High Flux Core, Toroid High Flux Cores, High Flux Magnetic Powder Core, High Flux toroid core, high flux powder cores, High-performance ferrite T type core, high maximum flux density iron powder core for transformer
Mode: High Flux Core (Magnetic Powder Cores)
Core Loss:Low
Perm.vs DC Bias:Good
Relative Cost:Low
Frequency Range:2MHz
Curie Temp.:600℃
Flux Density:10500G
Temp.Stability: Good
Coating:Yes
Color: coustom
Sample service:
Sample Available
Sample fee Paid by customer, but can be refund when mass production
Delivery fee Send by express or by air, paid by customer, but can be refund after mass production
Application range:
(1) Frequency conversion inductance core, frequency conversion and transformer core.
(2) PFC chokes, high Q quality filter inductance, loaded coils.
(3) Line noise filters, pulse transformer, the energy storage of switch power supply and inductor filtering.
(4) Switching regulator
(5) EMI filters
Features
a.High saturation magnetic induction, high permeability.
b.Excellent DC current bias.
c. High frequency, low loss, low noise.
d. Excellent thermal stability.
As one of the professional and leading China ring shape magnetic power core manufacturers and suppliers, HSMAG can bring you high quality and high precision magnetic power core from our productive factory which can offer you products in stock at low price. Should you have special requirements, we can also give customized products buying service.powder core with high saturation flux density Toroid Sendust Core
High Flux Core is made from 50%Ni and 50%Fe.It has a saturation flux density of 15000Gs and permeability from 14 to 25.In magnetic powder cores, High Flux Core has the highest flux density and best DC bias characteristics among all other materials such that core size could be smaller and less expensive than MPP. It is mainly applied in in-line filter, AC inductor, output inductor, power factor correction circuit etc.
Ferrites that are used in transformer or electromagnetic cores contain nickel, zinc, and/or manganese compounds. They have a low coercivity and are called soft ferrites. The low coercivity means the material’s magnetization can easily reverse direction without dissipating much energy (hysteresis losses), while the material’s high resistivity prevents eddy currents in the core, another source of energy loss. Because of their comparatively low losses at high frequencies, they are extensively used in the cores of RF transformers and inductors in applications such as switched-mode power supplies and loopstick antennas used in AM radios.
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