Theoretical Analysis of Surface Acoustic Wave Propagation Characteristics under Strained Media and Applications for High Temperature Stable High Coupling Surface Acoustic Wave Substrates

JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS(2000)

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摘要
Among the important properties required for surface acoustic waves (SAW) substrates are a large electromechanical coupling coefficient (k(2)), small temperature coefficient of frequency (TCF) and low propagation loss. The LiNbO3 and LiTaO3 have good properties as the SAW substrates with a large size. Unfortunately, these possess the defect of having large values of TCF. In this paper, SAW-bonded composite substrates with a large k(2), small TCF, low propagation loss and no dispersion using conventional bonders are investigated theoretically and experimentally The propagation characteristics of SAWs under strained piezoelectric crystals using the higher-order elasticity theory have been analyzed. The theoretical results show zero TCF on LiNbO3/SiO2 substrates. The experimental results for LiNbO3/glass substrates revealed a TCF of [-19 ppm/degrees C]. The propagation properties were almost the same as those of the single crystal.
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关键词
surface acoustic wave,temperature stable substrate,composite substrate,nonlinear SAW propagation,static strain material
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