SCBH15 amorphous alloy dry-type transformer is a transformer with an iron core made of amorphous alloy. The metal atoms of the amorphous alloy material are arranged in a disordered amorphous state, and its demagnetization and magnetization processes are very easy to complete, which reduces the loss of the core of the silicon steel material
Product Description
SCBH15 amorphous alloy dry-type transformer is a transformer with an iron core made of amorphous alloy. The metal atoms of the amorphous alloy material are arranged in a disordered amorphous state, and its demagnetization and magnetization processes are very easy to complete, which reduces the loss of the core of the silicon steel material and achieves the effect of energy saving. The eddy current loss of the transformer is proportional to the thickness of the core material and inversely proportional to the resistivity, and the hysteresis loss is proportional to the area enclosed by the hysteresis loop. The thickness of the amorphous alloy strip is small, and the resistivity is about 3 times that of the cold-rolled silicon steel sheet. Therefore, the eddy current loss of the iron core made of amorphous alloy is much smaller than that of the iron core made of cold-rolled silicon steel sheet. . In addition, the coercive force of the amorphous alloy is much less than 4A/m, which is about 1/7 of that of the cold-rolled silicon steel sheet. The area enclosed by the hysteresis loop of the amorphous alloy is much smaller than that of the cold-rolled steel sheet. The hysteresis loss of the alloy is much smaller than that of the cold-rolled silicon steel sheet, and its iron core loss is very low, which is about 75% lower than the no-load loss of the traditional silicon steel sheet iron core transformer. Due to the low loss, the amorphous alloy transformer produces less heat, low temperature rise, and very stable operating performance.
Scope of Application:
SCBH15 series amorphous alloy dry-type transformers can be used in high-rise buildings, commercial centers, subways, airports, stations, industrial and mining enterprises and power plants, especially for places with high flammable, explosive and fire protection requirements.
Therefore, amorphous alloy dry-type transformers are very ideal energy-saving power distribution equipment in power supply networks, and it can be used in many places, such as: amorphous alloy transformers used on highways, amorphous dry-type transformers in high-rise buildings, and amorphous alloy transformers in commercial centers. Crystal dry-type transformers, subway amorphous transformers, airport amorphous alloy dry-type transformers, station amorphous transformers, industrial and mining enterprises amorphous dry-type transformers and power plants amorphous transformers.
Specifications, capacity, size and packaging can also be customized according to customer drawings and other requirements. Welcome to visit our company for guidance and negotiation!
Product Features
Product Advantages:
1. The iron core of the product is supported by excellent and advanced magnetic conductive material amorphous alloy, and its performance is superior, and its performance index has reached the advanced level abroad. Features of amorphous alloy dry-type transformer: no-load loss is one third of that of ordinary silicon steel sheet dry-transformation, the energy saving effect is very good, and the product reaches the national first-class energy efficiency standard.
2. Safe, flame retardant and fireproof, it can be directly installed in the load center.
3. Maintenance-free, easy to install, and low overall operating cost.
4. It has good moisture-proof performance, can operate normally under 100% humidity, and can be put into operation without drying after production is stopped.
5. Low loss, low noise and strong heat dissipation capacity.
The shell can be configured according to customer needs, which is safe and beautiful.
Technical Parameters
SCBH15 series amorphous alloy dry-type power transformers technical parameters | ||||||||||
Model | Rated Voltage | Connection Symbol | No-load Loss(KW) | On-Load Loss(kw) | No-load Current(%) | Short-circuit Impedance (%) | ||||
HV | HV Tap Range | LV | 130(B) | 155(F) | 180(H) | |||||
(kV) | (kV) | (100℃) | (120℃) | (145℃) | ||||||
SCBH15-50/20 | ±2.5%±5% | 0.4 | Dn11 | 0.11 | 1.16 | 1.23 | 1.31 | 0.7 | 6 | |
SCBH15-100/20 | 0.17 | 1.87 | 1.99 | 2.13 | 0.7 | |||||
SCBH15-160/20 | 0.21 | 2.33 | 2.47 | 2.64 | 0.6 | |||||
SCBH15-200/20 | ±2x2.5%±5% | 0.23 | 2.77 | 2.94 | 3.14 | 0.6 | ||||
SCBH15-250/20 | 0.26 | 3.22 | 3.42 | 3.66 | 0.5 | |||||
SCBH15-315/20 | 0.3 | 3.85 | 4.08 | 4.36 | 0.5 | |||||
SCBH15-400/20 | 20 | 0.36 | 4.56 | 4.84 | 5.18 | 0.5 | ||||
SCBH15-500/20 | 22 | 0.41 | 5.46 | 5.79 | 6.19 | 0.5 | ||||
SCBH15-630/20 | 24 | 0.48 | 6.45 | 6.84 | 7.32 | 0.5 | ||||
SCBH15-800/20 | 0.55 | 7.79 | 8.26 | 8.84 | 0.4 | |||||
SCBH15-1000/20 | 0.64 | 9.22 | 9.78 | 10.4 | 0.4 | |||||
SCBH15-1250/20 | 0.74 | 10.8 | 11.5 | 12.3 | 0.4 | |||||
SCBH15-1600/20 | 0.86 | 13 | 13.8 | 14.8 | 0.3 | |||||
SCBH15-2000/20 | 1.06 | 15.4 | 16.3 | 17.5 | 0.3 | |||||
SCBH15-2500/20 | 1.29 | 18.2 | 19.3 | 20.7 | 0.3 | |||||
SCBH15-1600/20 | 0.86 | 14.3 | 15.2 | 16.3 | 0.3 | 8 | ||||
SCBH15-2000/20 | 1.06 | 16.8 | 17.8 | 19.1 | 0.3 | |||||
SCBH15-2500/20 | 1.29 | 20 | 21.2 | 22.7 | 0.3 |
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