Dry-type Transformer

With the development of modern cities, power distribution room especially in high-rise buildings and high fire rating buildings has put forward the requirements of fire prevention and explosion protection according to the relevant fire safety regulations. Dry type transformers then was widely used in high-rise buildings, underground facilities, densely populated areas and humid environments due to its own advantages, such as fire prevention, explosion protection, no pollution, maintenance-free. Therefore , the proportion of dry change is getting higher and higher in the urban power distribution system recent years.

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Product Display

With the development of modern cities, electrical rooms—particularly those in high-rise buildings and structures requiring high fire safety ratings—must comply with stringent fire and explosion prevention regulations under fire safety codes. Dry-type transformers, owing to their inherent advantages such as fire resistanceexplosion-proof designpollution-free operation, and maintenance-free performance, have been widely adopted in:

  • High-rise buildings
  • Underground facilities
  • Densely populated areas
  • Humid environments

Consequently, the proportion of dry-type transformers in urban distribution systems has significantly increased in recent years.


Compliance with National Standards

This product series adheres to the following Chinese national standards:

  1. GB 1094Power Transformers
  2. GB/T 10228Technical Parameters and Requirements for Dry-type Power Transformers
  3. GB 20052Energy Efficiency Limits and Grades for Power Transformers

Energy Efficiency Classification

The current product series is categorized into three energy efficiency levels:

  1. SCB18 Class I Efficiency (NX1): Ultra-high efficiency (aligned with IEC 60076-20 Tier 3).
  2. SCB14 Class II Efficiency (NX2): Advanced efficiency (compatible with NEMA TP-1 requirements).
  3. SCB12 Class III Efficiency (NX3): Standard efficiency (meeting baseline market demands).

 

Structural Features

Technical Features of Dry-type Transformers

  1. HV/LV Cast Resin Coils:
    • Robust short-circuit resistanceminimal maintenancehigh operational efficiencycompact footprint, and low noise levels.
    • Ideal for applications demanding fire and explosion prevention, such as commercial complexes and underground substations.
  2. Advanced Casting Process:
    • Employs static mixingvacuum casting, and positive-pressure techniques, ensuring superior mechanical and electrical performance compared to conventional vacuum casting without positive pressure.
  3. Simulation-Optimized Design:
    • Core resonance analysis: Mitigates core cavity resonance to reduce noise (≤55 dB(A) per IEC 60076-10).
    • Lightning impulse simulation: Enhances lightning withstand capability (up to 170kV per IEC 60076-3).
    • Reduced partial discharge: Achieved by optimizing interlayer and segmental electric field distribution (PDIV ≥ 15kV).
  4. Thermal Performance:
    • Thin-layer resin encapsulation prevents cracking and ensures efficient heat dissipation (temperature rise ≤ 80K under rated load).
  5. Overload Capacity:
    • Class H insulation materials for HV/LV windings enable:
      • 110% continuous load in self-cooling mode.
      • 150% continuous load in forced air-cooling mode (per IEEE C57.96).
  6. Intelligent Monitoring System:
    • Integrated temperature protection:
      • Real-time detection and display of three-phase winding temperatures.
      • Auto-start/stop cooling fans with alarm and trip functions (thresholds configurable via IEC 61850 protocols).
  7. Design Advantages:
    • Aesthetic enclosure: Modern industrial design.
    • Space-saving: Compact dimensions reduce floor space requirements.
    • Cost-effective installation: Simplified deployment with minimal civil engineering.

 

Product Specification


10kV dry type  three-phase double-winding unexcited voltage regulation distribution transformer energy efficiency class

Rating capacity

NX1

NX2

NX3

impedance
Silicon steel Silicon steel Silicon steel
No load loss W   load loss No load loss load loss No load loss load loss
B
(100℃)
F
(120℃)
H
(145℃)
B
(100℃)
F
(120℃)
H
(145℃)
B
(100℃)
F
(120℃)
H
(145℃)
30 105 605 640 685 130 605 640 686 150 670 710 760 4
50 155 845 900 965 185 845 900 965 215 940 1000 1070
80 210 1160 1240 1330 250 1160 1240 1330 295 1290 1380 1480
100 230 1330 1415 1520 270 1330 1415 1520 320 1480 1570 1690
125 270 1565 1665 1780 320 15655 1665 1780 375 1740 1850 1980
160 310 1800 1915 2050 365 1800 1915 2050 430 2000 2130 2280
200 360 2135 2275 2440 420 2135 2275 2440 495 2370 2530 2710
250 415 2330 2485 2665 490 2330 2485 2665 575 2590 2760 2960
315 510 2945 3125 3355 600 2945 3125 3355 705 3270 3470 3730
400 570 3375 3590 3850 665 3375 3590 3850 785 3750 3990 4280
500 670 4130 4390 4705 790 4130 4390 4705 930 4590 4880 5230
630 775 4975 5290 5660 910 4975 5290 5660 1070 5530 5880 6290
630 750 5050 5365 5760 885 5050 5365 5760 1040 5610 5960 6400 6
800 875 5895 6265 6715 1035 5895 6265 6715 1215 6550 6960 7460
1000 1020 6885 7315 7885 1205 6885 7315 7885 1415 7650 8130 8760
1250 1205 8190 8720 9335 1420 8190 8720 9335 1670 9100 9690 10370
1600 1415 9945 10555 11320 1665 9945 10555 11320 1960 11050 11730 12580
2000 1760 12240 13005 14005 2075 12240 13005 14005 2440 13600 14450 15560
2500 2080 14535 15445 16605 2450 14535 15445 16605 2880 16150 17170 18450

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