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The 1000kVA Pad Mounted Transformer produced by Pearl Electric Co., Ltd. is designed to provide reliable and efficient power distribution for wind energy systems. The transformer complies with the IEC60076 standard and is suitable for renewable energy projects that require strong performance.
The transformer has a primary voltage of 12.47KV and a secondary voltage of 0.4KV. It has a rated capacity of 1000KVA (high voltage) and 500KVA (low voltage), making it an ideal choice for energy-intensive applications such as wind energy systems.
The temperature rise on both the high and low voltage sides is 65°C, ensuring safe operation under heavy loads. The impedance at 1000KVA is 4%, providing a stable and reliable power flow. The transformer is equipped with Class A insulation materials to ensure durability and safety.
The transformer is made of copper windings and stainless steel cores to ensure high efficiency and corrosion resistance. It uses FR3 vegetable oil as the insulating fluid, providing efficient cooling and enhanced performance.
This three-phase transformer operates at 60Hz and adopts the ONAN cooling method. It features the Dyn1 vector group for controlled voltage regulation, making it ideal for wind energy applications.
Parameter | Value |
---|---|
Transformer Type | Pad mount Transformer |
Manufacturer | Pearl Electric Co., Ltd. |
Standard | IEC60076 |
Primary Voltage | 12.47KV (H.V.) |
Secondary Voltage | 0.4KV (L.V.) |
Rated Capacity | 1000KVA (H.V.), 500KVA (L.V.) |
Temperature Rise | 65°C (H.V. & L.V.) |
Impedance | 4% at 1000KVA |
Insulation Class | A-Class |
Phase | 3-phase |
Frequency | 60Hz |
Cooling Method | ONAN |
Insulation Liquid | FR3 Vegetable Oil |
Winding Material | Copper |
Core Material | Stainless Steel |
Vector Group | Dyn1 |
Features of 1000kva Pad Mounted Transformer For Wind Energy Syste
High Power Rating: 1000KVA 12/47/0.4KV Frontless Drop-Down Pad Mount Transformer is rated at 1000 KVA, ensuring it meets the energy needs of a wide range of industrial and commercial facilities.
Frontless Design: The frontless design improves safety by keeping high-voltage components inaccessible during normal operation. This design reduces the risk of electric shock, making it a safer choice for environments where personnel may interact with the transformer.
Pad Mount Structure: The transformer is mounted on a durable, weatherproof pad for easy installation and integration into outdoor electrical systems. Its rugged construction ensures protection from environmental factors such as rain, dust, and moisture.
Compact and Efficient: The drop-down design has a small footprint, making it an excellent choice for locations with limited space while maintaining excellent performance and efficiency.
Reliable Performance: The transformer is designed to operate in a wide range of environmental conditions, providing consistent and reliable service under heavy load conditions.
Minimal Maintenance Requirements: Made with high-quality materials and advanced engineering, this transformer requires minimal maintenance, ensuring a low total cost of ownership.
Advatages of 1000kva Pad Mounted Transformer For Wind Energy Syste
Enhanced Safety: The front deadband design of this Pad Mounted Transformer minimizes the chance of contact with live electrical components, protecting operators and maintenance personnel from electrical hazards.
Durability and Service Life: Built to withstand harsh weather conditions and heavy-duty use, this transformer provides long-term reliability, making it an affordable choice for new and existing infrastructure.
Efficient Power Distribution: Designed to provide a steady power output, this transformer reduces energy losses during transmission, helping to improve overall system efficiency and save costs in the long run.
Environmentally Friendly: The transformer is designed with environmentally friendly materials and construction methods, ensuring compliance with industry standards for sustainability and energy efficiency.
Applications of 1000kva Pad Mounted Transformer For Wind Energy Syste
The 1000KVA 12/47/0.4KV Dead Front Set-Down Pad Mounted Transformer is designed for various applications, particularly in medium-voltage distribution systems. Some common areas where this transformer is used include:
Residential Areas: Ideal for community or residential areas, ensuring reliable power distribution for homes and public services.
Commercial Buildings: Ideal for small to medium commercial buildings, providing a steady and efficient power supply for office spaces, retail stores, and other commercial operations.
Industrial Environments: For industrial areas that require powerful and efficient power solutions to handle large-scale operations such as manufacturing plants, factories, and warehouses.
Public Infrastructure Projects: For public utility projects including street lighting, schools, hospitals, and other essential public services where reliable power is essential.
FAQs of 1000kva Pad Mounted Transformer For Wind Energy Syste
1. What is a Pad Mounted Transformer?
A Pad Mounted Transformer is an electrical transformer placed on a concrete base for outdoor use. It is typically used for power distribution in residential or industrial applications, including wind energy systems.
2. The 1000kVA Pad Mounted Transformer has a primary voltage of 12.47KV (high voltage) and is designed to efficiently handle large-scale power transmission.
3. What is the secondary voltage of this transformer?
The secondary voltage of this transformer is 0.4KV (low voltage), which is ideal for stepping down power to usable levels for end-use applications in wind energy systems.
4. What is the insulating fluid used in the transformer?
The 1000kVA Pad-Mounted Transformer uses FR3 vegetable oil as the insulating fluid, which has excellent cooling and insulating properties, which can improve the life and performance of the transformer.
5. What are the cooling methods used in the transformer?
The transformer uses ONAN (Oil Natural Air Natural) cooling method, which can effectively maintain the optimal operating temperature and ensure safe and efficient operation of the transformer.