DocumentCode :
787680
Title :
Diamond-studded helical traveling wave tube
Author :
Dayton, James A., Jr. ; Mearini, Gerald T. ; Chen, Hsiung ; Kory, Carol L.
Author_Institution :
GENVAC AeroSpace Corp., Cleveland, OH, USA
Volume :
52
Issue :
5
fYear :
2005
fDate :
5/1/2005 12:00:00 AM
Firstpage :
695
Lastpage :
701
Abstract :
A novel method of millimeter-wave traveling wave tube (TWT) slow-wave circuit fabrication, employing laser micromachining and the in situ growth of diamond studs as an insulating dielectric, has been developed, which would enable a new class of very wideband, low distortion, high-efficiency amplifiers. Because the slow-wave circuit is supported by an array of diamond studs, rather than the conventional dielectric rods, we have named this novel device the diamond-studded TWT. Diamond strips have been successfully grown on a molybdenum tube and a diamond-studded helix has been produced using laser micromachining. Computer analysis of the slow-wave structure indicate that this fabrication technique leads naturally to a circuit with nearly flat dispersion over a frequency range, in some configurations, of more than four octaves. Typically, wide bandwidth can only be achieved by reducing efficiency; however, this fabrication technique increases the interaction impedance of the circuit, enabling high efficiency operation without sacrificing bandwidth. The very low dispersion also results in a coupling impedance that is relatively insensitive to frequency that may enable low reflection coupling over a wide frequency band. The resulting slow-wave circuit is essentially a brazed structure and, therefore, inherently robust thermally and mechanically. The manufacturing technology being pursued is applicable to any millimeter-wave helical or helix-derived TWT.
Keywords :
carbon compounds; diamond; laser beam machining; micromachining; millimetre wave tubes; slow wave structures; travelling wave amplifiers; travelling wave tubes; CVD diamond; TWT; diamond studs; dielectric rods; fabrication technique; helical traveling wave tube; high-efficiency amplifiers; insulating dielectric; laser micromachining; millimeter-wave traveling wave tube; molybdenum tube; selective diamond growth; slow-wave circuit fabrication; Bandwidth; Coupling circuits; Dielectrics and electrical insulation; Frequency; Impedance; Laser noise; Micromachining; Millimeter wave circuits; Millimeter wave technology; Optical device fabrication; CVD diamond; laser micromachining; selective diamond growth; traveling wave tube (TWT);
fLanguage :
English
Journal_Title :
Electron Devices, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9383
Type :
jour
DOI :
10.1109/TED.2005.845863
Filename :
1424349
Link To Document :
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