DocumentCode :
1156330
Title :
Wideband Microwave Filters Using Ferromagnetic Resonance Tuning in Flip-Chip YIG-GaAs Layer Structures
Author :
Tsai, Chen S. ; Qiu, Gang
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of California, Irvine, CA
Volume :
45
Issue :
2
fYear :
2009
Firstpage :
656
Lastpage :
660
Abstract :
In this paper the most recent advances on ferromagnetic resonance (FMR)-based wideband microwave band-stop and band-pass filters using flip-chip yttrium iron garnet (YIG)/gadolinium gallium garnet (GGG)- gallium arsenide (GaAs) layer structures are reported. Specifically, simultaneous enhancement in tunable bandwidths and peak absorption levels by utilizing the meander microstrip line with step-impedance low-pass filter design together with inhomogeneous magnetic field has been accomplished. For example, an ferromagnetic resonance absorption frequency tuning range of 5 to 21 GHz, an absorption level of -35.5 dB and a corresponding 3 dB absorption bandwidth as large as 1.70 GHz, centered at 20.3 GHz, have been accomplished with the band-stop filter. For the band-pass filter large tuning ranges for the center frequency (5.90-17.80 GHz), the pass-band bandwidth (1.27-2.08 GHz) as well as the two guarding stop-bandwidths (0.45-1.70 GHz), and an out-of-band rejection of -33.5 dB were demonstrated. A good agreement between the simulation and experimental results has been achieved. Finally, some desirable measurement data on the microwave power capability and the magnetic tuning speed of the filters has also been obtained.
Keywords :
band-pass filters; band-stop filters; ferromagnetic resonance; flip-chip devices; gadolinium compounds; gallium arsenide; garnets; low-pass filters; microwave filters; yttrium compounds; YIG-GaAs; band-pass filters; band-stop filter; ferromagnetic resonance tuning; flip-chip layer structures; frequency 5 GHz to 21 GHz; gadolinium gallium garnet; meander microstrip line; step-impedance low-pass filter design; wideband microwave filter; Bandpass filters; bandstop filters; ferromagnetic resonance; tunable YIG filters;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2008.2010466
Filename :
4782089
Link To Document :
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