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Focus On Magnet Products Processing and Customization

Cutting the magnetic core


The cutting-type magnetic core is a toroidal magnetic core made from amorphous and nanocrystalline strip materials. After being wound and cured into shape, it undergoes a high-precision cutting process to achieve its final form. This type of magnetic core features high dimensional accuracy, convenient assembly, uniform air gaps, low losses, and stable performance. It can meet the demands of high-power, high-frequency, high-efficiency, and compact electronic components. Customization is available upon customer request, allowing for different specifications, shapes, and performance characteristics. As a result, it effectively enhances component assembly efficiency and operational reliability.

amorphous transformer core 460*139*84*217


Ribbon Width:213 mm Windows Hight:460( +2/0) mm Windows Wight:139( +2/0) mm Core Leg Build:84( 0/-2) mm

Multifunctional current transformer core


The magnetic core of nanocrystalline current transformers, with its high permeability and low cost, represents an ideal material choice. Currently, these current transformers are well-suited to the trend toward smaller, lighter, and more efficient components in the fields of power electronics and information technology. Consequently, this technology can be widely applied in precision current transformers, zero-sequence current transformers, medium- and high-frequency transformers, and other electrical equipment.

Filter inductor core


The magnetic core for filtering inductors is suitable for energy storage and filtering inductors used in switch-mode power supplies, thanks to its high Bs value and low-loss characteristics. Compared with iron powder cores and ferrite cores of the same volume and permeability, it boasts a higher energy-storage capacity, making it more widely used in AC inductors, output inductors, rotary transformers, pulse transformers, and power-factor correction circuits.

Amorphous Nanocrystalline Annular Core


● 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 transformer temperature. ● Stable temperature performance, enabling continuous operation from -45℃ to 130℃.

Amorphous Nanocrystalline Annular Core


● 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 transformer temperature. ● Stable temperature performance, enabling continuous operation from -45℃ to 130℃.

Magnetic core with high saturation magnetic flux density


● 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 loss, which helps lower the transformer’s temperature. ● Stable temperature performance, enabling continuous operation from -45℃ to 130℃.

Amorphous Nanocrystalline Circular Magnetic Core


● 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 loss, which helps lower the transformer’s temperature. ● Stable temperature performance, enabling continuous operation from -45℃ to 130℃.

Amorphous Nanocrystalline Magnetic Ring


● 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 loss, which helps lower transformer temperature. ● Stable temperature performance, enabling continuous operation from -45℃ to 130℃.

Best-selling amorphous nanocrystalline core


Iron-based amorphous filter inductors feature high saturation magnetic flux density, low coercivity, low losses, excellent DC bias resistance, and a high permeability ranging from 120 to 1200. Consequently, these premium magnetic rings can be widely used in applications such as automotive audio chokes, DMC filters and output smoothing filters, common-mode filters, PFC correction inductors, and filtering coils.

Spray-amorphous magnetic core


High-quality magnetic rings feature high saturation magnetic induction, low coercivity, low losses, excellent DC bias resistance, and a high permeability ranging from 120 to 1200. Consequently, amorphous ferromagnetic rings can be widely used in applications such as automotive audio chokes, DMC filters and output smoothing filters, common-mode filters, PFC correction inductors, and filtering coils.

Iron Core For Differential Mode Filter


Payment Type:L/C,T/T Incoterm:FOB,CFR,CIF,EXW,FCA,CPT,CIP Min. Order:1000 Piece/Pieces Transportation:Ocean,Air,Land Port:Qingdaoi,Tianjin,Shanghai

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