Common-mode choke
This amorphous common-mode inductor is manufactured using advanced amorphous magnetic core materials, making it a high‑performance EMI filtering component. Designed for applications such as switch-mode power supplies, charging stations, and industrial equipment, it effectively suppresses common-mode interference while delivering lower losses and enhanced stability, helping devices easily meet stringent EMC electromagnetic compatibility standards.
Categories:
Electronic Components/Magnetic Components
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Key Features and Advantages
| Features | Core Advantages |
|---|---|
| Amorphous magnetic core material | Its initial permeability far exceeds that of conventional ferrites, delivering superior filtering performance in the mid- to high-frequency range and providing more comprehensive suppression of broadband noise. |
| Low loss, low heat generation | Amorphous materials exhibit extremely low iron losses and lower temperature rises under continuous operation, thereby effectively enhancing overall system efficiency and extending equipment lifespan. |
| Symmetrical dual-winding design | The balanced winding process efficiently attenuates common-mode interference while ensuring no adverse impact on the transmission of normal differential-mode signals. |
| High insulation, high reliability | Integrated insulating skeleton and shielding structure, offering excellent dielectric strength, superior resistance to mechanical impact, and compatibility with high-density PCB layouts. |
| Wide-temperature stability performance | Within a wide temperature range of –40°C to +125°C, its magnetic properties remain stable, making it suitable for harsh operating conditions such as industrial and automotive applications. |
Typical application areas
- Consumer and Industrial Power Supplies: Switching Power Supplies, AC/DC Adapters, Industrial Control Power Modules
- New Energy Charging System: On-board Charger (OBC), DC Fast Charging Pile, and Vehicle Auxiliary Power Supply
- Smart Grid and Home Appliances: Devices Operating in Strong Electromagnetic Environments, Such as Smart Meters, Air Conditioners, Refrigerators, and Inverter‑Driven Appliances
- Industrial automation equipment—such as variable-frequency drives, motor drives, and PLC control systems—often operates in environments with stringent EMC requirements.
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A: To provide you with the most accurate response, we recommend that you include relevant product information when you inquire, such as: Model, dimensions, technical specifications, required quantity, etc. 。 - Q: How long does it take to produce a sample?
Answer: The preparation time for standard samples is typically 1–3 business days 。 - Q: What is the product’s lead time?
A: For standard in-stock items, the shipping lead time is approximately 3–10 days . If you require a custom design, we will, upon confirmation of your requirements, provide you with… Arrange production as soon as possible. and synchronize the specific production schedule with you. - Q: What is the minimum order quantity (MOQ)?
A: We support flexible ordering with no strict minimum order quantity. Specific terms can be negotiated based on your product dimensions and design, and we are committed to meeting a wide range of procurement needs. - Q: What payment methods are supported?
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Providing better soft magnetic materials and solutions for customers has been our long-term goal.
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Jiayou provides you with personalized manufacturing and customization solutions, meticulously aligning with your specific requirements and product application scenarios. By integrating advanced manufacturing technologies and process resources, we ensure end-to-end collaboration from design through production, delivering solutions that are practical, efficient, user-friendly, and cost-competitive—helping your product vision seamlessly transition from concept to reality.
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.
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.