that the term "crunching strength" is not commonly used to describe the properties of a ferrite magnet. Instead, the strength of a ferrite magnet is typically measured by its magnetic field strength, which is expressed in units of Gauss or Tesla. The strength of a ferrite magnet depends on factors such as its size, shape, and composition, as well as the strength of the external magnetic field it is exposed to.



The different between Neodymium Magnet and ferrite magnets?
Neodymium magnets and ferrite magnets are two types of permanent magnets that differ in their composition and magnetic properties.


1. Composition: Neodymium magnets are made of a combination of neodymium, iron, and boron (NdFeB), while ferrite magnets are made of a combination of iron oxide and barium or strontium carbonate (Fe3O4).

2. Strength: Neodymium magnets are much stronger than ferrite magnets. They have a higher magnetic energy density, which means they can generate a stronger magnetic field and attract or repel other magnets more strongly.

3. Cost: Neodymium magnets are more expensive than ferrite magnets because of their higher strength and more complex manufacturing process.

4. Temperature: Neodymium magnets can lose their magnetic properties at high temperatures, while ferrite magnets can maintain their magnetic properties at high temperatures.

5. Applications: Neodymium magnets are commonly used in high-performance motors, speakers, headphones, and other electronic devices, while ferrite magnets are used in low-cost applications such as refrigerator magnets, toys, and magnetic separators.

Overall, the main difference between neodymium magnets and ferrite magnets is their strength and cost. Neodymium magnets are much stronger but more expensive, while ferrite magnets are weaker but more affordable.

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