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20KV and 10KV Convertable Epoxy Resin Cast Transformer SC(B)10-30~2500/20(10)

20KV and 10KV Convertable Epoxy Resin Cast Transformer SC(B)10-30~2500/20(10)

Input voltage: 30KV
Output voltage: 400V
Capacity: 2500KVA
Frequency: 50HZ

Product Details

The epoxy resin cast transformer is mainly composed of a silicon steel chip of iron core and epoxy resin pouring coil, between the high and low voltage coils to place an insulating tube to increase electrical insulation.

 

20KV and 10KV Convertable Epoxy Resin Cast Transformer SC(B)10-30~2500/20(10)
Rated Capacity
(KVA)
Voltage Combination Connection Group Short Circuit Resistance(%) No Load Loss (W) Load Loss 
120℃(W)
No Load Current
(%)
HV(KV) Tapping Range LV(KV)
30 20

22

24
±2×2.5% 0.4 Yyn0

Dyn11
6 300 1100 2.5
50 340 1240 2.4
80 420 1500 2.3
100 540 2000 2.2
160 680 2470 1.8
200 740 2950 1.8
250 850 3420 1.6
315 970 4090 1.6
400 1150 4850 1.4
500 1350 5800 1.4
630 1530 6840 1.2
800 1760 8270 1.2
1000 2070 9790 1.0 
1250 2390 11540 1.0 
1600 2790 13870 1.0 
2000 3240 16390 0.8
2500 3870 19380 0.8

When the grid voltage of the dry type transformers is 20kv or 10kv, the transformer in this series can control the connection status between two windings on high voltage coil in each phase via conversion device, and realize voltage conversion through series or parallel connection without changing the output voltage, thus enabling one transformer to connect with two electrical voltage systems like 10kv or 20kv asynchronously, where the transformer acts as a transition of upgrading the grid voltage from 10kv to 20kv. In this way, it can achieve repeated investment reduction, efficient conversion, and stable performance.

Precautions for the use of epoxy resin cast transformer:

1.0 - 40 ( C), 70% relative humidity;

2. Altitude: not more than 2500 meters;

3. Avoid rain, moisture, high temperature, high heat or direct sunlight. Its thermal vents and surrounding objects should be no less than 40cm distance;

4. Prevent work in corrosive liquids, or gas, dust, conductive fibers or metal chips more places;

5. Prevent work in vibration or electromagnetic interference places;

6. Avoid long-term inverted storage and transport, not subject to strong impact.

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