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    • 5. 发明授权
    • Method for manufacturing liquid crystal display
    • 制造液晶显示器的方法
    • US06912038B2
    • 2005-06-28
    • US10673269
    • 2003-09-30
    • Chi-Chang LiaoIng-Jer LinYi-Chun WongChia-Rong SheuLung-Pin HsinKang--Hung LiuChing-Hsiang ChanYi-An ShaShin-Mao Huang
    • Chi-Chang LiaoIng-Jer LinYi-Chun WongChia-Rong SheuLung-Pin HsinKang--Hung LiuChing-Hsiang ChanYi-An ShaShin-Mao Huang
    • G02F1/1334G02F1/13G02F1/1333G02F1/1339G02F1/1341
    • G02F1/133377G02F1/13394
    • The present invention discloses a method for manufacturing liquid crystal display (LCD) device by utilizing photopolymer. A first photopolymer layer is coated on the support substrate and the substrate having a buffer layer is treated by photopolymerization. A substrate is treated by processes for forming an electrode layer, an alignment layer and projections as required by general LCD manufacturing. A second photopolymer layer is coated on the substrate having a plurality electrode patterns, an alignment layer and projections. Mask exposure is applied to the substrate and the photopolymer forms a polymer wall. Alternatively molding can be applied to the substrate along with linear ultra violet exposure. The photopolymer layer is hardened by such process and forms a polymer wall with alignment. The cavities in the polymer wall are filled with mixture of liquid crystal and small amount of photopolymer. The support substrate and the substrate are aligned and treated by mask exposure for coupling the support substrate to the substrate via photopolymerization. The support substrate is separated from the substrate and accordingly a single substrate LCD device is generated. The same method can be applied to manufacturing process for a LCD device without a substrate. The method increases yield rate also provides a different method for manufacturing a LCD device.
    • 本发明公开了一种利用光聚合物制造液晶显示器(LCD)装置的方法。 将第一光聚合物层涂覆在支撑基板上,并且通过光聚合处理具有缓冲层的基板。 通过用于形成电极层的方法,通常的LCD制造所需的取向层和突起来处理基板。 第二光聚合物层涂覆在具有多个电极图案的基板上,对准层和突起。 掩模曝光被施加到基底上,光聚合物形成聚合物壁。 或者模塑可以与线性紫外线曝光一起施加到基底上。 光聚合物层通过这种方法硬化并形成具有对准的聚合物壁。 聚合物壁中的空腔充满液晶和少量光聚合物的混合物。 支撑基板和基板通过掩模曝光对准和处理,以通过光聚合将支撑基板耦合到基板。 支撑基板与基板分离,因此产生单个基板LCD装置。 相同的方法可以应用于没有基板的LCD装置的制造工艺。 该方法提高产率也为制造LCD装置提供了不同的方法。
    • 6. 发明申请
    • Manufacturing method for an electrophoretic display
    • 电泳显示器的制造方法
    • US20050045478A1
    • 2005-03-03
    • US10673270
    • 2003-09-30
    • Chi-Chang LiaoKang-Hung LiuLung-Pin HsinYi-Chun WongYi-An ShaChing-Hsiang ChanChia-Rong SheuChung-Wen WuYao-Sheng Lin
    • Chi-Chang LiaoKang-Hung LiuLung-Pin HsinYi-Chun WongYi-An ShaChing-Hsiang ChanChia-Rong SheuChung-Wen WuYao-Sheng Lin
    • G02F1/167B05D5/12B05D5/06G01L1/20
    • G02F1/167
    • a manufacturing method for an electrophoretic display applying optical polymer material is provided. The main characteristic is that the charged pigment particles are confined with optical polymer material so as to achieve electrophoretic display. In the manufacturing process, a first layer of optical polymer material is coated on an auxiliary substrate having a buffer layer for performing an optical polymerization manufacturing process. After the polymerization, on the first layer of the optical polymer material layer, the manufacturing process required by the electrophoretic display is further performed. After a second layer of optical polymer material is coated on a substrate required by the electrophoretic display having a plurality of electrode patterns, by using a mask exposure, the optical polymer material is solidified to form a polymer wall, or a molding method is applied with ultraviolet irradiation for solidifying the optical polymer material so as to form the polymer wall. Next, in a hole formed by the polymer wall, the mixture formed by the charged pigment particles and a few amount of optical polymer material is filled, and the auxiliary substrate is aligned with the substrate so as to perform the mask exposure polymerization manufacturing process. Therefore, the auxiliary substrate is combined with the substrate. Finally, the auxiliary substrate is stripped out so as to finish the manufacturing of a single substrate electrophoretic display.
    • 提供了应用光学聚合物材料的电泳显示器的制造方法。 其主要特征是带电颜料颗粒被限制在光学聚合物材料上,从而实现电泳显示。 在制造过程中,将第一层光学聚合物材料涂覆在具有用于进行光学聚合制造工艺的缓冲层的辅助基板上。 聚合后,在光学聚合物材料层的第一层上进一步进行电泳显示所需的制造过程。 在通过使用掩模曝光将第二层光学聚合物材料涂覆在具有多个电极图案的电泳显示器所需的基板上之后,将光学聚合物材料固化以形成聚合物壁,或者使用模制方法 用于固化光学聚合物材料的紫外线照射以形成聚合物壁。 接下来,在由聚合物壁形成的孔中填充由带电颜料颗粒和少量光学聚合物材料形成的混合物,并将辅助基板与基板对准以进行掩模曝光聚合制造工艺。 因此,辅助基板与基板结合。 最后,将辅助基板剥离以完成单个基板电泳显示器的制造。
    • 7. 发明授权
    • Manufacturing method and structure of slanting diffusive reflector
    • 倾斜扩散反射器的制造方法和结构
    • US06692902B2
    • 2004-02-17
    • US09988057
    • 2001-11-16
    • Yi-Chun WongMing-Dar WeiShang-Wen Chang
    • Yi-Chun WongMing-Dar WeiShang-Wen Chang
    • G03F700
    • G03F7/70283G02F1/133553G03F7/0007
    • A manufacturing method and structure of slanting diffusive reflectors simplifies their manufacturing process and reduces cost. A photo mask comprising a plurality of half-tone exposure units is used. A half-tone photolithography process is performed on the positive photoresist formed on a substrate. Only one exposure process and a suitable drying step are required to form a plurality of slants and rough astigmatisms on the slants. The size of the half-tone exposure units is randomly selected. Each half-tone exposure unit comprises a plurality of parallel transmitting strips or shadow strips. The pitch of the transmitting strips or the shadow strips in one half-tone exposure unit can be arbitrary. The width of the shadow strips is gradually changing from one side of the half-tone exposure unit to the other side.
    • 倾斜扩散反射器的制造方法和结构简化了其制造工艺并降低了成本。 使用包括多个半色调曝光单元的照相掩模。 对形成在基板上的正性光致抗蚀剂进行半色调光刻工艺。 只需要一个曝光工艺和合适的干燥步骤来在斜面上形成多个斜面和粗糙散光。 随机选择半色调曝光单位的大小。 每个半色调曝光单元包括多个平行的传送条或阴影条。 一个半色调曝光单元中的发送条或阴影条的间距可以是任意的。 阴影条的宽度从半色调曝光单元的一侧逐渐变化到另一侧。