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Particle Sensor Using Solidly Mounted Resonators

机译:使用牢固安装的谐振器的粒子传感器

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摘要

This paper describes the development of a novel particle sensing system employing zinc oxide based solidly mounted resonator (SMR) devices for the detection of airborne fine particles (i.e., PM2.5 and PM10). The system operates in a dual configuration in which two SMR devices are driven by Colpitts-type oscillators in a differential mode. Particles are detected by the frequency shift caused by the mass of particles present on one resonator with while the other acts as a reference channel. Experimental validation of the system was performed inside an environmental chamber using a dust generator with the particles of known size and concentration. A sensor sensitivity of 4.6 Hz per was demonstrated for the SMRs resonating at a frequency of 970 MHz. Our results demonstrate that the SMR-based system has the potential to be implemented in CMOS technology as a low-cost, miniature smart particle detector for the real-time monitoring of airborne particles.
机译:本文介绍了一种新颖的颗粒感测系统的开发,该系统采用基于氧化锌的固态安装谐振器(SMR)设备来检测空气中的细颗粒(即PM2.5和PM10)。该系统以双重配置运行,其中两个SMR器件由Colpitts型振荡器以差分模式驱动。通过一个谐振器上存在的粒子质量引起的频移来检测粒子,而另一个则作为参考通道。该系统的实验验证是在环境室内使用带有已知大小和浓度的颗粒的粉尘发生器进行的。在970 MHz的频率下共振的SMR的传感器灵敏度为4.6 Hz。我们的结果表明,基于SMR的系统有可能以CMOS技术实现为低成本,微型智能粒子检测器,用于实时监测机载粒子。

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