FIELD: electricity.
SUBSTANCE: invention relates to contact and remote weapons with electric facility of target killing (electric shockers), and also to procedure of production of electric pulses of high voltage at high current force, for instance, in devices of electric hydraulic discharge, devices of electric thermal throwing, in other devices, where electric discharge is required with high piercing distance in gases and materials at high force of current in circuit. High-voltage pulse generator comprises parallel autonomous source of supply, converter of DC voltage of supply source into DC voltage of 600-6000 V and accumulating capacitor, and also containing circuit of high-voltage switch in the form of air or gas discharger or thyristor and low-voltage winding of high-voltage winding of high-voltage pulse transformer, connected parallel to output of DC voltage converter, additional accumulating capacitor charged from specified converter via diode and installed parallel to high-voltage winding of high-voltage pulse transformer, output electrodes, connected to ends of high-voltage winding, and air or gas discharger, included into discharge circuit of additional capacitor, at the same time high-voltage winding has two separate mutually isolated sections, both leads of both sections of high-voltage winding are connected to each other by two circuits made of diode connected in series with additional accumulating capacitor, at the same time one lead of diode of the first circuit is connected directly to one plate of specified additional accumulating capacitor, and one lead of diode of the second circuit is connected directly to the other plate of additional accumulating capacitor, the other output of diode of the first circuit is connected to one output electrode, and the other lead of diode of the second circuit is connected to the other output electrode, low-voltage and high-voltage windings of high-voltage pulse transformer are connected to lead of specified DC voltage converter and diodes.
EFFECT: increased efficiency and safety of generator operation.
9 cl, 3 dwg
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Authors
Dates
2011-01-27—Published
2009-12-23—Filed