Current and voltage transformer nanocrystalline magnetic core

Short Description:

The nanocrystalline magnetic core used in current and voltage transformers offers several significant advantages.
 
Firstly, it has excellent magnetic permeability. This enables the transformer to achieve higher efficiency in transferring and transforming electrical energy, reducing energy losses during the process.
 
Secondly, nanocrystalline magnetic cores have low coercivity. This characteristic contributes to reduced hysteresis losses, further enhancing the overall performance and energy efficiency of the transformer.
 
Thirdly, they exhibit superior temperature stability. Even in environments with varying temperatures, the magnetic properties of the nanocrystalline core remain relatively stable, ensuring the reliability and consistency of the transformer's operation.
 
Finally, nanocrystalline magnetic cores have a compact size and lightweight design. This makes the transformer more space-efficient and easier to integrate into various electrical systems.
 
In summary, the use of nanocrystalline magnetic cores in current and voltage transformers brings about improved performance, energy efficiency, and reliability.

Product Detail

Nanocrystalline strip is a new type of alloy material, which has the advantages of light weight, small volume and high performance. Here are some product details about nanocrystalline strips:

Physical properties:

- Curie temperature: 570℃
- Crystallization temperature: 520℃
- Saturation magnetostriction coefficient: < 2×10-6
- Density: 7.2g/cm3
- Resistivity: 130μΩ·cm
- Operating temperature range: -50℃~180℃

Magnetic properties: with high permeability and low loss characteristics.

Application fields: As long as there is electricity in the field there is room for the use of nanocrystal materials, nanocrystal strips can be widely used in high-frequency transformer core, current transformer core, EMC common mode, wireless charging module, automotive electronics, smart phones, new energy vehicles, new energy power generation, home appliances, smart grid and other fields.

Preparation process: The use of cooling speed of about 106℃/s of ultra-quench solidification technology, from the liquid steel to the thin strip product molding preparation.

Product advantages: Compared with traditional materials, electronic products made of nanocrystal strips have lower heat loss and higher transmission efficiency per unit volume. For example, a new generation of variable frequency air conditioners using nanocrystalline materials is smarter, more energy efficient and less costly.

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