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Oil immersed Transformers

Oil immersed Transformers

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Oil immersed Transformers

Outdoor Sealed Oil-Immersed Transformer for Sale Outdoor Sealed Oil-Immersed Transformer for Sale
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Outdoor Sealed Oil-Immersed Transformer for Sale

2024-10-28

The low-voltage winding of oil-immersed transformer generally adopts the cylindrical structure with copper foil around the shaft except copper wire for small capacity. The high-voltage winding adopts multi-layer cylindrical structure, so that the ampere-turns distribution of the winding is balanced, with small magnetic flux leakage, high mechanical strength and strong short-circuit resistance.

  • Model S11-M-30/24
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S11-M-30 10KV Fully Sealed Oil-Immersed Transformer S11-M-30 10KV Fully Sealed Oil-Immersed Transformer
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S11-M-30 10KV Fully Sealed Oil-Immersed Transformer

2024-10-28

The low-voltage winding of oil-immersed transformer generally adopts the cylindrical structure with copper foil around the shaft except copper wire for small capacity. The high-voltage winding adopts multi-layer cylindrical structure, so that the ampere-turns distribution of the winding is balanced, with small magnetic flux leakage, high mechanical strength and strong short-circuit resistance.

  • Model S11-M-30/10
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Fully Sealed S11-M-63 Series Oil-Immersed Transformer Fully Sealed S11-M-63 Series Oil-Immersed Transformer
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Fully Sealed S11-M-63 Series Oil-Immersed Transformer

2024-10-28

The low-voltage winding of oil-immersed transformer generally adopts the cylindrical structure with copper foil around the shaft except copper wire for small capacity. The high-voltage winding adopts multi-layer cylindrical structure, so that the ampere-turns distribution of the winding is balanced, with small magnetic flux leakage, high mechanical strength and strong short-circuit resistance.

  • Model S11-M-63
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S11-M-30 KV series fully sealed distribution oil-immersed transformer  S11-M-30 KV series fully sealed distribution oil-immersed transformer 
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S11-M-30 KV series fully sealed distribution oil-immersed transformer 

2024-10-28

 The low-voltage winding of oil-immersed transformer generally adopts the cylindrical structure with copper foil around the shaft except copper wire for small capacity. The high-voltage winding adopts multi-layer cylindrical structure, so that the ampere-turns distribution of the winding is balanced, with small magnetic flux leakage, high mechanical strength and strong short-circuit resistance.

  • Model S11-M-30
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20KV S11-M-20 Oil-Immersed Transformer 20KV S11-M-20 Oil-Immersed Transformer
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20KV S11-M-20 Oil-Immersed Transformer

2024-10-28

The low-voltage winding of oil-immersed transformer generally adopts the cylindrical structure with copper foil around the shaft except copper wire for small capacity. The high-voltage winding adopts multi-layer cylindrical structure, so that the ampere-turns distribution of the winding is balanced, with small magnetic flux leakage, high mechanical strength and strong short-circuit resistance.

  • Model S11-M-20
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Advanced 3-Phase Oil-Immersed Distribution Transformer Advanced 3-Phase Oil-Immersed Distribution Transformer
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Advanced 3-Phase Oil-Immersed Distribution Transformer

2024-10-28

The low-voltage winding of oil-immersed transformer generally adopts the cylindrical structure with copper foil around the shaft except copper wire for small capacity. The high-voltage winding adopts multi-layer cylindrical structure, so that the ampere-turns distribution of the winding is balanced, with small magnetic flux leakage, high mechanical strength and strong short-circuit resistance.

  • Model S11-100-11/0.433
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SZ11 Type On-Load Voltage Regulating Transformers SZ11 Type On-Load Voltage Regulating Transformers
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SZ11 Type On-Load Voltage Regulating Transformers

2024-09-14

SZ11 Type oil-immersed distribution transformers are known for their high dependability, minimal noise, low temperature rise, low loss, free-hanging core, and lack of oil leakage. In order to ensure the transformer's design margin and its safe and dependable operation, the product uses sophisticated design software to perform electromagnetic calculations. This involves analyzing the transformer's main and longitudinal insulation, impulse voltage gradient distribution, end electric field distribution, short-circuit thermal stability, and dynamic stability strength.

  • Model SZ11
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