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CS358125 Datenblatt(PDF) 4 Page - List of Unclassifed Manufacturers |
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CS358125 Datenblatt(HTML) 4 Page - List of Unclassifed Manufacturers |
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4 / 42 page ![]() Chang Sung Corporation manufactures four types of soft magnetic powder cores including the Molybdenum Permalloy (MPP), High Flux, Sendust and Mega Flux , which are mainly used for inductors and transformers requiring low losses and inductance stability under high DC bias conditions. A fully standardized production management system under strict quality control of the raw materials (nickel, iron, molybdenum, aluminum and silicon) enables CSC to guarantee consistent quality and thus build greater confidence in our company’s product line. MPP Ni-Fe-Mo alloy powder cores are made from alloy powders of nickel, iron and molybdenum. MPP cores exhibit a highly sustainable stability in temperature and inductance under high DC magnetization or high DC Bias conditions. They offer the highest permeability among our materials and the lowest core loss compared to any other core material. MPP cores are also considered to be a premium material for direct current output inductors for SMPS including high Q filters, loading coils and EMI/RFI filters. Finished toroid cores are coated with a gray epoxy to provide dielectric protection and added physical strength. HIGH FLUX Ni-Fe alloy powder cores are made from alloy powders of nickel and iron. The 15,000 Gauss saturation level of High Flux cores has a higher energy storage capability and more effective permeability when compared to the performance of gapped ferrite or powdered iron cores of a similar size. The excellent DC bias characteristics and low core losses of High Flux cores offer a reduction in size and the number of winding turns as well as superior magnetic properties. CSC High Flux cores are excellent choices for applications such as PFC reactors, switching regulator inductors, in-line noise filters, pulse transformers and flyback transformers. Finished High Flux cores are coated with a Khaki epoxy and come in a variety of shapes and sizes. SENDUST Fe-Si-Al alloy powder cores are made from alloy powders of iron, silicon and aluminum. Near-zero magnetostriction makes Sendust cores ideal for eliminating audible noise in filter inductors. Core losses of Sendust cores are significantly lower than those of powdered iron cores. Especially Sendust E shapes provide a higher energy storage capability than gapped Ferrite E cores. Gap losses and eddy current losses are minimized with Sendust E cores compared to gapped ferrite E shapes. Sendust cores are a smart choice for PFC circuits. Other major applications include switching regulator inductors, In-line noise filters, pulse transformers and flyback transformers. Finished Sendust cores are coated in a black epoxy. MEGA FLUX Fe-Si alloy powder cores are made from an alloy of iron and silicon. CSC has developed new magnetic alloy powder cores for the first time in the world under the name of Mega Flux . The innovative design of these unique cores includes a smaller size, higher current and higher energy storage capability. Mega Flux cores have higher flux density than any other magnetic material, 16,000Gauss compared to 15,000Gauss for High Flux cores and 10,000 Gauss for Sendust cores. The extremely good DC bias characteristics provide the best solution for high end applications such as buck/boost inductors for high power supply systems, smoothing chokes for inverters and reactors for electric vehicles. Mega Flux cores pressed with no organic binder have significantly lower core losses than powdered iron cores and Fe-Si strip cores. They also present excellent thermal properties with no thermal aging effects. Finished Mega Flux cores are coated with a dark brown epoxy. Outstanding products begin with a standardized production line and a strict quality control process MAGNETIC POWDER CORES PRODUCT DESCRIPTION MAGNETIC POWDER CORES TECHNICAL DATA Comparison of Core materials Perm. ( ) Bs (G) Core Loss DC Bias Relative Cost Temp. Stability Curie Temp ( ) MPP 14-200 7,000 Lower Better High Best 450 High Flux 26-160 15,000 Low Best Medium Better 500 Sendust 26-125 10,000 Low Good Low Good 500 Mega Flux 26-90 16,000 Medium Best Low Better 700 Iron 10-100 10,000 High Poor Lowest Poor 770 Fe-si (Gapped) 18,000 High Best Lowest Good 740 Amorphous (Gapped) 15,000 Low Better Medium Good 400 Ferrite (Gapped) 4,500 Lowest Poor Lowest Poor 100~300 Permeability vs DC Bias Core Loss (at 50kHz) Magnetic Powder Cores ::: 06 05 ::: Chang Sung Corporation Materials Powder Strip |
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