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MEMS based sensor system for environmental monitoring

机译:基于MEMS的环境监测传感器系统

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摘要

A new IR-based sensor technology is introduced for environmental monitoring of industrial pollutants (CO_2, CO, NO_x, etc.). The design concept exploits Si-based, thermally isolated suspended bridge structures. These devices, which function as both IR emitter and detector, are fabricated using MEMS-based processing methods. Photonic bandgap (PBG) modified surfaces enable narrow band IR emission for high chemical selectivity and sensitivity. Spectral tuning is accomplished by controlling symmetry and lattice spacing of the PBG structures. IR spectroscopic studies were used to characterize transmission, absorption and emission spectra in the 2 to 20μm wavelength range. Device characterization studies measured drive and emission power, temperature uniformity, and black body detectivity. Gas detection was achieved using non-dispersive infrared (NDIR) spectroscopic techniques, whereby target gas species and concentrations were determined from comparison to referenced spectra. A sensor system employing the emitter/detector sensor-chip with gas cell and reflective optics is demonstrated and CO_2 gas sensitivity limits are reported. A multi-channel microsensor-array is proposed for multigas (e.g., CO_2, CO, and NO_x, etc.) detection.
机译:引入了一种新的基于IR的传感器技术,用于工业污染物(CO_2,CO,NO_x等)的环境监测。该设计概念利用了基于硅的热隔离悬索桥结构。这些设备既用作红外发射器又用作检测器,是使用基于MEMS的处理方法制造的。光子带隙(PBG)修饰的表面可实现窄带IR发射,从而具有很高的化学选择性和灵敏度。光谱调谐是通过控制PBG结构的对称性和晶格间距来实现的。红外光谱研究用于表征2至20μm波长范围内的透射,吸收和发射光谱。器件特性研究可测量驱动和发射功率,温度均匀性和黑体探测能力。使用非分散红外(NDIR)光谱技术实现了气体检测,从而通过与参考光谱进行比较来确定目标气体的种类和浓度。演示了使用带有气室和反射光学器件的发射器/检测器传感器芯片的传感器系统,并报告了CO_2气体灵敏度极限。提出了用于多气体(例如,CO_2,CO和NO_x等)检测的多通道微传感器阵列。

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