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    • 22. 发明授权
    • Display unit, display method and equipment using thereof
    • 显示单元,显示方法和使用其的设备
    • US07605981B2
    • 2009-10-20
    • US11017597
    • 2004-12-20
    • Masaya AdachiOsamu ItouShinichi Komura
    • Masaya AdachiOsamu ItouShinichi Komura
    • G02B27/14
    • G02B27/2278H04N13/327H04N13/395
    • A display unit which displays a plurality of objects viewed as being located at different depthwise positions by the viewer so as to exhibit an image with depthwise feeling, includes: a single display portion including a far-distant display zone and a near-distant display zone, a polarized beam splitting element in front of the near-distant display zone, a polarized beam changing element in front of the far-distant display zone, and a total reflection mirror for reflecting an image beam emitted from the far-distant display zone, onto the polarized beam splitting element. An image beam emitted from the far-distant display zone is transmitted through the polarized beam changing element, then is reflected at the total reflection mirror, and thereafter is reflected by the polarized beam splitting element before it is viewed by the viewer.
    • 显示单元,其显示由观看者观察为位于不同深度位置的多个对象,以便呈现具有深度感觉的图像,包括:包括远处显示区域和近距离显示区域的单个显示部分 ,近距离显示区域前方的偏振光束分离元件,远距离显示区域前方的偏振光束变换元件,以及反射从远距离显示区域发出的图像束的全反射镜, 到偏振分束元件上。 从远距离显示区域发射的图像束通过偏振光束改变元件透射,然后在全反射镜处被反射,然后在被观看者观看之前被偏振分束元件反射。
    • 29. 发明授权
    • Optical element and display device using the same
    • 光学元件及使用其的显示装置
    • US07936422B2
    • 2011-05-03
    • US12844971
    • 2010-07-28
    • Masaya AdachiOsamu ItouShinichi Komura
    • Masaya AdachiOsamu ItouShinichi Komura
    • G02F1/1335
    • G02F1/1323G02F1/133524G02F1/133632G02F1/13471
    • An optical element is arranged in such a manner that a screen thereof can be hardly observed from a predetermined direction, and a deterioration of an image quality caused by moire does not occur. The optical element is constituted by a first polarizing layer, a second polarizing layer, and a liquid crystal layer arranged between these two polarizing layers. In the optical element, absorption axes of the first polarizing layer and the second polarizing layer are located parallel to each other; the liquid crystal layer is made of hybrid-aligned discotic liquid crystal; and an alignment axis of the liquid crystal layer is located parallel to, or perpendicular to both absorption axes of the first polarizing layer and of the second polarizing layer.
    • 光学元件被布置成使得从预定方向几乎不能观察到其屏幕,并且不会发生由莫尔条纹引起的图像质量的劣化。 光学元件由第一偏振层,第二偏振层和布置在这两个偏振层之间的液晶层构成。 在光学元件中,第一偏振层和第二偏振层的吸收轴彼此平行; 液晶层由混合对准盘状液晶制成; 并且液晶层的对准轴与第一偏振层和第二偏振层的吸收轴平行或垂直。