DocumentCode
2068692
Title
Surface breakdown and surface flashover characteristics of diamond and DLC thin films on dielectric substrates in vacuum
Author
Kirkici, Hulya ; Noles, Daniel W.
Author_Institution
Auburn Univ., AL, USA
Volume
1
fYear
1997
fDate
19-22, Oct 1997
Abstract
Summary form only given. Polycrystalline diamond and diamond-like carbon (DLC) thin films are becoming attractive candidates for protective coatings and as dielectric materials in the space environment because they are excellent electrical insulators, exceptional thermal conductor materials, and are also highly resistive to chemical attacks. Therefore, the design and development of high voltage devices using diamond in vacuum requires a sound understanding of surface flashover phenomena across solid insulators supporting the “high voltage” electrodes. In this work, the authors present experimental results identifying some surface flashover characteristics of polycrystalline diamond and DLC thin films deposited on different dielectric materials such as quartz, silicon nitride, and cubic boron nitride in space vacuum conditions. These samples were produced by a microwave plasma deposition technique, the electrodes were copper, and a dc voltage was applied between the electrodes
Keywords
carbon; diamond; electric breakdown; flashover; insulating thin films; plasma deposited coatings; BN; C; Si3N4; SiO2; chemical attack; cubic boron nitride; diamond-like carbon thin film; dielectric material; dielectric substrate; electrical insulator; high voltage electrode; microwave plasma deposition; polycrystalline diamond thin film; protective coating; quartz; silicon nitride; space vacuum; surface breakdown; surface flashover; thermal conductor; Conducting materials; Diamond-like carbon; Dielectric materials; Dielectric thin films; Dielectrics and electrical insulation; Electric breakdown; Electrodes; Flashover; Protection; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical Insulation and Dielectric Phenomena, 1997. IEEE 1997 Annual Report., Conference on
Conference_Location
Minneapolis, MN
Print_ISBN
0-7803-3851-0
Type
conf
DOI
10.1109/CEIDP.1997.634567
Filename
634567
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