>400kVA Range
HET 500kVA/60kV,13.7kV,10kV Exciter Transformer
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HET 500kVA/60kV,13.7kV,10kV Exciter Transformer

Lead time: 30 days

Mode: HET 500kVA/60kV,13.7kV,10kV
Rated capacitance: 500kVA
Rated frequency: 50Hz
Single phase
Cooling methods: ONAN
Rated voltage: Input voltage: 10 kV
Output voltage: 13.7kV/60kV (tap voltage ,test with water termination)
Input current: 50A
HV current: 36.6A/4A(tap current)
Impedance voltage: < 6%
Shielding methods: Set electrostatic shield layer between HV windings.

HET 500kVA/60kV,13.7kV,10kV Exciter Transformer,Inductance Resonant System HET 500kVA/60kV,13.7kV,10kV Exciter Transformer,Inductance Resonant System

HET 500kVA/60kV,13.7kV,10kV Exciter Transformer,Inductance Resonant System HET 500kVA/60kV,13.7kV,10kV Exciter Transformer,Inductance Resonant System


Exciter transformer protection: equip piezoresistor for each HV output, exciter transformer’s input and output terminal connects with the ground via zinc oxide arrester, this methods can protect the operator and the equipment itself when test object breakdown. Exciter transformer insulation characteristic: Exciter transformer insulation level will determined transformer’s safety work and insulation ageing speed. To guarantee no flashover- which coming from external, electric potential raise and cause damage to the main insulation and minor insulation. We will also set insulation layer between HV windings and turn-to-turn. Winding is cylinder type. Capacitance is determined by the winding’s area. When design, we’d try our best to make sure the top and bottom has same area, and compensate with electrostatic shield to improve the initial voltage distribution. Winding skeleton is made of compound insulation tube: can get down partial discharge and shielding the iron coil.

Principle Diagram: 

  
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