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Simulation of short LSAW transducers including electrode massloading and finite finger resistance

机译:仿真包括电极质量载荷,包括电极质量载荷和有限手指电阻的仿真

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The theory for a 2-D numerical analysis of acoustic wave generation from finite length LSAW transducer structures is presented. The massloading of the electrodes is incorporated through the use of the Finite Element Method (FEM). The substrate is modeled using both analytical and numerical means. The simulation is capable of extracting the individual bulk wave conductances from the overall conductance of a given device. Once the bulk wave conductances are calculated, the angular distribution of power radiated relative to the substrate surface can then be found. The simulation also includes the effect of finite electrode resistance through the use of a series equivalent resistance for each electrode in the structure. The paper will conclude by presenting simulation results for two separate freestanding transducers and a short transducer combined with a grating. The substrate materials used are 42/sup 0/ LiTaO/sub 3/ and 64/sup 0/ LiNbO/sub 3/. The agreement between theory and experiment is shown.
机译:提出了来自有限长度扫描换能器结构的声波的2-D数值分析的理论。通过使用有限元方法(FEM)来结合电极的质量载荷。使用分析和数值手段建模基板。模拟能够从给定装置的整体电导中提取各个散装波导电。一旦计算了体波导电,就可以找到相对于基板表面辐射的功率的角度分布。模拟还包括通过使用结构中的每个电极的串联等效电阻来包括有限电极电阻的效果。本文将通过呈现两个独立的独立换能器的仿真结果,以及与光栅结合的短换能器。使用的基材材料为42 / sup 0 / liao / sub 3 /和64 / sup 0 / linbo / sub 3 /。展示了理论与实验之间的协议。

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