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Functional-Material-Based Touch Interfaces for Multidimensional Sensing for Interactive Displays:A Review

机译:基于功能材料的触摸屏,用于交互式显示器的多维传感:综述

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摘要

Multidimensional sensing is a highly desired attribute for allowing human-machine interfaces(HMIs)to perceive various types of information from both users and the environment,thus enabling the advancement of various smart electronics/applications,e.g.,smartphones and smart cities.Conventional multidimensional sensing is achieved through the integration of multiple discrete sensors,which introduces issues such as high energy consumption and high circuit complexity.These disadvantages have motivated the widespread use of functional materials for detecting various stimuli at low cost with low power requirements.This work presents an overview of simply structured touch interfaces for multidimensional(x-y location,force and temperature)sensing enabled by piezoelectric,piezoresistive,triboelectric,pyroelectric and thermoelectric materials.For each technology,the mechanism of operation,state-of-the-art designs,merits,and drawbacks are investigated.At the end of the article,the author discusses the challenges limiting the successful applications of functional materials in commercial touch interfaces and corresponding development trends.
机译:多维感测是一种非常值的属性,用于允许人机接口(HMI)从用户和环境中感知各种类型的信息,从而能够推进各种智能电子设备/应用程序,例如智能手机和智能城市。转移多维传感通过集成多个离散传感器来实现,这引入了高能耗和高电路复杂性等问题。这些缺点是激发了用于以低功率要求以低成本检测各种刺激的功能材料的广泛使用。这是一个概述通过压电,压阻,摩擦,热电和热电材料实现的多维(XY位置,力和温度)感测的简单结构触摸界面。对于各种技术,操作机制,最先进的设计,优点和调查缺点。作者讨论了本文的末尾在商业触摸界面中功能材料的成功应用以及相应的发展趋势来说,限制了挑战。

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