DocumentCode :
1065950
Title :
A gyrotron-traveling-wave tube amplifier experiment with a ceramic loaded interaction region
Author :
Garven, Morag ; Calame, J.P. ; Danly, Bruce G. ; Nguyen, Khanh T. ; Levush, Baruch ; Wood, F.N. ; Pershing, Dean E.
Author_Institution :
Vacuum Electron. Branch, US Naval Res. Lab., Washington, DC, USA
Volume :
30
Issue :
3
fYear :
2002
fDate :
6/1/2002 12:00:00 AM
Firstpage :
885
Lastpage :
893
Abstract :
The design and experimental study of a 35-GHz gyrotron-traveling-wave tube (gyro-TWT) amplifier operating in the circular TE01 mode at the fundamental cyclotron harmonic are presented. The interaction circuit in this experiment consisted of a new type of ceramic loading that provided the required loss for stable operation. A saturated peak power of 137 kW was measured at 34.1 GHz, corresponding to a saturated gain of 47.0 dB and an efficiency of 17%, with a -3-dB bandwidth of 1.11 GHz (3.3%). Peak output powers in the range of 102.1 to 148.6 kW with -3-dB bandwidths of 1.26 and 0.94 GHz, respectively, were measured by varying the operating parameters. The gyro-TWT was found to be zero-drive stable at these operating points, demonstrating that ceramic loading is a highly effective means of suppressing spurious oscillations in gyro-TWTs. This type of ceramic loading has the added advantage of being compatible with high average power operation.
Keywords :
ceramics; gyrotrons; millimetre wave amplifiers; travelling wave amplifiers; travelling wave tubes; 137 kW; 17 percent; 34.1 GHz; 35 GHz; 47.0 dB; bandwidth; ceramic loaded interaction region; ceramic loading; circular TE01 mode; efficiency; gyro-traveling wave tube; gyrotron-traveling-wave tube amplifier; high average power operation; millimeter-wave amplifier; operating parameters; peak output powers; saturated gain; saturated peak power; spurious oscillations suppression; zero-drive stable gyro-TWT; Bandwidth; Ceramics; Gain; High power amplifiers; Laboratories; Millimeter wave radar; Power generation; Power system harmonics; Tellurium; Thermal conductivity;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2002.801650
Filename :
1158320
Link To Document :
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