The oil - immersed distribution transformer is a versatile electrical device applicable to residential communities, factories, and shopping malls, and it can be designed as a low - noise, energy - efficient, and moisture - proof model to meet various requirements.

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This product implements national stangards GB1094-1996 the power transformer “and GB/T6451-2008 the three-phase oil-immersedpower transformer technical parameters and requirements".S13 series transformer is the latest series of low loss copper windingsproducts,the products using high-quality materials, in col implement body and insulation,using new craft, new material, thus made racing.load loss reduced significantly, and performance and structure more reliable and superior.


Long lasting: The longevity of Oil - Immersed Distribution Transformers is a result of their meticulously engineered design. The fully sealed structure of the transformer oil tank is a masterstroke in durability enhancement. Whether connected via bolts or welding, this seal creates an impenetrable barrier, shielding the pressure oil from any contact with the air. This isolation is crucial as it prevents oil oxidation, a common cause of degradation in transformer performance over time. By eliminating the risk of contamination, the internal components of the transformer are protected from premature wear and tear. Additionally, the sealed design also guards against moisture and dust intrusion, ensuring that the transformer can endure the test of time. This robust construction means that these transformers can operate reliably for decades, reducing the need for frequent replacements and offering a long - term, cost - effective solution for power distribution needs.


High operational reliability: Ensuring consistent and stable operation is a top priority in the design of Oil - Immersed Distribution Transformers. The sealing components of the fuel tank have undergone extensive and detailed improvements. Advanced materials with superior sealing properties and cutting - edge manufacturing techniques are employed to create seals that are both highly effective and long - lasting. Rigorous quality control protocols are in place at every stage of production, from material selection to the final assembly. Each seal is thoroughly tested to meet and exceed the highest industry standards, minimizing the risk of leaks or failures. These measures, combined with enhanced manufacturing processes, ensure that the transformers can withstand the rigors of continuous operation, even in the most challenging environments. Whether facing sudden power surges, extreme weather conditions, or fluctuating electrical loads, they maintain their performance, providing a reliable power supply that industries and communities can depend on.


Small footprint: The physical design of Oil - Immersed Distribution Transformers offers practical advantages, especially in areas where space is at a premium. The innovative use of a corrugated plate radiator for the oil tank is a prime example of engineering ingenuity. As the oil temperature varies, the corrugated plates expand and contract in a controlled manner, effectively replacing the function of a traditional, bulkier oil conservator.

 This design not only streamlines the overall structure but also results in a more compact and aesthetically pleasing appearance. Compared to conventional transformer designs, the corrugated plate oil tank occupies significantly less space, making it an ideal choice for urban installations, where space is limited and every square foot counts. It can be easily integrated into compact electrical substations or installed in tight spaces within buildings, without sacrificing performance or functionality. This space - saving feature also simplifies the installation process, reducing costs and time associated with infrastructure development.


Good economic performance: Oil - Immersed Distribution Transformers stand out for their remarkable economic efficiency. The significant reduction in no - load current, averaging between 60% - 80%, is a game - changing feature. During times when the transformer is not fully utilized, this decrease in no - load current means a substantial cut in unnecessary energy consumption. For power providers, it translates to lower operational costs, while end - users benefit from reduced electricity bills. Additionally, the average 25% - 35% reduction in no - load loss further underscores their economic prowess. This efficiency improvement ensures that a greater proportion of the generated electrical energy reaches its intended destination, optimizing the overall performance of the power distribution system. Moreover, these savings contribute to a more sustainable use of resources, as less energy is wasted in the transmission process.



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