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    • 1. 发明申请
    • STEREOSCOPIC IMAGE DISPLAY APPARATUS
    • 立体图像显示装置
    • US20090051685A1
    • 2009-02-26
    • US12187617
    • 2008-08-07
    • Ayako TakagiKazuki TairaTatsuo SaishuHitoshi KobayashiYoshiharu MomonoiYuzo Hirayama
    • Ayako TakagiKazuki TairaTatsuo SaishuHitoshi KobayashiYoshiharu MomonoiYuzo Hirayama
    • G06T15/00
    • H04N13/361H04N13/10H04N13/156H04N13/305H04N13/317H04N13/324H04N13/359H04N13/398
    • A stereoscopic image display apparatus includes: a plane display device including a display panel formed of pixels arranged in a matrix form and an image display controller controlling an image displayed on the display panel; an optical plate including a plurality of lenses provided in front of the display panel and controlling light rays illuminated from the pixels; a display mode selector selecting one of stereoscopic image display and two-dimensional image display as a display mode; an analyzer analyzing image information contained in a two-dimensional image displayed based on a display information and determine whether to process the two-dimensional image when two-dimensional image display as a display mode be selected; and an image processor processing the two-dimensional image based on a result of the analysis conducted by the analyzer, sending the processed two-dimensional image to the image display controller, and causing the image display controller to display the processed two-dimensional image on the display panel.
    • 立体图像显示装置包括:平面显示装置,包括由以矩阵形式布置的像素形成的显示面板和控制显示面板上显示的图像的图像显示控制器; 包括设置在所述显示面板前方的多个透镜并控制从所述像素照射的光线的光学板; 选择立体图像显示和二维图像显示之一作为显示模式的显示模式选择器; 分析器,分析基于显示信息显示的二维图像中包含的图像信息,并且当选择作为显示模式的二维图像显示时,确定是否处理二维图像; 以及图像处理器,基于由分析器进行的分析的结果处理二维图像,将处理后的二维图像发送到图像显示控制器,并使图像显示控制器显示经处理的二维图像 显示面板。
    • 2. 发明申请
    • STEREOSCOPIC IMAGE DISPLAY APPARATUS
    • 立体图像显示装置
    • US20110187948A1
    • 2011-08-04
    • US12884048
    • 2010-09-16
    • Masako KASHIWAGITatsuo SaishuRieko FukushimaYuzo HirayamaYoshiharu MomonoiAyako Takagi
    • Masako KASHIWAGITatsuo SaishuRieko FukushimaYuzo HirayamaYoshiharu MomonoiAyako Takagi
    • G02F1/1335
    • G02F1/1335
    • Certain embodiments provide a display device a plurality of subpixels arranged in a first direction and a second direction perpendicular to the first direction to form a matrix, and each having an aperture provided with a color component; and an optical controller provided to be opposed to the display device having a plurality of rectilinear optical apertures extending in the second direction are arranged in the first direction. A shape pf the aperture in the subpixel is depending upon a condition that the apertures in the subpixels adjacent to each other in the first direction have a nonoverlapping region which is a nonoverlapping region in the second direction and a condition that an aperture ratio indicating a ratio of the aperture to the subpixel in length in the second direction is substantially constant in one line in the second direction irrespective of a position in the first direction.
    • 某些实施例为显示装置提供沿垂直于第一方向的第一方向和第二方向布置的多个子像素以形成矩阵,并且每个具有设置有彩色分量的孔; 并且设置成与具有沿着第二方向延伸的多个直线光学孔的显示装置相对的光学控制器被布置在第一方向上。 子像素中的孔的形状取决于在第一方向上彼此相邻的子像素中的孔具有在第二方向上是非重叠区域的非重叠区域和表示比例的孔径比的条件 在与第一方向上的位置无关地,第二方向上的子像素长度上的孔径在第二方向上的一行基本上是恒定的。
    • 3. 发明授权
    • Stereoscopic image display apparatus
    • 立体图像显示装置
    • US08582042B2
    • 2013-11-12
    • US12884048
    • 2010-09-16
    • Masako KashiwagiTatsuo SaishuRieko FukushimaYuzo HirayamaYoshiharu MomonoiAyako Takagi
    • Masako KashiwagiTatsuo SaishuRieko FukushimaYuzo HirayamaYoshiharu MomonoiAyako Takagi
    • G02F1/1335G02F1/1343
    • G02F1/1335
    • Certain embodiments provide a display device a plurality of subpixels arranged in a first direction and a second direction perpendicular to the first direction to form a matrix, and each having an aperture provided with a color component; and an optical controller provided to be opposed to the display device having a plurality of rectilinear optical apertures extending in the second direction are arranged in the first direction. A shape of the aperture in the subpixel is depending upon a condition that the apertures in the subpixels adjacent to each other in the first direction have a nonoverlapping region which is a nonoverlapping region in the second direction and a condition that an aperture ratio indicating a ratio of the aperture to the subpixel in length in the second direction is substantially constant in one line in the second direction irrespective of a position in the first direction.
    • 某些实施例为显示装置提供沿垂直于第一方向的第一方向和第二方向布置的多个子像素以形成矩阵,并且每个具有设置有彩色分量的孔; 并且设置成与具有沿着第二方向延伸的多个直线光学孔的显示装置相对的光学控制器被布置在第一方向上。 子像素中的孔的形状取决于在第一方向上彼此相邻的子像素中的孔具有作为第二方向的非重叠区域的非重叠区域和表示比例的孔径比的条件 在与第一方向上的位置无关地,第二方向上的子像素长度上的孔径在第二方向上的一行基本上是恒定的。
    • 4. 发明申请
    • INSPECTION APPARATUS AND METHOD
    • 检查装置和方法
    • US20090174880A1
    • 2009-07-09
    • US12347106
    • 2008-12-31
    • Yoshiharu MomonoiKazuki TairaTatsuo Saishu
    • Yoshiharu MomonoiKazuki TairaTatsuo Saishu
    • G01N21/88
    • H04N13/327H04N13/305H04N13/31
    • An optical plate having an exit pupil array or a lens array aligned at a predetermined pitch is disposed at the front of a display. A test pattern is supplied to the display to light a pixel corresponding to the predetermined pitch. A first optical element transmits a light from an inspection position of the optical plate. A second optical element coaxially disposed on the first optical element, focuses the light from the first optical element. An image from the light focused at the second optical element is obtained. A three-dimensional position at the inspection position of the optical plate relative to the display or a predetermined period of the optical plate is calculated from a position and a period of luminance distribution of the image, and a distance between the optical plate and the first optical element. Whether the three-dimensional position or the predetermined period is within a threshold is inspected.
    • 具有排出光瞳阵列或以预定间距排列的透镜阵列的光学板设置在显示器的前部。 向显示器提供测试图案以点亮对应于预定间距的像素。 第一光学元件透射来自光学板的检查位置的光。 同轴地设置在第一光学元件上的第二光学元件聚焦来自第一光学元件的光。 获得从第二光学元件聚焦的光的图像。 根据图像的亮度分布的位置和周期以及光学板与第一光学板之间的距离来计算光学板相对于显示器的检查位置的三维位置或光学板的预定周期 光学元件。 检查三维位置或预定周期是否在阈值内。
    • 6. 发明授权
    • Inspection apparatus and method
    • 检验仪器及方法
    • US07834996B2
    • 2010-11-16
    • US12347106
    • 2008-12-31
    • Yoshiharu MomonoiKazuki TairaTatsuo Saishu
    • Yoshiharu MomonoiKazuki TairaTatsuo Saishu
    • G01N21/00
    • H04N13/327H04N13/305H04N13/31
    • An optical plate having an exit pupil array or a lens array aligned at a predetermined pitch is disposed at the front of a display. A test pattern is supplied to the display to light a pixel corresponding to the predetermined pitch. A first optical element transmits a light from an inspection position of the optical plate. A second optical element coaxially disposed on the first optical element, focuses the light from the first optical element. An image from the light focused at the second optical element is obtained. A three-dimensional position at the inspection position of the optical plate relative to the display or a predetermined period of the optical plate is calculated from a position and a period of luminance distribution of the image, and a distance between the optical plate and the first optical element. Whether the three-dimensional position or the predetermined period is within a threshold is inspected.
    • 具有排出光瞳阵列或以预定间距排列的透镜阵列的光学板设置在显示器的前部。 向显示器提供测试图案以点亮对应于预定间距的像素。 第一光学元件透射来自光学板的检查位置的光。 同轴地设置在第一光学元件上的第二光学元件聚焦来自第一光学元件的光。 获得从第二光学元件聚焦的光的图像。 根据图像的亮度分布的位置和周期以及光学板与第一光学板之间的距离来计算光学板相对于显示器的检查位置的三维位置或光学板的预定周期 光学元件。 检查三维位置或预定周期是否在阈值内。