• Modular Reactor Resonance System For AC Routine Test Manufacturers, Modular Reactor Resonance System For AC Routine Test Factory, Supply Modular Reactor Resonance System For AC Routine Test
  • Modular Reactor Resonance System For AC Routine Test Manufacturers, Modular Reactor Resonance System For AC Routine Test Factory, Supply Modular Reactor Resonance System For AC Routine Test
  • Modular Reactor Resonance System For AC Routine Test Manufacturers, Modular Reactor Resonance System For AC Routine Test Factory, Supply Modular Reactor Resonance System For AC Routine Test
Modular Reactor Resonance System For AC Routine Test
  • FSHV / LEIYU
  • CHINA
  • 60-120 Days
  • IRST

For routine testing of high and ultra-high voltage cables up to 800 kV in accordance with IEC 60840 and IEC 62067, and inspection testing of high and ultra-high voltage cables and cable assemblies up to 1600 kV in accordance with IEC 60840 and IEC 62067.

Cylinder modular type power frequency HVAC resonant test systems are designed to compensate capacitance in testing circuit precisely by adjusting inductance of HV reactors, and output continuous AC voltage of power frequency (50/60Hz), mainly for factory testing of high and ultra-high voltage cables, power transformers, GIS, etc.

 

They use resonance between capacitive test object and inductive HV reactor of test system, adjust inductance of HV reactor to form a series resonant circuit with test load, resulting in an ideal sinusoidal resonance voltage. The natural resonance frequency of test circuit is matched to feed-in mains frequency 50/60 Hz by tuning inductance of HV reactor.

 

The oil-cooled HV reactor is installed in a closed container made of steel and insulating cylinders.

The module setup enables you to connect the reactors in series or in parallel for extending the range of voltage and/or current. The individual modules can be installed above or next to one another.

 

As part of a series resonant circuit, these systems provide undistorted high voltage. And because the systems are designed to have high quality factor (Q), low input power is required (1/Q) which results in lower installation and operating costs.


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