Customization: | Available |
---|---|
Application: | Power |
Phase: | Three |
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Introduction of Marine (Ocean Platform) Transformer: Elevate your marine operations with our expertly crafted transformers, designed specifically for ocean platforms. Engineered to withstand the challenging marine environment, they offer reliable power solutions with unmatched efficiency and durability.
Insulation classes include B, F, and H, ensuring versatile and reliable performance. Our low-voltage transformers, with voltage levels below 1kV, boast capacities up to an impressive 8000kVA, while our medium-voltage transformers, ideal for vessel and offshore platform use with voltage levels below 10kV, also reach up to 8000kVA. We take pride in our ability to design and manufacture products tailored to your precise requirements, accompanied by product certificates from a wide array of esteemed classification societies, including CCS, ABS, BV, DNVGL, LR, KR, NK, and RINA.
The Structural Features of the Product: Discover the robust and innovative structural design of our transformers, meticulously engineered for exceptional performance and long-lasting reliability.
The core material is crafted from premium cold-rolled silicon steel sheets, meticulously laminated at a full 45° diagonal, ensuring optimal magnetic properties and structural integrity.
Our insulation materials, comprising Class B, F, or H NOMEX paper, guarantee extended longevity, with the transformer's service life surpassing an impressive 30 years, providing enduring value and performance.
Moisture, Salt Spray, Mold, and Rust Resistance: The iron core's surface is treated with a special resin coating, offering superior protection against moisture, salt spray, and corrosive elements, ensuring sustained operational integrity.
Low Losses, Minimal Partial Discharge, Strong Overload Capacity, and Low Noise: Our transformers are engineered with 0.18-0.3mm thickness, highly permeable, high-quality grain-oriented cold-rolled silicon steel sheets to minimize energy losses. The through-bolt structure effectively reduces noise, ensuring a serene operating environment alongside robust overload capabilities.
The coil of the marine transformer features a non-closure structure, while the ocean platform transformer's coil is cast with stuffing epoxy resin, providing excellent flame retardation and enhancing safety.
Our transformer cases are constructed from top-grade steel sheets, offering protection classes of IP00, IP20, IP22, and IP23, ensuring reliable protection and durability in various operational settings.
The stuffing box is strategically positioned at either the left or right on the top of the transformer case. For transformers with a capacity of 500 kVA and above, the wiring style is bottom in/bottom out. Cable holes are precisely cut on the transformer base and equipped with wire scratch-proof and fixation devices, facilitating easy and secure connections.
Application Conditions: Our transformers are built to perform flawlessly in diverse environmental conditions, adapting effortlessly to the unique challenges of marine and offshore applications.
Our product can operate under the following conditions without compromise:
Ambient temperature: Spanning a wide range from -25°C to 45°C, seamlessly adapting to various climatic conditions.
Relative humidity: Functionality assured even in environments with relative humidity levels up to ≤95%.
Engineered to withstand the vibration and shock generated from the installation site, ensuring unwavering performance.
Capable of enduring a swing angle of ≤22.5° and an inclining angle of ≤15°, our transformers maintain stability and efficiency.
Resilient under exposure to dew, oil mist, salt mist, and molds, maintaining reliable performance and longevity.
Ocean Platform Transformer Technical Data: Comprehensive technical data to guide your selection, ensuring you choose the optimal transformer for your specific needs and applications.
Type |
Rated Capacity (kVA) |
Primary Voltage (kV) |
Secondary Voltage (kV) |
Tapping Range |
Vector Group |
No-load Loss (W) |
Load Loss (W) 75°C |
No-load Current (%) |
Impedance (%) 75°C |
PSCD-100/10 |
100 |
11 10.5 10 6.6 6.3 6.0 3.3 3.0 |
0.45 0.4 |
±2×2.5% ±5% |
Dyn11 |
500 |
1850 |
2.4 |
4 |
PSCD-125/10 |
125 |
590 |
2170 |
2.2 |
|||||
PSCD-160/10 |
160 |
680 |
2500 |
2.2 |
|||||
PSCD-200/10 |
200 |
780 |
2970 |
2.0 |
|||||
PSCD-250/10 |
250 |
900 |
3240 |
2.0 |
|||||
PSCD-315/10 |
315 |
1100 |
4080 |
1.8 |
|||||
PSCD-400/10 |
400 |
1220 |
4690 |
1.8 |
|||||
PSCD-500/10 |
500 |
1450 |
5740 |
1.8 |
|||||
PSCBFD-630/10 |
630 |
1620 |
7010 |
1.6 |
6 |
||||
PSCBFD-800/10 |
800 |
1900 |
8180 |
1.6 |
|||||
PSCBFD-1000/10 |
1000 |
2210 |
9560 |
1.4 |
|||||
PSCBFD-1250/10 |
1250 |
2610 |
11400 |
1.4 |
|||||
PSCBFD-1600/10 |
1600 |
3060 |
13800 |
1.4 |
|||||
PSCBFD-2000/10 |
2000 |
4150 |
17000 |
1.2 |
|||||
PSCBFD-2500/10 |
2500 |
5000 |
20200 |
1.2 |
|||||
PSCBFD-3150/10 |
3150 |
5400 |
24000 |
1 |
|||||
PSCBFD-3500/10 |
3500 |
5800 |
28000 |
1 |
7.5 |
||||
PSGBFD-4000/10 |
4000 |
6500 |
34000 |
0.8 |
8 |
||||
PSGBFD-5000/10 |
5000 |
7800 |
42000 |
0.8 |
|||||
PSGBFD-6300/10 |
6300 |
8960 |
47000 |
0.6 |
|||||
PSGBFD-8000/10 |
8000 |
10220 |
53000 |
0.6 |
9 |
Note: All data presented herein are intended solely for reference. We reserve the right to make changes without prior notice to continuously enhance product performance and meet evolving industry standards.