DocumentCode :
3507386
Title :
A new accurate analysis of periodic IDTs built on unconventional orientation on quartz
Author :
Ventura, Pascal ; Hodé, Jean-Michel
Author_Institution :
Thomson Microsonics, Sophia-Antipolis, France
Volume :
1
fYear :
1997
fDate :
5-8 Oct 1997
Firstpage :
139
Abstract :
The analysis of periodic IDTs built on arbitrarily crystal oriented piezoelectric substrates requires the computation of a few fundamental parameters: the acoustic wave phase velocity, the strip reflectivity, the electromechanical coupling coefficient, the phase difference between transduction and reflection centers and the static capacitance. In this paper, we will show that, using a rigorous combined FEM/BEM numerical model for an infinite periodic structure based on the harmonic admittance concept, together with the general P-matrix formalism, it is possible to compute with a very good accuracy all the basic parameters, especially the phase difference between transduction and reflection centers. Numerical results will be shown for periodic IDTs built on various unconventional orientation on quartz, and the existence of the known NSPUDT orientation will be confirmed
Keywords :
boundary-elements methods; crystal orientation; finite element analysis; interdigital transducers; quartz; surface acoustic wave transducers; FEM/BEM numerical model; NSPUDT; P-matrix; SiO2; acoustic wave phase velocity; crystal orientation; electromechanical coupling coefficient; harmonic admittance; periodic IDT; phase difference; piezoelectric substrate; quartz; reflection center; static capacitance; strip reflectivity; transduction center; Acoustic reflection; Acoustic waves; Admittance; Capacitance; Electrodes; Numerical models; Phased arrays; Power harmonic filters; Reflectivity; Surface acoustic waves;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium, 1997. Proceedings., 1997 IEEE
Conference_Location :
Toronto, Ont.
ISSN :
1051-0117
Print_ISBN :
0-7803-4153-8
Type :
conf
DOI :
10.1109/ULTSYM.1997.662996
Filename :
662996
Link To Document :
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