标题: 电容式触控面板感测单元抗静电能力最佳化研究
Dependence of anti-electrostatic ability of capacitive touch sensor
作者: 陈建宇
Chen, Chien-Yu
刘柏村
Liu, Po-Tsun
平面显示技术硕士学位学程
关键字: 触控面板;静电炸伤;touch panel;ESD
公开日期: 2014
摘要: 本论文主要是在探讨目前触控面板,在制作过程中,为避免面板在制程中膜面刮伤导致触控单元电性失效,往往会在制程中的各站点运送途中加上制程保护膜,以降低人员或机台对于触控面板刮伤的机率。然而,增加了保护膜可降低刮伤的机率,却又因线上人员的手法的差别,或工作环境温湿度控制不当而造成触控感测单元遭到静电炸伤的风险。
防止静电炸伤的主要方式,从元件设计的观点不外乎是电性的防堵及宣泄。论文中使用了目前最常用的触控感测单元图样,并在此图样为基础的情况下从降低电阻(增加电性宣泄能力)及增加电容(增加防堵能力)两个方向去设计不同的感测单元,而后做成较小的触控面板。并搭配静电枪测试各种不同触控感应测试单元的抗静电能力。
最后本论文的实验结果中发现,不论是在X方向,或Y方向上降低电阻,或是改变电容的配置,都可以改善触控面板的抗静电能力。
This paper discusses the current touch panel process development. In order to avoid the touch panel scratches in the manufacturing process, it would attached a protect film on the touch panel at each process stop. However, the protective film can reduce the chance of scratching, but the differences in personnel practices, or the temperature and humidity of working environment made the touch panel suffered ESD issue.

The main way to prevent the touch panel of ESD damage is releasing and shielding. We used the commonly touch sensor pattern, and this pattern is at the basis of the case from the lower the resistance and the change the capacitance to design different touch sensor unit. Then we made a small touch panel in each condition and used an electrostatic discharge simulator to test antistatic ability of each samples.

Finally, the results show in the experiment, whether resistance is reduced in the X direction, the Y direction, or change the setting of capacitance can improve the antistatic ability of the touch panel.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070161606
http://hdl.handle.net/11536/75969
显示于类别:Thesis