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Miniature Photoacoustic Chemical Sensor Using Microelectromechanical Structures

机译:使用微机电结构的微型光声化学传感器

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Photoacoustic spectroscopy is a useful monitoring technique that is well suited for trace gas detection. The technique also possesses favorable detection characteristics when the system dimensions are scaled to a micro-system design. The objective of present work is to incorporate two strengths of the Army Research Laboratory (ARL), piezoelectric microelectromechanical systems (MEMS) and chemical and biological sensing into a monolithic MEMS photoacoustic trace gas sensor. A miniaturized macro-cell design was studied as a means to examine performance and design issues as the photoacoustics is scaled to a dimension approaching the MEMS level. Performance of the macro-cell was tested using standard organo-phosphate nerve gas simulants, Dimethyl methyl phosphonate (DMMP) and Diisoprpyl methyl phosphonate (DIMP). Current MEMS work centered on fabrication of a multi-layer cell subsystem to be incorporated in the full photoacoustic device. Preliminary results were very positive for the macro-cell sensitivity (ppb levels) and specificity indicating that the scaled cell maintains sensitivity. Several bonding schemes for a three-dimension MEMS photoacoustic cavity were investigated with initial results of a low temperature AuSn bond proving most feasible..
机译:光声光谱是一种有用的监测技术,非常适合于痕量气体检测。当系统尺寸缩放到微系统设计时,该技术还具有有利的检测特性。目前工作的目的是将军,将军研究实验室(ARL),压电微机电系统(MEMS)和化学和生物感测到整体MEMS光声痕量气体传感器中的两个优势。研究了小型化的宏观小区设计作为检查性能和设计问题的手段,因为光声缩放到接近MEMS级别的维度。使用标准有机磷酸核神经气体模拟剂,二甲基膦酸酯(DMMP)和二异丙醇甲基膦酸酯(DIMP)测试宏观细胞的性能。目前的MEMS在制造多层细胞子系统的制造中以掺入全光声器件的工作。初步结果对于宏观细胞敏感性(PPB水平)和表明缩放细胞保持灵敏度的特异性是非常阳性的。针对三维MEMS光声腔的几种粘接方案进行了初始结果,低温AUSN键证明最可行的。

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