Datta Arunashish, Yang David, Maity Shovan, Sen Shreyas
School of Electrical and Computer Engineering, Purdue University, West Lafayette, 47906, IN, USA.
Quasistatics Inc., West Lafayette, 47906, IN, USA.
Commun Eng. 2025 Mar 24;4(1):56. doi: 10.1038/s44172-025-00380-y.
Touchscreens are a fundamental technology for human society providing the primary gateway for human-machine interaction. Today's touchscreens can only be used to detect touch and provide the location of the user's touch input but not to simultaneously communicate digital data during a touch event through the touchscreen. If communication through a touchscreen can be enabled, it promises deep societal impact by augmenting the most popular Human-Computer-Interaction interface with new possibilities such as a single application on the same device opening up personalized user-specific account data depending on the person interacting with the application. Leveraging advances in Electro-Quasistatic field based communication in the past decade, we propose and demonstrate Touchscreen Communication (ToSCom), a high-speed (>Mbps) simultaneous communication and touch sensing interface. We develop a low path loss channel across the entire touchscreen surface enabling 3 Mbps data rate communication with an average bit-error-rate of less than 5 × 10 through the touchscreen surface simultaneously during touch sensing. ToSCom enables a wide range of possibilities in day-to-day life like in wearable devices like transactions in a Point-of-Sale system, audio/image file transfer, and viewing personalized data in touchscreen kiosks.
触摸屏是人类社会的一项基础技术,是人机交互的主要通道。如今的触摸屏仅能用于检测触摸并提供用户触摸输入的位置,却无法在触摸事件期间通过触摸屏同时传输数字数据。如果能够实现通过触摸屏进行通信,那么它有望通过为最流行的人机交互界面增添新功能,如同一设备上的单个应用程序根据与该应用程序交互的人员打开个性化的特定用户账户数据,从而产生深远的社会影响。利用过去十年基于电准静态场通信的进展,我们提出并演示了触摸屏通信(ToSCom),这是一种高速(>Mbps)的同时通信和触摸感应接口。我们开发了一种贯穿整个触摸屏表面的低路径损耗通道,在触摸感应期间能够通过触摸屏表面同时实现3 Mbps的数据速率通信,平均误码率小于5×10 。ToSCom在日常生活中带来了广泛的可能性,例如在可穿戴设备中,如在销售点系统中进行交易、音频/图像文件传输以及在触摸屏信息亭中查看个性化数据。