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用于表面声波微力传感器的衬底开槽与吸收以降低体声波

Grooving and Absorption on Substrates to Reduce the Bulk Acoustic Wave for Surface Acoustic Wave Micro-Force Sensors.

作者信息

Feng Yang, Yu Haoda, Liu Wenbo, Hu Keyong, Sun Shuifa, Yang Zhen, Wang Ben

机构信息

School of Information Science and Technology, Hangzhou Normal University, Hangzhou 311121, China.

Mobile Health Management System Engineering Research Center of the Ministry of Education, Hangzhou 311121, China.

出版信息

Micromachines (Basel). 2024 May 9;15(5):637. doi: 10.3390/mi15050637.

Abstract

Improving measurement accuracy is the core issue with surface acoustic wave (SAW) micro-force sensors. An electrode transducer can stimulate not only the SAW but also the bulk acoustic wave (BAW). A portion of the BAW can be picked up by the receiving transducer, leading to an unwanted or spurious signal. This can harm the device's frequency response characteristics, thereby potentially reducing the precision of the micro-force sensor's measurements. This paper examines the influence of anisotropy on wave propagation, and it also performs a phase-matching analysis between interdigital transducers (IDTs) and bulk waves. Two solutions are shown to reduce the influence of BAW for SAW micro sensors, which are arranged with acoustic absorbers at the ends of the substrate and in grooving in the piezoelectric substrate. Three different types of sensors were manufactured, and the test results showed that the sidelobes of the SAW micro-force sensor could be effectively inhibited (3.32 dB), thereby enhancing the sensitivity and performance of sensor detection. The SAW micro-force sensor manufactured using the new process was tested and the following results were obtained: the center frequency was 59.83 MHz, the fractional bandwidth was 1.33%, the range was 0-1000 mN, the linearity was 1.02%, the hysteresis was 0.59%, the repeatability was 1.11%, and the accuracy was 1.34%.

摘要

提高测量精度是表面声波(SAW)微力传感器的核心问题。电极换能器不仅可以激发表面声波,还可以激发体声波(BAW)。一部分体声波可以被接收换能器拾取,从而导致不需要的或虚假的信号。这会损害器件的频率响应特性,从而可能降低微力传感器测量的精度。本文研究了各向异性对波传播的影响,并对叉指换能器(IDT)和体波之间进行了相位匹配分析。文中展示了两种减少体声波对SAW微传感器影响的解决方案,即在衬底末端设置吸声器以及在压电衬底中开槽。制造了三种不同类型的传感器,测试结果表明SAW微力传感器的旁瓣可以得到有效抑制(3.32 dB),从而提高了传感器检测的灵敏度和性能。对采用新工艺制造的SAW微力传感器进行测试,得到以下结果:中心频率为59.83 MHz,分数带宽为1.33%,量程为0 - 1000 mN,线性度为1.02%,迟滞为0.59%,重复性为1.11%,精度为1.34%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4f8/11123284/2aa270b0e7c9/micromachines-15-00637-g001.jpg

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