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A Highly Noise-Immune Capacitive Touch Sensing System Using an Adaptive Chopper Stabilization Method

机译:采用自适应斩波稳定方法的高噪声免疫电容式触摸感应系统

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摘要

This paper proposes a capacitive touch sensing system (CTSS) using an adaptive chopper stabilization (ACS) method to achieve high noise immunity. The proposed ACS method quickly detects and adaptively filters out external noises, thereby achieving high noise immunity in the proposed CTSS. To verify the proposed ACS method, a readout integrated circuit (ROIC) was fabricated using a 0.35-μm CMOS process technology with 18 V high-voltage devices and was measured using a 46-in capacitive touch sensor (CTS). When no external noises are induced into the CTS, the measured signal-to-noise ratio (SNR) of the ROIC is 45.8 dB at a reporting rate of 120 Hz. When external noises are induced into the CTS, the measured SNR of the ROIC using the ACS method is 44.5 dB, which is improved by 22.0 dB compared with the SNR achieved without using the ACS method. Therefore, the proposed ACS method effectively eliminates external noises induced into the CTS of the CTSS.
机译:本文提出了一种采用自适应斩波稳定(ACS)方法的电容式触摸感应系统(CTSS),以实现较高的抗噪能力。所提出的ACS方法可以快速检测并自适应滤除外部噪声,从而在所提出的CTSS中实现较高的抗噪能力。为了验证所提出的ACS方法,使用0.35μmCMOS工艺技术和18 V高压器件制造了读出集成电路(ROIC),并使用46英寸电容触摸传感器(CTS)进行了测量。当CTS中没有外部噪声时,ROIC的测得信噪比(SNR)为45.8 dB,报告速率为120 Hz。当外部噪声被引入CTS时,使用ACS方法测得的ROIC SNR为44.5 dB,与不使用ACS方法测得的SNR相比,提高了22.0 dB。因此,所提出的ACS方法有效地消除了引入CTSS的CTS中的外部噪声。

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