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A novel noise suppression solution for low cost microcontroller-based touch panel: Using inverse charge transfer capacitive sensing method

机译:基于低成本微控制器的触摸屏的新型噪声抑制解决方案:使用逆电荷传输电容传感方法

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The proposed method uses a simultaneous pre-charging schema to sensing capacitance change on the sensing pad. In order to compensating the unstable sensing value due to the changing in power supply, an extra reference capacitor pair is adding to the schema. With simultaneous pre-charging schema, all of the sensing capacitors (C) including reference capacitors are charged to same voltage level before transferring charge to sensing pads. Therefore, the charge transfer times of all sensing channels do not interference by unstable power supply because transfer times can be compensated by reference channel. As for the noise injected during touching, the sensing pad discharge and manual leakage control allow using high volume C to construct a lower bandwidth passive analog filter front end without being stalling the measuring time significantly, so the stability of input level sensing is guaranteed. By combining the two noise-resisted features, touch sensing design implemented in a single microcontroller does not rely on high quality LDO and even can be feed from bulk converter directly.
机译:所提出的方法使用同时预充电模式来感测传感垫上的电容变化。为了补偿由于电源变化而不稳定的感测值,额外的参考电容对加入架构。通过同时预充电模式,包括参考电容器的所有感测电容器(C)在转移到感测垫之前在相同的电压电平上充电。因此,所有感测通道的电荷传递时间不会通过不稳定电源干扰,因为可以通过参考通道补偿传输时间。对于在触摸期间注入的噪声,传感焊盘放电和手动泄漏控制允许使用大容量C构造下带宽无源模拟滤波器前端,而不显着地停止测量时间,因此可以保证输入电平检测的稳定性。通过组合两种抗噪声功能,在单个微控制器中实现的触摸感测设计不依赖于高质量的LDO,甚至可以直接从散装转换器供给。

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