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A fast-sensing readout circuit in 240 Hz enabled by code division multiple access (CDMA) implemented for an ultra-thin on-cell flexible capacitive touch panel

机译:通过码分多址(CDMA)实现了240 Hz的快速感应读出电路,用于超薄在单元柔性电容式触摸面板

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摘要

A new fast readout circuit employing the known coding scheme of code division multiple access (CDMA) is successfully designed and applied to a 7-inch ultra-thin, flexible on-cell touch screen panel (TSP). The adopted CDMA is known originally as a coding scheme for data communication, which is applied in this study to address the sensing electrodes of the ultra-thin flexible touch panel. Due to the orthogonality between the driving signals to the touch panel coded by Walsh transform, one type of CDMA, the interference noises between sensing electrodes can be reduced effectively to render accurate touch sensing results. The electromagnetic interference from the flexible display can also be filtered out as baseline component in the output signal. And the frame time of touch reporting can be substantially shortened. Following the sensing electrode is a new readout designed of the switched-capacitor (SC) circuit, to avoid distributing sample signals from parasitic capacitance and also to enlarge the voltage changes due to the capacitance changes caused by touches. A 12-bit analog-to-digital converter (ADC) is orchestrated after the SC circuit to transform the front-end analog signal to digital codes. The digital part of the designed readout adopts a correction algorithm to eliminate the background signals from the display, and also a moving average algorithm to minimize the higher-frequency noises from the display and other electrodes. Experiments are conducted to validate the expected performance. It is evidenced that the Walsh code driving algorithm improves the quality of the readout output signal to be in 42 dB SNR, the report rate to a fast 240 Hz, and a power consumption of 0.39 mW by each sensing channel.
机译:采用码分多次访问(CDMA)的已知编码方案的新的快速读出电路成功设计并应用于7英寸超薄,柔性的触摸屏面板(TSP)。所采用的CDMA最初是作为数据通信的编码方案,其应用于本研究以寻址超薄柔性触摸板的传感电极。由于驱动信号与由沃尔什变换编码的触摸面板之间的正交性,一种类型的CDMA,可以有效地减少感测电极之间的干扰噪声以呈现精确的触摸感测结果。来自柔性显示器的电磁干扰也可以在输出信号中作为基线分量进行滤波。触摸报告的帧时间可以大大缩短。在感测电极之后是由开关电容器(SC)电路设计的新读出,以避免从寄生电容分配样本信号,并且也扩大由于触摸引起的电容变化而变化。在SC电路之后策划了12位模数转换器(ADC)以将前端模拟信号转换为数字代码。设计读数的数字部分采用校正算法来消除来自显示器的背景信号,以及移动的平均算法,以最小化来自显示器和其他电极的高频噪声。进行实验以验证预期的绩效。可以证明沃尔什码驱动算法将读出输出信号的质量提高到42 dB SNR,报告速率为快速240Hz,每个感测通道的功耗为0.39 mW。

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