Iron-based amorphous filter inductor core
Iron-based amorphous filter inductor core
Iron-based amorphous filter inductor core
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  • Iron-based amorphous filter inductor core
  • Iron-based amorphous filter inductor core
  • Iron-based amorphous filter inductor core

Iron-based amorphous filter inductor core

Practical iron-based amorphous filter inductor cores feature high saturation magnetic flux density, low coercivity, low losses, excellent DC bias tolerance, and a high permeability ranging from 120 to 1200. Consequently, they are widely used in applications such as automotive audio chokes, DMC filters, output smoothing filters, common-mode filters, PFC correction inductors, and filtering coils.

Categories:

Toroidal core

Product Attributes

Brand :  Kayo

Place of origin :  China

Supply Capacity and Additional Information

Packaging :  Customized

Productivity : 5000000pieces/months

Transportation :  Marine, terrestrial, and aerial

Place of origin :  Anyang, Henan Province, China

Supply capacity : 5000000piece/months

Certificate :  ISO9001, GS

Customs code : 410596117T

Port :  Qingdao, Tianjin, Shanghai

Payment Type :  Letter of Credit, Telegraphic Transfer

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

Packaging and Delivery

Sales Unit:

Piece/Pieces

Packaging Type:

Customized

High-quality iron-based amorphous filter inductor core

Practical iron-based amorphous filter inductor cores exhibit high saturation magnetic flux density, low coercivity, low losses, excellent DC bias tolerance, and a high permeability ranging from 120 to 1200. Consequently, they are widely used in applications such as automotive audio chokes, DMC filters, output smoothing filters, common-mode filters, PFC correction inductors, and filtering coils.

 

Performance of Filter Inductor Cores

Item Index Item Index
Magnetic Saturation Induction Intensity Bs (T) 1.56 Hardness Hv 960
Crystallization temperature Tx (°C) 515 Curie temperature Tc (°C) 400
Saturation magnetostriction coefficient (λs) 0.000027 Resistivity δ (μΩ·cm) 130

 

Amorphous Iron Ring Specifications

 Amorphous filter inductor core

 Magnetic ring 5
 Magnetic ring 8
 Magnetic ring 7

 

 

Frequently Asked Questions

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

2. Question: How long does it take to prepare the samples?
A: Preparing the sample takes 1 to 3 days.

3. Question: What is the delivery lead time for our products?
A: If the item is in stock, it will take 3 to 10 days. If you require a custom design, we will arrange production as soon as possible.


4. Question: What is your minimum order quantity?
A: All orders are accepted, regardless of size and design.

5. Question: How do I make the payment?
A: We accept telegraphic transfer, PayPal, letter of credit, documents against acceptance, and documents against payment, among other methods.
There may be some differences across regions.

6. Question: If I have any questions, where can I find the answers?
A: Please feel free to contact us at any time.

7. Question: Why choose us?
A: (1) Our products enjoy a prestigious reputation in both domestic and international markets.
(2) With over eight years of export experience, we have a deep understanding of how to meet your needs.
(3) On-time delivery.

Key words:

China Filter Inductance Core manufacturers

Certification


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

ITAF 16949

ITAF 16949

REACH

REACH

ROHS

ROHS

iso 14001

iso 14001

ISO 9001

ISO 9001

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Cobalt-based amorphous nanocrystalline alloy ribbon


Cobalt-based amorphous alloys, thanks to their unique microstructure, boast core advantages such as ultra-low losses and exceptionally high permeability: - Near-zero magnetostriction — ensuring noise-free operation and distortion-free signals; - Ultra-high permeability — far surpassing conventional iron-based amorphous materials and silicon steel; - Extremely low coercivity — delivering rapid response and reduced losses. - Cobalt-based amorphous alloys exhibit stable performance across a wide temperature range and at high frequencies, with strong anti-interference capabilities, making them well-suited for precision sensing and high-frequency applications. - Customized products can be tailored to meet specific customer requirements, offering features such as low noise, high sensitivity, and low-loss operation at high frequencies.

Iron-based nanocrystalline ribbon


・It combines high permeability, high saturation magnetic flux density, low coercivity, and low losses, with overall performance far superior to conventional iron-based amorphous alloys, silicon steel, and certain permalloy grades. ・It exhibits excellent frequency adaptability, featuring low losses and high efficiency at medium and high frequencies, making it suitable for a wide range of applications. ・Its cost is significantly lower than that of cobalt-based amorphous alloys, offering outstanding cost-effectiveness. ・It demonstrates excellent thermal stability and reliable, consistent performance, making it well-suited for large-scale industrial applications.

Iron-based amorphous ribbon


Due to the following characteristics, iron-based amorphous alloys exhibit a significant advantage in low core losses: - Thin thickness—only about one-tenth that of grain-oriented silicon steel; - High resistivity—approximately twice that of grain-oriented silicon steel; - Low coercivity—only about one-third that of grain-oriented silicon steel.

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Leave your contact information and get a free product quote