800 KVA Amorphous Alloy DryType Transformer
Description
Technical Parameters
Henan GNEE Electric Co., Ltd. is one of the leading manufacturers and suppliers of 800 kva amorphous alloy drytype transformer in China, also supports customized service with low price. Welcome to buy discount 800 kva amorphous alloy drytype transformer for sale here from our factory. If you have any enquiry about pricelist, please feel free to email us.
Product Introduction
The amorphous core type transformer features a cutting-edge structural design. Its core, made from ultra-thin amorphous alloy strips (0.02 - 0.03 mm), offers a low-loss magnetic circuit with reduced hysteresis and eddy current effects. The windings, constructed from high-purity copper, ensure efficient power transfer and low resistance. Encased in a robust, flame-retardant epoxy resin, the amorphous dry transformer is entirely air-cooled, eliminating the need for liquid insulation. This dry-type structure not only enhances safety and environmental friendliness but also allows for a compact footprint, making it suitable for installation in confined indoor spaces such as data centers, commercial buildings, and urban substations.
Should you require further details, our team is available at sales@gneesteels.com to provide personalized support.
product video
Technical specification

Product Structure

Application Fields of 800 kVA Amorphous Alloy Dry Type Transformers
Amorphous alloy transformers are widely used in various fields due to their low loss, high energy efficiency, and reliability, especially in scenarios with long-term no-load or light-load operation and strict energy efficiency and environmental requirements. Here are their main application areas:
1. Power Systems and Transmission Networks
Distribution Transformers: As a key equipment in the power grid, they are used for urban grid reconstruction and rural grid upgrading to reduce no-load losses in distribution networks (accounting for 40%–60% of total distribution network losses) and improve grid energy efficiency.
Substations: In substations located in city centers or high-load areas, they replace traditional silicon steel transformers, reducing floor space and operational noise while meeting environmental standards.
2. Commercial and Civil Buildings
Office Buildings, Malls, Residential Complexes: Providing power supply for high-rise buildings, especially in scenarios with long-term stable loads such as air conditioning and lighting, they can reduce overall building energy consumption by over 70%.
Data Centers, Hospitals, Schools: In places with high requirements for power supply reliability, their low-loss characteristics significantly reduce long-term operation costs. Meanwhile, their dry-type structure (in some models) meets fireproof and moisture-proof requirements.
3. Industrial Sector
Light Industry and Manufacturing: Suitable for light industrial factories such as textile, electronics, and food processing, they reduce equipment no-load losses (e.g., standby energy consumption during nighttime or non-production hours).
High-Energy-Consumption Enterprises: Used for energy-saving transformations in industries like steel, chemicals, and metallurgy, they optimize energy efficiency when paired with frequency conversion equipment, aligning with national "double carbon" goals.
4. Renewable Energy and Distributed Generation
PV and Wind Power Grid Connection: Used as grid-connected transformers in distributed energy systems, they adapt to the high volatility and frequent start-stop characteristics of renewable energy, reducing energy loss during conversion.
Energy Storage Stations: Supporting energy storage equipment, they maintain high efficiency during charge-discharge cycles, enhancing the overall efficiency of energy storage systems.
5. Transportation Sector
Rail Transit: Applied in traction substations for subways and high-speed railways, they provide low-noise and reliable power supply while meeting the strict fireproof and space constraints of the rail industry.
EV Charging Infrastructure: Used as distribution transformers in charging stations and battery swap stations, they reduce energy consumption in charging networks, especially in high-frequency public charging scenarios.
6. Special Environments and Public Facilities
Mining Areas, Oil Fields: In remote or harsh environments, their high stability and maintenance-free features (in some models) reduce operational costs, suitable for long-term outdoor use.
Municipal Projects: Used in public facilities like street lighting systems and wastewater treatment plants, their low-loss characteristics lower municipal power costs and promote green municipal construction.
Conclusion
The core advantage of 800 kVA amorphous alloy dry type transformers lies in energy consumption optimization through material innovation, covering diverse fields from power grids to end-users and from traditional industries to emerging energy sectors. With the global improvement of energy efficiency standards (e.g., China's "Energy Efficiency Labeling" system and the EU's ERP Directive), amorphous dry type transformers are gradually becoming the mainstream choice for high-energy-consuming equipment replacement, particularly excelling in scenarios with stable long-term loads and high sensitivity to energy conservation and environmental protection.


For more detailed information, please do not hesitate to contact us at sales@gneesteels.com.
Hot Tags: 800 kva amorphous alloy drytype transformer, China 800 kva amorphous alloy drytype transformer manufacturers, suppliers, factory, amorphous distribution dry type transformer, amorphous metal steel core transformer, amorphous metal steel core dry type transformer, Amorphous Alloy Oil Immersed Power Transformer, amorphous core three phase transformer, amorphous alloy metal transformer
Previous
630 KVA Amorphous Metal TransformerSend Inquiry











