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Amorphous Nanocrystalline Spray-Coated Magnetic Core
It can be widely used in the core power supplies of inverter welding machines, 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 the magnetic cores of plasma cutting machines.
Soft Magnetic Amorphous and Nanocrystalline Cores
Superior magnetic cores exhibit strong resistance to DC bias, a wide current range, require fewer additional circuits and components, and offer high reliability and strong immunity to interference.
Superior magnetic cores exhibit strong resistance to DC bias, a wide current range, require fewer additional circuits and components, and offer high reliability and excellent immunity to electromagnetic interference.
Iron-based amorphous nanocrystalline magnetic core
High-performance magnetic cores exhibit strong resistance to DC bias, a wide current range, minimal need for additional circuitry and components, high reliability, and robust immunity to electromagnetic interference.
Our company manufactures two types of DC core resistors: single-core and composite-core. The composite-core design features a dual-core configuration and is more cost-effective than cobalt-based alloys. This product boasts high permeability, low coercivity, and low losses, delivering excellent performance in DC interference rejection and temperature stability. It is widely used in electronic energy meters, DC component transformers, and metering applications in power systems.
Applications of Optimal Magnetic Cores Our high-quality magnetic cores exhibit high permeability, low coercivity, and low losses, delivering outstanding performance in DC bias rejection and thermal stability. They are widely used in electronic energy meters, resistive DC-component transformers, and power-system measurement applications.
Core of High-Quality DC Isolation Components Resistive DC magnetic cores exhibit strong resistance to DC components, a wide current range, minimal need for additional circuitry and equipment, high reliability, and excellent anti-interference performance. DC-DC Single Magnetic Core The resistive DC composite single magnetic core is a single resistive DC magnetic core that features high linearity, high precision, easy phase-error compensation, and superior high- and low-temperature performance. Compared with composite cores, single cores offer greater stability and a more compact footprint. Applications of Optimal Magnetic Cores Superior magnetic cores boast high permeability, low coercivity, and low losses, delivering outstanding performance in DC interference suppression and temperature stability. They are widely used in electronic energy meters, resistive transformers with DC components, and power-system measurement applications.
Core of High-Quality DC Isolation Components DC-resistant magnetic cores exhibit strong resistance to DC components, a wide current range, minimal need for additional circuitry and equipment, high reliability, and low susceptibility to interference. DC-Resistant Performance of Magnetic Cores 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 broad temperature range. Compared with composite cores, single cores offer greater stability and a more compact footprint. Applications of Optimal Magnetic Cores Our high-quality magnetic cores boast high permeability, low coercivity, and low losses, delivering outstanding performance in DC interference rejection and thermal stability. They are widely used in electronic energy meters, impedance-type DC component transformers, and power-system measurement applications.
New-type soft magnetic material core
● High saturation magnetic flux density, which effectively reduces the size and weight of the equipment. ● High permeability and low coercivity, which enhance efficiency and reduce copper losses. ● Low core losses, which help lower transformer temperature. ● Stable operation over a wide temperature range from -45°C to 130°C.
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.
High-performance filter inductor core
Iron-based amorphous filter inductor cores exhibit high saturation magnetic flux density, low coercivity, low losses, excellent DC bias resistance, 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.