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A Mutual Capacitance Touch Readout IC With 64% Reduced-Power Adiabatic Driving Over Heavily Coupled Touch Screen

机译:一个相互电容触控读出IC,具有64%的减压绝热驾驶耦合耦合触摸屏

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This paper presents a touch sensing analog front end (AFE) for capacitive touch-screen integrated into an ultra-thin display. Reduced distance between the touch screen and display causes large capacitive coupling, resulting in increased parasitic capacitance and reduced touch sensitivity. Display noise interference is worse due to the large coupling capacitance. Hence, it is a challenge to design an AFE capable of accurate and energy efficient sensing of a touch input in the integrated touch-screen panel. An adiabatic multi-driving method based on charge recycling is proposed to provide power-efficient stimulation of the touch-screen panel. Furthermore, in order to cancel out the display noise interference through the large parasitic capacitance, a fully differential touch sensing module is incorporated in the AFE. A correlated noise sampling (NS) is employed in the decoder stage for the multi-driving demodulation process. To further improve power efficiency, the sensing module is multiplexed in four ways while achieving an optimal conversion time per sample. The proposed AFE was implemented in a 180-nm CMOS process. The fabricated AFE shows 57.0-dB signal-to-noise ratio (SNR) at 120 fps while consuming 17.8 mW. Compared with power consumption of 19.9 mW expected with a conventional signal generation, the proposed adiabatic signal generator dissipates only 7.1 mW, exhibiting a power reduction of 64% due to the adiabatic driving method.
机译:本文介绍了一种用于电容式触摸屏的触摸感测模拟前端(AFE)集成到超薄显示屏中。触摸屏和显示器之间的距离降低导致大的电容耦合,导致寄生电容增加和降低的触摸灵敏度。由于大的耦合电容,显示噪声干扰更差。因此,设计一种能够精确和节能地感测到集成触摸屏面板中的触摸输入的准确和节能的挑战。提出了一种基于充电回收的绝热多驱动方法,以提供触摸屏面板的功率有效刺激。此外,为了通过大的寄生电容抵消显示噪声干扰,在AFE中结合了完全差分触摸感测模块。用于多驾驶解调过程的解码器级采用相关噪声采样(NS)。为了进一步提高功率效率,感测模块以四种方式多路复用,同时实现每个样本的最佳转换时间。所提出的AFE在180nm CMOS过程中实施。制造的AFE在120 fps下显示57.0-dB信噪比(SNR),同时消耗17.8 mW。与传统信号产生预期的19.9 MW的功耗相比,所提出的绝热信号发生器仅消散7.1兆瓦,由于绝热驱动方法,表现出64%的功率降低。

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