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    • 1. 发明申请
    • Liquid crystal display device and manufacturing method of the same
    • 液晶显示装置及其制造方法相同
    • US20050237443A1
    • 2005-10-27
    • US11110719
    • 2005-04-21
    • Norio NakanishiHideo Mitani
    • Norio NakanishiHideo Mitani
    • G02F1/1333G02F1/13G02F1/13357
    • G02F1/133308G02F1/1336
    • There is provided a liquid crystal display device ensuring a luminance of a backlight and having a backlight-integrated type resin holder to which a plating has been adhered. A liquid crystal display device including a liquid crystal display panel, a backlight disposed to a back face of the liquid crystal display panel and having at least a light conductor, and a holder accommodating the liquid crystal display panel and the backlight, wherein the holder is a holder in which a 1st resin to which a plating can be applied and a 2nd white resin whose condition under which the plating adheres is different from the 1st resin have been molded in 2 colors, the plating is applied to the 1st resin, and the 2nd white resin to which no plating is applied is disposed to a side face of the light conductor. It is desirable that the 1st resin is a plastic alloy containing polycarbonate, and the 2nd resin is polycarbonate.
    • 提供了确保背光源的亮度并且具有已经粘附有电镀的背光集成型树脂保持器的液晶显示装置。 一种液晶显示装置,包括液晶显示面板,设置在液晶显示面板的背面并具有至少一个导光体的背光源和容纳液晶显示面板和背光源的保持器,其中,保持器是 其中可以施加电镀的第一树脂的保持器和其中电镀附着的条件与第一树脂不同的第二白色树脂已经模制成2种颜色,电镀施加到第一树脂,并且 没有施加电镀的第二白色树脂设置在光导体的侧面。 希望第一树脂是含有聚碳酸酯的塑料合金,第二树脂是聚碳酸酯。
    • 2. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20120112988A1
    • 2012-05-10
    • US13291125
    • 2011-11-08
    • Norio NAKANISHIKoichi Igeta
    • Norio NAKANISHIKoichi Igeta
    • G09G3/36G09G3/30
    • G09G3/3648G02F1/134309G02F2201/56G09G3/3225G09G2300/0426G09G2320/0223G09G2320/0233G09G2380/10
    • Luminance ununiformity and color shading are prevented in a display area of an irregular hexagonal shape formed by cutting-off a corner from a rectangular shape.Sub-pixels are formed in each of regions surrounded by scanning lines and video signal lines and a set of sub-pixels by the number of three define one pixel. The display area is an irregular hexagonal shape containing a display area sloping portion of a shape formed by cutting-off a corner from a rectangular shape. In the display area sloping portion, the number of sub-pixels in the extending direction of the scanning lines changes uniformly for every sub-pixels by the number of three or by the number of a multiple thereof on each side of the display area for one scanning line. The magnitude of the video signal in the source driver can be controlled easily by uniformly changing the number of the sub-pixels.
    • 在通过从矩形切断拐角形成的不规则六边形的显示区域中防止亮度不均匀性和色彩遮蔽。 子像素形成在由扫描线和视频信号线包围的每个区域中,并且一组三个子像素限定一个像素。 显示区域是不规则的六边形形状,其包含通过从矩形形状切断拐角形成的形状的显示区域倾斜部分。 在显示区域倾斜部分中,扫描线的延伸方向上的子像素数量对于每个子像素均匀地改变三个的数量或者在显示区域的每一侧上的倍数的数量一个 扫描线。 可以通过均匀地改变子像素的数量来容易地控制源驱动器中的视频信号的幅度。
    • 3. 发明申请
    • Display device
    • 显示设备
    • US20050068717A1
    • 2005-03-31
    • US10934691
    • 2004-09-07
    • Norio NakanishiTakeharu Furusawa
    • Norio NakanishiTakeharu Furusawa
    • G02F1/1333G02F1/13G09F9/00G09F9/40H04M1/02G09G5/00G06F1/16H05K5/00H05K7/00
    • H04M1/0214G02F2001/133334H04M1/0266H04M2250/16
    • The present invention can provide a display device provided with a two-panel integral-type holder having the EMI shielding structure. A two-panel integral-type holder is formed of a resin molded product and holds a first display panel on one surface thereof and a second display panel having a size smaller than a size of the first display panel on another surface thereof. Further, the two-panel integral-type holder has a first bank-like rib which surrounds at least three sides of a periphery of the first display panel and defines a first accommodating region and a second bank-like rib which is formed on another surface and surrounds at least three sides of a periphery of the second display panel and defines a second accommodating region. A conductive sheet member is formed on a first portion of another surface corresponding to the first accommodating region except for the second accommodating region and a second portion of another surface corresponding to the second accommodating region respectively. Here, the conductive sheet member is brought into contact with another surface. A notch is formed in a portion of the second bank-like rib, and the first portion and the second portion of the conductive sheet member are electrically connected with each other through the notch.
    • 本发明可以提供一种具有EMI屏蔽结构的双面一体式保持器的显示装置。 双面一体式保持器由树脂成型体形成,并且在其一个表面上保持第一显示面板,并且在其另一表面上保持尺寸小于第一显示面板的尺寸的第二显示面板。 此外,双面一体式保持器具有第一堤状肋,该第一堤状肋围绕第一显示面板的周边的至少三侧,并且限定第一容纳区和形成在另一表面上的第二堤状肋 并且围绕第二显示面板的周边的至少三个侧面并且限定第二容纳区域。 导电片部件形成在除了第二容纳区域之外的与第一容纳区域相对应的另一表面的第一部分和分别对应于第二容纳区域的另一表面的第二部分。 这里,导电片部件与另一个表面接触。 在第二堤状肋的一部分中形成有凹口,并且导电片构件的第一部分和第二部分通过凹口彼此电连接。
    • 4. 发明申请
    • METHOD OF CHROMATICITY ADJUSTMENT OF DISPLAY DEVICE
    • 显示设备的色度调整方法
    • US20120081414A1
    • 2012-04-05
    • US13239728
    • 2011-09-22
    • Yuu TAKAHASHINorio Nakanishi
    • Yuu TAKAHASHINorio Nakanishi
    • G09G3/36G09G5/02G09G5/10
    • G09G3/3648G09G2320/0242G09G2320/0276G09G2320/0285G09G2360/145
    • Provided is a method of chromaticity adjustment of a display device including a drive circuit for generating a gray-scale signal corresponding to a video signal input from an external portion and supplying the gray-scale signal to a plurality of pixels, the method including: measuring chromaticity coordinates of an image displayed on the display device; determining whether the measured chromaticity coordinates are chromaticity coordinates within a first region that does not need a chromaticity correction or chromaticity coordinates within a second region that needs the chromaticity correction; determining, if the measured chromaticity coordinates are the chromaticity coordinates within the second region, which of a plurality of correction regions obtained by dividing the second region the chromaticity coordinates fall within; correcting the gray-scale signal corresponding to the video signal by using a chromaticity correcting portion corresponding to the determined one of the plurality of correction regions; and performing corrected image display.
    • 提供了一种显示装置的色度调整方法,该显示装置包括用于产生与从外部输入的视频信号对应的灰度信号的驱动电路,并将灰度信号提供给多个像素,该方法包括: 在显示装置上显示的图像的色度坐标; 确定测量色度坐标是否是在需要色度校正的第二区域内不需要色度校正或色度坐标的第一区域内的色度坐标; 确定如果测量的色度坐标是第二区域内的色度坐标,则通过将色度坐标落入第二区域而获得的多个校正区域中的哪一个校正区域中的哪一个; 通过使用与所述多个校正区域中确定的一个对应的色度校正部分来校正与所述视频信号相对应的灰度信号; 并执行校正图像显示。
    • 5. 发明授权
    • Display device
    • 显示设备
    • US07317612B2
    • 2008-01-08
    • US10934691
    • 2004-09-07
    • Norio NakanishiTakeharu Furusawa
    • Norio NakanishiTakeharu Furusawa
    • G06F1/16
    • H04M1/0214G02F2001/133334H04M1/0266H04M2250/16
    • A resin two-panel intergral-type holder holds first and second display panels of different sizes on two surfaces. The holder has a first bank-like rib which surrounds at least three sides of a periphery of the first display panel and defines first accommodating region and a second bank-like rib which surrounds at least three sides of a periphery of the second display panel and defines a second accommodating region. A conductive sheet member is formed on a first portion of another surface corresponding to the first accommodating region except for the second accommodating region and a second portion of another surface corresponding to the second accommodating region respectively. The conductive sheet member contacts another surface. A notch is formed in the second bank-like rib to electrically connect the first and second portions of the conductive sheet member.
    • 树脂双面整体式保持器在两个表面上保持不同尺寸的第一和第二显示面板。 保持器具有第一堤状肋状物,其围绕第一显示面板的周边的至少三个侧面并且限定第一容纳区域和围绕第二显示面板的周边的至少三个侧面的第二堤岸状肋条, 限定第二容纳区域。 导电片部件形成在除了第二容纳区域之外的与第一容纳区域相对应的另一表面的第一部分和分别对应于第二容纳区域的另一表面的第二部分。 导电片构件接触另一表面。 在第二堤状肋中形成切口以电连接导电片构件的第一和第二部分。
    • 6. 发明授权
    • Method of chromaticity adjustment of display device
    • 显示设备色度调整方法
    • US08848003B2
    • 2014-09-30
    • US13239728
    • 2011-09-22
    • Yuu TakahashiNorio Nakanishi
    • Yuu TakahashiNorio Nakanishi
    • G09G5/10G09G3/36
    • G09G3/3648G09G2320/0242G09G2320/0276G09G2320/0285G09G2360/145
    • Provided is a method of chromaticity adjustment of a display device including a drive circuit for generating a gray-scale signal corresponding to a video signal input from an external portion and supplying the gray-scale signal to a plurality of pixels, the method including: measuring chromaticity coordinates of an image displayed on the display device; determining whether the measured chromaticity coordinates are chromaticity coordinates within a first region that does not need a chromaticity correction or chromaticity coordinates within a second region that needs the chromaticity correction; determining, if the measured chromaticity coordinates are the chromaticity coordinates within the second region, which of a plurality of correction regions obtained by dividing the second region the chromaticity coordinates fall within; correcting the gray-scale signal corresponding to the video signal by using a chromaticity correcting portion corresponding to the determined one of the plurality of correction regions; and performing corrected image display.
    • 提供了一种显示装置的色度调整方法,该显示装置包括用于产生与从外部输入的视频信号对应的灰度信号的驱动电路,并将灰度信号提供给多个像素,该方法包括: 在显示装置上显示的图像的色度坐标; 确定测量色度坐标是否是在需要色度校正的第二区域内不需要色度校正或色度坐标的第一区域内的色度坐标; 确定如果测量的色度坐标是第二区域内的色度坐标,则通过将色度坐标落入第二区域而获得的多个校正区域中的哪一个校正区域中的哪一个; 通过使用与所述多个校正区域中确定的一个对应的色度校正部分来校正与所述视频信号相对应的灰度信号; 并执行校正图像显示。