Material Composition | FeCuNbSiB |
---|---|
Thickness (um) | 28~35 |
Saturation induction Bs (T) | 1.25 |
Curie temperature (°C) | 570°C |
Hardness Hv | 880 |
Crystalline temperature Tc (°C) | 500°C |
Saturation magnetostriction | 2×10-6 |
Initial permeability μi | ≥80000 |
Maximum permeability um | ≥500000 |
Density (g/cm³) | 7.2 |
Electrical resistivity (μΩ.cm) | 130 |
Lamination factor | ≥0.8 |
Operating Temperature Range | -50~120℃ |
Core Dimensions | OD*ID*H (mm) |
---|---|
JJ-1005-W01 | 14.9*6.5*4.5 |
JJ-1205-W01 | 21.2*8*4.5 |
JJ-1305-W01 | 12.5*10*5 |
JJ-1505-W01 | 15*10*4.5 |
JJ-1606-W01 | 16*10*6 |
JJ-1806-W01 | 17.5*12.6*6 |
JJ-1910-W01 | 19*15*10 |
JJ-2008-W01 | 20*12.5*8 |
JJ-25*08-W01 | 25*16*10 |
JJ-3010-W01 | 30*20*10 |
Nanocrystalline Core M-114 is manufactured through a series of advanced processes designed to achieve its unique properties. Initially, iron-based alloys are rapidly solidified through melt-spinning, resulting in an amorphous structure. This material is then subjected to controlled annealing treatments to transform it into a nanocrystalline state. The key to achieving the desired nanocrystalline properties lies in carefully regulating the temperature and time during annealing. According to authoritative papers, these processes result in superior magnetic properties, such as high permeability, low core loss, and temperature stability. The meticulous control of grain size is crucial to minimize eddy current losses and enhance magnetic performance.
Nanocrystalline Core M-114 is versatile and used in various high-performance applications. In the energy sector, it's employed in high-frequency transformers for efficient power conversion and distribution. In the automotive industry, it’s critical in components like inductors for electric vehicles and charging systems. Additionally, it plays a significant role in EMI filters for reducing noise in electronic circuits. Research indicates that the material's high permeability and low core loss make it an ideal choice for precision measurement transformers and high-frequency inductors used in medical equipment and communication systems. These applications benefit from the core’s efficiency, size reduction, and durability.
Nanocrystalline Core M-114 is composed of iron-based alloys, including elements like FeCuNbSiB, which provide its unique magnetic properties.
This core is predominantly used in high-frequency transformers, inductors, EMI filters, and magnetic sensors due to its efficiency and stability.
Low core loss translates to higher energy efficiency and reduced thermal management needs, making it ideal for power transformers and high-frequency inductors.
The Nanocrystalline Core M-114 can operate effectively within a temperature range of -50°C to 120°C.
The core is produced through melt spinning followed by controlled annealing to attain a nanocrystalline structure, enhancing its magnetic properties.
Nanocrystalline materials offer high permeability, low core loss, temperature stability, and are energy efficient, reducing operational costs.
Yes, the core offers high saturation magnetization, making it suitable for applications requiring high magnetic flux densities.
Its high permeability and low core loss characteristics make it ideal for reducing noise in electronic circuits, crucial for EMI filters.
Yes, the materials can be brittle and require precise control during manufacturing and handling.
Yes, we offer extensive technical support to optimize the application and performance of Nanocrystalline Core M-114.
As a leading manufacturer, Zhejiang Jingjing New Material Technology Co., Ltd. is committed to innovation and quality. Our Nanocrystalline Core M-114 is engineered for high-frequency transformers and inductors, offering unparalleled efficiency and stability. With our advanced manufacturing processes and stringent quality control, we ensure that each core delivers exceptional performance, making it the preferred choice for demanding applications. Trust our expertise and experience to provide you with the best magnetic solutions.
Electric vehicles demand components that are efficient, compact, and reliable. Our Nanocrystalline Core M-114 meets these requirements by offering high permeability and low core loss, which translates to smaller, lighter, and more efficient inductors and transformers. As a manufacturer committed to technological innovation, we provide cores that enhance the performance and longevity of EV components, supporting the transition to sustainable transportation solutions.
Precision and reliability are paramount in medical equipment. Our Nanocrystalline Core M-114, developed by Zhejiang Jingjing New Material Technology Co., Ltd., is ideal for high-frequency transformers used in medical devices. Its stable performance over varied temperatures ensures consistent operation, making it a trusted choice in the healthcare sector. Our expertise as a manufacturer guarantees that our cores meet the stringent standards required for medical applications.
In communication systems, efficiency and noise reduction are critical. Our Nanocrystalline Core M-114 excels in these areas, providing high permeability for efficient energy transfer and low core loss to minimize energy dissipation. As a leading manufacturer, we ensure that our cores are optimized for performance, making them ideal for use in communication power supplies and EMI filters. Rely on our innovation and experience to enhance your communication infrastructure.
Power transformers benefit significantly from the high permeability and low core loss of Nanocrystalline Core M-114. These properties ensure efficient power conversion and reduced thermal management needs. As a manufacturer focused on cutting-edge technology, Zhejiang Jingjing New Material Technology Co., Ltd. provides cores that meet the demanding requirements of modern power transformers, ensuring reliable and cost-effective performance.
Producing nanocrystalline materials like Core M-114 involves precise control over the manufacturing process. Rapid solidification and controlled annealing are crucial to achieving the desired properties. Despite the complexity, our commitment to quality and innovation ensures that we deliver cores that meet high-performance standards. As a trusted manufacturer, we continuously refine our processes to overcome these challenges and provide superior products.
Temperature stability is a key feature of our Nanocrystalline Core M-114, making it suitable for a wide range of applications. Whether in power transformers, inductors, or EMI filters, the core maintains its properties across a broad temperature range. Our expertise as a manufacturer ensures that each core is engineered to perform reliably under varying thermal conditions, providing consistent efficiency and longevity.
Energy efficiency is a significant advantage of using Nanocrystalline Core M-114. With low core loss, devices that incorporate these cores consume less energy and have reduced thermal management requirements. Zhejiang Jingjing New Material Technology Co., Ltd., as a leading manufacturer, ensures that our cores contribute to the development of energy-efficient solutions, helping industries meet sustainability goals while maintaining high performance.
Renewable energy systems, such as wind generators and solar inverters, require components that can handle high frequencies and power densities. Our Nanocrystalline Core M-114, developed by Zhejiang Jingjing New Material Technology Co., Ltd., is ideally suited for these applications. Its high permeability and low core loss make it efficient in energy conversion and power management, supporting the growth of renewable energy technologies.
The unique properties of Nanocrystalline Core M-114 position it as a critical component in future technological advancements. From electric vehicles to advanced communication systems, its high efficiency and reliability will continue to drive innovation. As a manufacturer leading the way in nanocrystalline material technology, Zhejiang Jingjing New Material Technology Co., Ltd. is dedicated to exploring new applications and enhancing the performance of our cores to meet emerging industry needs.
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