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具有SiN-SiO双层覆盖波导层的声表面波传感器质量灵敏度的有限元研究

Finite Element Study for Mass Sensitivity of Love Surface Acoustic Wave Sensor with SiN-SiO Double-Covered Waveguiding Layer.

作者信息

Li Luming, Zhou Mingyong, Huang Lei, Jiang Bingyan

机构信息

State Key Laboratory of Precision Manufacturing for Extreme Service Performance, Central South University, Changsha 410083, China.

College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.

出版信息

Micromachines (Basel). 2023 Aug 30;14(9):1696. doi: 10.3390/mi14091696.

Abstract

Love surface acoustic wave (L-SAW) sensors are miniaturized, easy to integrate, and suitable for detection in liquid environments. In this paper, an L-SAW sensor with a thin SiN-SiO double-covered layer was proposed for samples with small mass loads. The output response, phase velocity of the acoustic wave, and the mass sensitivity were analyzed using the finite element method (FEM). The simulation results show that the SiN layer with high wave velocity greatly weakens the limitation of SiO on the phase velocity. The phase velocity can reach about 4300 m/s, which can increase the frequency shift when the same mass load is applied. Within a certain range, the mass sensitivity of the sensor is enhanced with the increase in the total thickness of the waveguiding layer and the thickness ratio of SiN in the double-covered layer. When the thickness ratio is 1:2, the peak value of the mass sensitivity of the sensor is approximately 50% higher than that achieved with only the SiO waveguiding layer. The surface average stress of the delay line region follows the same trend as the mass sensitivity. The increase in mass sensitivity is the result of the heightened stress on the sensor surface. This L-SAW sensor, featuring a double-covered waveguiding layer, demonstrates high sensitivity and a simple structure. The simulation results lay a foundation for the design and manufacture of SAW sensors.

摘要

洛夫表面声波(L-SAW)传感器体积小、易于集成,适用于液体环境中的检测。本文针对小质量负载样本提出了一种具有SiN-SiO双层覆盖层的L-SAW传感器。采用有限元方法(FEM)分析了其输出响应、声波相速度和质量灵敏度。仿真结果表明,具有高波速的SiN层极大地削弱了SiO对相速度的限制。相速度可达约4300 m/s,在施加相同质量负载时可增加频移。在一定范围内,传感器的质量灵敏度随波导层总厚度以及双层覆盖层中SiN的厚度比增加而提高。当厚度比为1:2时,传感器质量灵敏度的峰值比仅采用SiO波导层时高出约50%。延迟线区域的表面平均应力与质量灵敏度遵循相同趋势。质量灵敏度的提高是传感器表面应力增加的结果。这种具有双层覆盖波导层的L-SAW传感器具有高灵敏度和结构简单的特点。仿真结果为SAW传感器的设计与制造奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7fa/10537863/4064d81bbe66/micromachines-14-01696-g001.jpg

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