DocumentCode :
1030512
Title :
Development of a millimeter-wave ferrite-filled antisymmetrically biased rectangular waveguide phase shifter embedded in low-temperature cofired ceramic
Author :
Bray, Joey R. ; Roy, Langis
Author_Institution :
Dept. of Electron., Carleton Univ., Ottawa, Ont., Canada
Volume :
52
Issue :
7
fYear :
2004
fDate :
7/1/2004 12:00:00 AM
Firstpage :
1732
Lastpage :
1739
Abstract :
The theory of a new ferrite-filled rectangular waveguide phase shifter is presented, showing that the device offers more than twice the maximum phase shift of a classical dual-slab ferrite-loaded waveguide phase shifter. The complete analytical field derivation of the new phase shifter is presented. The prototype 36-GHz phase shifter has been completely embedded in an uncharacterized experimental low-temperature cofired ferrite ceramic material, essentially becoming an integral part of a chip package. The fabricated prototype is only 3.5-cm long, 5-mm wide, and 1-mm high. Preliminary measurements of the nonoptimized prototype reveal a controllable, nonreciprocal phase shift of 52.8° at 36 GHz for a bias current of 500 mA, and an insertion loss of approximately 3.6 dB, including transition loss. This paper marks the first time that a ferrite waveguide phase shifter has been realized as a lightweight, compact, and rugged module that can be easily mass produced at low cost. Since it is embedded in a package, the phase shifter can be readily integrated with other active and passive system components that would ideally be contained within the same package.
Keywords :
ceramic packaging; chip scale packaging; ferrite-loaded waveguides; millimetre wave phase shifters; rectangular waveguides; waveguide components; 3.6 dB; 36 GHz; 500 mA; Fe2O3; active system components; cofired ferrite ceramic material; compact phase shifter; ferrite-filled rectangular waveguide phase shifter; integrated chip package; lightweight phase shifter; nonreciprocal phase shift; passive system components; prototype fabrication; rugged module phase shifter; transition loss; Ceramics; Current measurement; Ferrites; Loss measurement; Packaging; Phase measurement; Phase shifters; Prototypes; Rectangular waveguides; Waveguide theory; Ferrite phase shifters; LTCC; LWG; laminated waveguide; low-temperature cofired ceramic; millimeter-wave phase shifters;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2004.830489
Filename :
1310671
Link To Document :
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