Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities

Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities

  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
Summary
The Excitation System is a high-performance solution designed for hydro-generators in power plants and industrial facilities. Featuring a standard embedded structure, 3-phase fully-controlled bridge, and self-adaptive regulating method, it ensures precise control and stable operation under diverse conditions. This system delivers reliable excitation current to rotor windings, enabling efficient magnetic field establishment for synchronous motors used in large and medium pumps, ball mills, air compressors, and more. With dual-bridge and multi-bridge configurations available, it supports high-power applications with a current-equalizing coefficient above 0.95. The system supports unattended operation, making it ideal for modern energy infrastructure. Its advanced features include touch screen display, impulse driving capability, comprehensive protection functions, and dual-power supply redundancy, ensuring long-term reliability and performance in critical energy systems.More
Specifications
Structure:
Standard embedded structure
Bridge Type:
3-phase fully-controlled bridge
Regulating Method:
Self-adaptive regulating method
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities
  • Excitation System Standard Embedded Structure 3-Phase Fully-Controlled Bridge Self-Adaptive Regulating Method for Hydro-Generators in Power Plants and Industrial Facilities

The excitation system is mainly to provide current into the rotor windings of the hydro-generator to establish a magnetic field The direct current is usually used for building the magnetic field

It is to regulate and control the excitation system of the brush synchronous motor of all kinds of factories, mines and enterprises of each load and capacity, such as the synchronous motor of large and medium pumps, ball mill, air compressor, etc It can work under different operation conditions of power plants, mines and factories and realize Unattended Operation (few on-duty)

1 Standard embedded structure 2 3-phase fully-controlled bridge 3 Self-adaptive regulating method 4 For the large power, it can be designed with the dual bridges or the multi-bridges 5 Multi-bridge current-equalizing coefficient > 0 95 6 Direct display (touch screen being optional) 7 Great impulse driving capability 8 Complete self-check function 9 Complete limiting protection function 10 Reliable dual-power supply

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