DocumentCode :
3215995
Title :
Parametric design of folded waveguide for a 60GHz high efficient traveling-wave tubes
Author :
Yang Liu ; Yu-bin Gong ; Yan-yu Wei ; Jin Xu ; Zhao-yun Duan ; Wen-xiang Wang
Author_Institution :
Vacuum Electron. Nat. Lab., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
fYear :
2010
fDate :
14-16 Oct. 2010
Firstpage :
249
Lastpage :
250
Abstract :
Characterized with full-metal structure, low RF loss, broad bandwidth and relatively high output power, folded waveguide (FW) is considered as a prospective slow-wave structure for traveling-wave tubes (TWTs) at millimeter and sub-millimeter wave range. In this paper, a high efficient FW slow-wave structure is designed for 60GHz central frequency TWT. Firstly, cold-test properties such as phase velocity, beam-wave interaction impedance and cold circuit attenuation are studied and optimized by 3D simulator. Based on the detailed cold-test simulation, the optimized structural parameters for the FW circuit with high interaction impedance, low cold-test attenuation and fairly flat phase velocity dispersion are obtained. And then, the beam-wave interaction simulation is also carried out with the PIC code in CST Particle Studio, to obtain the beam-wave interaction efficiency and saturated output power for lossy FW circuit with constant-period structure. In order to improve the beam-wave interaction and saturated output power further, varying-period structure is adopted. It shows that the saturated output power and beam-wave interaction efficiency are are greatly improved and also the input power at saturation is lower at the 58~62GHz frequency range when we adopt the varying-period FW structure. The detailed analysis will be reported in the full manuscript.
Keywords :
slow wave structures; 3D simulator; CST Particle Studio; PIC code; beam-wave interaction efficiency; beam-wave interaction impedance; beam-wave interaction simulation; cold circuit attenuation; cold-test property; cold-test simulation; flat phase velocity dispersion; folded waveguide slow-wave structure; frequency 58 GHz to 62 GHz; full-metal structure; parametric design; prospective slow-wave structure; traveling-wave tubes;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Electron Sources Conference and Nanocarbon (IVESC), 2010 8th International
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-6645-0
Type :
conf
DOI :
10.1109/IVESC.2010.5644194
Filename :
5644194
Link To Document :
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