Electrical transmission or interconnection systems – Nonlinear reactor systems – Parametrons
Patent
1988-05-20
1989-09-19
Heyman, John S.
Electrical transmission or interconnection systems
Nonlinear reactor systems
Parametrons
328 65, 328221, 307314, 315289, H01J 744, H03K 1716, H03K 17288
Patent
active
048689114
ABSTRACT:
A vacuum gap switch is closely coupled with a saturable inductor, providing the high voltage standoff triggering range, and very fast recovery of a vacuum switch, without the drawbacks of poor turn-on performance, large jitter, and high power dissipation usually seen in vacuum gap switches.
REFERENCES:
patent: 3181012 (1965-04-01), Rennie
patent: 3181071 (1965-04-01), Smith et al.
patent: 3737679 (1973-06-01), Cooper
Lumped Circuit Ferrite Pulse Sharpener, M. Weiner et al., Pulsed Power Conf., 1983, pp. 150-154.
Magnetic Pulse Compression for Copper-Vapor Lasers, R. A. Petr et al., Pulsed Power Conf., 1983, pp. 236-241.
Design Considerations of Magnetic Switching Modulator, E. Y. Chu, Pulsed Power Conf., 1983, pp. 242-245.
Low-Pressure Gas Discharge Switches for Use in Fusion Experiments, R. Hancox et al., Proc. IEE, vol. 111, No. 1, Jan. 1964, pp. 203-213.
Plasma Buildup and Breakdown Delay in Triggered Vacuum Gap, A. J. Green et al., IIEE Transactions on Plasma Science, vol. PS-7, No. 2, Jun. 1979, pp. 111-115.
The Initiation of Electrical Breakdown in Vacuum--A Review, D. K. Davies, J. Vac. Sci. Technol., vol. 10, No. 1, Jan./Feb. 1973, pp. 115-121.
Studies on a Laser-Triggered, High-Voltage, High-Vacuum Switch Tube, R. J. Clark et al., 1967, pp. 367-372.
Firing Characterisitcs of a Triggered Vacuum Gap Employing a Dielectric Coated with a Semiconducting Layer, G. R. Govinda Raju et al., Journal of Applied Physics, vol. 48, No. 3, Mar. 1977, pp. 1101-1105.
Heyman John S.
University of South Carolina
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