DocumentCode :
626021
Title :
Design and coldtest of high frequency interaction structure for X-band sheet beam klystron
Author :
Ding Zhao ; Cunjun Ruan ; Yuan Liang ; Shuzhong Wang ; Changqing Zhang ; Xiudong Yang
Author_Institution :
Key Lab. of High Power Microwave Sources & Technol., Inst. of Electron., Beijing, China
fYear :
2013
fDate :
21-23 May 2013
Firstpage :
1
Lastpage :
2
Abstract :
In order to build an X-band sheet beam klystron with the peak output power of 5 MW, a high frequency structure has been designed through the three dimensional particle-in-cell simulations. The design method is consist of two steps, which are firstly finding a stable single-arm output cavity with the high energy extraction ability and secondly constructing a multi-cavity bunching section to produce the required bunching beam for driving the output cavity. The high frequency structure was symmetrically manufactured on two separate copper plates. By using the perturbation hole and the tuning block, the working mode of each cavity can be determined and the corresponding resonant frequency can be modified to conform with the design value. This interaction structure has been applied in the prototype tube that is presently built and will be tested in the coming months.
Keywords :
klystrons; X-band sheet beam klystron; cold testing; copper plate; high energy extraction ability; high frequency interaction structure; multicavity bunching beam section; perturbation hole; power 5 kW; prototype tube; resonant frequency; single-arm output cavity; three dimensional particle-in-cell simulation; tuning block; Cavity resonators; Copper; Klystrons; Periodic structures; Ports (Computers); Power measurement; Resonant frequency; X-band; coldtest; interaction structure; sheet beam klystron;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Electronics Conference (IVEC), 2013 IEEE 14th International
Conference_Location :
Paris
Print_ISBN :
978-1-4673-5976-4
Type :
conf
DOI :
10.1109/IVEC.2013.6570996
Filename :
6570996
Link To Document :
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