DocumentCode :
762015
Title :
Metal strip reflectivity and NSPUDT orientations in langanite, langasite, and gallium phosphate
Author :
Da Cunha, Maurício Pereira ; de A Fagundes, S.
Author_Institution :
Dept. of Electr. & Comput. Eng., Maine Univ., Orono, ME, USA
Volume :
49
Issue :
6
fYear :
2002
fDate :
6/1/2002 12:00:00 AM
Firstpage :
815
Lastpage :
819
Abstract :
New materials of the trigonal 32 class have received much attention recently, due to their quartz-like temperature behavior and the promise of higher electromechanical coupling coefficients. The magnitude and phase of the reflection coefficient of the metal strips that form the SAW transducers and reflector structures is a critical parameter that allows proper device designs and optimal material surface orientation. This paper describes an investigation of the magnitude and phase of the SAW metal strip reflectivity in some new materials and along now orientations. The materials are langanite, langasite, and gallium phosphate. The results are presented as contour plots of the magnitude and phase of the reflection coefficient. In addition, the phase velocity, temperature coefficient of delay, electromechanical coupling coefficient, and power flow angle are given, thus allowing proper orientation selection for SAW device designs. The results presented highlight the reflection coefficient calculations in the selection of natural single-phase unidirectional transducer orientations (NSPUDT) for these new materials. The orientation regions suggested in this paper for the new materials are thus very promising for low-loss, high-performance consumer and communications SAW designs, such as NSPUDT filters, resonator-based filters, and other devices that can benefit from a high metal strip reflectivity.
Keywords :
gallium compounds; lanthanum compounds; reflectivity; surface acoustic wave devices; surface acoustic wave transducers; ultrasonic reflection; GaPO/sub 4/; La/sub 3/Ga/sub 5.5/Nb/sub 0.5/O/sub 14/; La/sub 3/Ga/sub 5/SiO/sub 14/; NSPUDT orientation; SAW device designs; SAW reflector structures; SAW transducers; electromechanical coupling coefficients; langanite; langasite; metal strip reflectivity; natural single-phase UDT; optimal material surface orientation; optimum reflection coefficient phase criterion; orientation selection; phase velocity; power flow angle; quartz-like temperature behavior; reflection coefficient; reflectivity magnitude; reflectivity phase; resonator-based filters; temperature coefficient of delay; temperature insensitivity characteristic; trigonal 32 class materials; unidirectional transducer orientations; Delay; Inorganic materials; Load flow; Reflection; Reflectivity; Resonator filters; Strips; Surface acoustic waves; Temperature; Transducers;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2002.1009341
Filename :
1009341
Link To Document :
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