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- W2117563817 abstract "The effects of a fused silica layer on the velocity, opera- tional frequency, and temperature stability of microwave acoustic devices on 90'-propagating rotated Y-cut quartz are investigated. The effective permittivity function at the layer-substrate interface, which contains atl the necessary mechanical and electrical information about the composite structure is derived to analyze the temperature depen- dence of the velocity, hence the temperature dependence of the center frequency of mter devices. The frequency-temperature characteristics WC) and the turnover temperature (temperature at which the slope of the FTC curve is zero) as a function of film thickness are presented for selected orientations supporting SH-type surface waves or Love waves. The turnover temperature has been found to increase with increasing fdm thickness. As a result, devices having temperature stability com- parable to similar devices on ST-cut quartz can be realized. The com- posite structure device, while maintaining the advantages of higher operational frequencies of SSBW devices, also has a much lower inser- tion loss. Experimental results are presented on a selected orientation and are in good agreement with theory." @default.
- W2117563817 created "2016-06-24" @default.
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- W2117563817 date "1984-05-01" @default.
- W2117563817 modified "2023-09-23" @default.
- W2117563817 title "Temperature Dependence of SH-Wave on Rotated Y-Cut Quartz with SiO<inf>2</inf>Overlay" @default.
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- W2117563817 doi "https://doi.org/10.1109/t-su.1984.31492" @default.
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