DocumentCode :
76378
Title :
Optimized Multipactor-Resistant Wedge-Shaped Waveguide Bandpass Filters
Author :
Gonzalez, Jaime Hueso ; Garcia-Baquero, David Raboso ; Ernst, C. ; Schmitt, Dietmar ; Esbert, Vicente E. Boria ; Martinez, Benito Gimeno ; Calduch, Mariam Taroncher ; Quiles, Carlos Vicente
Author_Institution :
European Patent Office, Rijswijk ZH, The Netherlands
Volume :
41
Issue :
8
fYear :
2013
fDate :
Aug. 2013
Firstpage :
2135
Lastpage :
2144
Abstract :
Wedge-shaped waveguides present a certain advantage with respect to rectangular waveguides regarding their resistance to multipactor discharges. In this paper, the optimal configuration for the wedge geometry is investigated based on theoretical results, on a precise multipactor prediction tool, and on previous experience. In addition, design rules are presented, which allow us to achieve for wedge-shaped filters electrical performances comparable to the ones of rectangular waveguide filters, while at the same time improving the multipactor-free power range. As a proof of concept, two three-pole bandpass filters with equivalent electrical characteristic of 150-MHz bandwidth, centered at 12 GHz (Ku band), and the same Q factor have been designed, manufactured, and tested. The first design is based on conventional rectangular waveguide technology, while the second one has non-parallel broadside walls (wedge-shaped cross section). The multipactor power threshold and RF performance of the filters have been measured in order to validate the improvements achievable employing wedge-shaped resonators.
Keywords :
Band-pass filters; Circuit synthesis; Cutoff frequency; Discharges (electric); Microwave filters; Rectangular waveguides; Space technology; Bandpass filters; circuit synthesis; microwave filters; multipactor (MP); space technology; vacuum breakdown;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2013.2253134
Filename :
6576256
Link To Document :
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