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A noise-immune stylus analog front-end using adjustable frequency modulation and linear-interpolating data reconstruction for both electrically coupled resonance and active styluses

机译:一种使用可调频率调制和线性插值数据重建的噪声免疫触控器模拟前端,用于电耦合谐振和有效触控器

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As the demand for intuitive and interactive displays is increasing in mobile devices such as smartphones and tablets, a pressure-sensitive stylus pen solution is needed for advanced user experiences [1-5]. Figure 10.4.1 compares electromagnetic resonance (EMR), active, and electrically coupled resonance (ECR) stylus systems, and shows cross-sectional views of sensor panels. EMR stylus systems have been successfully commercialized for high-end devices due to their battery-less, light, and pressure-sensing features [1-2]. However, EMR stylus systems require an extra sensing panel for electro-magnetic coupling. The active stylus system does not require the additional sensing panel but needs a battery located inside the stylus. On the other hand, ECR stylus systems are cost-effective without needing either the additional sensing panel or a built-in battery. Furthermore, ECR stylus systems measure pen pressure by sensing a stylus' resonant frequency change upon pressure without additional circuitry [3]. Due to the external noise injection to the stylus system being more than ten times larger than the pen signal as shown in Fig. 10.4.1, noise immunity is a key performance factor for commercialization. This paper proposes an analog front-end (AFE) for both ECR and active stylus systems with high noise immunity that results in improved signal-to-noise ratio (SNR) by applying a fully differential architecture, adjustable frequency modulation (AFM), and linear-interpolating data reconstruction (LIDR).
机译:随着对智能手机和平板电脑等移动设备的直观和交互式显示的需求,高级用户体验需要压敏的手写笔解决方案[1-5]。图10.4.1比较电磁共振(EMR),有源和电耦合谐振(ECR)触控器系统,并显示了传感器面板的横截面视图。由于其电池较低,光和压力传感功能[1-2],EMR触控笔系统已成功为高端设备商业化。然而,EMR触控器系统需要一种用于电磁耦合的额外传感面板。主动触控笔系统不需要额外的传感面板,但需要位于触控笔内的电池。另一方面,ECR触控器系统具有成本效益,而无需附加的传感面板或内置电池。此外,ECR触控笔系统通过在没有额外电路的压力下感测触控笔的谐振频率变化来测量笔压[3]。由于触控笔系统的外部噪声喷射大于比笔信号大的十倍以上,如图10所示.10.4.1,抗噪性是商业化的关键性能因素。本文提出了一种模拟前端(AFE),用于ECR和有效触控管系统,具有高噪声免疫力,通过应用全差分架构,可调节频率调制(AFM)和线性插值数据重建(LIDR)。

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