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Chip-scale aerosol impactor with integrated resonant mass balances for real time monitoring of airborne particulate concentrations

机译:芯片级气溶胶撞击器,具有集成的共振质量平衡,可实时监测空气中的颗粒物浓度

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This work presents chip-scale integration of MEMS resonant mass balances along with aerosol inertial impactors (airborne microanoparticle collectors). A three mask microfabrication process has been developed to produce the main components; mass balance, impactor nozzle, and impaction micro-chamber on a single SOI substrate. In addition to extreme miniaturization of a conventionally bulky setup and allowing real-time particulate mass concentration data collection, this approach addresses assembly challenges for discrete versions of such systems, e.g. misalignment between MEMS resonators and nozzles. Furthermore, small nozzle diameters achievable through microfabrication, minimizes the air flow and therefore pump capacity requirements.
机译:这项工作提出了MEMS共振质量平衡与气溶胶惯性冲击器(机载微米/纳米粒子收集器)的芯片级集成。已经开发了一种三掩膜微加工工艺来生产主要部件。质量平衡,冲击器喷嘴和单个SOI基板上的冲击微腔。除了常规体积庞大的装置的极端小型化并允许实时收集颗粒质量浓度数据外,这种方法还解决了诸如此类系统的离散版本的组装挑战。 MEMS谐振器和喷嘴之间的未对准。此外,通过微细加工可获得的小喷嘴直径最大程度地减少了空气流量,从而降低了泵的容量要求。

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