Title :
Analysis of high velocity pseudo-surface acoustic waves (HVPSAW) in quartz periodic structures with electrode fingers
Author :
Yong, Yook-Kong ; Kanna, Shigeo
Author_Institution :
Civil & Environ. Eng. Dept., Rutgers Univ., NJ, USA
Abstract :
A finite element study of the piezoelectric Lagrangean equations for frequency-temperature behavior was performed for a two-dimensional periodic high velocity pseudo surface acoustic wave (HVPSAW) structure of quartz. Plane strain assumptions were used to enable a two-dimensional analysis of straight crested HVPSAW in the structure. The HVPSAW modes found on a partially metallized substrate surface has a symmetric electric potential field, therefore, the modes can be driven by the usual IDT array. The attenuation of the HVPSAW mode is strongly affected by both the electrode height and crystal cut angles. Strong KVPSAW modes with good frequency-temperature behavior can be obtained by a proper combination of electrode material, electrode height and the substrate cut angle. The HVPSAW mode is “leakier” than its PSAW counterpart
Keywords :
electric potential; electrodes; finite element analysis; periodic structures; surface acoustic wave resonators; surface acoustic wave signal processing; surface acoustic wave waveguides; 2D pseudo-surface acoustic wave structure; IDT array; KVPSAW; attenuation; crystal cut angles; electrode fingers; electrode height; electrode material; finite element study; frequency-temperature behavior; partially metallized substrate surface; piezoelectric Lagrangean equations; pseudo surface acoustic wave structure; quartz periodic structures; substrate cut angle; two-dimensional analysis; Acoustic waves; Capacitive sensors; Electrodes; Equations; Finite element methods; Frequency; Lagrangian functions; Metallization; Periodic structures; Surface acoustic waves;
Conference_Titel :
Frequency Control Symposium and Exhibition, 2000. Proceedings of the 2000 IEEE/EIA International
Conference_Location :
Kansas City, MO
Print_ISBN :
0-7803-5838-4
DOI :
10.1109/FREQ.2000.887370