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    • 1. 发明申请
    • METHOD FOR MANUFACTURING DISPLAY DEVICE WITH OPTICAL/ELECTRONIC STRUCTURES
    • 用光学/电子结构制造显示器件的方法
    • WO2010038988A2
    • 2010-04-08
    • PCT/KR2009005614
    • 2009-09-30
    • HWANG JANG HWANNAMOTEK INC
    • HWANG JANG HWAN
    • G02F1/1335G02F1/13
    • G02F1/133526G02F1/1303
    • A disclosed method for manufacturing a display device with optical/electronic structures according to the present invention comprises: a first step for forming the optical/electronic structures on the primary side of a release film onto which an adhesive is applied, a second step for attaching the primary side of the release film to a substrate or a film, and a third step for removing only the release film from the substrate or film while the optical/electronic structures are attached thereto. According to the invention, the optical/electronic structures are transferred and attached to the substrate or film of the display device after firstly being attached to the release film. Therefore, the optical structure, such as a certain shaped micro lens, color filter, polarizing layer, or ITO layer, with optical characteristics or the electrode structure such as a circuit or electrode pattern like a thin film transistor (TFT) and in-cell phase difference film can be formed on the surface of the substrate or film very easily. That is to say, the optical/electrode structures can be formed very easily on the substrate or film of the display device in a desirable shape with uniform shape and size. In addition, the deterioration of an element of the display device can be prevented as a result of attaching the optical/electrode structures to the display device without directly radiating rays of light such as ultraviolet rays onto the display device.
    • 根据本发明的用于制造具有光学/电子结构的显示装置的公开的方法包括:用于在其上施加有粘合剂的脱模膜的初级侧上形成光学/电子结构的第一步骤,用于附接的第二步骤 剥离膜的初级侧到基板或膜,以及第三步骤,仅在光学/电子结构附着时从基板或膜除去脱模膜。 根据本发明,光学/电子结构首先被附着到脱模膜之后被转印并附着到显示装置的基片或薄膜上。 因此,具有光学特性的诸如一定形状的微透镜,滤色器,偏振层或ITO层之类的光学结构或诸如薄膜晶体管(TFT)的电路或电极图案的电极结构和电池 可以非常容易地在基板或膜的表面上形成相位差膜。 也就是说,可以非常容易地在显示装置的基板或膜上形成具有均匀形状和尺寸的期望形状的光学/电极结构。 此外,由于将光/电极结构附着到显示装置而不将紫外线等光线直接照射到显示装置上,可以防止显示装置的元件的劣化。
    • 4. 发明申请
    • PRISM SHEET HAVING CONCAVE PENTAGONAL
    • 具有相似性的PRISM表
    • WO2005012988A1
    • 2005-02-10
    • PCT/KR2004/001933
    • 2004-07-30
    • DOOSAN CORPORATION ELECTRO-MATERIALS BGHWANG, Jang-HwanPAE, Chong-PilKOOK, Min-Cheol
    • HWANG, Jang-HwanPAE, Chong-PilKOOK, Min-Cheol
    • G02F1/1335
    • G02B6/0053G02B5/045G02F2001/133607
    • A prism sheet having a concave pentagonal structure is disclosed. The prism sheet comprises a base layer, and a prism array disposed on and supported by the base layer. The prism array is composed of a plurality of prisms aligned in parallel and one beside the other. The transversal cross-section of each prism has a shape of concave pentagon, which is symmetrical about a vertical line passing the apex. The interior angle α of the apex is 30° ≤ α ≤ 120°, the exterior angle ß formed by the upper slant side and the lower slant side is ß ° and the length w of the base is 30µm ≤ w ≤ 100µm. Preferably, the interior angle α of the apex may be 40° ≤ α ≤ 100 ° , the exterior angle ß formed by the upper slant side and the lower slant side may be 160° ≤ ß ≤ 179 ° , and the interior angle y of the lower vertex formed by the lower slant side and the base may be 30 ° ≤ y ≤ 60°. Preferably, the length w of the base may be 40µm ≤ w ≤ 60µm.
    • 公开了一种具有凹形五边形结构的棱镜片。 棱镜片包括基底层和设置在基底层上并由其支撑的棱镜阵列。 棱镜阵列由多个并列对准的棱镜组成。 每个棱镜的横截面具有凹形五边形的形状,其相对于通过顶点的垂直线对称。 顶点的内角α为30°<=α<= 120°,由上倾斜侧和下倾斜侧形成的外角β为ß<180°,下顶点的内角y由 下斜面和底座为5°<= Y&LE; 85°,基底的长度w为30μm<= w <=100μm。 优选地,顶点的内角α可以是40°<= ALPHA&LE; 100°<°>,由上斜面和下斜面形成的外角β可以为160°<=ß和LE; 179 <°>,并且由下斜面和底部形成的下顶点的内角y可以为30°<= y <= 60°。 优选地,基底的长度w可以是40μm<= w <=60μm。
    • 5. 发明申请
    • METHOD FOR MANUFACTURING DISPLAY DEVICE WITH OPTICAL/ELECTRONIC STRUCTURES
    • 制造具有光学/电子结构的显示装置的方法
    • WO2010038988A3
    • 2010-07-22
    • PCT/KR2009005614
    • 2009-09-30
    • HWANG JANG HWANNAMOTEK INC
    • HWANG JANG HWAN
    • G02F1/1335G02F1/13
    • G02F1/133526G02F1/1303
    • A disclosed method for manufacturing a display device with optical/electronic structures according to the present invention comprises: a first step for forming the optical/electronic structures on the primary side of a release film onto which an adhesive is applied, a second step for attaching the primary side of the release film to a substrate or a film, and a third step for removing only the release film from the substrate or film while the optical/electronic structures are attached thereto. According to the invention, the optical/electronic structures are transferred and attached to the substrate or film of the display device after firstly being attached to the release film. Therefore, the optical structure, such as a certain shaped micro lens, color filter, polarizing layer, or ITO layer, with optical characteristics or the electrode structure such as a circuit or electrode pattern like a thin film transistor (TFT) and in-cell phase difference film can be formed on the surface of the substrate or film very easily. That is to say, the optical/electrode structures can be formed very easily on the substrate or film of the display device in a desirable shape with uniform shape and size. In addition, the deterioration of an element of the display device can be prevented as a result of attaching the optical/electrode structures to the display device without directly radiating rays of light such as ultraviolet rays onto the display device.
    • 所公开的用于制造根据本发明的具有光学/电子结构的显示装置的方法包括:第一步骤,用于在其上施加粘合剂的离型膜的第一侧上形成光学/电子结构;第二步骤, 剥离膜的一次侧施加到基底或膜上,以及第三步骤,用于在光学/电子结构附着到基底或膜上时仅从基底或膜去除释放膜。 根据本发明,光学/电子结构在首先附着到释放膜之后被转移并附着到显示装置的基板或膜上。 因此,具有光学特性或诸如电路或电极图案的电极结构(诸如薄膜晶体管(TFT))和内嵌式晶片(in-cell)的光学结构,诸如特定形状的微透镜,滤色器,偏振层或ITO层 相位差膜可以非常容易地形成在基底或膜的表面上。 也就是说,光学/电极结构可以非常容易地形成在具有均匀形状和尺寸的期望形状的显示装置的基板或膜上。 另外,由于将光学/电极结构附着到显示装置而不直接将诸如紫外线的光线发射到显示装置上,所以能够防止显示装置的元件的劣化。
    • 7. 发明申请
    • SURFACE TREATMENT MATERIAL, A FILM COATED WITH THE SURFACE TREATMENT MATERIAL, AND AN ORGANIC LIGHT EMITTING DIODE HAVING THE FILM
    • 表面处理材料,涂有表面处理材料的电影以及具有电影的有机发光二极管
    • WO2009028762A1
    • 2009-03-05
    • PCT/KR2007/005558
    • 2007-11-05
    • NAMOTEK CO., LTD.HWANG, Jang HwanGONG, Doo WonKIM, Young KawnKANG, Won Il
    • HWANG, Jang HwanGONG, Doo WonKIM, Young KawnKANG, Won Il
    • H05B33/02
    • H05B33/10
    • Disclosed are a surface treatment material for surface-treating a glass substrate of a display device, such as an OLED, by attaching to a surface of the glass substrate and reacting with a component of the glass substrate to form fine projections or grooves on the surface, a surface treatment film coated with such a surface treatment material, and an OLED that minimizes loss of light emitted through a glass substrate by means of such a surface treatment film adhered to the glass substrate, and thereby can provide light of high luminance. The surface treatment film is coated on at least one side with the surface treatment material including an adhesive component for providing an adhesive force, and a surface treatment component, mixed with the adhesive component, for reacting with a component of the glass substrate to form a large number of projections or grooves functioning as fine lenses on the surface of the glass substrate.
    • 公开了一种表面处理材料,用于通过附着到玻璃基板的表面并与玻璃基板的部件反应以在表面上形成微小的突起或凹槽来对诸如OLED的显示装置的玻璃基板进行表面处理 涂覆有这种表面处理材料的表面处理膜,以及通过粘附到玻璃基板上的这种表面处理膜使玻璃基板发射的光的损失最小化的OLED,从而可以提供高亮度的光。 表面处理膜在表面处理材料的至少一面上被涂覆,所述表面处理材料包括用于提供粘合力的粘合剂组分和与粘合剂组分混合的表面处理组分,用于与玻璃基底的组分反应以形成 在玻璃基板的表面上作为精细透镜起作用的大量突起或凹槽。
    • 8. 发明申请
    • DISPLAY COSISTING OF SOCKET TYPE OLEDS AND METHOD FOR MANUFACTURING OF THE SAME
    • 插座类型OLED的显示成像及其制造方法
    • WO2007064115A1
    • 2007-06-07
    • PCT/KR2006/005015
    • 2006-11-27
    • NAMOTEK CO., LTD.HWANG, JANG HWANKIM, JUNG JUPARK, Jung WoonKIM, Young Kawn
    • HWANG, JANG HWANKIM, JUNG JUPARK, Jung WoonKIM, Young Kawn
    • H05B33/00
    • H01L27/3293H01R12/7076
    • Disclosed are a display consisting of socket-type organic light emitting diodes (OLEDs), and a method for manufacturing the same. More specifically, the display is capable of improving work efficiency when applied to a product and luminous efficiency even through a large-area display, by configuring the display in a manner that plural LEDs having predetermined size are arranged and removably mounted onto a substrate in a socket form. Additionally, the display is capable of enabling more convenient maintenance and management thereof by partly replacing the LEDs. The display according to the present invention comprises a substrate including a driving circuit for performing display and socket connection parts arranged in n number of columns and m number of rows on a front surface thereof; a socket unit having the OLED functioning as a light source inserted therein, and removably connected to each of the socket connection parts so that the OLED is electrically connected with the substrate; and a display filter connected to the front surface of the substrate where the socket unit is connected, to output light radiated from the OLED as a desired image.
    • 公开了由插座型有机发光二极管(OLED)组成的显示器及其制造方法。 更具体地,即使通过大面积显示,显示器也可以通过将具有预定尺寸的多个LED布置并可拆卸地安装到基板上的方式来构造显示器,从而可以提高应用于产品的应用时的工作效率和发光效率。 套接字形式。 此外,显示器能够通过部分地更换LED来实现更方便的维护和管理。 根据本发明的显示器包括:基板,其包括用于执行布置在n个列的显示器和插座连接部分的驱动电路,并且在其前表面上具有m行数; 具有用作插入其中的光源的OLED并且可移除地连接到每个插座连接部分的插座单元,使得OLED与基板电连接; 以及连接到所述基板的与所述插座单元连接的前表面的显示滤光器,以将从OLED发出的光输出为期望的图像。