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Design of a front-end signal processing circuitry for Capacitive Multi-touch Screens

机译:电容式多点触摸屏的前端信号处理电路设计

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Capacitive Multi-touch Screens are attractive for smart phone, tablet PC, industrial monitors, 3D or 4D visualization interactions, commercial office and so on. With the increasing size of the touch screen, a touch prediction and window sensing (TPWS) strategy was proposed for reducing the system costs and power consumptions. However, the traditional front-end signal processing circuits with charge integrating are not proper for the TPWS strategy. This paper presents a new front-end signal processing circuits dedicated for the TPWS touch screen systems. A charge to digital converter (CDC) is designed to realize the functions of charge integrating circuits and analog to digital converter (ADC) in the traditional touch screen system for the capacitance measurement. Combining differential input sensing and single input sensing, both the capacitance of an intersection and the shunt capacitance of the intersections on one electrode,that is required for the TPWS system, can be measured with the proposed circuits. The design was realized in a 0.13 μm 1.8 V/5 V CMOS process. The area of the prototype chip is 0.087 mm2 per sensing channel. The tests were performed with a 15-inch touch panel. The total power consumption of the system is only about 65 mW with power supply of 5 V, and the reporting rate of the system achieves 500 Hz for none touch and 83 Hz for 10 touches. The proposed circuits satisfy the requirements of the TPWS touch screen systems, and can also be used for the other capacitive touch screen systems.
机译:电容式多点触摸屏非常适合智能手机,平板电脑,工业显示器,3D或4D可视化交互,商业办公等。随着触摸屏尺寸的增加,提出了一种触摸预测和窗口感测(TPWS)策略,以降低系统成本和功耗。然而,传统的带有电荷积分的前端信号处理电路不适用于TPWS策略。本文提出了一种专用于TPWS触摸屏系统的新型前端信号处理电路。电荷数字转换器(CDC)设计用于在传统的触摸屏系统中实现电荷积分电路和模数转换器(ADC)的功能,以进行电容测量。结合差分输入感测和单输入感测,TPWS系统所需的交叉点电容和一个电极上交叉点的并联电容都可以用所提出的电路进行测量。该设计是通过0.13μm1.8 V / 5 V CMOS工艺实现的。每个感测通道的原型芯片面积为0.087 mm2。测试使用15英寸触摸屏进行。使用5 V电源时,系统的总功耗仅为65 mW,并且系统的报告速率在无触摸情况下达到500 Hz,在10触摸情况下达到83 Hz。所提出的电路可以满足TPWS触摸屏系统的要求,也可以用于其他电容式触摸屏系统。

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