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Design Factors for Flexible Capacitive Sensors in Ambient Intelligence

机译:环境智能柔性电容传感器的设计因素

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Capacitive sensors in both touch and proximity varieties are becoming more common in many industrial and research applications. Each sensor requires one or more electrodes to create an electric field and measure changes thereof. The design and layout of those electrodes is crucial when designing applications and systems. It can influence range, detectable objects, or refresh rate. In the last years, new measurement systems and materials, as well as advances in rapid prototyping technologies have vastly increased the potential range of applications using flexible capacitive sensors. This paper contributes an extensive set of capacitive sensing measurements with different electrode materials and layouts for two measurement modes - self-capacitance and mutual capacitance. The evaluation of the measurement results reveals how well-suited certain materials are for different applications. We evaluate the characteristics of those materials for capacitive sensing and enable application designers to choose the appropriate material for their application.
机译:在许多工业和研究应用中,触摸和接近品种的电容传感器在触摸和邻近品种中变得越来越普遍。每个传感器需要一个或多个电极来产生电场并测量其变化。在设计应用和系统时,这些电极的设计和布局是至关重要的。它可以影响范围,可检测物体或刷新率。在过去几年中,使用柔性电容传感器大大增加了新的测量系统和材料,以及快速原型技术的进步,从而大大增加了潜在的应用范围。本文有助于具有不同电极材料的广泛电容感测量测量和两个测量模式的布局 - 自电容和相互电容。测量结果的评估表明,某些材料如何用于不同的应用。我们评估电容传感材料的特性,使应用设计人员能够为其应用选择适当的材料。

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