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Jiangsu Dingxin Electric Co., Ltd.
Jiangsu Dingxin Electric Co., Ltd. specialize in the production of power equipment, with an annual production capacity of 50 million KVA. It mainly produces 110KV, 220KV and 500KV ultra-high voltage transformers, various dry-type transformers, oil-immersed transformers, amorphous alloy transformers, wind and solar energy storage transformers, prefabricated substations and reactors of various specifications with voltage levels of 35KV and below. , electric furnace transformer, rectifier transformer, mining transformer, split transformer, phase shift transformer and other special transformer, custom 2000KVA 22KV Epoxy Resin Three-Phase Dry-Type Transformer. company have successively passed IS09001, ISO14001, ISO45001, ISO19011 system certification. Among the customers we cooperate with are many urban and rural power grids, as well as petrochemical, metallurgical, textile enterprises, mines, ports, residential communities, etc. We have long-term cooperation with many well-known companies, and we are also qualified suppliers for many listed companies in the electrical industry. In order to achieve high-efficiency production control, we have our own production facility and strictly adhere to procedures like screening and auditing of raw material suppliers, testing of incoming materials, and comparison of incoming materials. Additionally, each batch of products is inspected and quality-controlled in strict accordance with the supplier's indicators. As OEM On Load Regulation Epoxy Resin Three-Phase Power Transformer Manufacturers and Factory in China, We can more readily satisfy customer demands for minimum order quantities, quality control, delivery times, etc.Product sales cover the national market and are exported to Europe, the United States, Australia, Indonesia, Russia, Africa, Vietnam and other countries.
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  • Business Licence
  • S22-M-250/10-Nx1 And Energy Efficiency Report
  • SCB18-800/10-NX1 And Energy Efficiency Report
  • SCB18-500/10-NX1 And Energy Efficiency Report
  • SCB18-2500/10-NX1 And Energy Efficiency Report
  • S13-M-1000/10KV Type Test Report
  • S13-M-1000/20KV Type Test Report
  • S13-M.RL-630/10KV Type Test Report
  • S13-M-200/10-NX1 Type Test Report
  • S13-M-400/10-NX1 Type Test Report
  • S13-M-630/10KV-NX1 Type Test Report
  • S11-M-1000/10KV Type Test Report
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Can Epoxy Resin Three-Phase Dry-Type Transformer adapt to harsh environments?
In the ever-evolving landscape of power distribution, the Epoxy Resin Three-Phase Dry-Type Transformer emerges as a technological marvel, uniquely equipped to navigate and thrive in harsh environmental conditions. As industries expand into diverse and challenging settings, the transformer's ability to adapt becomes a crucial factor. 
Resilience Against Moisture:
One of the primary challenges in harsh environments is the presence of moisture, which can compromise the integrity of transformers. The Epoxy Resin Three-Phase Dry-Type Transformer addresses this concern with its inherent resistance to moisture. The epoxy resin encapsulation acts as a protective barrier, preventing water ingress and ensuring the transformer's insulation properties remain robust, even in humid or wet conditions.
Chemical Resistance in Industrial Settings:
In industrial environments where exposure to chemicals is a constant, the chemical resistance of epoxy resin proves invaluable. These transformers excel in settings where corrosive substances may pose a threat to traditional transformers. The epoxy resin insulation ensures that the transformer remains unaffected by the corrosive impact of chemicals, contributing to prolonged operational life and reliability.
Adaptability to Corrosive Atmospheres:
Coastal areas and regions with high levels of airborne salt particles present a challenging atmosphere for transformers. The Epoxy Resin Three-Phase Dry-Type Transformer showcases adaptability to corrosive atmospheres, thanks to the protective properties of epoxy resin. The resin acts as a shield, minimizing the corrosive impact of salt-laden air and contributing to the transformer's longevity in coastal deployments.
Resistance to Dust and Dirt:
Harsh environments often entail elevated levels of dust and dirt, posing challenges to transformer performance. These transformers, with their epoxy resin encapsulation, resist the adhesion of dust and dirt particles. This resistance minimizes wear and tear on internal components, ensuring that the transformer operates efficiently even in dusty conditions, making it well-suited for deployments in arid environments.
Thermal Efficiency in Varying Temperatures:
Extreme temperature variations are a common feature of harsh environments. The Epoxy Resin Three-Phase Dry-Type Transformer excels in maintaining optimal operating temperatures. The efficient dissipation of heat, facilitated by the thermal conductivity of epoxy resin, ensures stable performance across a broad temperature range. This thermal efficiency contributes to the transformer's reliability, even in environments with extreme climatic conditions.
Versatility in Challenging Installations:
Whether installed in industrial facilities, coastal regions, or remote areas with limited access, the Epoxy Resin Three-Phase Dry-Type Transformer showcases versatility. The compact design enabled by epoxy resin insulation allows for easier transportation and installation in challenging settings, where available space may be limited or access may be restricted.
Sustainable Performance in Harsh Conditions:
The collective effect of epoxy resin's protective features is the sustainable performance of these transformers in harsh conditions. Their adaptability to environmental challenges ensures consistent and reliable power distribution, making them indispensable in applications where resilience is paramount.
The Epoxy Resin Three-Phase Dry-Type Transformer stands as a testament to the transformative capabilities of modern power distribution technology. Its adaptability to harsh environments, whether characterized by moisture, chemicals, dust, or extreme temperatures, positions these transformers as crucial components in building resilient and efficient power infrastructure. As industries continue to expand into challenging terrains, the adaptive prowess of these transformers becomes a cornerstone for sustainable and reliable energy distribution.

What are the applications of 2000KVA 22KVEpoxy Resin Three-Phase Dry-Type Transformer in the modern energy field?
The 2000KVA 22KV Epoxy Resin Three-Phase Dry-Type Transformer is not just a technological marvel; it represents a cornerstone in the evolution of power distribution systems. Its advanced features and robust design make it a versatile asset, finding applications in various facets of the modern energy field. Let's delve into the diverse applications that highlight the significance of this transformer in shaping the future of power distribution.
Renewable Energy Integration:
As the world embraces sustainable practices, the 2000KVA 22KV Epoxy Resin Three-Phase Dry-Type Transformer plays a pivotal role in renewable energy integration. Whether connected to solar farms, wind turbines, or other renewable sources, these transformers efficiently step up or down the voltage levels to facilitate seamless integration into the power grid. Their adaptability ensures a smooth transition from variable renewable sources to the stable power grid.
Smart Grids and Urban Installations:
The compact design and advanced insulation properties of epoxy resin make these transformers ideal for urban installations and smart grids. With cities evolving towards smarter and more connected energy infrastructures, the 2000KVA 22KV Epoxy Resin Three-Phase Dry-Type Transformer offers a space-efficient solution. Its ability to operate safely in urban environments, coupled with reduced maintenance needs, aligns with the requirements of modern, densely populated areas.
Industrial Power Distribution:
Industries demand robust and reliable power distribution solutions, and this transformer caters precisely to those needs. Its resistance to chemicals and adaptability to harsh industrial environments make it a preferred choice for manufacturing facilities, where resilience against environmental pollutants and corrosive substances is paramount. The transformer's high capacity ensures a steady and uninterrupted power supply for industrial operations.
Coastal Power Infrastructure:
In coastal regions where salt-laden air poses a challenge to traditional transformers, the 2000KVA 22KV Epoxy Resin Three-Phase Dry-Type Transformer shines. Its resistance to corrosive atmospheres, including airborne salt particles, makes it an excellent choice for power infrastructure near coastlines. The transformer's durability and longevity contribute to a reliable power supply in areas prone to challenging environmental conditions.
Data Centers and Critical Facilities:
Data centers and critical facilities require not only a stable power supply but also transformers that operate efficiently with minimal maintenance. The epoxy resin insulation ensures protection against dust and dirt, making the transformer suitable for installations in sensitive environments. Its compact design further allows for strategic placement within facilities where space optimization is crucial.
Energy-efficient Buildings and Infrastructure:
The transformer's eco-friendly profile aligns with the growing emphasis on energy efficiency in buildings and infrastructure. As modern constructions aim for greener energy solutions, the 2000KVA 22KV Epoxy Resin Three-Phase Dry-Type Transformer stands out for its environmental friendliness, contributing to a sustainable energy ecosystem.
Resilient Power Supply in Remote Areas:
In remote or off-grid areas where access to maintenance is limited, the transformer's reduced maintenance requirements and adaptability to harsh conditions ensure a resilient power supply. Its robust design allows it to operate efficiently even in challenging terrains, contributing to electrification initiatives in remote regions.
The applications of the 2000KVA 22KV Epoxy Resin Three-Phase Dry-Type Transformer span across the spectrum of the modern energy field. From facilitating renewable energy integration to powering critical infrastructure and ensuring reliable supply in challenging environments, this transformer emerges as a linchpin in building a sustainable and efficient energy future. As the energy landscape continues to evolve, the versatility and resilience of these transformers position them as key enablers of progress in the dynamic field of power distribution.