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DIRECT PRINTING OF CAPACITIVE TOUCH SENSORS ON FLEXIBLE SUBSTRATES BY ADDITIVE E-JET PRINTING WITH SILVER NANOINKS

机译:通过使用银纳米型添加电子喷射印刷在柔性基板上直接印刷电容式触摸传感器

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In this paper, techniques of direct printing of capacitive touch sensors on flexible substrates are presented. Capacitive touch sensors were fabricated by using electrohydrodynamic inkjet (E-jet) printing onto flexible substrates. Touch pad sensors can be achieved with optimized design of silver nanoink tracks. An analytical model was developed to predict touch pad capacitance, and experiments were conducted to study the effects of sensor design (e.g. number of electrodes, electrode length, and electrode distance) on the capacitance of printed coplanar capacitance touch sensors. Details of the fabrication techniques were developed to enable rapid prototype flexible sensors with simple structure and good sensitivity. The presented techniques can be used for the on-demand fabrication of different conductive patterns for flexible electronics with high-resolution and good transparency.
机译:本文介绍了柔性基板上的电容式触摸传感器的直接印刷技术。通过在柔性基板上使用电液动力喷墨(E-JET)印刷来制造电容式触摸传感器。通过优化的银纳米轨道设计,可以实现触摸板传感器。开发了一种分析模型以预测触摸垫电容,并进行实验,以研究传感器设计(例如电极数量,电极长度和电极距离)对印刷共面电容触摸传感器的电容的影响。开发了制造技术的细节,以实现具有简单结构和良好敏感性的快速原型柔性传感器。所提出的技术可用于具有高分辨率和良好透明度的柔性电子器件的不同导电图案的按需制造。

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