Furnace Duty Transformers

High Current Handling
Resilient Under Extreme Conditions
Optimized Cooling
Precision Voltage Control
Advanced Protection

introduction

Superior Quality
Furnace Duty Transformers

A furnace transformer is designed to increase or decrease AC voltage to suit the heating system's requirements. It transfers electrical energy from the circuit to the induction process, ensuring proper voltage regulation.

Depending on the furnace's needs, the transformer can either amplify or reduce the electricity within the system. These transformers were originally manufactured in Vadodara, Gujarat, and have become popular over time. To date, their performance remains unmatched.

Technical Specifications

Range 5 MVA to 15 MVA
Voltage Class Up to 33 KV on LV side 80V to 240V
Cooling AN / AF
Protection Up to: 15000Amps
Winding Material Copper, F Class

How It Works

Size & Capacity

Ranges from a few MVA to 150 MVA.

High Currents

Secondary currents can exceed 100,000 A.

Current Distribution

Achieved by parallel winding sections and internal bus bars.

Voltage Control

Output voltage adjusts to control power input.

Voltage Regulation

Regulated over a 3:1 ratio for performance.

Time & Maintenance

Managed via winding taps and switching.

Load-Tap Changing

Enables large kVA increments.

Reactance Stabilization

Ensures stable current for arc furnaces.

Reactor Addition

Enhances performance below 7,500 kVA.

Witness Engineering
Excellence In Motion

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Visual Indicators

Burn marks or bulges may signal the need for a replacement. Some cases require only repairs, which professionals can handle.

Humming and Vibrations

While some noise is normal, excessive humming may result from the iron core and laminations contracting or expanding.

Circuit Breaker Trips

If the furnace transformer is faulty, the circuit breaker may trip to prevent a voltage surge that could damage furnace components.

Power Supply Issues

The system may shut down to protect itself from power supply damage. Verify if this is a normal occurrence or if the power supply requires repair.

Features

Delivering dependable power with precision engineering, our transformers are built for maximum efficiency and long-term reliability.

Withstands high mechanical and thermal stresses

Easily manages high currents

High low-voltage variation, ideal for furnace applications

100% standby capacity

OFWF cooling system

Resilient against stress from electric arcs

Years of expertise in designing high-performance transformers with innovation.
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Transformers Tailored for quality and performance across industries.
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Clients Relying on our transformers for consistent performance and innovation.
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Skilled Professionals Delivering exceptional transformer solutions across various industries.
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FAQs

How can industrial operations be made more efficient with power transformers?

Power transformers increase the efficiency of large-scale processes like manufacturing, chemical production, and power plants by ensuring steady voltage levels and lowering energy losses.

Power transformers increase the efficiency of large-scale processes like manufacturing, chemical production, and power plants by ensuring steady voltage levels and lowering energy losses.

Power transformers increase the efficiency of large-scale processes like manufacturing, chemical production, and power plants by ensuring steady voltage levels and lowering energy losses.

Power transformers increase the efficiency of large-scale processes like manufacturing, chemical production, and power plants by ensuring steady voltage levels and lowering energy losses.

Power transformers increase the efficiency of large-scale processes like manufacturing, chemical production, and power plants by ensuring steady voltage levels and lowering energy losses.

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