Low-loss silicon steel JNEX core
Low-loss silicon steel JNEX core
Low-loss silicon steel JNEX core
Low-loss silicon steel JNEX core
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  • Low-loss silicon steel JNEX core
  • Low-loss silicon steel JNEX core
  • Low-loss silicon steel JNEX core
  • Low-loss silicon steel JNEX core

Low-loss silicon steel JNEX core

Features Low iron loss Low noise Low magnetostriction High permeability High-quality stability

Categories:

Silicon Steel Core

Product attributes

Brand : Kayo

Place of origin China

Size Accepts custom orders

Specifications Accepts custom orders

Package Cardboard box

Minimum order quantity 1pcs

Product Series ED Ferrite Core

Certification ISO9001

Payment Letter of Credit, Telegraphic Transfer

Export All over the world

Supply Capacity and Additional Information

Packaging Customized

Productivity 5000000pieces/months

Traffic Ocean, land, air

Place of origin Anyang, Henan Province, China

Supply capacity 5000000pieces/months

Certificate ISO9001, SGS

Customs code 410596117T

Port Qingdao, Tianjin, Shanghai

Payment Type Letter of Credit, Telegraphic Transfer

International Trade Terms FOB, CFR, CIF, EXW, FCA, CIP, CPT

 
 
 
Packaging and Delivery

Sales unit:

Piece/Pieces

Packaging type:

Customized

Sales unit:

Piece/Pieces

Image example:

 
 

JNEX Core

                                    

Materials

Transformer Product Applications
· Leveraging JFE’s core characteristics of ultra-high frequency and low iron loss, this material can be widely used in transformer applications ranging from hundreds to tens of thousands of hertz.
· Utilizing an ultra-grain core reduces temperature rise and, compared to conventional silicon steel, enables higher performance.
Design density values and miniaturization of transformers. Additionally, it can also reduce...
Transformer materials such as copper, which offer comprehensive advantages.
· Furthermore, if the low magnetostriction properties of the JNEX core are fully utilized, the transformer can achieve low noise levels.




 

 

Low-noise, high-frequency machine · Low loss!


 
 

Materials

· Compared to traditional silicon materials, the JNEX core employs a completely different manufacturing method (the CDV process), thereby achieving...

A content of 6.5%.


 
 

Feature

  • Low iron loss
  • Low noise
  • Low magnetostriction
  • High permeability
  • High-quality stability
  •  

JNEX Core

         

Processed

         

Chinese     Disc     Range C core

         

 

 

 

Product Category: Silicon steel core

Frequently Asked Questions

 

1. Significantly enhance the efficiency of tactical e-commerce.

Q: What information do I need to provide when I have a consultation?
A: For any inquiries, please provide the following information, such as model number, dimensions, specifications, quantity, etc.

and e
Q: What is the delivery time for our products?
A: If the product is in stock, it will take 3 to 10 days. If you require a custom design, we’ll arrange production as soon as possible.




 


and e
Q: What is your minimum order quantity?
A: All orders are acceptable, depending on the size and design.
4. Significantly enhance the effectiveness of tactical e-commerce.
Q: How can I pay you?




 


A: We accept payment methods such as telegraphic transfer, PayPal, letter of credit, documents against acceptance, and documents against payment. .
There may be some differences across different regions.

 


5. Significantly enhance the effectiveness of tactical e-commerce.
Q: Why choose us?
A: (1) Our products enjoy a strong reputation in both domestic and international markets.
(2) With over 8 years of export experience, we deeply understand how to meet your needs.
(3) Deliver on time.




 

 

 

Key words:

Certification


Providing better soft magnetic materials and solutions for customers has been our long-term goal.

Certification

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Related Products

Providing better soft magnetic materials and solutions for customers has been our long-term goal.

Cobalt-based amorphous nanocrystalline alloy strip


Thanks to their unique microstructure, cobalt-based amorphous alloys boast core advantages such as ultra-low losses and ultra-high permeability: • Near-zero magnetostriction—resulting in noise-free operation and distortion-free signals; • Ultra-high permeability—far superior to conventional iron-based amorphous alloys and silicon steel; • Extremely low coercivity—offering sensitive response and lower energy losses. Cobalt-based amorphous alloys exhibit stable performance across a wide temperature range and at high frequencies, with strong anti-interference capabilities, making them ideal for precision sensing and high-frequency applications. We can tailor products to meet specific customer needs, offering customized solutions with features such as low noise, high sensitivity, and low losses at high frequencies.

Amorphous Nanocrystalline Strip


Amorphous strip material is a new type of functional material characterized by a unique atomic structure and outstanding comprehensive performance. It primarily consists of elements such as iron, silicon, and boron. This material exhibits excellent properties including low coercivity, high magnetic permeability, high resistivity, resistance to high-temperature corrosion, and high toughness.

Iron-based nanocrystalline strip material


• It boasts high permeability, high saturation magnetic induction, low coercivity, and low losses—its overall performance significantly outperforms conventional iron-based amorphous alloys, silicon steel, and certain permalloy alloys. • It exhibits strong frequency adaptability, with low losses and high efficiency at medium and high frequencies, making it suitable for a wide range of applications. • Its cost is substantially lower than that of cobalt-based amorphous alloys, offering outstanding value for money. • It demonstrates excellent temperature stability and reliable, consistent performance, making it ideal for large-scale industrial applications.

Iron-based amorphous strip


Thanks to the following characteristics, iron-based amorphous alloys offer the advantage of low iron loss: ⋅ Thin thickness—only about 1/10 that of grain-oriented silicon steel; ⋅ High resistivity—about twice that of grain-oriented silicon steel; ⋅ Low coercivity—only about 1/3 that of grain-oriented silicon steel.

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