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High Precision Active-Matrix Self-Capacitive Touch Panel Based on Fluorinated ZnO Thin-Film Transistor

机译:基于氟化ZnO薄膜晶体管的高精度有源矩阵自电容触摸屏

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摘要

Matrix-addressed capacitive sensing is popularly employed in advanced multi-touch panels. While the number of simultaneous touch points of a passively addressed matrix is limited, the simultaneous touch points of an actively addressed matrix are constrained only by the size of the matrix and can be more densely packed. Since the touch panel is typically inserted between a display panel and the user, it would be the best if the transistors in an active-matrix touch panel are transparent. Reported presently is such a panel realized using a fluorinated zinc oxide transparent thin-film transistor technology. The technology can be applied to construct panels requiring high touch resolution, such as precision stylus pen-based writing, fingerprint sensing and sensing of the area of the touch, etc.
机译:矩阵寻址电容式感应广泛用于高级多点触摸面板。虽然被动寻址矩阵的同时触摸点的数量受到限制,但主动寻址矩阵的同时触摸点仅受矩阵大小的限制,并且可以更密集地排列。由于触摸面板通常插入在显示面板和用户之间,因此如果有源矩阵触摸面板中的晶体管是透明的,那将是最好的。目前报道的是使用氟化氧化锌透明薄膜晶体管技术实现的这种面板。该技术可应用于需要高触摸分辨率的建筑面板,例如基于精密手写笔的书写,指纹感应和触摸区域感应等。

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