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Mass Sensitivity Optimization of a Surface Acoustic Wave Sensor Incorporating a Resonator Configuration

机译:结合谐振器配置的表面声波传感器的质量灵敏度优化

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摘要

The effect of the sensitive area of the two-port resonator configuration on the mass sensitivity of a Rayleigh surface acoustic wave (R-SAW) sensor was investigated theoretically, and verified in experiments. A theoretical model utilizing a 3-dimensional finite element method (FEM) approach was established to extract the coupling-of-modes (COM) parameters in the absence and presence of mass loading covering the electrode structures. The COM model was used to simulate the frequency response of an R-SAW resonator by a P-matrix cascading technique. Cascading the P-matrixes of unloaded areas with mass loaded areas, the sensitivity for different sensitive areas was obtained by analyzing the frequency shift. The performance of the sensitivity analysis was confirmed by the measured responses from the silicon dioxide (SiO2) deposited on different sensitive areas of R-SAW resonators. It is shown that the mass sensitivity varies strongly for different sensitive areas, and the optimal sensitive area lies towards the center of the device.
机译:从理论上研究了两端口谐振器配置的敏感区域对瑞利表面声波(R-SAW)传感器的质量灵敏度的影响,并在实验中进行了验证。建立了使用三维有限元方法(FEM)方法的理论模型,以在不存在和存在覆盖电极结构的质量载荷的情况下提取模式耦合(COM)参数。 COM模型用于通过P矩阵级联技术模拟R-SAW谐振器的频率响应。将未加载区域的P矩阵与质量加载区域级联,通过分析频移获得不同敏感区域的灵敏度。灵敏度分析的性能通过沉积在R-SAW谐振器不同敏感区域上的二氧化硅(SiO2)的测量响应得到证实。结果表明,对于不同的敏感区域,质量敏感度变化很大,并且最佳敏感区域位于设备中心。

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