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Amorphous C-type and E-type cores


The iron-based amorphous alloy is composed of 80% iron and 20% silicon, along with B-type metallic elements. It has a high saturation magnetic induction strength (1.54T). Compared with silicon steel, the iron-based amorphous alloy outperforms silicon steel in terms of various aspects such as magnetic permeability, excitation current, and iron loss. In particular, the iron loss is low (one-third to one-fifth of oriented silicon steel), and replacing silicon steel with it for power distribution transformers can save 60-70% of energy. The thickness of the sheet of the iron-based amorphous alloy is about 0.03mm, and it is widely used in power distribution transformers, high-power switching power supplies, pulse transformers, magnetic amplifiers, medium-frequency transformers, and inverter cores. High saturation magnetic induction intensity. The saturation magnetic induction of iron-based nanocrystalline alloys is three times that of ferrites. The iron core of the same volume has twice the output power of ferrites. At the same time, it also has greater overload resistance. Performance Characteristics High saturation magnetic induction intensity effectively reduces the size of the device. High magnetic conductivity and low coercivity can enhance the efficiency of the device. Low loss (equivalent to 1/5 - 1/10 of silicon steel) can reduce the temperature rise of the transformer. · The core has an opening, featuring excellent demagnetization characteristics and constant inductance characteristics. Excellent temperature and stability over time allow for long-term operation within the range of -50 to 130 degrees Celsius. · Facilitates coil assembly and has excellent resistance to direct current magnetic bias · High working magnetic flux density – Bs = 1.23 T · High operating temperature – suitable for F-class insulation (155℃) · Rectangular and open design – Easy to assemble · Various types of cutting · Customizable size

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