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Effective tool design of three-rank form as precision removal-process of ITO thin-films

机译:有效的三排形式刀具设计作为ITO薄膜的精密去除工艺

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摘要

A new effective tool design of three-rank form of electroremoval was present using a precision recycle system offering faster performance in removing the indium-tin-oxide(ITO) thin-films on color filter surface of displays. Higher electric power is not required since the three-rank form tool is adopted as a feeding mode to reduce the response area. The low yield of ITO persists throughout the entire semiconductor production process. By establishing a recycle process of ultra-precise removal of the thin-film nanostructure, defective products in the optoelectronic semiconductors industry can be effectively recycled, decreasing both production costs and pollution. A 5th generation TFT-LCD was used. The design features of the removal processes for the thin-films and the tool design of three-rank form were of major interest. For the precision removal processes, a pulsed current can improve the effect of dreg discharge and contributes to the achievement of a fast workpiece (displays' color filter) feed rate, but raises the current rating. High flow velocity of the electrolyte with a high rotational speed of the tool electrodes elevates the ITO removal effect. A displays' color filter with a fast feed rate is combined with enough electric power to provide highly effective removal. A small thickness of the rank and a small arc angle of the negative-electrode correspond to a higher removal rate for ITO-film. An effective three-rank form negative-electrode provides larger discharge mobility and better removal effect. It only needs a short period of time to remove the ITO easily and cleanly.
机译:使用精密再循环系统提供更快的性能,在滤色器表面上取出铟 - 氧化铟锡(ITO)薄膜的精确性回收系统,提供了三级电烫的新的电电解罗华的新有效工具设计。由于采用了三级表单工具作为馈电以减少响应区域,因此不需要较高的电力。在整个半导体生产过程中,ITO的低产量仍然存在。通过建立超精确去除薄膜纳米结构的再循环过程,可以有效地回收光电半导体行业中的缺陷产物,降低生产成本和污染。使用第5代TFT-LCD。用于薄膜的去除过程的设计特征和三级形式的工具设计具有主要的兴趣。对于精密去除过程,脉冲电流可以提高渣滓放电的效果,并有助于实现快速工件的实现(显示滤色器)进料速率,但提高了电流额定值。电解质的高流速具有高转速的刀具电极升高了ITO去除效果。具有快速进给速率的显示器的滤色器与足够的电力相结合,以提供高效的去除。负电极的等级的小厚度和小电弧角对应于ITO膜的更高的去除率。有效的三级形式负极提供更大的放电迁移率和更好的去除效果。它只需要很短的时间才能轻松地清除ITO。

著录项

  • 来源
    《中国有色金属学报(英文版)》 |2009年第0z1期|232-237|共6页
  • 作者

    Pai-shan PA;

  • 作者单位

    National Taipei University of Education;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类
  • 关键词

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