Single port, large area touch and force sensing: Towards low cost sensitive printed surfaces

S. Blayac, Arnaud Schreiner, Maxime Nouaille, Beatrice Dubois, F. Depoutot
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引用次数: 5

Abstract

A flexible touch panel touch panel based on the principle of interaction between a coplanar waveguide with the finger is presented. A concept of location based on harmonic analysis is detailed. The interaction is precisely modelled; it is shown that it is possible to have at the same time a precise location and measurement of touch force on a single port, independently. Measurements are carried out in order to assess the sensing concepts developed and evaluate the precision of location process. The combination of the printed sensor and sensing algorithm opens the way for potential very large flexible device, more than meter square, with ultra-simple connections. The combination of location and force sensing is an additional feature which has the potential to enrich strongly the degree of interaction in the case of application to human to machine interface.
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单端口,大面积触摸和力传感:面向低成本敏感印刷表面
提出了一种基于共面波导与手指相互作用原理的柔性触摸屏。详细介绍了基于谐波分析的定位概念。这种相互作用被精确地模拟;结果表明,可以同时在单个端口上独立地精确定位和测量触摸力。测量是为了评估开发的传感概念和评估定位过程的精度。印刷传感器和传感算法的结合为潜在的非常大的柔性设备开辟了道路,超过平方米,连接超简单。位置和力传感的结合是一个额外的功能,在应用于人机界面的情况下,它有可能极大地丰富交互程度。
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