Epoxy Resin Amorphous Toroidal Core 464

Epoxy resin amorphous toroidal core and c cut core for common mode choke, transformer and other electronic component. We provide one-stand solution services, please feel free to contact us.



SAT Epoxy Resin Amorphous Toroidal Core and C Cut Core


SAT epoxy resin amorphous toroidal cores and c cut cores are the suitable material for power transformer and inductor, choke coil and sensor, especially used in tough working situation and high-frequency range. SAT epoxy resin amorphous toroidal cores and c cut cores contribute to make components smaller, reduce the install space, improve energy switching efficiency in varieties of industries such as automobile, fire safety and component manufacturing. 


The Specification of Epoxy Resin Magnetic Toroidal Cores

Core design

Toroidal core

Core for common mode choke

12.89.53.2

Nominal Dimensions

12.8x9.5x3.2 mm

Core Material

SATG1K101

Type of Finish

Plastic box / silicon rubber

Rated Dimensions

Afe=0.043cm²

lFe=3.5cm

mFe=1.15g

Final Inspection

Magnetical Test Measurement at room temperature (AQL 0,65)

Inductance test without DC-magnetisation

7.1.Measurement of core losses according to MATS-2010A

Setting values:

B=400mT

F=50KHz

Specified value:

pFe≤120 W/kg

7.2.Measurement of flux density swing from residual flux density into

saturation with unipolar rectangular voltage pulses, constant field strength amplitude.

Setting values:

td=20µs,

fP=1kHz

H=2A/cm

Specified value:

Br/Bs≥0.8




























SAT Epoxy Resin Amorphous Toroidal Core and C Cut Core

SAT Epoxy Resin Amorphous Toroidal Core and C Cut Core

Epoxy Resin Amorphous Toroidal Core Features:

1. 70% lower core loss compared to ferrite and silicon steel cores.
2. Lower hysteresis and eddy current losses, higher permeability.
3. Better overload capacity.
4. Environment friendly, lower carbon dioxide emission due to the lower demand in generation.
5. Lower total cost of manufacturing due to the SAT Zero-Waste Eco Technology.
6. Short circuit strength increasing due to the tape-wound construction.
7. Smaller size, easier to assemble and repair.


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