Amorphous Alloy Dry Type Transformer

Amorphous Alloy Dry Type Transformer

VKE amorphous alloy dry type transformer achieves ultra-low no-load losses through its amorphous core. Combined with oil-free design, it provides users with an efficient, safe, reliable and cost-effective power solution throughout the entire life cycle.
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Description
Technical Parameters

Introduction

 

 

VKE amorphous alloy dry type transformer achieves ultra-low no-load losses through its amorphous core. Combined with oil-free design, it provides users with an efficient, safe, reliable and cost-effective power solution throughout the entire life cycle.

 

Superior Energy Efficiency

 

 

Low no-load losses

The disordered atomic structure of amorphous alloy significantly reduces hysteresis and eddy current losses. This results in over 70% reduction in no-load losses compared to silicon steel sheets. Consequently, the transformer consumes much less energy even during idle operation.
Efficient operation

Under full-load conditions, the amorphous alloy dry type transformer maintains high efficiency thanks to its ultra-low losses, reducing energy waste and operational costs.

Low temperature rise

Low losses ensure excellent thermal performance, with controlled temperature rise under varying loads. This extends insulation lifespan and lowers cooling energy consumption.

Excellent efficiency at all load levels

Whether in light or full load conditions, the transformer delivers outstanding energy efficiency, making sure that every kilowatt-hour of electricity is utilized efficiently.

 

Core - high-quality amorphous alloy materials.

High mechanical strength, resistant to high-order harmonics, iron loss 70%~80% lower than conventional types.

Core

Eco-Friendly Features

 

 

Oil-free

Solid insulation materials and epoxy resin casting technology remove the risks of oil leakage and fire hazards.

Noise reduction

Optimized core design and advanced noise-dampening technology achieve quieter operation, ideal for noise-sensitive environments.

Resource recycling

The transformer's long lifespan reduces replacement frequency. Additionally, end-of-life materials can be recycled and reused.

Lower maintenance costs

The oil-free design eliminates maintenance workload because there is no needs for oil testing or refilling, thereby cutting maintenance costs and simplifying operations.

 

Assembly - All components are assembled meticulously to ensure secure and reliable connections.

Assembly

Reliability

 

 

High short-circuit withstand

Improved coil materials and structures provide excellent short-circuit resistance. This ensures that the transformer can operate stably and reliably even in extreme fault scenarios.

Exceptional moisture resistance
Vacuum Pressure Impregnation (VPI) creates a sealed insulation layer, which guarantees the transformer's stable operation in humid or dusty environments.

Fire-safe design

The oil-free design endows the transformer with self-extinguish properties in emergencies such as fires and explosions.

 

Quality Control - Routine tests are conducted to validate the performance, safety and compliance of the finished transformers.

Quality Control

Economical Benefits

 

 

Lower overall cost

Although the initial investment is slightly higher, the reduction in electricity costs and maintenance costs makes the total life cycle cost evidently better than that of traditional options.

Fast return on investment

The economic benefits brought about by high efficiency and low maintenance have shortened the payback period to just a few years.

Enhanced grid performance

Low losses and high performance improve voltage stability and power quality. This eventually benefits end-users with a reliable power supply.

Intelligent management

Featuring remote monitoring, load management and fault warning functions through integrated sensors and communication technology, this transformer facilitates real-time status tracking, making management more efficient.

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