Our high-quality magnetic cores feature high permeability, low coercivity, and low losses, demonstrating excellent performance in resisting DC interference and maintaining temperature stability. They are widely applicable in electronic energy meters, smart meters, resistive transformers with DC components, and power system measurement applications.
Monoclonal antibody magnetic core
The resistive DC composite single-core is a single resistive DC core that features high linearity, high precision, easy phase-error compensation, and excellent performance across a wide temperature range. At the same time, compared to composite cores, the single-core offers greater stability and a smaller footprint.
Low-permeability amorphous nanocrystalline core
The resistive DC composite single-core is a single resistive DC core that features high linearity, high precision, easy phase-error compensation, and excellent high- and low-temperature performance. At the same time, compared to composite cores, the single-core offers greater stability and a smaller footprint.
The resistive DC composite single-core is a single resistive DC core that boasts advantages such as high linearity, high precision, ease of phase error compensation, and excellent high- and low-temperature performance. At the same time, compared to composite cores, the single-core offers greater stability and a smaller footprint.
Amorphous Nanocrystalline Track-Type Core
Nano Oval Core is a specialized product designed to meet the precise requirements and personalized customization needs of various industrial and commercial applications. This oval-shaped iron core is available in a wide range of sizes, allowing users to flexibly select the specifications that best suit their specific needs. Whether you require an oval iron core encased in a plastic shell or prefer a product with a custom coating, Nano Oval Core offers a versatile solution that combines durability, functionality, and aesthetic appeal.
Amorphous Nanocrystalline Coated Magnetic Core
It can be widely used in the core of inverter welding power supplies, X-ray equipment, laser systems, communication power supplies, UPS systems, high-frequency induction heating power supplies, charging power supply cores, electrolysis and electroplating power supply cores, motor speed-control power supply cores, and magnetic cores for plasma cutting machines.
The amorphous nanocrystalline core you’re looking for
Application Fields of High-Quality Magnetic Cores Low-cost magnetic cores can be widely used in magnetic cores for inverter welding machine power supplies, X-ray, laser, and communication power supplies, as well as in magnetic cores for UPS and high-frequency induction heating power supplies, charging power supplies, electrolysis and electroplating power supplies, motor speed-control power supplies, and magnetic cores for plasma cutting machines.
Application Fields of Real Transformer Cores High-quality power transformer cores can be widely used in inverters for welding machines, X-ray equipment, laser devices, communication power supplies, UPS systems, and high-frequency induction heating power supply cores, as well as in charging power supplies, electrolysis and electroplating power supplies, motor speed-control power supplies, and plasma cutting machine cores.
Multifunctional Amorphous Nanocrystalline Core
It can be widely used in the core of inverter welding power supplies, X-ray equipment, laser systems, communication power supplies, UPS systems, high-frequency induction heating power supplies, charging power supplies, electrolysis and electroplating power supplies, motor speed-control power supplies, and magnetic cores for plasma cutting machines.
Customizable amorphous nanocrystalline magnetic cores
● High saturation magnetic flux density, which can effectively reduce the size and weight of the device. ● High permeability and low coercivity, which enhance efficiency and reduce copper losses. ● Low losses, which help lower the transformer’s temperature. ● Stable operation within a temperature range of -45℃ to 130℃.
Amorphous and Nanocrystalline Magnetic Cores Made of Soft Magnetic Materials
Excellent magnetic cores feature strong resistance to DC components, a wide current range, require fewer additional circuits and components, exhibit high reliability, and demonstrate robust anti-interference performance.
Excellent magnetic cores feature strong resistance to DC components, a wide current range, require fewer additional circuits and components, exhibit high reliability, and demonstrate robust anti-interference performance.