Customization: | Available |
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Application: | Power |
Phase: | Three |
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Dry type transformers are an essential component in modern electrical power systems. A dry type transformer, as its name suggests, operates without the use of a liquid coolant, making it a safe and reliable choice for a wide range of applications. These transformers are known for their high efficiency, low noise levels, and excellent fire - resistance properties.
Dry type transformers do not contain any flammable or explosive liquids. This eliminates the risk of oil spills and fires, making them an ideal choice for indoor installations such as commercial buildings, hospitals, and schools. The dry type transformer's design ensures that it can operate safely even in harsh environments.
Since dry type transformers do not use oil, they have a much lower environmental impact compared to oil - filled transformers. There is no risk of soil or water pollution from oil leaks. The dry type transformer is a sustainable option for power distribution.
Dry type transformers require less maintenance than their oil - filled counterparts. There is no need to check and replace the coolant regularly, and the absence of oil also means fewer potential leak points. This reduces the overall cost of ownership of the dry type transformer.
Modern dry type transformers are designed with advanced materials and technologies to achieve high levels of efficiency. They can convert electrical energy with minimal losses, which helps to reduce energy consumption and save costs in the long run. The dry type transformer's high - efficiency design makes it a cost - effective solution for power distribution.
Parameter | Specification |
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Rated Power | 50 kVA - 5000kVA (dry type transformer power ratings can vary widely according to different applications) |
Voltage Ratio | [Primary voltage] / [Secondary voltage] (the dry type transformer can be designed to meet various voltage transformation requirements) |
Frequency | 50Hz or 60Hz (the dry type transformer can operate at different frequencies depending on the local power grid) |
Insulation Class | F, H, or C (the dry type transformer insulation class determines its temperature resistance and performance) |
Temperature Rise | ≤100K (the dry type transformer temperature rise is an important indicator of its thermal performance) |
Cooling Method | Natural air cooling (AN) or forced air cooling (AF) (the dry type transformer cooling method affects its power - handling capacity) |
Noise Level | ≤ 63 dB (the dry type transformer is designed to operate quietly, suitable for noise - sensitive environments) |
Dry type transformers are widely used in various fields: