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首页> 外文期刊>IEEE sensors journal >Touchscreen Surface Based on Interaction of Ultrasonic Guided Waves With a Contact Impedance
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Touchscreen Surface Based on Interaction of Ultrasonic Guided Waves With a Contact Impedance

机译:基于超声导波与接触阻抗相互作用的触摸屏表面

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摘要

In this paper, a touchscreen device is proposed, based on guided-wave reflection and transmission induced by the presence of an object. The principle uses the advantages of other acoustic wave devices in terms of simplicity and applicability to any thin surface but is not subject to classical drawbacks (single touch, sensitivity to scratches or contaminant, and impossibility to follow motion of contact point). The theoretical interaction of guided waves with contact impedance is first derived in order to define the requirements of the sensor in terms of frequency range, mode, sensor type and location, and embedded electronics. Design criteria and experimental validation on a small prototype ( mm) are proposed to demonstrate the potential of the approach for simple, robust, and reliable contact detection of pointlike or extended objects for consumer electronics or biomedical applications.
机译:在本文中,基于物体的存在引起的导波反射和透射,提出了一种触摸屏设备。该原理在简化和适用于任何薄表面方面利用了其他声波装置的优点,但不受经典缺陷(单点触摸,对刮擦或污染物的敏感性以及无法跟随触点运动)的困扰。首先导出导波与接触阻抗的理论相互作用,以便根据频率范围,模式,传感器类型和位置以及嵌入式电子设备来定义传感器的要求。提出了在小型原型(mm)上的设计标准和实验验证,以证明该方法具有潜力,可用于消费类电子产品或生物医学应用中的点状或扩展对象的简单,可靠且可靠的接触检测。

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