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A capacitive micromachined ultrasonic transducer (CMUT) array as a low-power multi-channel volatile organic compound (VOC) sensor

机译:电容式微机械超声换能器(CMUT)阵列为低功率多通道挥发性有机化合物(VOC)传感器

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In this study we extend our work on low-power CMUT chemical sensors from a single element to an array as a way to improve selectivity to volatile organic compound (VOC) analytes. A single channel of our sensor array comprises of a polymer-functionalized CMUT resonator in the feedback loop of a Colpitts oscillator, which consumes 0.76 mW, when operated continuously. Using our anodic-bonding based fabrication process, we fabricated 6-, 8-, and 15-channel prototype arrays with a standard deviation of 1 % in the parallel resonant frequency (4.5 MHz) in a 7×9-mm2 die area. We measured the response of three channels, one uncoated, one with a polyisobutylene (PIB) layer, and one with a polyvinyl alcohol (PVA) layer, to 20-ppm toluene vapor. Initial measurements show 1:13:37 ratio in the response of reference: PVA:PIB channels.
机译:在这项研究中,我们将我们的工作从单一元素到阵列的低功率CMUT化学传感器,作为提高挥发性有机化合物(VOC)分析物的选择性的一种方法。我们的传感器阵列的单个通道包括在Colpitts振荡器的反馈回路中的聚合物官能化CMUT谐振器,其在连续操作时消耗0.76mW。使用我们的阳极键合的制造工艺,我们制造了6×9-mm2模具区域的平行谐振频率(4.5MHz)的标准偏差标准偏差为6级,8°和15声道的原型阵列。我们测量了三个通道,一个未涂覆的,一种用聚异丁烯(PIB)层的响应,以及一种用聚乙烯醇(PVA)层,至20-PPM甲苯蒸气。初始测量显示参考文献:PVA:PIB频道的响应中的1:3:37比率。

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