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    • 1. 发明授权
    • Complex three-dimensional multi-layer structure and manufacturing method thereof
    • US10962692B2
    • 2021-03-30
    • US15880887
    • 2018-01-26
    • Minuta Technology Co., Ltd.
    • Han Eol LimSe Jin ChoiTae Wan KimSeung Joon Baek
    • G02B5/04F21V8/00B29C59/16B32B3/30G02B5/02G02B5/20G02B6/00G02B6/12B29D11/00B29L11/00
    • The present invention relates to a 3-dimensional complex multilayer structure. The 3-dimensional complex multilayer structure includes a first pattern and a second pattern having different thicknesses formed on one or both surfaces of a plate. The first pattern is selected from the group consisting of parallel lines, parallel curves, parallel zigzag lines, and combinations thereof which do not meet each other. The second pattern is not parallel to the first pattern and is selected from the group consisting of parallel lines, parallel curves, parallel zigzag lines, and combinations thereof which do not meet each other. The interfaces between the first pattern and the second pattern form figures selected from the group consisting of polygons, circles, ellipses, and combinations thereof. The figures are repetitively formed on one or both surfaces of the plate. The 3-dimensional complex multilayer structure includes different complex patterns, whereas a conventional device has a kind of simple pattern. The 3-dimensional complex multilayer structure of the present invention can be manufactured by a simple process. Therefore, the 3-dimensional complex multilayer structure of the present invention can find application in various fields, including optical components for displays (e.g., light guide plates, diffusion plates, prisms, and color filters), next generation displays and display devices (e.g., TFTs, OTFTs, oxide TFTs, flexible displays, and transparent displays), next generation 3-dimensional semiconductors, dry adhesion based on the use of fine ciliary structures, micro/nano piezoelectric devices, lighting optical components, and biocell/virus research using micropatterns.
    • 4. 发明申请
    • COMPLEX THREE-DIMENSIONAL MULTI-LAYER STRUCTURE AND MANUFACTURING METHOD THEREOF
    • 复合三维多层结构及其制造方法
    • US20150323712A1
    • 2015-11-12
    • US14410266
    • 2013-06-13
    • Minuta Technology Co., LTD
    • Han Eol LIMSe Jin CHOITae Wan KIMSeung Joon BAEK
    • G02B5/04B29C59/16F21V8/00
    • G02B5/04B29C59/16B29D11/00865B29L2011/00B32B3/30G02B5/02G02B5/0231G02B5/0263G02B5/045G02B5/20G02B6/00G02B6/0036G02B6/0053G02B6/0058G02B6/12Y10T428/24174Y10T428/24479Y10T428/2457Y10T428/24612
    • The present invention relates to a 3-dimensional complex multilayer structure. The 3-dimensional complex multilayer structure includes a first pattern and a second pattern having different thicknesses formed on one or both surfaces of a plate. The first pattern is selected from the group consisting of parallel lines, parallel curves, parallel zigzag lines, and combinations thereof which do not meet each other. The second pattern is not parallel to the first pattern and is selected from the group consisting of parallel lines, parallel curves, parallel zigzag lines, and combinations thereof which do not meet each other. The interfaces between the first pattern and the second pattern form figures selected from the group consisting of polygons, circles, ellipses, and combinations thereof. The figures are repetitively formed on one or both surfaces of the plate. The 3-dimensional complex multilayer structure includes different complex patterns, whereas a conventional device has a kind of simple pattern. The 3-dimensional complex multilayer structure of the present invention can be manufactured by a simple process. Therefore, the 3-dimensional complex multilayer structure of the present invention can find application in various fields, including optical components for displays (e.g., light guide plates, diffusion plates, prisms, and color filters), next generation displays and display devices (e.g., TFTs, OTFTs, oxide TFTs, flexible displays, and transparent displays), next generation 3-dimensional semiconductors, dry adhesion based on the use of fine ciliary structures, micro/nano piezoelectric devices, lighting optical components, and biocell/virus research using micropatterns.
    • 本发明涉及三维复合多层结构。 三维复合多层结构包括形成在板的一个或两个表面上的具有不同厚度的第一图案和第二图案。 第一图案选自不相互满足的平行线,平行曲线,平行之字形线及其组合。 第二图案不与第一图案平行,并且选自不相互满足的平行线,平行曲线,平行之字形线及其组合的组。 第一图案和第二图案之间的界面形成从由多边形,圆形,椭圆形及其组合组成的组中选择的图形。 这些图形重复地形成在板的一个或两个表面上。 三维复合多层结构包括不同的复杂图案,而传统的器件具有一种简单的图案。 本发明的3维复合多层结构体可以通过简单的工艺制造。 因此,本发明的三维复合多层结构可以应用于各种领域,包括用于显示器的光学部件(例如,导光板,扩散板,棱镜和滤色器),下一代显示器和显示装置(例如, ,TFT,OTFT,氧化物TFT,柔性显示器和透明显示器),下一代三维半导体,基于使用细小纤维结构的干粘附,微/纳米压电器件,照明光学元件和使用生物细胞/病毒研究 微图案