"Your Trusted Partner in Power Solutions"

Jindal Transformers and Servo (JTS), based in Ludhiana, Punjab, is a leading manufacturer of transformers and servo products, including Voltage Controllers, Distribution Transformers, Rectifiers, Power Control Panels, Stabilizers, and Special Purpose Power Supplies.

About Us

Jindal Transformers and Servo (JTS), based in Ludhiana, Punjab, is a leading manufacturer of transformers and servo products, including Voltage Controllers, Distribution Transformers, Rectifiers, Power Control Panels, Stabilizers, and Special Purpose Power Supplies.

We ensure top quality through our in-house lab, adhering to Indian and international standards. Our products serve industries, utilities, generating stations, furnaces, solar inverters, defense, atomic energy, and R&D sectors.

With a skilled engineering team, we deliver custom, high-quality, and reliable power solutions globally. Our innovative technology, commitment to customer satisfaction, and focus on efficiency make us a trusted name in the industry.

25+

Years Of Experience

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Jindal Transformers Products

JTS Automatic Voltage Stabilizers are crafted using premium raw materials toensure exceptional performance. These high- speed electromechanical regulators are built with the latest technology, providingstable voltage supply without harmonics. They are designed to operate efficiently across a wide temperature range. We are engaged in offering an impeccable range of Automatic Voltage Controller. Use for special purpose applications and testing are designed under the supervision of our competent professionals utilizing superior quality material and advance technology. These are the rolling contact type voltage controller, we are giving these voltage controllers with various sizes as per the requirements of customers.
Achieve precise and reliable voltage control for your coloring applications with our Constant Voltage Transformers. Designed to ensure a stable and regulated voltage supply, our transformers eliminate fluctuations that could impact color quality and accuracy. With advanced technology and robust construction, they provide uninterrupted power, delivering vibrant, consistent coloring results. Trust our transformers for exceptional color accuracy and consistency in your processes
Distribution transformers are essential components in electrical power distribution networks. They reduce high transmission voltages to lower, safer levels suitable for residential, commercial, and industrial use. By ensuring efficient voltage conversion and stable power delivery, these transformers help maintain system reliability, minimize energy losses, and support the safe operation of electrical equipment across various applications. By ensuring stable and efficient voltage conversion, distribution transformers help deliver reliable power supply, reduce energy losses, and maintain safe operation of electrical networks across various sectors.
JTS Ventilated Dry Type Transformers are maintenance and fire-safe, using materials like metals, ceramics, fiberglass, and resin. They are environmentally friendly with no oil, making handling easier and eliminating risks of spillages or leaks. In case of fire, they produce minimal non-toxic smoke. We offer these transformers with Class H/E insulation, capable of withstanding temperatures up to 180/220°C, and they perform well in humid and chemically polluted environments. To meet the needs of the Indian industry, we also provide Cast Resin Dry Type Transformers alongside our existing Vacuum Resin Impregnated Dry Type Transformers.
JTS Electroplating Rectifiers are constructed withelectrolytic prime-grade copper strips, significantly reducingpower losses when compared to the aluminum conductors used by many other manufacturers. Ourequipment is designed with ample capacity and is ideally suited forhandling marginal overloads. We utilize vertical rolling contact type voltage regulators, which are wound with heavy copper strips, ensuring suitability for 100% continuous duty cycles and industrial applications. This is in contrast to conventional wire-wound regulators used by other manufacturers. The carbon rollers move on both sides of the winding for enhanced performance.
The Induction Furnace features a coil made of heavy copper tubing, designed to work with an inverter circuit that applies medium-frequency voltage (typically 500 Hz or 1000 Hz) to generate heat through induced eddy currents in the charge. The inverter requires DC voltage, obtained by converting three-phase AC voltage using specialized transformers known as Induction Furnace Transformers. These transformers must endure high electrical, thermal, and mechanical stress due to frequent short circuits during the melting process. Unlike conventional transformers, furnace transformers are designed to handle high currents and frequent short circuits, ensuring reliable and efficient operation in demanding environments.
JTS HT-AVR Transformers are designed for both indoor and outdoor installation. These copper-wound HT TwoIn-One systems revolutionize voltage regulation and stabilization. As the name suggests, they stabilize the voltage on 11KV, 22KV, or 33KV before the distribution transformer. The fluctuating HT voltage from the electricity supply is stabilized with an accuracy of +1%, ensuring a stable LT output within +1% accuracy. Contrary to common belief, stabilizing HT voltage is not dangerous and doesn’t require highly skilled technicians for maintenance.
The Power Control Panel is designed to efficiently manage and distribute electrical power, ensuring safe, stable, and reliable operation of electrical systems. It safeguards equipment against overloads, short circuits, and other electrical faults. Equipped with advanced monitoring and control technology, the panel enables precise regulation of power flow, enhances system performance, and ensures long-term operational safety across industrial and commercial applications.
A Power Factor Control Panel (PFC) improves the power factor of an electrical system. Power factor is the ratio of real power used for work to apparent power supplied to the circuit. A low power factor indicates inefficient power use, increasing energy costs and stressing the electrical infrastructure. Power factor panels use capacitors (and sometimes inductors) to offset reactive power from inductive loads like motors and transformers. This enhances power consumption efficiency, reduces energy costs, and extends the lifespan of electrical equipment
We offer a wide range of Automatic Servo Voltage Stabilizers to our valued clients, designed to enhance plant productivity. These stabilizers are particularly beneficial for industries such as printing, especially for machines like flexographic printers. Known for their robust strength, stability, and durability, Automatic Servo Voltage Stabilizers effectively regulate the mains power supply, ensuring a consistent voltage to your equipment. Additionally, they are ideal for home appliances, including air conditioners, ensuring optimal performance and protection from voltage fluctuations.
Special-purpose transformers are designed to meet the specific needs of industries with complex electrical systems or challenging conditions, such as mining, renewable energy, and marine. Unlike standard transformers, they provide precise voltage, current, and frequency characteristics. Custom-built for harsh environments, these high-efficiency transformers offer flexibility and are tailored to unique customer requirements. Special types, including marine and mining transformers, are ideal for industries dealing with high voltage levels and tough conditions
A transformer is a static device that transfers alternating current (AC) electricity between circuits at the same frequency, typically varying the voltage level. For economic reasons electrical energy is transmitted at high voltage and used at low voltage for safety. This voltage adjustment is achieved using a step-up transformer, which increases the output voltage contrast, a step-down transformer converts high voltage (H V) and low current from the primary side to low voltage (LV) and high current on the secondary side.

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