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Bimorph material/structure designs for high sensitivity flexible surface acoustic wave temperature sensors

机译:用于高灵敏度柔性表面声波温度传感器的双压电晶片材料/结构设计

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摘要

A fundamental challenge for surface acoustic wave (SAW) temperature sensors is the detection of small temperature changes on non-planar, often curved, surfaces. In this work, we present a new design methodology for SAW devices based on flexible substrate and bimorph material/structures, which can maximize the temperature coefficient of frequency (TCF). We performed finite element analysis simulations and obtained theoretical TCF values for SAW sensors made of ZnO thin films (~5 μm thick) coated aluminum (Al) foil and Al plate substrates with thicknesses varied from 1 to 1600 μm. Based on the simulation results, SAW devices with selected Al foil or plate thicknesses were fabricated. The experimentally measured TCF values were in excellent agreements with the simulation results. A normalized wavelength parameter (e.g., the ratio between wavelength and sample thickness, λ/h) was applied to successfully describe changes in the TCF values, and the TCF readings of the ZnO/Al SAW devices showed dramatic increases when the normalized wavelength λ/h was larger than 1. Using this design approach, we obtained the highest reported TCF value of −760 ppm/K for a SAW device made of ZnO thin film coated on Al foils (50 μm thick), thereby enabling low cost temperature sensor applications to be realized on flexible substrates.
机译:表面声波(SAW)温度传感器的一个基本挑战是检测非平面(通常是弯曲的)表面上的微小温度变化。在这项工作中,我们提出了一种基于柔性基板和双压电晶片材料/结构的SAW器件的新设计方法,该方法可以最大化频率温度系数(TCF)。我们进行了有限元分析模拟,并获得了由ZnO薄膜(〜5μm厚)涂覆铝(Al)箔和厚度为1至1600μm的Al板基底制成的SAW传感器的理论TCF值。根据仿真结果,制造了具有选定铝箔或板厚的SAW器件。实验测得的TCF值与模拟结果非常吻合。应用归一化波长参数(例如,波长与样品厚度之比λ/ h)成功地描述了TCF值的变化,并且当归一化波长λ/时,ZnO / Al SAW器件的TCF读数显示出急剧增加。 h大于1。使用这种设计方法,对于由铝箔(厚度为50μm的ZnO薄膜制成)制成的SAW器件,我们获得了最高的TCF值为-760 ppm / K,从而实现了低成本的温度传感器应用在柔性基板上实现。

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