Chen Z H, Takeuchi M, Yamanouchi K
Res. Inst. of Electr. Commun., Tohoku Univ., Sendai.
IEEE Trans Ultrason Ferroelectr Freq Control. 1992;39(1):82-94. doi: 10.1109/58.166814.
A coupling-of-modes (COM) analysis is given for the film thickness dependence of a single-phase undirectional transducer (SPUDT), while the finite-element method (FEM) is employed for evaluating all the coefficients of COM equations. The relationship between the directivity and dispersion curves of the transducer is discussed. The theoretical analysis shows that when the electrode finger thickness increases through a threshold value, a mode conversion phenomenon occurs and the value of the reflection phase changes from the positive to the negative. This result predicts that the forward direction of a film thickness difference type SPUDT will move conversely when the electrode film thickness increases through the threshold thickness. A prototype step-type SPUDT, fabricated on 128 degrees Y-X LiNbO(3) substrate, showed a directivity of 10 dB/transducer at 481.5 MHz, and a low-loss surface acoustic wave (SAW) filter showed a minimum insertion loss of 3.8 dB.
对单相单向换能器(SPUDT)的膜厚依赖性进行了模式耦合(COM)分析,同时采用有限元方法(FEM)来评估COM方程的所有系数。讨论了换能器的方向性与色散曲线之间的关系。理论分析表明,当电极指厚度增加到一个阈值时,会出现模式转换现象,反射相位值从正变为负。该结果预测,当电极膜厚度增加到阈值厚度时,膜厚差型SPUDT的正向将反向移动。在128°Y-X LiNbO(3) 衬底上制作的原型阶梯型SPUDT在481.5 MHz时的方向性为10 dB/换能器,低损耗表面声波(SAW)滤波器的最小插入损耗为3.8 dB。