
Cast Resin Dry Type Transformer
Resin cast dry-type transformer is an epoxy resin cast power transformer, which is unique in that the iron core and winding are not immersed in insulating oil. The cooling methods mainly include natural air cooling (AN) and forced air cooling (AF).
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Cast Resin Dry Type Transformer Description:
Resin cast dry-type transformer is an epoxy resin cast power transformer, which is unique in that the iron core and winding are not immersed in insulating oil. The cooling methods mainly include natural air cooling (AN) and forced air cooling (AF). The entire process from iron core production to resin casting and assembly is independently completed by TSTY. The production of iron cores adopts fully automatic intelligent equipment, which realizes digital operation throughout the entire process from cutting silicon steel sheets to stacking iron cores. The iron core produced by this method has smaller gaps, lower losses, lower noise, longer lifespan, and improved production efficiency and product qualification rate. Our casting process adopts the most advanced orthogonal self flow and end sealed self flow casting technology in China, achieving fully automated and intelligent operation from mixing to casting. The coils produced through this process have superior quality, smooth and rounded surfaces, and a more aesthetically pleasing appearance.
Cast Resin Dry Type Transformer Application:
In the field of architecture, resin cast dry-type transformers are suitable for various types of buildings, such as office buildings, shopping malls, hospitals, schools, etc. Due to its small size and light weight, it can meet the limited needs of building space while providing stable and reliable power supply.
In the industrial field, the requirements for electrical equipment are usually high in industrial production sites. Resin cast dry-type transformers can meet these special requirements, such as moisture resistance, explosion resistance, and shock resistance, ensuring the smooth progress of industrial production.
Commercial sector: Commercial facilities such as supermarkets, hotels, cinemas, etc. also require stable and reliable power supply. Resin cast dry-type transformers can meet the power demand of these places and ensure their normal operation.
Public facilities: Public facilities include subway stations, airports, stations, etc., which require high stability of electrical equipment. Resin cast dry-type transformers can provide reliable power support to ensure the normal operation of public facilities.
Special environment: In some special environments, such as high-altitude areas, humid areas, earthquake prone areas, etc., special performance electrical equipment is required. Resin cast dry-type transformers are suitable for these special environments and provide stable and reliable power supply.
Cast Resin Dry Type Transformer Characteristics:
Good electrical insulation performance: The use of epoxy resin or other high-performance insulation materials to completely wrap the winding provides excellent electrical insulation performance, which can effectively prevent short circuits and other electrical faults.
Fireproof and flame retardancy: Epoxy resin itself has good self extinguishing and fire resistance, and will not produce a large amount of smoke and toxic gases even at high temperatures.
Excellent mechanical strength: The shell formed by resin casting is very sturdy and can withstand large mechanical stresses, protecting the internal structure from damage.
High efficiency and low loss: Advanced manufacturing processes and technologies are adopted to improve energy conversion efficiency and reduce electrical energy loss under no-load and load conditions.
Small size and light weight: Compared to traditional oil immersed transformers, resin cast dry-type transformers are more compact and lightweight, making them easier to transport and install
Cast Resin Dry Type Transformer Specification
Model | Rated capacity (KVA) | Connection symbol | Voltage combination (KV) | No-load loss (W) | Load loss (W) | No-load current (%) | Short circuit impedance (%) | ||
High voltage | Tapping range | Low voltage | |||||||
SC10-30 | 30 | Yyn0 or Dyn11 | 11 10.5 10 6.3 6 | ±5% ±2×2.5% | 0.4 | 190 | 710 | 2.4 | 4 |
SC10-50 | 50 | 270 | 1000 | 2.4 | |||||
SC10-80 | 80 | 370 | 1380 | 1.8 | |||||
SC10-100 | 100 | 400 | 1570 | 1.8 | |||||
SC10-125 | 125 | 470 | 1850 | 1.6 | |||||
SCB10-160 | 160 | 550 | 2130 | 1.6 | |||||
SCB10-200 | 200 | 630 | 2530 | 1.4 | |||||
SCB10-250 | 250 | 720 | 2760 | 1.4 | |||||
SCB10-315 | 315 | 880 | 3470 | 1.2 | |||||
SCB10-400 | 400 | 980 | 3990 | 1.2 | |||||
SCB10-500 | 500 | 1160 | 4880 | 1.2 | |||||
SCB10-630 | 630 | 1350 | 5880 | 1 | |||||
SCB10-630 | 630 | 1300 | 5960 | 1 | 6 | ||||
SCB10-800 | 800 | 1520 | 6960 | 1 | |||||
SCB10-1000 | 1000 | 1770 | 8130 | 1 | |||||
SCB10-1250 | 1250 | 2090 | 9690 | 1 | |||||
SCB10-1600 | 1600 | 2450 | 11730 | 1 | |||||
SCB10-2000 | 2000 | 3050 | 14450 | 0.8 | |||||
SCB10-2500 | 2500 | 3600 | 17170 | 0.8 | |||||
SCB10-1600 | 1600 | 2450 | 12900 | 1 | 8 | ||||
SCB10-2000 | 2000 | 3050 | 15890 | 0.8 | |||||
SCB10-2500 | 2500 | 3600 | 18890 | 0.8 |
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