Rated Power (KVA) | High Voltage (V) | Low Voltage (V) | Loss (W) | Dimension (mm) | Weight (kg) | ||||
No-load Loss (W) | On-load Loss (W) | W | D | H | Oil Weight | Total Weight | |||
5 | 13200 12470 7957 7620 or others |
120-240 240-480 347 600 | 19 | 75 | 465 | 485 | 855 | 15 | 92 |
10 | 36 | 120 | 500 | 525 | 885 | 22 | 150 | ||
15 | 50 | 195 | 520 | 565 | 905 | 30 | 210 | ||
25 | 80 | 290 | 560 | 590 | 935 | 45 | 258 | ||
37.5 | 105 | 360 | 610 | 625 | 935 | 50 | 340 | ||
50 | 135 | 500 | 635 | 675 | 1035 | 62 | 395 | ||
75 | 190 | 745 | 840 | 745 | 1035 | 86 | 495 | ||
100 | 210 | 1100 | 770 | 965 | 1135 | 94 | 585 | ||
167 | 350 | 1410 | 795 | 890 | 1335 | 138 | 680 |
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Single-Phase Completely Self Protected (CSP) Transformer is an advanced distribution transformer that provides Safety and Reliability in power delivery systems. Within a compact design, this transformer combines multiple self-protective features. The internal protections of the CSP transformer include overcurrent, overvoltage, and overheating. A distinguishing feature of the transformer is its integration of an internal circuit breaker or fuse that automatically breaks the transformer from the power network in the case of a fault and hence ensures the protection of the transformer and the connection network. On top of that, lightning arresters are often presented there, to protect against the surges that may occur as a result of lightning strikes or instant voltage changes. Such a thermal protection system within the transformer monitors temperature levels, and if overheating occurs, the unit is shut down so that the unit’s operational life is extended.
CSP transformers are already equipped with built-in protection, such as internal circuit breakers or fuses, thermal overload protection as well as lightning arresters to provide total fault protection.
CSP transformers do not need external protective devices and they integrate all protective components in the transformer body, simplifying installation.
If there is a problem with the transformer, it automatically disconnects from the circuit keeping the faults from cascading through the power system.
Advanced temperature monitoring means the unit automatically shuts down in the event of overheating, increasing safety and its life.
Transmitters have fewer external components, requiring less and less time-consuming maintenance.
They can avoid electrical faults so they are designed to be self-contained and when electrical faults click in they power up and send constant power in.
CSP transformers feature built-in protective elements, like internal circuit breakers, lightning arresters, and even thermal overload mechanisms, making them very safe for both the equipment and the network it connects.
By incorporating them, external protective devices are no longer required and the installation is both faster and simpler.
They have considerably fewer external components, requiring less frequent maintenance over the lifetime of the transformer cutting operational costs.
Since they can be self-contained, they use up less space, which makes them great for urban areas or inlays with insufficient room.
CSP transformers eliminate the need for additional protective equipment and reduce maintenance requirements for long-term cost advantages.
The self-protective features enable the transformer to isolate itself quickly from fault, thereby reducing the duration of service disruption.
A combination of integrated thermal and electrical protection systems prevents the transformer from being damaged and allows it to work efficiently for a longer period.
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