Title :
Investigation on SAW properties of LGS and optimal cuts for high-temperature applications
Author :
Ji, Xiaojun ; Han, Tao ; Shi, Wenkang ; Zhang, GuoWei
Author_Institution :
Dept. of Instrum. Eng., Shanghai Jiao Tong Univ., China
Abstract :
A promising perspective for surface acoustic wave (SAW) device applications at high temperature has been opened by langasite (LGS). The SAW properties of LGS in singly and doubly rotated cuts at 250/spl deg/C are investigated. Three noticeable regions for SAW-cut orientations and propagation directions at high temperature are put forward and are defined by Euler angles [0/spl deg/, 20/spl deg//spl rarr/50/spl deg/, 35/spl deg//spl rarr/45/spl deg/], [0/spl deg/, 85/spl deg//spl rarr/110/spl deg/, 0/spl deg/5/spl deg/], and [0/spl deg/, 138/spl deg//spl rarr/145/spl deg/, 20/spl deg/23/spl deg/], respectively. The first region includes zero or comparatively reduced temperature coefficient of delay (TCD) (<2 ppm) and smaller electromechanical coupling factor (K/sup 2/) (0.2%-0.35%); the second one exhibits higher K/sup 2/ (0.35%-0.45%) arid moderate TCD (<5 ppm); and the highest K/sup 2/ (>0.45%) and larger TCD (25-30 ppm) characterize the last region. For some typical orientations within the above-mentioned three regions, the temperature dependency of SAW characteristics (up to 1000/spl deg/C) is discussed. The second region [0/spl deg/, 85/spl deg//spl rarr/110/spl deg/, 0/spl deg//spl rarr/5/spl deg/], especially the orientation [0/spl deg/, 90/spl deg/, 0/spl deg/], has better comprehensive characteristics of SAW and is more suitable for high-temperature applications. Therefore, we should give a top priority to the orientation [0/spl deg/, 90/spl deg/, 0/spl deg/] in the design of SAW devices operating at high temperature. Comparison between published experimental results and numerical predictions based on LGS constants and their temperature coefficients available in the literature reveals that the theoretical results of TCD under 250/spl deg/C are in agreement with the experimental ones (the relative error of TCD is within 10%).
Keywords :
gallium compounds; lanthanum compounds; piezoelectric materials; surface acoustic waves; Euler angles; La/sub 3/Ga/sub 5/SiO/sub 14/; SAW; electromechanical coupling factor; langasite; surface acoustic wave device; temperature coefficient; Acoustic propagation; Acoustic signal processing; Acoustic waves; Delay; Ferroelectric materials; Load flow; Surface acoustic wave devices; Surface acoustic waves; Temperature dependence; Temperature sensors;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2005.1561677