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Effective approaches for low temperature polysilicon TFT LCD post-mapping yield control problem

机译:解决低温多晶硅TFT LCD映射后成品率问题的有效方法

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Low-temperature polysilicon (LTPS) technology has drawn the attention of many display manufacturers because it has several potential advantages over amorphous thin-film-transistor liquid crystal display TFT LCD). The mapping operation matches one TFT and one color-filter (CF) glass plate together to form one LCD plate. Each plate contains a certain number of cells that are independent devices. The matched LCD cell is good only when the TFT and CF cell match is good. When only a TFT or CF cell is good, there is a yield loss. The sorter is a robot used in LCD manufacturing systems to achieve higher yield in matching TFT and CF plates. This sorter contains several ports that can transfer CF glasses from CF cassettes to match TFT glasses. This is an important determinant for post-mapping yield. This study first proposes a linear programming formulation to optimize the plates-matching problem for the various ports. Next, we propose an algorithm to reduce the number of ways for choosing different matched objects when the number of matched cassettes is large. This algorithm avoids computer overload and provides an excellent solution. The empirical results illustrate the efficiency and effectiveness of the proposed approaches. Note to Practitioners - Yield is an important competitiveness determinant for thin-film-transistor liquid crystal display (TFT LCD) factories. TFT-LCD contains three major manufacturing sectors: the array, cell and module assembly processes. The yield loss from the cell process is one of the most critical steps. This study first formulates a linear programming for the TFT color-filter plates-matching problem in the cell process and a reduction algorithm then is developed to reduce the computational efforts. Our proposed approach is workable and it does not require a significant investment to produce yield improvement by applying the proposed matching algorithm.
机译:低温多晶硅(LTPS)技术已经吸引了许多显示器制造商的关注,因为它比非晶薄膜晶体管液晶显示器TFT LCD具有许多潜在的优势。映射操作将一块TFT和一块滤色(CF)玻璃板匹配在一起,以形成一块LCD板。每个板包含一定数量的单元格,它们是独立的设备。仅当TFT和CF单元匹配良好时,匹配的LCD单元才是好的。当仅TFT或CF单元良好时,会有产量损失。该分选机是一种用于LCD制造系统的机器人,可以在匹配的TFT和CF板上实现更高的产量。该分选器包含多个端口,可以从CF卡匣中传输CF眼镜以匹配TFT眼镜。这是映射后产量的重要决定因素。这项研究首先提出了一种线性规划公式,以优化各个端口的板匹配问题。接下来,我们提出一种算法,以减少匹配盒式磁带数量大时选择不同匹配对象的方式。该算法避免了计算机过载,并提供了出色的解决方案。实证结果说明了所提出方法的效率和有效性。从业人员注意-产量是薄膜晶体管液晶显示器(TFT LCD)工厂的重要竞争力决定因素。 TFT-LCD包含三个主要制造部门:阵列,单元和模块组装过程。电池工艺的产量损失是最关键的步骤之一。这项研究首先为单元格工艺中的TFT彩色滤光片匹配问题制定了线性程序,然后开发了一种简化算法以减少计算量。我们提出的方法是可行的,并且通过应用提出的匹配算法不需要大量投资就可以提高产量。

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