Parameter | Value |
---|---|
Material Composition | FeCuNbSiB |
Thickness (um) | 28~35 |
Saturation Induction Bs (T) | 1.25 |
Curie Temperature (°C) | 570 |
Hardness Hv | 880 |
Operating Temperature Range (°C) | -50~120 |
Specification | Details |
---|---|
Core Size | Customizable |
Permeability at 10KHz | 60000 ≤ μ ≤ 116000 |
Weight | Varies by model |
The production of Shell Type Transformer Cores involves sophisticated techniques including nanocrystalline material processing and precise lamination. According to authoritative sources, the use of nanocrystalline materials reduces core loss significantly while maintaining high saturation magnetization. Such materials also enhance mechanical strength, making the cores suitable for high-stress environments. The lamination process ensures reduction in eddy currents, which is crucial for maintaining efficiency and reliability in power transformation applications.
Shell Type Transformer Cores are extensively used in power distribution and industrial sectors. As per authoritative studies, these cores are critical in applications requiring superior voltage regulation, such as in UPS systems and high-frequency induction heating. The closed-loop design aids in reducing leakage reactance, thereby improving overall system efficiency. Their application in sectors like railways and communication power supplies underscores their versatility and reliability.
We provide comprehensive after-sales support, including technical assistance and warranty services. Our team is ready to assist with installation guidance and troubleshooting to ensure seamless operation.
Our transformer cores are securely packaged to ensure they reach you in perfect condition. We offer standardized shipping options worldwide with tracking capabilities to keep you informed.
A: Our commitment to quality and innovation has established us as a trusted supplier. We provide advanced products designed for high efficiency and performance across various applications.
A: They feature reduced leakage flux and enhanced magnetic coupling, resulting in superior efficiency and performance.
A: Our transformer cores are designed to operate efficiently within a wide temperature range from -50°C to 120°C.
A: Yes, we offer customizable core sizes and specifications to meet specific customer needs.
A: Industries such as power distribution, railways, communication, and industrial manufacturing benefit significantly from using our cores.
A: The lamination process minimizes eddy current losses, improving efficiency and reducing heat generation.
A: We provide technical support, installation guidance, and warranty services to ensure customer satisfaction.
A: Yes, our products meet industry-standard certifications ensuring quality and performance.
A: Lead times vary based on order size and customization but generally range from 4-6 weeks.
A: Yes, we provide competitive pricing and discounts for bulk purchases.
The Shell Type Transformer Core by Zhejiang Jingjing New Material Technology Co., Ltd, a premier supplier, is renowned for its efficiency and performance. These cores are specifically designed to deliver reduced leakage reactance and enhanced magnetic coupling, making them ideal for applications where efficiency and reliability are paramount. Their ability to withstand high mechanical stress and provide excellent voltage regulation ensures they are a preferred choice across multiple sectors.
As a leading supplier, Zhejiang Jingjing integrates state-of-the-art materials, such as nanocrystalline, into their Shell Type Transformer Cores. These materials significantly reduce core losses while enhancing magnetic properties. The innovative use of these materials ensures the cores can meet the demanding requirements of modern electrical systems, providing better performance and extended operational lifespan.
Customization is a key strength of the Shell Type Transformer Core offerings by Zhejiang Jingjing. The company provides tailored solutions to fit the specific needs of different industries. With customizable specifications, such as core size and permeability, these transformer cores are versatile and capable of addressing the unique challenges faced by diverse applications such as railway and industrial machinery.
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