DocumentCode :
2913874
Title :
Circuit based models for understanding breakdown in a high pressure vortex waterwall argon arc lamp
Author :
Yan, W. ; Dawson, F.P.
Author_Institution :
Dept. of Electr. & Comput. Eng., Toronto Univ., Ont., Canada
fYear :
1996
fDate :
3-5 June 1996
Firstpage :
122
Abstract :
Summary form only given. Vortex water wall high pressure argon arc lamps are used to generate intense light and are capable of operating at radiative efficiencies greater than 50%. These lamps are being considered for use in a pulsed DC mode of operation in the next generation of rapid thermal processing applications. The design of an ignition power supply for this type of system poses special problems because of the electrically conducting inner water wall. The lamp head consists of a tungsten coated copper cathode, an anode located 150 mm from the cathode and a hemispherical metallic ground plane located 1 mm from the outside surface of the cylindrical glass envelope. A field enhancing pointed tip is attached to the shaft of the cathode and the anode electrode is recessed within a cylindrical metal shroud. The plasma is initiated at the pointed tip, then slides along the water wall surface before finally traversing the gap between the water wall and the anode electrode. An improved understanding of how to design the ignition power supply has been obtained by proposing three circuit based models to describe the breakdown process.
Keywords :
argon; 150 mm; Ar; RTP applications; W coated Cu cathode; W-Cu; breakdown process; circuit based models; cylindrical glass envelope; electrically conducting inner water wall; field enhancing pointed tip; hemispherical metallic ground plane; high pressure Ar arc lamp; ignition power supply; interelectrode gap; microgap discharge switches; overvoltage; pulsed DC mode; quasistatic model; sliding discharge mode; transmission line; voltage distribution; vortex waterwall type; Anodes; Argon; Cathodes; Circuits; Electric breakdown; Electrodes; Ignition; Lamps; Power supplies; Pulsed power supplies;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Science, 1996. IEEE Conference Record - Abstracts., 1996 IEEE International Conference on
Conference_Location :
Boston, MA, USA
ISSN :
0730-9244
Print_ISBN :
0-7803-3322-5
Type :
conf
DOI :
10.1109/PLASMA.1996.550270
Filename :
550270
Link To Document :
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