Electronic Components Supplier | Transformers, Inductors, Inverters
PRODUCT PARAMETERS
Description
Overview of Customized IEC Standard Electronics Oil Immersed 1600 KVA Transformer for Renewable
An oil-immersed transformer is a type of electrical transformer where the core and windings are submerged in an insulating oil. This oil serves two primary functions: it acts as a highly effective insulator between conductive parts and as a coolant to dissipate heat generated during operation. These transformers are robust, reliable, and highly efficient, making them the standard choice for high-voltage power distribution and transmission networks, typically installed outdoors in substations.
Features of Customized IEC Standard Electronics Oil Immersed 1600 KVA Transformer for Renewable
- Effective Cooling: The insulating oil efficiently absorbs heat from the core and windings and transfers it to the radiator fins, allowing for natural or forced circulation and higher overload capacity.
- Superior Insulation: The oil provides much better dielectric strength than air, allowing for a more compact design for a given voltage rating and protecting against short circuits.
- Robust Construction: Designed for long-term, reliable operation (often 25-30 years) in harsh outdoor environments.
- Overload Capacity: Can handle temporary power overloads better than dry-type transformers due to the thermal mass and cooling properties of the oil.
- Protection System: Equipped with a conservator tank (to allow for oil expansion), breather (to absorb moisture from air), and protective relays (Buchholz relay) for internal fault detection.
- Cost-Effective: Generally more economical for high-power applications compared to dry-type transformers.
Specifications of Customized IEC Standard Electronics Oil Immersed 1600 KVA Transformer for Renewable
This IEC standard transformer is built for demanding renewable energy sites. It handles 1600 KVA capacity. The oil-immersed design uses mineral oil for cooling and insulation. It meets strict IEC 60076 standards for safety and performance. This ensures reliability worldwide.
The core uses high-grade grain-oriented electrical steel. This minimizes energy losses significantly. Copper windings provide excellent conductivity and durability. The cooling system is ONAN (Oil Natural Air Natural). This is efficient and low-maintenance. The transformer operates quietly. Its noise levels are well below typical site requirements.
Voltage ratings are customized for your project. Primary voltage can be 11kV, 33kV, or other common distribution levels. Secondary voltage matches your specific inverter or grid connection needs. The tap changer adjusts voltage under load. This compensates for grid fluctuations common with renewables. Multiple tap positions offer precise control.
Special features address renewable energy challenges. The design handles frequent load changes smoothly. It withstands harmonic distortion from inverters. Enhanced protection systems guard against faults. This includes differential protection and Buchholz relays. The tank is robust. It features pressure relief devices and corrosion-resistant paint. Terminations are easily accessible. Options include bushings, cable boxes, or GIS connections.
Testing is comprehensive. It covers routine tests per IEC. Type tests and special tests are also performed. This guarantees performance under all conditions. The transformer is ready for outdoor installation. It withstands harsh weather.
Applications of Customized IEC Standard Electronics Oil Immersed 1600 KVA Transformer for Renewable
Renewable energy projects need reliable power conversion. Wind farms and solar installations often produce electricity at different voltage levels. The grid requires standardized voltages. This creates a challenge. The IEC Standard Electronics Oil Immersed 1600 KVA Transformer provides the solution. It steps up voltage efficiently. This ensures smooth power transfer from renewable sources to the main grid. Its 1600 KVA capacity suits many medium-scale renewable sites perfectly.
Customization is key for these transformers. Every renewable project has unique needs. Site conditions vary greatly. Connection requirements differ. The IEC standard provides a solid safety and performance base. Builders tailor the transformer beyond this. They adjust things like voltage taps. They modify cooling systems. They design specific bushing arrangements. They choose optimal protection levels. This customization guarantees the transformer fits its exact location and job. It maximizes performance and lifespan.
These transformers handle the tough reality of renewable sites. Wind farms face harsh weather. Coastal solar plants battle salt air. Remote locations mean difficult access. The oil-immersed design offers strong insulation and cooling. It withstands environmental stress. It provides stable operation under variable loads common with wind and solar power. Consistent output matters greatly for grid stability. These transformers deliver it. Their robust build minimizes maintenance needs. This is vital in hard-to-reach places.
Wind energy applications are a primary use. Turbines generate power at lower voltages. The transformer collects this power. It steps up the voltage significantly. This prepares the electricity for long-distance transmission. Solar farms work similarly. Multiple panels connect to combiner boxes. The power flows to inverters. The 1600 KVA transformer then boosts the inverter output voltage. This links the solar farm effectively to the high-voltage grid. Reliability is non-negotiable here. Downtime means lost energy production. These transformers are built for constant, dependable service. They keep renewable power flowing into the grid where it’s needed.
Company Profile
PDDN Photoelectron Technology Co., Ltd. is one of the leading enterprises in power electronics technology and power products, which is fully involved in developing solar inverters, transformers, voltage regulators, distribution cabinets, thyristors, modules, diodes, heaters, and other electronic devices or semiconductors. We will be committed to providing users with high-quality, efficient products and considerate service.
It accepts payment via Credit Card, T/T, West Union, and Paypal. PDDN will ship the goods to customers overseas through FedEx, DHL, by sea, or by air. If you want high-quality Customized IEC Standard Electronics Oil Immersed 1600 KVA Transformer for Renewable, please send us inquiries; we will be here to help you.
Payment Methods
L/C, T/T, Western Union, Paypal, Credit Card etc.
Shipment
By sea, by air, by express, as customers request.
Storage Conditions
1) Store in a dry environment at room temperature.
2) Avoid damp and high temperature.
3) Use immediately after opening the inner packing bag.
5 FAQs of Customized IEC Standard Electronics Oil Immersed 1600 KVA Transformer for Renewable
Why choose a customized 1600 KVA oil transformer for renewable projects?
Standard transformers often don’t fit renewable energy needs perfectly. Wind and solar power change constantly. A custom transformer handles these big swings better. It keeps your power stable. It prevents damage from unexpected surges.
What does meeting IEC standards mean for this transformer?
IEC standards are strict international rules. Our transformer follows IEC 60076 exactly. This guarantees top quality and safety. It works reliably worldwide. You get the same performance everywhere. It avoids compatibility headaches.
Is this transformer safe for different renewable sites?
Safety is critical. This transformer uses special high-grade oil. The oil insulates and cools the core. The tank is very strong. It won’t leak. It handles tough weather easily. Remote wind or solar farms are no problem.
How does the cooling system handle renewable loads?
Renewables cause power levels to jump up and down fast. This generates extra heat. Our design uses proven oil cooling. It moves heat away efficiently. The transformer stays cool. It works reliably even under heavy, changing loads.
Can this transformer help meet environmental goals?
Yes. It’s built for high efficiency from the start. Less energy is lost as waste heat. This lowers your operating costs. It also reduces carbon emissions over its lifetime. Efficient equipment supports cleaner energy use.
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