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用于绿色智能人机界面的简易压敏电容式触摸键盘。

Facile Pressure-Sensitive Capacitive Touch Keypad for a Green Intelligent Human-Machine Interface.

机构信息

Department of Biomedical Engineering, Narowal Campus, University of Engineering and Technology, Lahore 54890, Pakistan.

Innovative Technologies Laboratories (ITL), King Abdullah University of Science and Technology (KAUST), Thuwal 23955, Saudi Arabia.

出版信息

Sensors (Basel). 2022 Oct 23;22(21):8113. doi: 10.3390/s22218113.

Abstract

There is a great demand for human-machine interfaces (HMIs) in emerging electronics applications. However, commercially available plastic-based HMIs are primarily rigid, application-specific, and hard to recycle and dispose of due to their non-biodegradability. This results in electronic and plastic waste, potentially damaging the environment by ending up in landfills and water resources. This work presents a green, capacitive pressure-sensitive (CPS), touch sensor-based keypad as a disposable, wireless, and intelligent HMI to mitigate these problems. The CPS touch keypads were fabricated through a facile green fabrication process by direct writing of graphite-on-paper, using readily available materials such as paper and pencils, etc. The interdigitated capacitive (IDC) touch sensors were optimized by analyzing the number of electrode fingers, dimensions, and spacing between the electrode fingers. The CPS touch keypad was customized to wirelessly control a robotic arm's movements based on the touch input. A low-pressure touch allows slow-speed robotic arm movement for precision movements, and a high-pressure touch allows high-speed robotic arm movement to cover the large movements quickly. The green CPS touch keypad, as a disposable wireless HMI, has the potential to enforce a circular economy by mitigating electronic and plastic waste, which supports the vision of a sustainable and green world.

摘要

在新兴电子产品应用中,人们对人机界面 (HMI) 的需求很大。然而,由于其不可生物降解性,商业上可获得的基于塑料的 HMIs 主要是刚性的、特定于应用的、难以回收和处理的。这导致电子和塑料废物的产生,最终可能会通过进入垃圾填埋场和水资源而对环境造成破坏。

这项工作提出了一种绿色的、电容式压力敏感 (CPS)、基于触摸传感器的键盘,作为一种一次性、无线和智能的 HMI,可以缓解这些问题。CPS 触摸键盘通过直接在纸上书写石墨,使用纸张和铅笔等现成材料,通过简单的绿色制造工艺制造。通过分析电极手指的数量、尺寸和电极手指之间的间距,对互电容 (IDC) 触摸传感器进行了优化。CPS 触摸键盘根据触摸输入定制为无线控制机器人手臂的运动。低压触摸允许机器人手臂以较慢的速度移动,用于精确运动,而高压触摸允许机器人手臂以较高的速度移动,以快速覆盖大运动。

作为一种一次性无线 HMI,绿色 CPS 触摸键盘具有通过减轻电子和塑料废物来强制实施循环经济的潜力,这支持了可持续和绿色世界的愿景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c317/9655723/6dd31d1802af/sensors-22-08113-g001.jpg

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