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    • 1. 发明授权
    • Autostereoscopic display apparatus
    • 自动立体显示装置
    • US08692871B2
    • 2014-04-08
    • US13011455
    • 2011-01-21
    • Jonathan HarroldGraham John WoodgateRen-Wei Liao
    • Jonathan HarroldGraham John WoodgateRen-Wei Liao
    • H04N13/04G02B26/00
    • G02B27/225H04N13/398
    • An autostereoscopic display apparatus includes a spatial light modulator in which alignment features such as bump features provide radially symmetric alignment of the molecules of the liquid crystal. A parallax element is arranged over the spatial light modulator to direct light from the pixels into different viewing windows. The apertures of the pixels are shaped such that, for each individual row of pixels, a notional line parallel to the geometric axes of the parallax elements has a total length of intersection with the pixels of the row, weighted for the intensity of light modulated by the alignment features, which is the same for all positions of the notional line. This improves angular intensity uniformity. The pixels may each include plural apertures, wherein the alignment features of the apertures of each individual pixel are offset from one another in a direction perpendicular to said geometric axes. This improves angular contrast uniformity.
    • 自动立体显示装置包括空间光调制器,其中诸如凸起特征的对准特征提供了液晶分子的径向对称排列。 视差元件布置在空间光调制器上方以将来自像素的光引导到不同的观察窗口中。 像素的孔径被成形为使得对于每个单独的像素行,平行于视差元件的几何轴的概念线具有与行的像素的相交的总长度,对于由 对齐特征,对于名义线的所有位置是相同的。 这提高了角度均匀性。 像素可以各自包括多个孔,其中每个单独像素的孔的对准特征在垂直于所述几何轴的方向上彼此偏移。 这改善了角度对比度的均匀性。
    • 2. 发明申请
    • AUTOSTEREOSCOPIC DISPLAY APPARATUS
    • 自动显示器
    • US20110181706A1
    • 2011-07-28
    • US13011455
    • 2011-01-21
    • Jonathan HARROLDGraham John WoodgateRen-Wei Liao
    • Jonathan HARROLDGraham John WoodgateRen-Wei Liao
    • H04N13/04G02B26/00
    • G02B27/225H04N13/398
    • An autostereoscopic display apparatus includes a spatial light modulator in which alignment features such as bump features provide radially symmetric alignment of the molecules of the liquid crystal. A parallax element is arranged over the spatial light modulator to direct light from the pixels into different viewing windows. The apertures of the pixels are shaped such that, for each individual row of pixels, a notional line parallel to the geometric axes of the parallax elements has a total length of intersection with the pixels of the row, weighted for the intensity of light modulated by the alignment features, which is the same for all positions of the notional line. This improves angular intensity uniformity. The pixels may each include plural apertures, wherein the alignment features of the apertures of each individual pixel are offset from one another in a direction perpendicular to said geometric axes. This improves angular contrast uniformity.
    • 自动立体显示装置包括空间光调制器,其中诸如凸起特征的对准特征提供了液晶分子的径向对称排列。 视差元件布置在空间光调制器上方以将来自像素的光引导到不同的观察窗口中。 像素的孔径被成形为使得对于每个单独的像素行,平行于视差元件的几何轴的概念线具有与行的像素的相交的总长度,对于由 对齐特征,对于名义线的所有位置是相同的。 这提高了角度均匀性。 像素可以各自包括多个孔,其中每个单独像素的孔的对准特征在垂直于所述几何轴的方向上彼此偏移。 这改善了角度对比度的均匀性。
    • 3. 发明授权
    • Three-dimensional display
    • 三维显示
    • US08593608B2
    • 2013-11-26
    • US12909832
    • 2010-10-22
    • Ren-Wei LiaoMeng-Chieh TsaiChih-Wen ChenChih-Hung Shih
    • Ren-Wei LiaoMeng-Chieh TsaiChih-Wen ChenChih-Hung Shih
    • G02F1/1343
    • H04N13/31G02F1/1333G02F1/136286H04N13/305
    • A three-dimensional display includes a display panel having a plurality of first pixels arranged in the odd row, and a plurality of second pixels arranged in the even row. Each first pixel has a first and a second transparent regions and a first semiconductor pattern. Each second pixel has a third and a fourth transparent regions and a second semiconductor pattern. In any two adjacent first and second pixels, the first and the third transparent regions are mirror images of each other, and the second and the fourth transparent regions are mirror images of each other. In the adjacent first and second pixels arranged in any two rows, the loss of the light transmittance at any position along the row direction due to overlapping of the first semiconductor and the first transparent region and overlapping of the second semiconductor and the fourth transparent region remains unchanged.
    • 三维显示器包括具有布置在奇数行中的多个第一像素的显示面板和布置在偶数行中的多个第二像素。 每个第一像素具有第一和第二透明区域和第一半导体图案。 每个第二像素具有第三和第四透明区域和第二半导体图案。 在任何两个相邻的第一和第二像素中,第一和第三透明区域是彼此的镜像,第二和第四透明区域是彼此的镜像。 在布置成任意两排的相邻的第一和第二像素中,由于第一半导体和第一透明区域的重叠以及第二半导体与第四透明区域的重叠而沿着行方向的任何位置的透光率的损失保持 不变
    • 4. 发明申请
    • THREE-DIMENSIONAL DISPLAY
    • 三维显示
    • US20110149392A1
    • 2011-06-23
    • US12909832
    • 2010-10-22
    • Ren-Wei LiaoMeng-Chieh TsaiChih-Wen ChenChih-Hung Shih
    • Ren-Wei LiaoMeng-Chieh TsaiChih-Wen ChenChih-Hung Shih
    • G02B27/22
    • H04N13/31G02F1/1333G02F1/136286H04N13/305
    • A three-dimensional display includes a display panel having a plurality of first pixels arranged in the odd row, and a plurality of second pixels arranged in the even row. Each first pixel has a first and a second transparent regions and a first semiconductor pattern. Each second pixel has a third and a fourth transparent regions and a second semiconductor pattern. In any two adjacent first and second pixels, the first and the third transparent regions are mirror images of each other, and the second and the fourth transparent regions are mirror images of each other. In the adjacent first and second pixels arranged in any two rows, the loss of the light transmittance at any position along the row direction due to overlapping of the first semiconductor and the first transparent region and overlapping of the second semiconductor and the fourth transparent region remains unchanged.
    • 三维显示器包括具有布置在奇数行中的多个第一像素的显示面板和布置在偶数行中的多个第二像素。 每个第一像素具有第一和第二透明区域和第一半导体图案。 每个第二像素具有第三和第四透明区域和第二半导体图案。 在任何两个相邻的第一和第二像素中,第一和第三透明区域是彼此的镜像,第二和第四透明区域是彼此的镜像。 在布置成任意两排的相邻的第一和第二像素中,由于第一半导体和第一透明区域的重叠以及第二半导体与第四透明区域的重叠而沿着行方向的任何位置的透光率的损失保持 不变