Department of Electrical and Electronic Engineering, Yonsei University, Seoul 03722, Korea.
QUI Inc., Daejeon 34129, Korea.
Sensors (Basel). 2020 Nov 5;20(21):6306. doi: 10.3390/s20216306.
Herein, a passive low-profile moisture sensor design based on radio frequency identification (RFID) technology is proposed. The sensor consists of an LC resonant loop, and the sensing mechanism is based on the fringing electric field generated by the capacitor in the circuit. A standard planar inductor and a two-layer interdigital capacitor (IDC) with a significantly higher fringing capacitance compared to that of a conventional parallel plate capacitor (PPC) are used, resulting in improved frequency offset and sensitivity of the sensor. Furthermore, a sensor tag was designed to operate at an 8.2 MHz electronic article surveillance (EAS) frequency range and the corresponding simulation results were experimentally verified. The IDC- and PPC-based capacitor designs were comprehensively compared. The proposed IDC sensor exhibits enhanced sensitivity of 10% in terms of frequency offset that is maintained over time, increased detection distance of 5%, and more than 20% increase in the quality factor compared to sensors based on PPC. The sensor's performance as a urine detector was experimentally qualified. Additionally, it was shown experimentally that the proposed sensor shows a faster response to moisture. Both simulation and experimental data are presented and elucidated herein.
本文提出了一种基于射频识别(RFID)技术的被动式低剖面湿度传感器设计。该传感器由 LC 谐振回路组成,其传感机制基于电路中电容器产生的边缘电场。采用标准平面电感和具有比传统平行板电容器(PPC)更高边缘电容的双层叉指电容器(IDC),从而提高了传感器的频率偏移和灵敏度。此外,设计了一个传感器标签,使其在 8.2MHz 的电子商品监视(EAS)频率范围内工作,并对相应的仿真结果进行了实验验证。综合比较了基于 IDC 和 PPC 的电容器设计。与基于 PPC 的传感器相比,所提出的 IDC 传感器在频率偏移方面具有 10%的增强灵敏度,并且该灵敏度能够保持稳定,检测距离增加了 5%,品质因数增加了 20%以上。实验证明了该传感器作为尿液探测器的性能。此外,实验表明,所提出的传感器对湿度的响应更快。本文呈现并阐述了仿真和实验数据。