DocumentCode :
1276415
Title :
Investigation on recent quartz-like materials for SAW applications
Author :
Da Cunha, Maurício Pereira ; De Azevedo Fagundes, Saulo
Author_Institution :
Dept. of Electr. & Comput. Eng., Central Florida Univ., Orlando, FL, USA
Volume :
46
Issue :
6
fYear :
1999
Firstpage :
1583
Lastpage :
1590
Abstract :
Recent progress in growing and characterizing quartz-like materials of the trigonal system class 32 has been reported by several groups. The promising perspective for bulk acoustic wave frequency control applications indicates the potentiality of employing these materials for SAW applications as well. This paper reports results of investigations focused on SAW orientations of langasite (LGS), gallium phosphate (GaPO/sub 4/), and langanite (LGN), both singly and doubly rotated cuts. Among the characteristics explored, major attention is paid to the temperature coefficient of delay (TCD), the electromechanical coupling coefficient (K/sup 2/), and the power flow angle (PFA). Contour graphs are plotted based on our calculated results and show the regions in space in which low TCD and high K/sup 2/ can be obtained; they also exhibit the associated PFA and phase velocity characteristics. The influence of different sets of material constants is addressed. The spatial investigation performed shows that there are promising orientation regions in these materials at which zero or reduced TCD (<10 ppm//spl deg/C) and PFA are obtained. Additional attractive characteristics for SAW applications have been observed: values of K/sup 2/ a few times higher than the K/sup 2/ of quartz ST-X, thus finding applications in larger bandwidth devices; variation of the TCD with respect to temperature, which is comparable to the variation found for quartz ST-X and less than that for zero TCD Li/sub 2/B/sub 4/O/sub 7/ cuts like 45/spl deg/X-Z and (0/spl deg/ 78/spl deg/ 90/spl deg/); and phase velocity values circa 13 to 26% smaller than the phase velocity of quartz ST-X thus allowing a reduction in size for intermediate frequency device applications.
Keywords :
gallium compounds; lanthanum compounds; surface acoustic waves; 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/; SAW properties; contour graph; electromechanical coupling coefficient; gallium phosphate; langanite; langasite; material constants; orientation; phase velocity; power flow angle; temperature coefficient of delay; trigonal system; Acoustic materials; Acoustic waves; Bandwidth; Delay; Frequency control; High K dielectric materials; High-K gate dielectrics; Load flow; Surface acoustic waves; Temperature;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.808884
Filename :
808884
Link To Document :
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