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Transparent, Flexible, and Passive Thermal Touch Panel

机译:透明,柔性和被动式热敏触摸屏

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摘要

This work presents a touch panel concept, which is enabled by a novel designof thin film thermocouples. The design offers a simple implementation byutilizing a single thin film to function as an array of thermocouples. Theconcept is demonstrated as a flexible, passive, and highly transparent touchpanel. The passive nature of the thermoelectric touch recognition allows theperformance of the presented sensor to be optimal at moderate sheet resistancevalues of the transparent conductive layers. Hence, the concept is highlypotential for low-cost large-area applications and does not rely on costlylow sheet resistance materials such as indium tin oxide. The demonstratorpresented in this work achieves a signal-to-noise ratio of 20 with a rise timeof 90 ms and is able to distinguish individual touches, sweeping with finger,as well as touching by multiple fingers at the same time. In addition, the conceptmay also be used in other thermal distribution mapping applications.
机译:这项工作提出了一种触摸面板的概念,该概念通过新颖的薄膜热电偶设计得以实现。该设计通过利用单个薄膜作为热电偶阵列来提供简单的实现。该概念被证明是一种灵活,被动和高度透明的触摸屏。热电触摸识别的无源特性使所提出的传感器的性能在透明导电层的中等薄层电阻值下达到最佳。因此,该概念对于低成本大面积应用具有很高的潜力,并且不依赖于昂贵的低薄层电阻材料,例如氧化铟锡。演示中的演示器实现了20的信噪比和90毫秒的上升时间,并且能够区分单个触摸,用手指扫动以及同时用多个手指触摸。另外,该概念也可以在其他热分布图应用中使用。

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