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    • 3. 发明申请
    • Liquid crystal display panel and fabricating method thereof
    • 液晶显示面板及其制造方法
    • US20070002261A1
    • 2007-01-04
    • US11450288
    • 2006-06-12
    • Myoung LeeMin Kim
    • Myoung LeeMin Kim
    • G02F1/1339G02F1/136
    • G02F1/136227G02F1/13392
    • A liquid crystal display panel according includes a gate line and a data line crossing each other on a first substrate, a common electrode formed in parallel to the data line, a common line connected to the common electrode and arranged in parallel to the gate line, a gate insulating film formed between the gate and data lines to cover the gate line, the common line and the common electrode, a thin film transistor formed at a crossing part of the gate and data lines, a passivation film covering the thin film transistor, the data line and the gate insulating film, a pixel electrode connected to the thin film transistor, a spacer hole penetrating the gate insulating film and the passivation film, and at least one ball spacer formed in the spacer hole.
    • 一种液晶显示面板,包括在第一基板上彼此交叉的栅极线和数据线,与数据线并联形成的公共电极,与公共电极连接并与栅极线平行布置的公共线, 形成在栅极和数据线之间以覆盖栅极线,公共线和公共电极的栅极绝缘膜,形成在栅极和数据线的交叉部分的薄膜晶体管,覆盖薄膜晶体管的钝化膜, 数据线和栅极绝缘膜,连接到薄膜晶体管的像素电极,穿过栅绝缘膜的隔离孔和钝化膜以及形成在间隔孔中的至少一个球隔板。
    • 5. 发明申请
    • Ph Sensitive Block Copolymer and Polymeric Micelle Using the Same
    • Ph敏感嵌段共聚物和使用其的聚合物胶束
    • US20070218120A1
    • 2007-09-20
    • US11573858
    • 2005-12-27
    • Doo Sung LeeMin KimSu HwangJong HanBong Kim
    • Doo Sung LeeMin KimSu HwangJong HanBong Kim
    • A61K9/127A61K9/14C08F20/00
    • C08F299/024
    • Disclosed is a pH-sensitive block copolymer obtained by copolymerization of: (a) a polyethylene glycol compound (A); and (b) at least one poly(amino acid) compound selected from the group consisting of a poly(β-amino ester) and poly(amido amine) or a copolymer thereof (B). A method for preparing the same block copolymer, and a polymer micelle type drug composition comprising the pH-sensitive block copolymer and a physiologically active substance that can be encapsulated with the block copolymer are also disclosed. The pH-sensitive block copolymer is obtained by polymerization of a hydrophilic polyethylene glycol compound with a pH-sensitive biodegradable poly(amino acid) compound. Therefore, the pH-sensitive block copolymer can form a micelle structure due to its amphiphilicity and ionization characteristics depending on pH variations, and thus can be used as drug carrier for target-directed drug delivery depending on pH variations in the body.
    • 公开了通过以下方法获得的pH敏感性嵌段共聚物:(a)聚乙二醇化合物(A); 和(b)至少一种选自聚(β-氨基酯)和聚(酰氨基胺)或其共聚物(B)的聚(氨基酸)化合物。 还公开了制备相同嵌段共聚物的方法,以及包含该pH敏感性嵌段共聚物的聚合物胶束型药物组合物和可以用嵌段共聚物包封的生理活性物质。 通过亲水性聚乙二醇化合物与pH敏感的可生物降解的聚(氨基酸)化合物的聚合获得pH敏感性嵌段共聚物。 因此,pH敏感性嵌段共聚物由于其两亲性和离子化特性而根据pH变化而形成胶束结构,因此可以根据体内的pH变化用作靶向药物递送的药物载体。
    • 6. 发明申请
    • Method for measuring three-dimension shape
    • 测量三维形状的方法
    • US20070177159A1
    • 2007-08-02
    • US11656458
    • 2007-01-23
    • Min KimHee KimByung YooSe HanSeung Lee
    • Min KimHee KimByung YooSe HanSeung Lee
    • G01B11/24
    • G01B11/28G01B11/2531G06T7/521
    • A method of measuring a 3D shape, which can measure a 3D shape of target objects on a board by searching a database for bare board information when a measuring object is not set to a normal inspection mode or by performing bare board teaching when the board is supplied from a supplier having not the bare board information is provided. The method of measuring a 3D shape includes operation S100 of measuring a brightness of a first illumination source 41a, operation S200 of measuring a phase-to-height conversion factor, operation S300 of determining whether the measurement is performed in a normal inspection mode, operation S400 of measuring a 3D shape of a board 62 according to the normal inspection mode, operation S500 of determining whether bare board information about the board 62 is included, operation S600 of performing bare board teaching when the bare board information is excluded, operation S700 of measuring the 3D shape of target objects on the board 62 when the bare board information is included or bare board teaching information is generated, and operation S800 of analyzing whether the board 62 is normal or abnormal by using 3D shape information. Therefore, the 3D shape of target objects on the board may be more readily measured.
    • 一种测量3D形状的方法,其可以通过在测量对象未设置为正常检查模式时通过在数据库中查找裸板信息来测量板上的目标对象的3D形状,或者当板是板时,执行裸板教学 提供从没有裸板信息的供应商提供的。 测量3D形状的方法包括测量第一照明源41a的亮度的操作S100,测量相位到高度转换因子的操作S 200,确定是否正常地进行测量的操作S 300 检查模式,根据正常检查模式测量板62的3D形状的操作S 400,确定是否包括关于板62的裸板信息的操作S 500,当裸板执行裸板教学的操作S 600 信息被排除,生成包含裸板信息时测量板62上的目标对象的3D形状的操作S 700,以及生成裸板教学信息的操作S 800,以及通过使用分析板62是正常还是异常的操作S800 3D形状信息。 因此,可以更容易地测量板上目标物体的3D形状。
    • 7. 发明申请
    • 3D image measuring apparatus and method thereof
    • 3D图像测量装置及其方法
    • US20070133011A1
    • 2007-06-14
    • US11637040
    • 2006-12-12
    • Kwangill KohEun SeongMoon JeonMin KimSeung Lee
    • Kwangill KohEun SeongMoon JeonMin KimSeung Lee
    • G01B11/30
    • G01B11/25G01S17/89
    • A three dimensional (3D) image measuring apparatus and method, which can emit a light towards one surface and another surface of a measurement object by using a plurality of lights and filters, and thereby can remove a shadow area which may incur when measuring a 3D image, is provided. The 3D image measuring apparatus includes an XY stage; a projection portion comprising a first light and a second light which generate a light, a plurality of projection lenses which is installed on one surface of the first light and the second light respectively, a lattice board which is provided between the first and second lights and the plurality of projection lenses, and formed with a plurality of lattices, and a projection portion movement instrument which moves the lattice board into a vertical direction to an emitted direction of the generated light from the first light and the second light; a light path converter comprising a plurality of mirrors which is provided on one surface of the projection portion, and spaced apart from each other at predetermined intervals, a first filter and a second filter which are provided in a lower portion of the plurality of mirrors respectively, and adjust and filter optical properties of a light, having passed through the plurality of mirrors, and a third light which is provided between the first filter and the second filter to emit the light towards a inspection object; and an imaging portion comprising a third filter, an imaging lens which is provided in an upper portion of the third filter to image the light, having passed through the third filter, and an camera which is provided in an upper portion of the imaging lens to take an image, having passed through the imaging lens.
    • 一种三维(3D)图像测量装置和方法,其可以通过使用多个灯和滤光器向测量对象的一个​​表面和另一个表面发射光,从而可以去除在测量3D时可能引起的阴影区域 图像,被提供。 3D图像测量装置包括XY平台; 包括第一光和产生光的第二光的投影部分,分别安装在第一光和第二光的一个表面上的多个投影透镜,设置在第一和第二光之间的格子板,以及 多个投影透镜,并且形成有多个格子;以及突起部移动器,其使格栅板从与第一光和第二光的所产生的光的发射方向垂直的方向移动; 光路转换器,包括设置在所述突出部分的一个表面上并且以预定间隔彼此间隔开的多个反射镜,分别设置在所述多个反射镜的下部中的第一滤光器和第二滤光器 并且调整和过滤已经穿过多个反射镜的光的光学特性,以及设置在第一滤光器和第二滤光器之间以将光发射到检查对象的第三光; 以及成像部分,包括第三滤光器,成像透镜,其设置在第三滤光器的上部以对通过第三滤光器的光进行成像,以及设置在成像透镜的上部的照相机, 拍摄已经通过成像镜头的图像。