DocumentCode :
1763025
Title :
Design of a W-band Gyro-TWT Amplifier With a Lossy Ceramic-Loaded Circuit
Author :
Chao Hai Du ; Tsun-Hsu Chang ; Pu Kun Liu ; Yi Chen Huang ; Pin Xian Jiang ; Shou Xi Xu ; Zhi Hui Geng ; Bao Liang Hao ; Liu Xiao ; Gao Feng Liu ; Zheng Di Li ; Shao Hui Shi
Author_Institution :
Sch. of Electron. Eng. & Comput. Sci., Peking Univ., Beijing, China
Volume :
60
Issue :
7
fYear :
2013
fDate :
41456
Firstpage :
2388
Lastpage :
2394
Abstract :
A pulse prototype of a W-band TE01 mode gyrotron traveling-wave tube (gyro-TWT) amplifier is designed, and it features high gain and broadband capabilities. The TE01 mode input coupler is constructed by mounting a sapphire pill-box window onto a Y-type mode converter. The high power output window will employ a triple-sapphire-disc configuration to achieve return loss lower than -30 dB over a bandwidth of 8 GHz. To suppress the spurious oscillations and realize high-average power potential, a new lossy ceramic material with weak electric conductivity is loaded in the TE01 mode cylindrical interaction waveguide. The loss-free output taper is carefully optimized to suppress oscillations and maintain broadband amplification. Employing a magnetic injection gun of beam voltage 70 kV, beam current 3 A, pitch factor 1.5, and axial-velocity spread 5%, theoretical investigation predicts that the gyro-TWT amplifier is of excellent performance, which includes being driven to saturation with input power Pin <; 0.4 W, highest efficiency of 32.4%, and the bandwidth of 4.2 GHz with output power exceeding 50 kW.
Keywords :
ceramics; cyclotron masers; electron guns; gyrotrons; microwave amplifiers; oscillations; sapphire; travelling wave amplifiers; travelling wave tubes; TE01 mode cylindrical interaction waveguide; TE01 mode input coupler; W-band TE01 mode gyrotron traveling-wave tube amplifier; W-band gyro-TWT amplifier; Y-type mode converter; axial-velocity spread; bandwidth 4.2 GHz; bandwidth 8 GHz; beam voltage; broadband amplification; broadband capability; current 3 A; efficiency 32.4 percent; high gain capability; high power output window; high-average power potential; loss-free output taper; lossy ceramic material; lossy ceramic-loaded circuit; magnetic injection gun; oscillation suppression; pitch factor; pulse prototype; return loss; sapphire pill-box window; spurious oscillation; triple-sapphire-disc configuration; voltage 70 kV; weak electric conductivity; Electron cyclotron maser; gyrotron; lossy ceramic; mode converter; traveling-wave amplifier;
fLanguage :
English
Journal_Title :
Electron Devices, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9383
Type :
jour
DOI :
10.1109/TED.2013.2264100
Filename :
6529134
Link To Document :
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