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High-frequency stability oscillator for surface acoustic wave gas sensor

机译:用于表面声波气体传感器的高频稳定性振荡器

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References(7) Cited-By(1) We present a 300 MHz surface acoustic wave (SAW) oscillator for gas sensor application. As the oscillator element, SAW delay lines on an ST-X quartz substrate with low insertion loss and single-mode-selection capability were developed. And they were structured by Electrode Width Control Single Phase Unidirectional Transducer (EWC/SPUDT) configuration and comb transducer. The coupling of modes (COM) model was used to predict device performance prior to fabrication. The measured frequency response S12 showed a good agreement with simulated results; a low insertion loss of less than 9 dB and a linear phase in the 3 dB bandwidth were observed. The experimental results show that the baseline noise of the fabricated oscillators was typically up to ∼0.7×10−7 in a laboratory environment with temperature control. The oscillator was successfully applied to a gas sensor coated with fluoroalcoholpolysiloxane (SXFA) as the sensor material for O-isopropyl methyphosphonofluoridate (GB) detection, and a superior threshold detection limit was obtained (0.4 mg/m3).
机译:参考文献(7)By-By(1)我们介绍了一种用于气体传感器应用的300 MHz表面声波(SAW)振荡器。作为振荡器元件,开发了具有低插入损耗和单模选择能力的ST-X石英基板上的SAW延迟线。它们由电极宽度控制单相单向换能器(EWC / SPUDT)配置和梳状换能器构成。模式耦合(COM)模型用于在制造之前预测设备性能。测得的频率响应S12与仿真结果吻合良好。观察到低于9 dB的低插入损耗和3 dB带宽内的线性相位。实验结果表明,在带有温度控制的实验室环境中,制造的振荡器的基线噪声通常高达〜0.7×10-7。该振荡器已成功应用于涂有氟代醇聚硅氧烷(SXFA)的气体传感器,作为O-异丙基甲基膦酰氟(GB)检测的传感器材料,并获得了更高的阈值检测极限( 0.4 mg / m3)。

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