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Towards Breath Gas Analysis Based on Millimeter-Wave Molecular Spectroscopy

机译:基于毫米波分子光谱的呼吸气体分析

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摘要

Breath gas analysis is a promising non-invasive tool for medical diagnosis as there are thousands of Volatile Organic Compounds (VOCs) in human breath that can be used as health monitoring markers. Millimeter-wave/terahertz molecular spectroscopy is highly suitable for breath gas analysis due to unique fingerprint spectra of many VOCs in that frequency range. We present our recent work on sensor systems for gas spectroscopy based on integrated transmitters (TX) and receivers (RX) fabricated in IHP's 0.13 mu m SiGe BiCMOS technology. For a single-band system, spectroscopic measurements and beam profiles are presented. The frequency is tuned by direct voltage-frequency tuning and by a fractional-n PLL, respectively. The spectroscopic system includes a folded gas absorption cell with gas pre-concentration abilities demonstrating the detection of a 50 ppm mixture of ethanol in ambient air corresponding to a minimum detectable concentration of 260 ppb. Finally, the design of a 3-band system covering frequencies from 225 to 273 GHz is introduced.
机译:呼吸气体分析是一种有前途的非侵入性医学诊断工具,因为人的呼吸中有成千上万种挥发性有机化合物(VOC)可用作健康监测指标。毫米波/太赫兹分子光谱非常适合于呼吸气体分析,因为该频率范围内许多VOC的独特指纹图谱。我们介绍了基于IHP 0.13微米SiGe BiCMOS技术制造的集成发射器(TX)和接收器(RX)的气相色谱传感器系统的最新工作。对于单波段系统,提出了光谱测量和光束轮廓。分别通过直接电压-频率调谐和分数n PLL调谐频率。光谱系统包括一个具有气体预浓缩能力的折叠式气体吸收池,该能力证明了在环境空气中检测到50 ppm乙醇混合物的最低检测浓度为260 ppb。最后,介绍了涵盖225至273 GHz频率的3频段系统的设计。

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