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Latest Advances in Silver Nanowire Based Touch Module Reliability

机译:基于银纳米线的触控模块可靠性的最新进展

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Capacitive touch screens have become an integral component of our everyday lives, from smartphones and tablets to wearable devices, smart-home devices, smart automobiles, entertainment on airplanes, and even in public places such as hotels or shopping malls. As alternative transparent conductive materials to traditional Indium Tin Oxide (ITO) are considered, silver nanowires are among the nanomaterials that offer improved flexibility and performance. However, for wide-scale adoption of these alternative materials in the touch panel marketplace, high manufacturing yields are required, along with performance and reliability in representative environments. This paper summarizes recent work testing capacitive touch modules in rigorous environments, including high temperature at high humidity with bias, high temperature storage, low temperature storage, thermal shock, salt spray (fog), and electrostatic discharge. It is shown that through appropriate selection of design, materials, and process that silver nanowire-based touch screens can pass such environmental challenges and are suitable for use in consumer electronics. An overview of the fabrication process is provided in addition to reliability test methods and results.
机译:电容式触摸屏已成为我们日常生活的整体组成部分,从智能手机和平板电脑到可穿戴设备,智能家居设备,智能汽车,飞机娱乐,甚至在酒店或购物中心等公共场所。考虑到传统的氧化铟锡(ITO)的替代透明导电材料,银纳米线是纳米材料中,提供改善的灵活性和性能。然而,对于触摸板市场中这些替代材料的广泛采用,需要高制造产量,以及代表性环境的性能和可靠性。本文总结了最近在严格环境中测试电容式触摸模块,包括高湿度的高温,高温存储,低温储存,热冲击,盐雾(雾)和静电放电。结果表明,通过适当的设计,材料和工艺选择,基于银纳米线的触摸屏可以通过这种环境挑战并且适用于消费电子产品。除了可靠性测试方法和结果之外,还提供了制造过程的概述。

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