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IEC 60076 Approved Balancing Transformer Single Phase and Three Phase Designs Optimized for Industrial Electrical Systems

Product Summary

Product Description: The Scott transformer is a unique type of transformer designed to enable bidirectional conversion between three-phase and two-phase electrical power. Its primary function is to facilitate the seamless transformation of electrical energy across these two different phase systems. ...

Key Attributes
Brand Name: TNNPI
Model Number: Sg
Certification: CE,ISO,UL
MOQ: 1
Price: Quoting According To Customization Requirements
Supply Ability: 1000
Delivery Time: 7-14 Business Days
Payment Terms: T/T, Western Union, Credit Card
Standard Packaging: Standard Wooden Box
Product Custom Attributes
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IEC 60076 Scott transformer

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single phase industrial balancing transformer

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three phase Scott transformer

Productname:
Scott Transformer
Powerrating:
30kVA-1600kva
Mountingtype:
Indoor
Phase:
Single Phase/three Phase
Impedance:
5% Or Customizable
Efficiency:
98% Or Customizable
Standardscompliance:
IEC 60076
Frequency:
50/60Hz
Product Description

Product Description:

The Scott transformer is a unique type of transformer designed to enable bidirectional conversion between three-phase and two-phase electrical power. Its primary function is to facilitate the seamless transformation of electrical energy across these two different phase systems.

At the heart of the Scott transformer’s operation is the "Scott-T" connection configuration, which involves the use of two single-phase transformers. This setup allows the device to convert a three-phase input into a two-phase output, with the output phases precisely shifted by 90 degrees. Importantly, this arrangement maintains a balanced load across the three-phase primary side, ensuring efficient and stable operation.

In addition to converting from three-phase to two-phase, the Scott transformer can also perform the reverse process. It can convert two-phase power back into three-phase, making it a versatile component in various electrical power systems.

 

Features:

Conversion Function

This transformer supports bidirectional conversion between three-phase and two-phase systems. It produces an output with a 90° phase difference between the two phases, making it ideal for applications requiring two-phase loads.

Three-Phase Balance

When the load is symmetrical, the currents on the primary side of the three-phase system remain fully balanced. This balance significantly minimizes the strain on the power grid by reducing imbalances, which eliminates the necessity for additional balancing capacitors or reactors.

Capacity and Efficiency

The secondary side of the transformer, equipped with two windings, has a capacity equivalent to that of two single-phase transformers of the same specification. It delivers high conversion efficiency, typically achieving 97% or greater.

Load Constraints

If the load is asymmetrical, it may cause unbalanced currents on the primary side of the three-phase system. Therefore, this transformer is best suited for operating conditions where the two-phase loads are equal.

 

Technical Parameters:

The model is highly customizable to meet various specific needs and requirements. It offers a capacity range from 0.5 KVA up to 1600 KVA, accommodating a wide spectrum of power demands.

Designed with an open type moisture-proof method, this product ensures durability and reliable performance in different environmental conditions. Its cooling system relies on natural cooling, which helps maintain optimal operating temperatures without the need for additional cooling mechanisms.

The transformer features a double winding construction, enhancing its efficiency and reliability. It operates with an impressive work efficiency of 95%, making it an energy-efficient solution for voltage transformation tasks. Additionally, it is optimized for low frequency applications.

This versatile transformer is widely applied across various industries and settings. It is commonly used in machinery, transportation, railway systems, production lines, construction equipment, elevators, lighting systems, and other scenarios where voltage conversion is essential.

 

Applications:

Electrified railway traction involves delivering power to the contact networks located on either side of the railway sections. This method helps to balance the influence of the traction load on the three-phase power grid, representing a traditional and effective approach to railway power supply management.

In industrial and mining settings, there are unique loads such as mains frequency melting furnaces and high-power two-phase motors. Instead of conventional balancing devices, specialized solutions are utilized to improve the stability of the power supply and extend the operational lifetime of the equipment.

Power electronics and testing applications benefit greatly from these technologies. They are employed in variable frequency power supplies, simulating laboratory two-phase power supplies, and other specialized power systems that demand precise control of phase relationships.

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