JFE Steel CorporationJFE Steel Corporation | Electrical Steel Sheets
Super Core™ allow the transformer to generate less heat, and provide higher design induction than conventional silicon steel sheets, enabling transformer size to be reduced.
Super Core™ allow the transformer to generate less heat, and provide higher design induction than conventional silicon steel sheets, enabling transformer size to be reduced.
High frequency reactors were manufactured using JFE Steel''s high frequency electrical steel sheets, JNEX-Core and JNHF-Core, and thin-gauge grain-oriented silicon steel sheets and Fe
As the data shows, Super Core™ is suitable for medium-capacity inverter and converter reactors of 3 kHz to 40kHz, 1 kVA or 10A
This document discusses two types of high silicon steel sheets developed by JFE Steel called JFE Super Core "JNEX-Core" and "JNHF-Core" that are
This document discusses two types of high silicon steel sheets developed by JFE Steel called JFE Super Core "JNEX-Core" and "JNHF-Core" that are suitable for high frequency
As the data shows, Super Core™ is suitable for medium-capacity inverter and converter reactors of 3 kHz to 40kHz, 1 kVA or 10A or higher. Particularly with this power
The new material reduces high-frequency iron loss and improves magnetic flux density, thereby helping to increase motor torque and significantly improve efficiency for energy conservation.
Super Core™ allow the transformer to generate less heat, and provide higher design induction than conventional silicon steel sheets,
Mainly used for high-frequency transformers, power inductors, switching power supplies, inverters, etc. High frequency inverters (such as photovoltaic inverters and energy
In order to meet new demands, this technology has continued to be developed, leading to the commercial production of gradient high-silicon steel sheets with superior high-frequency
This project seeks to develop a promising new manufacturing approach to produce sheet from electrical steel with high silicon content. In the new approach, sheets of the steel alloy are
It has the highest magnetic flux density of any material (2.0 T), but also has higher core loss properties. The value of silicon steel lies in its ability to increase electrical resistivity and
The new material reduces high-frequency iron loss and improves magnetic flux density, thereby helping to increase motor torque and significantly
6.5% Si steel sheet. Based on these features, JNSF is considered to be a suitable material for high frequencies and downsizing of high-frequency reactors and other devices with similar
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