DocumentCode :
746804
Title :
BAW temperature sensitivity and coupling in langanite
Author :
Da Cunha, Maurício Pereira ; Adler, Eric L. ; Malocha, Donald C.
Author_Institution :
Dept. of Electr. & Comput. Eng., Maine Univ., Orono, ME, USA
Volume :
49
Issue :
5
fYear :
2002
fDate :
5/1/2002 12:00:00 AM
Firstpage :
656
Lastpage :
663
Abstract :
One of the new materials belonging to the trigonal class 32, to which quartz belongs, is langanite (LGN, La/sub 3/Ga/sub 5.5/Nb/sub 0.5/O/sub 14/). High-quality LGN single crystals are now available, and, although similar in composition and structure to langasite (LGS, La/sub 3/Ga/sub 5/SiO/sub 14/), LGN has smaller thermal expansion coefficients and comparable piezoelectric constants to LGS. These are desirable material properties for both SAW and BAW applications that require low frequency dependence on temperature. This paper examines in detail the LGN characteristics: phase velocity, temperature coefficient of frequency (TCF), electromechanical coupling coefficient, and power flow angle for both singly and doubly rotated plate cuts. Contour plots of these characteristics are constructed, revealing orientation regions where zero TCF and high coupling exist and suggesting potentially interesting cuts for practical BAW device design. Temperature compensated cut regions with coupling coefficients as high as 0.16 are predicted, which is twice the value for AT-cut quartz, along with a temperature compensated cut with cubic behavior around room temperature for one of the sets of material constants used. With such desirable properties, LGN is a promising candidate material for BAW applications requiring low temperature sensitivity with superior bandwidth characteristics due to its values of coupling coefficient larger than quartz. Several other orientations with low TCF and high coupling are also identified.
Keywords :
acoustic wave propagation; bulk acoustic wave devices; lanthanum compounds; piezoelectric materials; BAW coupling coefficients; BAW mode propagation properties; BAW temperature sensitivity; La/sub 3/Ga/sub 5.5/Nb/sub 0.5/O/sub 14/; and power flow angle; doubly rotated plate cuts; electromechanical coupling coefficient; langanite; phase velocity; power flow angle; singly rotated plate cuts; temperature coefficient of frequency; temperature compensated cut regions; thickness excitation piezoelectric coupling; Crystalline materials; Crystals; Frequency dependence; Load flow; Material properties; Niobium; Surface acoustic waves; Temperature dependence; Temperature sensors; Thermal expansion; Acoustics; Computer Simulation; Crystallography; Gallium; Lanthanum; Models, Chemical; Niobium; Sensitivity and Specificity; Temperature;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2002.1002465
Filename :
1002465
Link To Document :
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