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首页> 外文期刊>Measurement Science & Technology >A smart, intermittent driven particle sensor with an airflow change trigger using a lead zirconate titanate (PZT) cantilever
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A smart, intermittent driven particle sensor with an airflow change trigger using a lead zirconate titanate (PZT) cantilever

机译:一种智能的间歇驱动颗粒传感器,采用钛酸锆钛酸铅(PZT)悬臂来控制气流变化

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摘要

This paper reports on a smart, intermittent driven particle sensor with an airflow trigger. A lead zirconate titanate cantilever functions as the trigger, which detects an airflow change without requiring a power supply to drive the sensing element. Because an airflow change indicates that the particle concentration has changed, the trigger switches the optical particle counter from sleep mode to active mode only when the particle concentration surrounding the sensor changes. The sensor power consumption in sleep mode is 100 times less than that in the active mode. Thus, this intermittent driven method significantly reduces the total power consumption of the particle sensor. In this paper, we fabricate a prototype of the particle sensor and demonstrate that the optical particle counter can be switched on by the fabricated trigger and thus that the particle concentration can be measured.
机译:本文报告了一种带有气流触发装置的智能间歇驱动颗粒传感器。钛酸锆钛酸铅悬臂用作触发器,无需电源即可驱动检测元件,即可检测气流变化。由于气流变化表明颗粒浓度已发生变化,因此仅当传感器周围的颗粒浓度发生变化时,触发器才会将光学颗粒计数器从睡眠模式切换到活动模式。睡眠模式下的传感器功耗比活动模式下的功耗低100倍。因此,这种间歇驱动方法大大降低了颗粒传感器的总功耗。在本文中,我们制造了粒子传感器的原型,并演示了可以通过制造的触发器打开光学粒子计数器,从而可以测量粒子浓度。

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