首页> 外文会议>Proceedings of the Forty-First IEEE holm conference on electrical contacts(Electrical Contacts-1995) >Microgradient: Effects of Contact Resistance, Material Properties and Geometry for Polymer-Based Sensor Applications
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Microgradient: Effects of Contact Resistance, Material Properties and Geometry for Polymer-Based Sensor Applications

机译:微梯度:接触电阻,材料特性和几何形状对基于聚合物的传感器应用的影响

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Microgradient has become an important parameter in the description of the electrical output signal as a function of displacement for potentiometric position sensors. These sensors are employed in increasingly sensitive control circuits which require linear outputs for resolution of very small incremental mechanical displacements. Contact resistance and variations in material resistivity were thought to create significant errors in output signal. This paper uses experimental data to explore the effects of material properties and geometry on the electrical output signal of a polymer-based material utilized as a potentiometric sensor. The output signal is described in terms of both microgradient and linearity. The relative contributions of contact resistance, material homogeneity, surface roughness, and contactor geometry are explored and discussed.
机译:在电输出信号的描述中,微梯度已成为电势位置传感器的位移函数,是一个重要参数。这些传感器用于越来越敏感的控制电路中,该控制电路需要线性输出以解决很小的增量机械位移。人们认为接触电阻和材料电阻率的变化会在输出信号中产生明显的误差。本文使用实验数据来探索材料特性和几何形状对用作电位传感器的聚合物基材料的电输出信号的影响。用微梯度和线性来描述输出信号。探索和讨论了接触电阻,材料均质性,表面粗糙度和接触器几何形状的相对贡献。

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