Customization: | Available |
---|---|
Application: | Power |
Phase: | Three |
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Introduction of Marine (Ocean Platform) Transformer: Discover the pinnacle of maritime innovation with our expertly crafted marine transformers, offering unparalleled reliability and efficiency tailored to the demanding conditions of sea-based installations.
Our transformers boast insulation classes of B, F, and H, ensuring robust protection and performance. The low-voltage transformer supports capacities up to an impressive 8000kVA, ideal for applications below 1kV. Similarly, our medium-voltage transformers, designed for vessels, ships, and offshore platforms up to 10kV, also reach capacities of 8000kVA. We offer bespoke design and production capabilities to meet your precise needs, along with certifications from leading classification societies including CCS, ABS, BV, DNVGL, LR, KR, NK, RINA, among others.
The Structural Features of the Product: Ingeniously designed for optimal performance, our transformers incorporate cutting-edge materials and innovative structural elements for enhanced functionality and durability.
Our transformer cores are crafted from premium cold-rolled silicon steel sheets, meticulously laminated at a 45° diagonal for exceptional magnetic efficiency and reliability.
Boasting insulation materials made from Class B, F, or H NOMEX paper, our transformers ensure superior thermal performance and an impressive service life exceeding 30 years, standing as a testament to their enduring quality.
Engineered for maximum resilience, our transformers are treated for moisture, salt spray, mold, and rust resistance, with a specialized resin coating safeguarding the iron core from harsh environmental elements.
Our transformers are engineered for excellence, featuring low losses, minimal partial discharge, a strong overload capacity, and remarkably low noise levels. Utilizing high-permeability, grain-oriented cold-rolled silicon steel sheets with a thickness of 0.18-0.3mm, we significantly reduce energy loss. Additionally, a through-bolt structure is employed to noticeably diminish operational noise.
Designed for safety and efficiency, our marine transformer coils feature a non-closure structure. The ocean platform transformer, by contrast, is encased with stuffing epoxy resin, providing excellent flame retardation properties.
Crafted from high-quality steel sheets, our transformer cases offer robust protection with classes ranging from IP00 to IP23, ensuring enduring performance across diverse conditions.
For enhanced safety and convenience, the stuffing box is strategically positioned on either the left or right top of the transformer case. Wiring for units with a 500 kVA capacity and above is designed for bottom in/bottom out arrangements, with cable holes located on the base featuring scratch-proof and fixation devices for secure installation.
Application Conditions: Our products are engineered to operate flawlessly under diverse and challenging conditions, setting the standard for marine applications.
Our company's product line is designed to function optimally under the following conditions:
Ambient temperature ranging from a chilly -25°C up to a warm 45°C, ensuring versatility across various climates.
Relative humidity levels up to 95%, demonstrating robust performance in high-moisture environments.
Constructed to withstand vibrations and shocks inherent to the installation site, our transformers promise steadfast reliability.
Capable of operating with swing angles up to 22.5° and inclining angles up to 15°, our transformers are engineered for stability even in dynamic maritime settings.
Resilient against dew, oil mist, salt mist, and molds, our transformers are built to endure the assorted challenges of marine environments.
Ocean Platform Transformer Technical Data: Comprehensive technical data designed to equip you with essential insights for making informed purchasing decisions.
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: Please be advised that all data provided is for reference purposes only and is subject to change without notice, ensuring we deliver the most advanced and up-to-date solutions.