Thanks to the following characteristics, iron-based amorphous alloys offer the advantage of low iron losses:
⋅ Thin thickness—only about 1/10 that of grain-oriented silicon steel;
⋅ High resistivity—about twice that of grain-oriented silicon steel;
⋅ Low coercivity—only about 1/3 that of grain-oriented silicon steel.
Features and Advantages
• Due to the following characteristics of iron-based amorphous alloys, they possess the advantage of low iron loss:
⋅Thin—only about 1/10 the thickness of oriented silicon steel;
⋅High resistivity—equivalent to twice that of oriented silicon steel;
⋅Low coercivity—only about one-third that of oriented silicon steel.
• Iron-based amorphous alloys exhibit the highest saturation magnetic flux density among all amorphous alloys, enabling magnetic devices to operate at high magnetic flux densities, offering excellent resistance to saturation, and featuring compact sizes.
• We offer customized products tailored to meet diverse customer needs, featuring low iron loss, overload resistance, and high Bs.
Typical application areas are as follows:
• Iron core for oil-immersed or dry-type power-frequency energy-saving distribution transformers;
• Mid-frequency transformer core;
• Filter, inductor, and reactor cores
• Magnetic shielding foil.
Item | Performance | Item | Performance |
Magnetic Saturation Induced Current Intensity Bs(T) | 1.56 | Saturation magnetostriction coefficient (λs) | 0.000027 |
Curie temperature Tc (℃) | 400 | Density ρ (g/cm³) | 7.18 |
Crystallization temperature Tx (℃) | 515 | Resistivity δ (μΩ·cm) | 130 |
Hardness Hv | 960 | Coercive force Hc (A/m) | <4 |


Any high-quality specification Iron-based amorphous strip — Support Customization



Features and Advantages
• Due to the following characteristics of iron-based amorphous alloys, they possess the advantage of low iron loss:
⋅Thin—only about 1/10 the thickness of oriented silicon steel;
⋅High resistivity—equivalent to twice that of oriented silicon steel;
⋅Low coercivity—only about one-third that of oriented silicon steel.
• Iron-based amorphous alloys exhibit the highest saturation magnetic flux density among all amorphous alloys, enabling magnetic devices to operate at high magnetic flux densities, offering excellent resistance to saturation, and featuring compact sizes.
• We offer customized products tailored to meet diverse customer needs, featuring low iron loss, overload resistance, and high Bs.
Typical application areas are as follows:
• Iron core for oil-immersed or dry-type power-frequency energy-saving distribution transformers;
• Mid-frequency transformer core;
• Filter, inductor, and reactor cores
• Magnetic shielding foil.
Item | Performance | Item | Performance |
Magnetic Saturation Induced Current Intensity Bs(T) | 1.56 | Saturation magnetostriction coefficient (λs) | 0.000027 |
Curie temperature Tc (℃) | 400 | Density ρ (g/cm³) | 7.18 |
Crystallization temperature Tx (℃) | 515 | Resistivity δ (μΩ·cm) | 130 |
Hardness Hv | 960 | Coercive force Hc (A/m) | <4 |


Any high-quality specification Iron-based amorphous strip — Support Customization



Note: Other dimmension and performance can be customized
Iron-based amorphous strip It features an ultrafine-grained microstructure with high magnetic permeability, high saturation magnetic induction intensity, low losses, and excellent stability. It can meet the demands of high-frequency, high-current, compact-size, and energy-efficient electronic products. In particular, as a... Low-cost amorphous strip material , It can replace silicon steel, permalloy, and ferrite, and is widely used in various electronic products.
Amorphous alloy It is a new type of energy-saving material produced by rapidly cooling molten metal at a rate of approximately one million degrees per second. Amorphous alloys have a long-range disordered structure that is completely different from that of crystals. They feature high magnetic permeability and low losses, and are widely used in distribution transformers, inductors, motor stators, and sensors. These alloys can significantly enhance device efficiency and reduce energy consumption.
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