Parameter | Value |
---|---|
Material Composition | FeCuNbSiB |
Thickness | 28~35 μm |
Saturation Induction Bs | 1.25 T |
Curie Temperature | 570°C |
Hardness | Hv 880 |
Operating Temperature Range | -50~120°C |
Core Dimension (OD*ID*H) | Weight (g) | Permeability (10KHz) |
---|---|---|
9.8*6.5*4.5 | 11.2 | 5600~127000 |
12*8*4.5 | 14.1 | 72000~139000 |
The RM Core Transformer's manufacturing process involves advanced techniques in nano-crystalline ribbon formation and precision engineering. High-purity iron and alloy elements are ribbon-cast to achieve unique magnetic properties. This involves controlled cooling to create a nano-crystalline structure that significantly enhances magnetic permeability while reducing core losses. Extensive testing is conducted to ensure compliance with industry standards, ensuring high efficiency and reliability. Researchers emphasize these manufacturing techniques as pivotal in achieving compact transformer designs with excellent thermal stability and minimal electromagnetic interference, according to leading industry publications.
RM Core Transformers are integral in applications demanding compact forms and high energy efficiency. They are pivotal in telecommunications, providing stable voltage regulation in modems and routers. In medical devices, these transformers ensure reliable power supply in compact diagnostic equipment, crucial for maintaining functionality in portable applications. The adaptability of RM Core Transformers in different environmental conditions and their ability to minimize power loss make them invaluable in high-frequency power applications, as discussed in various industry journals.
RM Core Transformers are widely used in telecommunications, medical devices, and industrial electronics due to their compact design and efficient energy transfer capabilities.
Our supplier ensures quality through rigorous testing and adherence to industry standards, employing advanced manufacturing techniques for optimal performance.
As a supplier of RM Core Transformers, we have observed their critical role in compact electronic applications where efficiency and space are paramount. Their unique design offers significant advantages in modern electronic circuits.
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