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    • 1. 发明申请
    • POLYMER DISPERSED LIQUID CRYSTAL FILM AND METHOD FOR MANUFACTURING THE SAME
    • 聚合物分散液晶薄膜及其制造方法
    • US20120169987A1
    • 2012-07-05
    • US13338461
    • 2011-12-28
    • Wenbo LIZhuo ZHANGWang HUChunyan XIEGang WANG
    • Wenbo LIZhuo ZHANGWang HUChunyan XIEGang WANG
    • C09K19/38B32B38/08
    • G02F1/1334C09J9/02C09K19/544C09K2019/546G02F2001/13415
    • The disclosed technology involves a polymer dispersed liquid crystal film comprising: a first base substrate, a second base substrate, and a polymer dispersed liquid crystal film between the first base substrate and the second base substrate, wherein a first transparent conductive layer is formed on the first base substrate, the first transparent conductive layer is contacted with the first light permeable pressure-sensitive adhesive layer, and the polymer dispersed liquid crystal is adhered to the first base substrate through the first light permeable pressure-sensitive adhesive layer; and a second transparent conductive layer is formed on the second base substrate, the second transparent conductive layer is contacted with the second light permeable pressure-sensitive adhesive layer, and the polymer dispersed liquid crystal is adhered to the second base substrate through the second light permeable pressure-sensitive adhesive layer.
    • 所公开的技术涉及聚合物分散液晶膜,其包括:在第一基底基板和第二基底基板之间的第一基底基底,第二基底基底和聚合物分散液晶膜,其中第一透明导电层形成在 第一基底基板,第一透明导电层与第一透光性粘合剂层接触,并且聚合物分散液晶通过第一透光性压敏粘合剂层粘附到第一基底基板; 在第二基底基板上形成第二透明导电层,第二透明导电层与第二透光性粘合剂层接触,通过第二透光性粘合剂层使聚合物分散液晶粘附于第二基材 压敏粘合剂层。
    • 2. 发明申请
    • ELECTROPHORESIS DISPLAY AND MANUFACTURING METHOD
    • 电泳显示和制造方法
    • US20120241746A1
    • 2012-09-27
    • US13426866
    • 2012-03-22
    • Chunyan XIEZhuo ZHANGGang WANGCuili GAI
    • Chunyan XIEZhuo ZHANGGang WANGCuili GAI
    • H01L33/08
    • H01L29/78609G02F1/136209G02F1/167G02F2201/40G02F2201/48G02F2201/50H01L27/1248H01L29/78633
    • The disclosed technology is in connection with an electrophoresis display and manufacturing method thereof. The electrophoresis display comprises: a substrate; a gate line metal layer including a gate electrode, formed on the substrate; a gate insulating layer covering the gate line metal layer; a semiconductor active layer formed on the gate insulating layer and located above the gate electrode correspondingly; a data line metal layer including a source electrode and a drain electrode, formed on the gate insulating layer, wherein the source electrode and the drain electrode are located on the semiconductor active layer and separated by a distance; a photoresist resin layer covering the data line metal layer and formed with a via hole above the drain electrode; and a pixel electrode layer formed on the photoresist resin layer and connected to the drain electrode by the via hole.
    • 所公开的技术与电泳显示及其制造方法相关。 电泳显示器包括:基板; 包括形成在所述基板上的栅电极的栅极线金属层; 覆盖栅极线金属层的栅极绝缘层; 形成在栅极绝缘层上并相应地位于栅电极上方的半导体有源层; 形成在所述栅极绝缘层上的源电极和漏电极的数据线金属层,其中所述源电极和所述漏电极位于所述半导体有源层上并分离一定距离; 覆盖数据线金属层并在漏极上方形成通孔的光致抗蚀剂树脂层; 以及形成在光致抗蚀剂树脂层上并通过通孔连接到漏电极的像素电极层。
    • 3. 发明申请
    • ARRAY SUBSTRATE AND A METHOD FOR FABRICATING THE SAME AND AN ELECTRONIC PAPER DISPLAY
    • 阵列基板及其制造方法和电子纸显示器
    • US20120138972A1
    • 2012-06-07
    • US13308752
    • 2011-12-01
    • Wenbo LIGang WANGZhuo ZHANG
    • Wenbo LIGang WANGZhuo ZHANG
    • H01L33/62
    • H01L29/78633G02F1/136227H01L29/78666H01L29/7869
    • The present disclosure discloses a method for fabricating an array substrate comprising: depositing a source/drain metallic film on a first base substrate, and forming a source electrode, a drain electrode and a data line; sequentially depositing a semiconductor layer film, a gate insulating layer film and a gate metallic film on the first base substrate, and forming a semiconductor layer, a gate insulating layer, a gate electrode and a gate line; depositing a gate protection layer film on the first base substrate, and forming a gate protection layer and a through hole, wherein the through hole is formed on the gate protection layer corresponding to the drain electrode to expose a portion of the drain electrode; and depositing a pixel electrode film on the first base substrate, and forming a pixel electrode, wherein the pixel electrode is connected to the drain electrode via the through hole.
    • 本公开公开了一种制造阵列基板的方法,包括:在第一基底基板上沉积源极/漏极金属膜,以及形成源电极,漏电极和数据线; 在第一基底基板上依次沉积半导体层膜,栅极绝缘层膜和栅极金属膜,以及形成半导体层,栅极绝缘层,栅电极和栅极线; 在所述第一基板上沉积栅极保护层膜,形成栅极保护层和通孔,其中所述通孔形成在与所述漏电极相对应的所述栅极保护层上以暴露所述漏极电极的一部分; 以及在所述第一基板上沉积像素电极膜,并且形成像素电极,其中所述像素电极经由所述通孔连接到所述漏电极。
    • 4. 发明申请
    • ARRAY SUBSTRATE AND MANUFACTURUING METHOD THEREOF, ACTIVE DISPLAY
    • 阵列基板及其制造方法,主动显示
    • US20120112195A1
    • 2012-05-10
    • US13292320
    • 2011-11-09
    • Wenbo LIGang WANGZhuo ZHANGYanbing WU
    • Wenbo LIGang WANGZhuo ZHANGYanbing WU
    • H01L33/08H01L33/36
    • H01L27/1288G02F1/136213G02F1/136227
    • A manufacturing method for an array substrate comprising: sequentially forming a gate metal film, a gate insulating layer and an active layer film; applying photoresist, and patterning the photoresist; etching the stacked layers corresponding to a photoresist-completely-removed region; ashing to remove the photoresist in a photoresist-partially-remained region and remain a part of photoresist in a photoresist-completely-remained region, etching the gate insulating layer and the active layer film in the photoresist-partially-remained region; forming an insulating layer film; lifting off the photoresist and the insulating layer film thereon; forming a conductive film, and patterning the conductive film to from a source electrode, a drain electrode, a data line, a pixel electrode and an active layer channel.
    • 一种阵列基板的制造方法,包括:依次形成栅极金属膜,栅极绝缘层和有源层膜; 施加光致抗蚀剂,并图案化光致抗蚀剂; 蚀刻对应于光致抗蚀剂完全去除区域的堆叠层; 灰化以除去光致抗蚀剂部分保留区域中的光致抗蚀剂,并保留在光致抗蚀剂完全残留区域中的光致抗蚀剂的一部分,蚀刻光致抗蚀剂部分保留区域中的栅极绝缘层和有源层膜; 形成绝缘层膜; 在其上剥离光致抗蚀剂和绝缘层膜; 形成导电膜,并且从源电极,漏电极,数据线,像素电极和有源层通道构图导电膜。
    • 6. 发明申请
    • OBTAINING DATA FOR AUTOMATIC GLAUCOMA SCREENING, AND SCREENING AND DIAGNOSTIC TECHNIQUES AND SYSTEMS USING THE DATA
    • 获取用于自动GLAUCOMA筛选的数据,以及使用数据的筛选和诊断技术和系统
    • US20160100753A1
    • 2016-04-14
    • US14828262
    • 2015-08-17
    • Jiang LIUZhuo ZHANGWing Kee Damon WONGNgan Meng TANFengshou YINBeng Hai LEEHuiqi LIJoo Hwee LIMCarol CHEUNGTin AUNGTien Yin WONGZiyang LIANGJun CHENGBaskaran MANI
    • Jiang LIUZhuo ZHANGWing Kee Damon WONGNgan Meng TANFengshou YINBeng Hai LEEHuiqi LIJoo Hwee LIMCarol CHEUNGTin AUNGTien Yin WONGZiyang LIANGJun CHENGBaskaran MANI
    • A61B3/00A61B5/00G06T7/40A61B3/12
    • A61B3/0025A61B3/12A61B5/02007A61B5/7264A61B5/7267A61B5/7275G06T7/0012G06T7/40G06T2207/30041
    • A non-stereo fundus image is used to obtain a plurality of glaucoma indicators. Additionally, genome data for the subject is used to obtain genetic marker data relating to one or more genes and/or SNPs associated with glaucoma. The glaucoma indicators and genetic marker data are input into an adaptive model operative to generate an output indicative of a risk of glaucoma in the subject. In combination, the genetic indicators and genome data are more informative about the risk of glaucoma than either of the two in isolation. The adaptive model may be a two-stage model, having a first stage in which individual genetic indicators are combined with respective portions of the genome data by first adaptive model modules to form respective first outputs, and a second stage in which the first outputs are combined by a second adaptive mode. Texture analysis is performed on the fundus images to classify them based on their quality, and only images which are determined to meet a quality criterion are subjected to an analysis to determine if they exhibit glaucoma indicators. Also, the images are put into a standard format. The system may include estimating the position of the optic cup by combining results from multiple optic cup segmentation techniques. The system may include estimating the position of the optic disc by applying edge detection to the funds image, excluding edge points that are unlikely to be optic disc boundary points, and estimating the position of an optic disc by fitting an ellipse to the remaining edge points.
    • 使用非立体眼底图像来获得多个青光眼指示符。 此外,用于受试者的基因组数据用于获得与与青光眼相关的一个或多个基因和/或SNP相关的遗传标记数据。 青光眼指标和遗传标记数据被输入到适应模型中,该模型用于产生指示受试者青光眼风险的输出。 综合来看,遗传指标和基因组数据对于青光眼的风险比孤立的两者之一更有信息。 自适应模型可以是两阶段模型,其具有第一阶段,其中通过第一自适应模型模块将个体遗传指标与基因组数据的相应部分组合以形成相应的第一输出,第二阶段中,第一输出是 通过第二自适应模式组合。 对眼底图像进行纹理分析,根据其质量对其进行分类,仅对满足质量标准的图像进行分析,以确定其是否呈现青光眼指标。 此外,图像被放入标准格式。 该系统可以包括通过组合来自多个光学杯分割技术的结果来估计光学杯的位置。 该系统可以包括通过对资金图像应用边缘检测来估计视盘的位置,不包括不太可能是视盘边界点的边缘点,以及通过将椭圆拟合到剩余边缘点来估计视盘的位置 。
    • 7. 发明申请
    • COLORANT, COLOR FILTER, LCD DEVICE, COMPOSITION AND METHOD FOR PREPARING THE SAME
    • 彩色滤色片,彩色滤光片,LCD装置,组合物及其制备方法
    • US20100020274A1
    • 2010-01-28
    • US12505298
    • 2009-07-17
    • Zhuo ZHANGXuan HELin LIJiuxia YANGJisheng ZHAO
    • Zhuo ZHANGXuan HELin LIJiuxia YANGJisheng ZHAO
    • G02F1/1335C08L33/02G03F7/004G02B5/22
    • G02B5/201C09B67/0069C09B67/009G02B5/223G03F7/0007G03F7/033
    • The present invention relates to a colorant, a color filter, LCD device, a composition and a method for preparing the same. The colorant covers pigment particles by using the acrylic acid polymer having an acid value greater than 20 mgKOH/g and containing aromatic group so as to greatly improve the stability while improving the dispersion ability of the pigment particles. By the above colorant, the photosensitive resin composition ensures that the developing performance is basically not influenced so that the photosensitive resin composition can meet the need of high transmissivity, high color purity, and high contrast for a color filter. A pattern on the color filter is formed by using the photosensitive resin composition having high dispersion stability and developing performance so as to greatly improve transmissivity, color purity, and contrast. An LCD device uses the color filter with high transmissivity, high color purity, and high contrast so as to greatly improve the display effect of color images.
    • 本发明涉及着色剂,滤色器,LCD装置,组合物及其制备方法。 着色剂通过使用酸值大于20mgKOH / g并含有芳族基团的丙烯酸聚合物覆盖颜料颗粒,从而在提高颜料颗粒的分散能力的同时大大提高稳定性。 通过上述着色剂,感光性树脂组合物确保显影性能基本上不受影响,使得感光性树脂组合物能够满足滤色器的高透光性,高色纯度和高对比度的需要。 通过使用具有高分散稳定性和显影性能的感光性树脂组合物形成滤色器上的图案,从而大大提高透射率,色纯度和对比度。 LCD装置使用具有高透射率,高色纯度和高对比度的滤色器,以大大提高彩色图像的显示效果。