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A low-cost acoustic microsensor based system in package for air quality monitoring

机译:一套基于成本的低成本声学微传感器的系统,用于空气质量监测

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In this paper we report on the development of a novel hybrid System in Package (SiP) microsensor utilizing high frequency acoustic wave devices for the real time monitoring of airborne fine particulates. The hybrid particle sensing system consists of a zinc oxide (ZnO) based solidly mounted resonator (SMR) device interfaced to a CMOS application-specific integrated circuit (ASIC) chip. Air is drawn into a virtual impactor where PM2.5 particles are separated and then deposited onto the SMR surface. The mass loading due to the fine particles is measured as a shift in the resonant frequency of the SMR working at 894 MHz. Experimental results performed in both laboratory conditions and real outdoor environment showed that the hybrid system is capable of detecting fine particles with a sensitivity of 7.5 kHz per μg/m3. This system is used as a basis towards a fully integrated portable smart particle sensor based on CMOS-SMR devices for the continuous, real-time and low-cost monitoring of airborne particulate matter.
机译:在本文中,我们报告了一种新型混合系统封装(SiP)微传感器的开发,该传感器利用高频声波设备实时监测机载微粒。混合粒子感测系统由基于氧化锌(ZnO)的固态安装谐振器(SMR)器件组成,该器件与CMOS专用集成电路(ASIC)芯片接口。空气被吸入虚拟撞击器中,在那里PM2.5颗粒被分离,然后沉积到SMR表面上。由细颗粒引起的质量负载被测量为在894 MHz下工作的SMR谐振频率的偏移。在实验室条件和真实室外环境下进行的实验结果表明,该混合系统能够以7.5 kHz /μg/ m3的灵敏度检测细颗粒。该系统用作基于CMOS-SMR设备的完全集成的便携式智能粒子传感器的基础,用于连续,实时和低成本地监测空气中的颗粒物。

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