35 kV to 500kV oil-immersed power transformers combine advanced industry technology with many years of experience in the R&D and manufacturing of high-voltage transformers, and are continuously optimized, upgraded, and meticulously crafted. They are widely used in various power generation, transmission, and distribution scenarios, including thermal power, hydropower, photovoltaics, wind power, energy storage, pumped storage, hydrogen production, rail transit, data centers, aerospace, petrochemicals, metallurgy, building materials, and industrial parks.
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10 kV distribution transformer is the latest generation of energy-saving transformers and has been widely used in distribution networks. Its outstanding features of high efficiency, strong short-circuit resistance, deep penetration into load centers, low noise, attractive appearance, and environmental friendliness have won unanimous praise and widespread acclaim from users. It is used in a range of scenarios including residential areas, schools, factories, and energy sectors.
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Single-phase pole-mounted transformers adopt mature and reliable design and manufacturing processes, and use materials and components with stable performance. They are suitable for residential, rural, and commercial distribution systems, and can be widely used in public distribution networks, distributed power systems, and outdoor overhead line power supply scenarios.
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Rectifier transformers mainly supply power to rectifier equipment in industries such as hydrogen production, chemicals, and steel, with a wide range of application scenarios. To optimize the DC voltage waveform, reduce interference from high-order harmonics of rectifier equipment on the power grid and communication devices, and improve the power factor of the equipment, the number of phases on the valve side can be upgraded to six-phase or twelve-phase, increasing the number of rectification pulses and effectively suppressing harmonic pollution in the power grid.
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The vehicle-mounted mobile transformer can quickly replace a conventional substation and restore power supply when a grid fault occurs. It can also supplement capacity and reduce voltage during peak load periods to solve the problem of insufficient regional power supply capacity. In scenarios such as load growth exceeding planning expectations and postponed construction of permanent substations, it can serve as a temporary substation for transitional power supply assurance. This equipment is easy to transport, highly integrated, flexible, and reliable, requiring no land acquisition, civil construction, or large-scale installation investment, effectively saving construction costs and significantly improving the reliability of grid power supply.
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