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A Low-Power, Wireless, Capacitive Sensing Frontend Based on a Self-Oscillating Inductive Link

机译:基于自振荡感应链路的低功耗,无线,电容式传感前端

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Wireless sensing systems are becoming popular in a range of applications, particularly in the case of biomedical circuits and food monitoring systems. A typical wireless sensing system, however, may require considerable complexity to perform the necessary analog to digital conversion and subsequent wireless transmission. Alternatively, in the case of inductive link based systems, large, manually operated impedance analyzers are required. Based on a detailed analysis of the link impedance, this paper proposes a simple method for wireless capacitive sensing through an inductive link that uses a self-oscillator and a frequency counter. The method enables changes in capacitance to be sensed and wirelessly transmitted simultaneously. In order to test the effectiveness of the method, a self-oscillating circuit was designed and fabricated in $0.18~mu text{m}$ CMOS, and combined with an on-chip humidity sensing capacitor. The system was tested in a humidity chamber across a range of 20-90%rh. Measured results from the system demonstrate that capacitive changes as small as 28 fF, translating to <;2%rh, can be resolved, with a power consumption of 1.44 mW.
机译:无线感测系统在一系列应用中变得越来越流行,特别是在生物医学电路和食品监控系统的情况下。然而,典型的无线感测系统可能需要相当大的复杂度以执行必要的模数转换和随后的无线传输。或者,在基于感应链接的系统中,需要大型的手动操作的阻抗分析仪。在对链路阻抗进行详细分析的基础上,本文提出了一种通过使用自激振荡器和频率计数器的感应链路进行无线电容感测的简单方法。该方法使得能够同时感测和无线传输电容的变化。为了测试该方法的有效性,设计并制作了一种自振荡电路,采用0.18μmCMOS,并与片上湿度检测电容器相结合。该系统在湿度箱中经过20-90%rh的测试。该系统的测量结果表明,可以解决电容变化小至28 fF,转换为<; 2%rh的问题,功耗为1.44 mW。

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