| Brand | Vziman |
| Model NO. | Three phase Three-winding Auto Transformer 330kV 360MVA |
| Rated capacity | 90000kVA |
| No-load loss | 37kW |
| Series | OSFPSZ22 |
Three-phase Auto Transformer Product Description
Our Three-phase Auto Transformer is a high-performance power equipment engineered for ultra-high voltage power transmission and distribution systems, perfectly compatible with the operational demands of Extra High Voltage Transformers in large-scale power grids. This three-phase three-winding auto-transformer integrates advanced winding design and high-grade insulating materials, realizing efficient voltage transformation, stable power transmission and low-loss operation, and its structural optimization makes it more adaptable to the compact layout requirements of Extra High Voltage Transformers in hub substations and power transmission projects. The Three-phase Auto Transformer boasts excellent load adaptability and grid compatibility, can effectively suppress grid harmonics and voltage fluctuations, and is a core supporting equipment for Extra High Voltage Transformers in cross-regional power grid interconnection, new energy power transmission and large industrial power supply scenarios, providing reliable technical support for the safe and efficient operation of ultra-high voltage power systems.
Three-phase Auto Transformer Core Features
(1) 330kV 90000kVA~720000kVA Three-phase Double-winding Power Transformer with Off-circuit Tap-changer
| Rated capacity (kVA) | Voltage combination and tapping range | Vector group | Energy consumption class I | Energy consumption class II | Energy consumption class III | Short-circuit impedance (%) | ||||
| HV tapping range (%) | LV (kV) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | |||
| 90000 |
345 345±2×2.5% 363±2×2.5% |
10.5 13.8 15.75 18 20 |
YNd11 | 37 | 247 | 44 | 247 | 54 | 260 | 14~15 |
| 120000 | 47 | 305 | 55 | 305 | 68 | 323 | ||||
| 150000 | 56 | 362 | 66 | 362 | 81 | 382 | ||||
| 180000 | 64 | 415 | 75 | 415 | 93 | 438 | ||||
| 240000 | 80 | 515 | 94 | 515 | 116 | 543 | ||||
| 360000 | 109 | 722 | 129 | 722 | 158 | 762 | ||||
| 370000 | 111 | 736 | 131 | 736 | 162 | 777 | ||||
| 400000 | 118 | 780 | 139 | 780 | 171 | 824 | ||||
| 720000 | 183 | 1212 | 216 | 1212 | 266 | 1280 | ||||
Note: Transformers with various special parameters and performance can be manufactured according to customer requirements.
(2) 330kV 90000kVA~240000kVA Three-phase Three-winding Power Transformer with Off-circuit Tap-changer
| Rated capacity (kVA) | Voltage combination and tapping range | Vector group | Energy consumption class I | Energy consumption class II | Energy consumption class III |
Short-circuit impedance (%) |
Capacity assignment (%) | |||||
| HV tapping range (%) | MV(kV) | LV (kV) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | ||||
| 90000 |
330±2×2.5% 345±2×2.5% |
121 |
10.5 13.8 15.75 |
YN yn0d11 |
42 | 302 | 50 | 302 | 62 | 318 |
HV-MV: 24~26 HV-LV: 14~15 MV-LV: 8~9 |
100/100/100 |
| 120000 | 53 | 372 | 62 | 372 | 77 | 394 | ||||||
| 150000 | 63 | 442 | 74 | 442 | 92 | 466 | ||||||
| 180000 | 72 | 507 | 85 | 507 | 104 | 535 | ||||||
| 240000 | 89 | 629 | 105 | 629 | 130 | 664 | ||||||
Note:
(3) 330kV 90000kVA~360000kVA Three-phase Three-winding Autotransformer with Off-circuit Tap-changer (Regulating in Series Winding)
| Rated capacity (kVA) | Voltage combination and tapping range | Vector group | Energy consumption class I | Energy consumption class II | Energy consumption class III |
Short-circuit impedance (%) |
Capacity assignment (%) | |||||
| HV tapping range (%) | MV(kV) | LV (kV) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | ||||
| 90000 |
330±8×2.5% 345±8×2.5%
|
121
|
10.5 11 35 38.5
|
YN a0d11
|
25 | 237 | 29 | 237 | 36 | 250 |
HV-MV: 10 ~ 11 HV-LV: 24 ~ 26 MV-LV: 12 ~ 14 |
100/100/30 |
| 120000 | 31 | 292 | 36 | 292 | 45 | 308 | ||||||
| 150000 | 37 | 347 | 44 | 347 | 54 | 366 | ||||||
| 180000 | 42 | 396 | 50 | 396 | 62 | 418 | ||||||
| 240000 | 53 | 492 | 62 | 492 | 77 | 520 | ||||||
| 360000 | 72 | 668 | 85 | 668 | 104 | 705 | ||||||
Note:
(4) 330kV 90000kVA~360000kVA Three-phase Three-winding Autotransformer with On-load Tap-changer (Regulating at the End of Series Winding)
| Rated capacity (kVA) | Voltage combination and tapping range | Vector group | Energy consumption class I | Energy consumption class II | Energy consumption class III |
Short-circuit impedance (%) |
Capacity assignment (%) | |||||
| HV tapping range (%) | MV(kV) | LV (kV) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | ||||
| 90000 |
330±2×2.5%
|
121
|
10.5 11 35 38.5
|
YN a0d11
|
26 | 235 | 31 | 235 | 38 | 248 |
HV-MV: 10 ~ 11 HV-LV: 24 ~ 26 MV-LV: 12 ~ 14 |
100/100/30 |
| 120000 | 32 | 292 | 38 | 292 | 47 | 308 | ||||||
| 150000 | 38 | 345 | 45 | 345 | 55 | 364 | ||||||
| 180000 | 43 | 396 | 51 | 396 | 63 | 418 | ||||||
| 240000 | 54 | 492 | 64 | 492 | 79 | 520 | ||||||
| 360000 | 74 | 668 | 87 | 668 | 107 | 705 | ||||||
Note:
(5) 330kV 90000kVA~360000kVA Three-phase Three-winding Autotransformer with On-load Tap-changer (Regulating at MV 110kV Line End Side)
| Rated capacity (kVA) | Voltage combination and tapping range | Vector group | Energy consumption class I | Energy consumption class II | Energy consumption class III |
Short-circuit impedance (%) |
Capacity assignment (%) | |||||
| HV tapping range (%) | MV(kV) | LV (kV) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | ||||
| 90000 |
330 345
|
121±8×1.25%
|
10.5 11 35 38.5
|
YN a0d11
|
27 | 251 | 32 | 251 | 39 | 265 |
HV-MV: 10 ~ 11 HV-LV: 26 ~ 28 MV-LV: 16 ~ 17 |
100/100/30 |
| 120000 | 34 | 311 | 40 | 311 | 49 | 329 | ||||||
| 150000 | 40 | 369 | 47 | 369 | 58 | 390 | ||||||
| 180000 | 46 | 423 | 54 | 423 | 66 | 447 | ||||||
| 240000 | 56 | 526 | 66 | 526 | 82 | 555 | ||||||
| 360000 | 76 | 713 | 90 | 713 | 111 | 752 | ||||||
Note:
(6) 330kV 90000kVA~360000kVA Three-phase Three-winding Autotransformer with Off-circuit Tap-changer (Regulating at MV 220kV line end side)
| Rated capacity (kVA) | Voltage combination and tapping range | Vector group | Energy consumption class I | Energy consumption class II | Energy consumption class III |
Short-circuit impedance (%) |
Capacity assignment (%) | |||||
| HV tapping range (%) | MV(kV) | LV (kV) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | ||||
| 90000 |
330 345
|
121
|
10.5 11 35 38.5
|
YN a0d11
|
13 | 264 | 15 | 264 | 18 | 278 |
HV-MV: 10 ~ 11 |
100/100/30 |
| 120000 | 16 | 327 | 19 | 327 | 23 | 345 | ||||||
| 150000 | 19 | 338 | 22 | 338 | 27 | 409 | ||||||
| 180000 | 21 | 445 | 25 | 445 | 31 | 469 | ||||||
| 240000 | 27 | 553 | 32 | 553 | 39 | 582 | ||||||
| 360000 | 37 | 752 | 44 | 752 | 54 | 794 | ||||||
Note:
(7) 330kV 90000kVA~360000kVA, Three-phase, Three-winding Autotransformer with On-load Tap-changer (Regulating at MV 220kV line end side)
| Rated capacity (kVA) | Voltage combination and tapping range | Vector group | Energy consumption class I | Energy consumption class II | Energy consumption class III |
Short-circuit impedance (%) |
Capacity assignment (%) | |||||
| HV tapping range (%) | MV(kV) | LV (kV) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | No-load loss (kW) | On-load loss (kW) | ||||
| 90000 |
330 345 363
|
230±4×1.25% 230±8×1.25% 242±4×1.25% 242±8×1.25%
|
10.5 11 35 38.5
|
YN a0d11
|
14 | 264 | 16 | 264 | 20 | 278 |
HV-MV: 10 ~ 11 |
100/100/30 |
| 120000 | 17 | 327 | 20 | 327 | 25 | 345 | ||||||
| 150000 | 20 | 338 | 24 | 338 | 30 | 409 | ||||||
| 180000 | 23 | 445 | 27 | 445 | 34 | 469 | ||||||
| 240000 | 29 | 553 | 34 | 553 | 42 | 582 | ||||||
| 360000 | 40 | 753 | 47 | 753 | 58 | 795 | ||||||
Note:
Three-phase Auto Transformer Application Scenarios
The Three-phase Auto Transformer features a specialized three-winding topological structure, different from traditional two-winding transformers, it shares a common winding between the primary and secondary sides, which greatly improves voltage transformation efficiency and reduces equipment volume and weight under the same power rating. This structural design of the Three-phase Auto Transformer also enhances its power regulation flexibility, can realize multi-voltage grade output, and is more adaptable to the diverse voltage matching needs of power grid transmission and distribution systems, while the integrated winding process further boosts the structural stability and operation reliability of the Three-phase Auto Transformer.