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    • 2. 发明公开
    • 3D 표시기의 회절격자장치의 제조방법
    • 3D显示设备及其设备的制造方法
    • KR1020120100678A
    • 2012-09-12
    • KR1020110077971
    • 2011-08-05
    • 제이 터치 코퍼레이션
    • 예흐유-초우왕차오-이로웬-치흐성치-흐신예흐트성-허
    • G02B27/22H04N13/00G02F1/15
    • C09K9/02G02B5/1857G02B27/225G02B27/4205G02F1/15G02F2201/307
    • PURPOSE: A 3D display device and a manufacturing method of a diffraction grating device of the 3D display device thereof are provided to increase speed of a manufacturing process and manufacturing efficiency. CONSTITUTION: Photosensitive polymer solution, electrochromic material solution, a first transparent conductive substrate, and a second transparent conductive substrate are provided(S11). The amount of photosensitive polymer solution and the amount of electrochromic material solution are mixed to generate diffraction grating manufacturing solution(S12). The diffraction grating manufacturing solution is sealed in between the first transparent conductive substrate and the second transparent conductive substrate for not leaking the diffraction grating manufacturing solution(S13). Solar rays is irradiated the diffraction grating manufacturing solution through a photo mask, and the diffraction grating manufacturing solution is polymerized to be a transparent fence phase separation member(S14). A diffraction grating device is provided to one side of a display device. The first transparent conductive substrate and the second transparent conductive substrate are connected electrically to an electrode unit. The diffraction grating manufacturing solution and the fence phase separation member are to be the diffraction grating device of a 3D display device by generating a diffraction grating effect of shading(S15). [Reference numerals] (AA) Start; (BB) Completion; (S11) Providing photosensitive polymer solution, electrochromic material solution, a first transparent conductive substrate, and a second transparent conductive substrate; (S12) Generating diffraction grating manufacturing solution by mixing an X amount of the photosensitive polymer solution and a Y amount of the electrochromic material solution; (S13) Sealing the diffraction grating manufacturing solution between the first and the second transparent conductive substrate to prevent the leakage of the diffraction grating manufacturing solution; (S14) Irradiating the diffraction grating manufacturing solution with solar rays through a photo mask so that the irradiated diffraction grating manufacturing solution is polymerized into a transparent fence phase separation member while the diffraction grating manufacturing solution blocked by the photo mask remains fluidic, thereby forming a diffraction grating device; (S15) Providing the diffraction grating device at one side of a display device, electrically connecting the first and the second transparent conductive substrate to respective electrode units, and applying electric current so that a diffraction grating effect of shading occurs between the diffraction grating manufacturing solution and the fence phase separation member, thereby obtaining a diffraction grating device for a 3D display device
    • 目的:提供3D显示装置及其3D显示装置的衍射光栅装置的制造方法,以提高制造工艺的速度和制造效率。 构成:提供感光性聚合物溶液,电致变色材料溶液,第一透明导电性基材和第二透明导电性基材(S11)。 将光敏聚合物溶液的量和电致变色材料溶液的量混合以产生衍射光栅制造溶液(S12)。 衍射光栅制造解决方案密封在第一透明导电基板和第二透明导电基板之间,用于不泄漏衍射光栅制造溶液(S13)。 通过光掩模对衍射光栅制造方法照射太阳光,将衍射光栅制造方法聚合为透明的栅栏相分离部件(S14)。 衍射光栅装置设置在显示装置的一侧。 第一透明导电基板和第二透明导电基板电连接到电极单元。 衍射光栅制造解决方案和栅栏相分离构件是通过产生遮光的衍射光栅效应而成为3D显示装置的衍射光栅装置(S15)。 (附图标记)(AA)开始; (BB)完成; (S11)提供光敏聚合物溶液,电致变色材料溶液,第一透明导电衬底和第二透明导电衬底; (S12)通过混合X量的光敏聚合物溶液和Y量的电致变色材料溶液来生成衍射光栅制造溶液; (S13)密封第一和第二透明导电基板之间的衍射光栅制造溶液,以防止衍射光栅制造溶液的泄漏; (S14)通过光掩模对具有太阳光线的衍射光栅制造溶液进行辐射,使得照射的衍射光栅制造溶液聚合成透明栅栏相分离部件,同时由光掩模阻挡的衍射光栅制造解决方案保持流体化,从而形成 衍射光栅装置; (S15)在显示装置的一侧设置衍射光栅装置,将第一透明导电性基板和第二透明导电性基板电连接于各电极单元,并施加电流,使衍射光栅的衍射效果发生在衍射光栅制造液 和围栏相分离构件,从而获得3D显示装置的衍射光栅装置