A novel measuring method of testing ITO protective coatings for use in mobile phone LCD's

M. Raes, M. Smeets
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引用次数: 5

Abstract

In liquid crystal displays (LCD's) for mobile phones various functional coatings are used. Besides optimized for the function they are applied for, these coatings need to fulfill reliability requirements. To avoid unexpected problems during lifetime, insight in the behavior of the materials is obtained using model studies. Important aspects to study are the interactions of the materials with other ambient materials and the protective function under influence of temperature and humidity. The advantage of model studies is that a specific aspect can be investigated and side effects can be excluded. More statistically sounded conclusions can be drawn and interactions, which occur at a low frequency, can be studied. An interesting aspect is the translation of the model studies to effects occurring on module level and in the application like a mobile phone. A typical example of a functional coating is a protection layer applied on the tin-doped indium oxide (ITO) tracks outside the active area of the display. Effects of humidity condensation and temperature play an important role in the functionality of the material whereas also interactions with other materials to which the protection layer is in contact are essential parameters. In this article we have investigated a new measuring method to shorten the evaluation time of the protective coatings at various ambient conditions.
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一种测试手机液晶屏用ITO保护涂层的新方法
在手机液晶显示器(LCD)中,使用了各种功能涂层。除了针对其应用功能进行优化外,这些涂层还需要满足可靠性要求。为了避免在使用寿命期间出现意外问题,通过模型研究获得了对材料行为的深入了解。研究的重要方面是材料与其他环境材料的相互作用以及在温度和湿度影响下的保护功能。模型研究的优点是可以研究一个特定的方面,并且可以排除副作用。可以得出统计上更合理的结论,并且可以研究发生频率较低的相互作用。一个有趣的方面是将模型研究转化为模块级和手机等应用程序中的效果。功能涂层的一个典型例子是在显示器活动区域外的锡掺杂氧化铟(ITO)轨道上涂上保护层。湿度、冷凝和温度的影响在材料的功能中起着重要的作用,而与保护层接触的其他材料的相互作用也是必不可少的参数。本文研究了一种新的测量方法,以缩短各种环境条件下防护涂层的评定时间。
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