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35kV Dual Split Dry Transformer

The 35kV Dual Split Dry Transformer is designed for power supply systems that require dual output winding configuration and reliable power continuity. When one circuit load fails, the other split winding can continue supplying power, helping maintain stable system operation.

The transformer provides precise electromagnetic balance, with split winding symmetry deviation within 2%, meeting ampere-turn balance requirements. It adopts a shielding structure for strong harmonic resistance and uses CFD fluid dynamics simulation to optimize fan guide ducts, supporting accurate cooling, lower temperature rise and reliable operation.
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Product Description

Product Overview

The 35kV Dual Split Dry Transformer is suitable for power supply systems that require split winding output, stable power supply and strong harmonic resistance. Its dual split winding structure provides two low-voltage output circuits, allowing one split winding to continue supplying power when another load circuit has a fault.

The product is designed with precise electromagnetic balance. The symmetry deviation of the split windings is controlled within 2%, helping meet ampere-turn balance requirements and supporting stable operation in power conversion applications.

The transformer adopts a shielding structure to improve harmonic resistance. Through CFD fluid dynamics simulation, the fan guide ducts and internal airflow structure are optimized to support accurate cooling, lower temperature rise and reliable thermal performance.

35kV Dual Split Dry Transformer

Product Advantages

Dual Power Supply Security

The dual split winding design provides power supply protection. When one circuit load fails, the other split winding can continue supplying power, helping maintain system continuity.

Precise Electromagnetic Balance

The transformer is designed with precise electromagnetic balance. The symmetry deviation of the split windings is within 2%, meeting ampere-turn balance requirements.

Compact Structure Design

Compared with two independent transformers, the dual split transformer can reduce floor space by about 45%. The optimized internal ventilation structure helps reduce hot spot temperature rise.

Reliable Shielding Structure

The transformer adopts a shielding structure with strong harmonic resistance, making it suitable for applications where harmonic impact needs to be controlled.

Simulated Airflow Cooling Design

CFD fluid dynamics simulation is used to calculate and optimize the cooling airflow. Fan guide ducts are arranged to support accurate cooling, reduce temperature rise and maintain stable transformer operation.

Technical Specifications

Product Model

Rated Capacity (kVA)

Connection Group Label

Voltage Combination (kV)

No-Load Loss (W)

Load Loss (W)

No-Load Current (%)

Short-Circuit Impedance (%)

High Voltage

Tap Range

Low Voltage

B(100℃)

F(120℃)

H(145℃)

SCF(B)12-1000

1000

Ddoy11, Dyn11, yn11

35, 36, 37, 38.5

±2×2.5%, ±5%

0.4, 0.69, 0.8, 1.14

1700

9800

10400

11200

/

6.0-14.0

SCF(B)12-1250

1250

2000

11900

12700

13500

/

SCF(B)12-1600

1600

2300

14500

15400

16500

/

SCF(B)12-2000

2000

2700

17100

18200

19400

/

SCF(B)12-2500

2500

3200

20500

21800

23300

/

SCF(B)12-3000

3000

3900

22600

24000

25600

/

SCF(B)12-3150

3150

4300

23100

24500

26100

/

SCF(B)12-4000

4000

5000

27700

29400

31300

/

SCF(B)12-4500

4500

5400

30400

32300

34500

/

SCF(B)12-5000

5000

6000

32800

34900

37300

/

SCF(B)12-6300

6300

7100

38400

40800

43600

/

SCF(B)12-8000

8000

8500

46300

49200

52600

/

SCF(B)12-10000

10000

10200

54500

57900

61900

/

Dual Split Dry Transformer Solution

The 35kV Dual Split Dry Transformer is suitable for power supply systems that require split winding output, continuous power supply and harmonic resistance.

The dual split design provides two low-voltage output circuits, helping improve power supply security when one load circuit fails. The shielding structure improves harmonic resistance, while the optimized cooling structure supports stable thermal performance during operation.

For transformer projects, Huachen provides product selection and configuration support according to voltage level, rated capacity, connection group, low-voltage output requirements, harmonic conditions and installation environment.

Project and Service Support

Huachen provides support for product selection, manufacturing, testing, installation and after-sales service. For 35kV dual split dry transformer projects, the technical team can assist with product configuration, project communication, production coordination, testing support, installation guidance and delivery support according to project requirements.

With manufacturing capability, testing capability and project service experience, Huachen supports customers in applying dual split dry transformers to industrial power supply and power conversion systems.

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Application

The 35kV Dual Split Dry Transformer is mainly used in power systems that require dual split winding output, stable operation and continuous power supply.

It is suitable for applications requiring dual power supply security, precise electromagnetic balance, harmonic resistance, compact installation and optimized cooling design.

Product Model Definition

Code

Meaning

S

Three-phase

C

Epoxy resin cast type

F

Split winding type

B

Low-voltage side can adopt foil winding

12

Performance level code

Rated capacity

Rated capacity, kVA

Voltage class

Voltage class, kV

FAQ

What is the main function of the 35kV Dual Split Dry Transformer?

Its main function is to provide reliable power supply through a dual split winding structure, supporting stable operation and power continuity when one circuit load fails.

What is the advantage of the dual split winding design?

When one circuit load fails, the other split winding can continue supplying power. This helps maintain power supply continuity and improve system reliability.

What voltage class does this transformer support?

The product supports 35kV and below applications. The high-voltage side can be configured for 35kV, 36kV, 37kV or 38.5kV.

What low-voltage levels are available?

The low-voltage side can be configured for 0.4kV, 0.69kV, 0.8kV or 1.14kV.

What is the symmetry deviation of the split windings?

The symmetry deviation of the split windings is within 2%, meeting ampere-turn balance requirements.

How does the product improve harmonic resistance?

The transformer is equipped with a shielding structure, which helps improve harmonic resistance.

How does the cooling design work?

CFD fluid dynamics simulation is used to optimize the fan guide ducts and airflow structure, supporting accurate cooling and lower temperature rise.

What rated capacity range is available?

The rated capacity range shown in the technical specifications is from 1000kVA to 10000kVA.

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