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MICROCANTILEVER-BASED GAS SENSOR EMPLOYING TWO SIMULTANEOUS PHYSICAL SENSING MODES

机译:应用两种同时物理感应模式的基于微悬臂的气体传感器

摘要

According to one embodiment, a system for detecting and identifying gases includes a piezoresistive microcantilever transducer, wherein dissipation of heat from the piezoresistive microcantilever into one or more gases is measured by changes in an electrical resistance of the piezoresistor, a vibrating microcantilever transducer, wherein shifts are measured in resonant frequency of the vibrating microcantilever due to viscous damping thereof by the one or more gases, and a subsystem for correlating the measured resistance changes and the resonant frequency shifts to the one or more gases. In another embodiment, a method for detecting and identifying one or more gases includes determining dissipation of heat from a microcantilever into one or more gases, and determining shifts in resonant frequency of the microcantilever due to viscous damping thereof by the one or more gases. Other systems, methods, and computer program products are also described according to more embodiments.
机译:根据一个实施例,一种用于检测和识别气体的系统包括压阻微悬臂梁换能器,其中,通过压阻,振动微悬臂梁换能器的电阻变化来测量从压阻微悬臂梁向一种或多种气体的散热。由于振动微悬臂梁的一种或多种气体的粘性阻尼而在振动微悬臂梁的共振频率上进行测量,并且子系统用于将测得的电阻变化与共振频率移至一种或多种气体相关。在另一实施例中,一种用于检测和识别一种或多种气体的方法包括:确定从微悬臂梁向一种或多种气体的热耗散;以及确定由于一种或多种气体对其的粘性阻尼而导致的微悬臂梁的共振频率的偏移。根据更多实施例,还描述了其他系统,方法和计算机程序产品。

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