1976
DOI: 10.1109/proc.1976.10181
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Optimum cut for rotated Y-cut LiNbO3crystal used as the substrate of acoustic-surface-wave filters

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Cited by 125 publications
(45 citation statements)
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“…Although the K 2 for the slower SAW at θ∼48 o is lower than that at θ=0 o , the value of 48% is still nearly ten times compared to that achievable by conventional piezoelectric materials, such as LiNbO 3 (5%). 17,18 It should be noted that the thickness of the gold electrode was set to 0.06λ in our calculation so that the K 2 for the faster SAW becomes almost zero. Deviation of h from this value resulted in increase in the minimum K 2 for the faster SAW.…”
Section: Resultsmentioning
confidence: 99%
“…Although the K 2 for the slower SAW at θ∼48 o is lower than that at θ=0 o , the value of 48% is still nearly ten times compared to that achievable by conventional piezoelectric materials, such as LiNbO 3 (5%). 17,18 It should be noted that the thickness of the gold electrode was set to 0.06λ in our calculation so that the K 2 for the faster SAW becomes almost zero. Deviation of h from this value resulted in increase in the minimum K 2 for the faster SAW.…”
Section: Resultsmentioning
confidence: 99%
“…Their predictions are supported by many experiments, but there are some experimental results which cannot be explained by their theory [4]- [6]. Yashiro and Goto have overcome certain of these discrepancies by introducing the boundary conditions at the surface of the substrate when the bulk wave responses are calculated [2].…”
Section: Introductionmentioning
confidence: 99%
“…Low bulk-wave serious response is also one of the desirable properties for a SAW substrate. Therefore, many studies of substrates with low bulk-wave serious response have been performed theoretically [1]- [3] and experimentally [4]- [6].…”
Section: Introductionmentioning
confidence: 99%
“…[ 2 ] Additionally, the thickness of the substrate h is designed to be substantially larger than the SAW wavelength λ SAW to avoid wave leakage and refl ection through the thickness of the substrate given that the SAW penetration depth varies inversely with the SAW resonant frequency f ; in other words, the vibrational energy of the SAW is locally confi ned within a…”
mentioning
confidence: 99%