Fast Readout and Low Power Consumption in Capacitive Touch Screen Panel by Downsampling

Q Engineering
Shuo Gao;Jackson Lai;Arokia Nathan
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引用次数: 5

Abstract

This paper reports on downsampling-based techniques to achieve low power consumption and fast readout for capacitive touch screen panels. Here, touch interactivity is processed as an image, which is downsampled and reconstructed to estimate the touch position. After the reconstruction, a regional scan is performed around the reconstructed touch location to retrieve accurate touch information. Based on experimental and simulation results, we successfully decreased readout time and power consumption by 11.3 ms (68%) and 8.79 mW (68.7%), respectively, when only 25% sensors were selected. The presented technique yields higher responsivity and lower power consumption while maintaining detection accuracy.
电容式触摸屏下采样快速读出与低功耗
本文报道了基于下采样的技术,以实现电容式触摸屏面板的低功耗和快速读出。这里,触摸交互被处理为图像,该图像被下采样和重构以估计触摸位置。在重建之后,在重建的触摸位置周围执行区域扫描以检索准确的触摸信息。基于实验和仿真结果,当只选择25%的传感器时,我们成功地将读出时间和功耗分别降低了11.3ms(68%)和8.79mW(68.7%)。所提出的技术在保持检测精度的同时产生更高的响应度和更低的功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Display Technology
Journal of Display Technology 工程技术-工程:电子与电气
CiteScore
1.50
自引率
0.00%
发文量
0
审稿时长
2.8 months
期刊介绍: This publication covers the theory, material, design, fabrication, manufacturing and application of information displays and aspects of display technology that emphasize the progress in device engineering, design and simulation, materials, electronics, physics, and reliability aspects of displays and the application of displays. The Journal is sponsored by EDS, seven other IEEE societies (BT, CES, CPMT, IA, IM, PHO and SSC) and the Optical Society of America (OSA).
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