Design Considerations of Capacitive Sensors for Micro-Droplet Detection

O. P. Maurya, P. Sumathi
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Abstract

The flexible capacitive sensors are employed for micro-droplet detection in drug delivery systems. The structures of capacitive sensors such as interdigitated electrode and parallel plate types possess certain geometrical properties which are greatly influencing the accuracy, sensitivity, and stability. These properties are improved in semi-cylindrical type, whereas it is nullified in cross-capacitive sensor. In this paper, the semi-cylindrical and cross-capacitive sensor designs are analyzed for the suitability of micro-droplet detection. The proposed simulation studies include the change of capacitance due to variation in liquid droplet size and free-flying liquid droplet position sweep, electric field distribution between sensing and working electrodes. Moreover, the guard electrodes and metal shielding effects are analyzed for further improvement in sensor performance by eliminating the effects of stray capacitance. The COMSOL Multiphysics based simulation studies reveal the suitable sensitivity and change in capacitance for the sensor design.
微液滴检测电容式传感器的设计考虑
柔性电容式传感器用于药物输送系统中的微液滴检测。电容式传感器结构具有一定的几何特性,对传感器的精度、灵敏度和稳定性有很大的影响。这些特性在半圆柱形传感器中得到了改善,而在交叉电容传感器中则完全无效。本文分析了半圆柱形和交叉电容式传感器对微液滴检测的适用性。提出的仿真研究包括液滴尺寸变化和自由飞行液滴位置扫描引起的电容变化,传感电极和工作电极之间的电场分布。为了消除杂散电容的影响,进一步提高传感器的性能,分析了保护电极和金属屏蔽效应。基于COMSOL Multiphysics的仿真研究揭示了适合传感器设计的灵敏度和电容变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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