DocumentCode
1052316
Title
Resonator filters using shear horizontal-type leaky surface acoustic wave consisting of heavy-metal electrode and quartz substrate
Author
Kadota, Michio ; Yoneda, Toshimaro ; Fujimoto, Koji ; Nakao, Takeshi ; Takata, Eiichi
Author_Institution
Murata Mfg. Co. Ltd., Kyoto, Japan
Volume
51
Issue
2
fYear
2004
Firstpage
202
Lastpage
210
Abstract
The authors have succeeded in exciting a new type of leaky surface acoustic wave (LSAW) having only a shear horizontal (SH) component that has a large electromechanical coupling factor, a large reflection coefficient, and excellent temperature stability, by combining interdigital transducers (IDTs) and reflectors made of heavy-metal films such as gold (Au), tantalum (Ta), and tungsten (W) on the ST-cut 90/spl deg/ X propagation (direction perpendicular to the X-axis) quartz substrate. This LSAW does not have a propagation decay. The square of the electromechanical coupling factor is 2.1-2.7 times larger than, the reflection coefficient is 30 times larger than, and the temperature characteristic is the same as those of a Rayleigh wave on an ST-cut X propagation quartz substrate. The authors applied this SH LSAW to resonators and resonator filters. As a result, we succeeded in developing the low loss and very small-sized resonators and resonator filters (1/5-1/4 of conventional device sizes) with IDTs with a small number of finger pairs and very small reflectors, for the first time.
Keywords
electrodes; gold; interdigital transducers; surface acoustic wave resonator filters; tantalum; tungsten; Au; LSAW; Rayleigh wave; SiO/sub 2/; Ta; W; X propagation; electromechanical coupling factor; gold; heavy metal electrode; heavy metal films; interdigital transducers; leaky surface acoustic wave; propagation decay; quartz substrate; reflection coefficient; resonator filters; shear horizontal component; small reflectors; tantalum; temperature stability; tungsten; Acoustic reflection; Acoustic transducers; Acoustic waves; Electrodes; Gold; Optical films; Resonator filters; Stability; Surface acoustic waves; Temperature;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2004.1320768
Filename
1320768
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