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SAW temperature sensor on Quartz

机译:石英上的SAW温度传感器

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摘要

For biomedical applications, narrow temperature range and high sensor accuracy requirements define the need for high temperature sensitivity. Wireless SAW sensors connected to antennas need a reference element to account for changes in electromagnetic coupling between the transmitter and receiver antennas. A pair of sensors with different temperature sensitivities may serve as a self-referenced sensor assembly. This justifies the need for materials with useful SAW resonator properties and with the largest difference between temperature coefficients of frequency (TCF) for a resonator pair on a single substrate. We have identified several cuts of quartz having useful properties with a TCF difference up to 140 ppm/°C for a pair of resonators on a single substrate. As a rule, placing such resonators on a single substrate requires their rotation by up to 90?? relative to each other. The limited range of cuts presents a unique opportunity to place both resonators along the X+90° direction with one resonator using Bleustein-Gulyaev-Shimizu (BGS) waves (with electrodes placed along the x-axis) and the other one (with electrodes inclined by about ??10° to the x-axis) using quasi-Rayleigh waves. These cuts are close to the 70°Y cut where a high TCF difference is reached together with acceptable characteristics of the resonators. Resonators were designed for all useful cuts (including the 70°Y cut) and tested. The use of different periods in reflectors and interdigital transducer (IDT) together with individual choice of gaps between reflectors and IDT meant achieving low spurious content in resonator responses. The quality factors reached values up to 3500 at central frequencies around 915 MHz for both BGS and quasi-Rayleigh types of waves. The measured difference of the TCF is about 138 ppm//spl degC on 70°Y cut that is close to the calculated value.
机译:对于生物医学应用,狭窄的温度范围和较高的传感器精度要求决定了对高温灵敏度的需求。连接到天线的无线SAW传感器需要一个参考元件,以解决发射机和接收机天线之间电磁耦合的变化。具有不同温度灵敏度的一对传感器可以用作自参考传感器组件。这就证明了需要具有有用的SAW谐振器特性并且在单个基板上具有谐振器对的频率温度系数(TCF)之间最大差异的材料。我们已经确定了几个具有有用特性的石英切割,对于单个基板上的一对谐振器,TCF差高达140 ppm /°C。通常,将这种谐振器放置在单个基板上需要旋转最多90英寸。彼此之间。有限的切割范围为将两个谐振器沿X + 90°方向放置提供了独特的机会,一个谐振器使用Bleustein-Gulyaev-Shimizu(BGS)波(电极沿x轴放置)而另一个谐振器(带电极)使用准瑞利波将其倾斜到与x轴成大约10°角。这些切口接近70°Y切口,此时达到了较高的TCF差以及谐振器的可接受特性。谐振器针对所有有用的切口(包括70°Y切口)进行了设计和测试。在反射器和叉指式换能器(IDT)中使用不同的周期,以及反射器和IDT之间间隙的单独选择,意味着在谐振器响应中实现低杂散含量。对于BGS和准瑞利类型的波,在915 MHz左右的中心频率处,质量因子均达到3500的值。在70°Y切割时,TCF的测量差约为138 ppm // spl degC,接近计算值。

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