Decarbonization! Reducing electricity costs! Reducing greenhouse gas emissions! Amorphous dry-type transformer.
Nikkodenki Co., Ltd., a custom-made transformer manufacturer (power transformers, toroidal transformer coils, reactors, dry-type transformers)
Amorphous Dry Transformer by Nikkodenki, a transformer for the decarbonization era! Reducing power costs! Reducing greenhouse gas emissions!
◎Effects of Amorphous Transformers - Reduction of Standby Loss Approximately 86% reduction in no-load loss compared to conventional silicon steel plates! - Reduction of Power Costs! By reducing standby loss, the consumption of standby power is minimized, leading to effective reduction in power costs! - Reduction of Greenhouse Gas Emissions An expected reduction of about 86% in CO2 emissions compared to conventional transformers!
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basic information
Single-phase transformer Three-phase transformer Scott transformer
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Applications/Examples of results
Amorphous dry-type transformers play an important role in various fields such as power distribution, commercial and industrial facilities, special applications, and environmental impact reduction due to their high energy efficiency and safety. In particular, their value is increasing in modern sustainable societies from the perspective of reducing fire risks and CO2 emissions.
Detailed information
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◎Effects of Amorphous Transformers - Reduction of standby loss Approximately 86% reduction in no-load losses compared to conventional silicon steel plates!
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◎Effects of Amorphous Transformers - Reduction in electricity costs! By reducing standby losses, the consumption of standby power is minimized, effectively lowering electricity costs!
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◎Effects of Amorphous Transformers - Reduction of Greenhouse Gases Compared to conventional transformers, a reduction of approximately 86% in CO2 emissions is expected!
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- Single-phase transformer Primary voltage: See image Secondary voltage: See image Frequency: 50/60Hz Insulation type: Class H Operating environment: Indoor Load conditions: Continuous Applicable standards: JEC-2200 (2014) Voltage usage Primary: 440V/420V/400V (220V/210V/200V) Secondary: 210V
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Three-phase transformer Primary voltage: See image Secondary voltage: See image Frequency: 50/60Hz Insulation type: H class Operating environment: Indoor Load conditions: Continuous Applicable standards: JEC-2200(2014) Voltage usage Pri.: 440V/420V/400V (220V/210V/200V) Sec.: 210V *Please consult for wiring.
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Scott Transformer Primary Voltage: See image Secondary Voltage: See image Frequency: 50/60Hz Insulation Type: Class H Operating Environment: Indoor Load Conditions: Continuous Applicable Standards: JEC-2200(2014) Voltage Usage Primary: 440V/420V/400V (220V/210V/200V) 3Φ Secondary: 210V-105V 1Φ
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Outline diagram: Fig. 1
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Outline diagram: Fig. 2
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Outline diagram: Fig. 3
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Nikko Electric's new base, Satellite Akiba (Tokyo, Akihabara), opened in February 2024. We aim to create a facility that connects not only sales but also factory technology and the web, allowing us to propose the most optimal transformers in real-time! If you have any issues regarding transformers, coils, or reactors, please feel free to consult with Nikko Electric. We will propose the best transformers through discussions with our customers.

