DocumentCode :
1485593
Title :
Ferrite-Filled Antisymmetrically Biased Rectangular Waveguide Isolator Using Magnetostatic Surface Wave Modes
Author :
Seewald, Christopher K. ; Bray, Joey R.
Volume :
58
Issue :
6
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1493
Lastpage :
1501
Abstract :
The complex dispersion diagram of an antisymmetrically biased ferrite-filled rectangular waveguide (RWG) is investigated, revealing that the waveguide supports a band-limited unidirectional magnetostatic surface wave mode. This mode is subsequently used to design a novel RWG isolator. A parametric analysis including loss is performed to characterize the isolation band. A prototype waveguide isolator has been fabricated using a small metallized ferrite substrate measuring 30-mm long, 6-mm wide, and 0.8-mm high. Measurements in the 10-20-GHz range confirm the theory and mark the first time that a ferrite isolator has been built using a completely filled RWG. The fabricated 6-mm-long waveguide isolator provides a peak isolation figure-of-merit (IFM) of 42.5 dB at 15.4 GHz. An IFM of over 16.2 dB is sustained from 15.2 to 18.3 GHz (18.5% bandwidth). The simplicity of this compact isolator makes it amenable to package-scale integration, such as in ferrite low-temperature co-fired ceramic, where it could be readily embedded within a multichip package.
Keywords :
ceramics; ferrite isolators; firing (materials); magnetostatic surface waves; multichip modules; packaging; rectangular waveguides; substrates; RWG isolator; antisymmetrically biased rectangular waveguide; compact isolator; complex dispersion diagram; ferrite filled rectangular waveguide isolator; frequency 10 GHz to 20 GHz; isolation band; low-temperature co-fired ceramic; magnetostatic surface wave modes; multichip package; package scale integration; parametric analysis; size 6 mm; small metallized ferrite substrate; unidirectional magnetostatic surface wave; Ferrite isolators; magnetostatic surface waves (MSWs); nonreciprocal wave propagation; rectangular wave guides (RWGs);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2010.2047919
Filename :
5460940
Link To Document :
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