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Large-Panel Multi-Touch Ultrasonic Touchscreen Using Lamb Wave

机译:使用兰姆波的大面板多点触摸超声波触摸屏

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Touchscreen sensors are used in various devices, including smartphones, tablets, and large panels. Many existing touch-sensing technologies have disadvantages for application to large-size panels. Ultrasonic technology is one of the several methods developed to address this problem; however, it has only been implemented in small panels less than 23 inches in size. In this study, ultrasonic touch sensing technology capable of multi-touch on a 55-inch glass panel using the Ao mode of a Lamb wave was developed. A pair of lead magnesium niobite-lead titanate (PMN-PT) sensors with a size of 3mm×3mm×1 mm was used as a set; one for transmitting and one for receiving. Four pairs of sensors (4-TX, 4-RX) were installed on 3-mm-thick glass, and the measured center frequency was 220 kHz. Traditional synthetic aperture imaging was used to detect the location of a finger touch. Signal difference data according to the presence or absence of the finger was used. Finally, a fingertip image was reconstructed by the delay-and-sum method, which proved successful detection of the finger.
机译:触摸屏传感器用于各种设备,包括智能手机,平板电脑和大型面板。许多现有的触摸感应技术在应用于大尺寸面板时均具有缺点。超声波技术是为解决这一问题而开发的几种方法之一。但是,它仅在尺寸小于23英寸的小面板中实现。在这项研究中,开发了能够使用兰姆波的Ao模式在55英寸玻璃面板上进行多点触摸的超声触摸感应技术。一对尺寸为3mm×3mm×1mm的铅镁铌酸铅-钛酸铅(PMN-PT)传感器作为一组;一台用于发送,一台用于接收。在3mm厚的玻璃板上安装了四对传感器(4-TX,4-RX),测得的中心频率为220 kHz。传统的合成孔径成像用于检测手指触摸的位置。使用根据手指的存在或不存在的信号差数据。最后,通过延迟求和法重建了指尖图像,证明了手指的成功检测。

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