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    • 2. 发明申请
    • PARALLAX BARRIER WITH INDEPENDENTLY CONTROLLABLE REGIONS
    • US20180192038A1
    • 2018-07-05
    • US15741073
    • 2016-07-14
    • SHARP KABUSHIKI KAISHA
    • Nathan James SMITHHywel HOPKINTakehiro MURAORyoh KIKUCHI
    • H04N13/20G02F1/29G02B27/22
    • A reconfigurable parallax barrier panel comprising an electro-optic material has a first region, a second region and a first compensation region. First electrodes are addressable to define, in the first region of the panel, a parallax barrier array selected from a plurality of predetermined parallax barrier arrays, and second electrodes are addressable define, in the second region of the panel, independently of the first parallax barrier array, a parallax barrier array selected from the plurality of predetermined parallax barrier arrays. Electrodes of the first compensation region are addressable to define, dependent on the first parallax barrier array and on the second parallax barrier array, at least one slit and/or at least one barrier between the first region and the second region. Where the first electrodes are addressed to define a first one of the predetermined parallax barrier arrays in the first region and the second electrodes are addressed to define a second, different one of the predetermined parallax barrier arrays in the second region, the electrodes of the first compensation region may define the at least one slit and/or at least one barrier to at least partially obscure any line artefact at the transition between the first one of the predetermined parallax barrier arrays and the second one of the predetermined parallax barrier arrays.
    • 3. 发明申请
    • STEREOSCOPIC DISPLAY DEVICE
    • 立体显示设备
    • US20160286206A1
    • 2016-09-29
    • US15031304
    • 2014-08-28
    • SHARP KABUSHIKI KAISHA
    • Takuto YOSHINOTakehiro MURAOHiroshi FUKUSHIMARyoh KIKUCHI
    • H04N13/04G02F1/1333G02F1/1335G02B27/22G02F1/1337G02F1/29G02F1/137G02F1/1343G02F1/1368
    • H04N13/327G02B27/2214G02F1/133345G02F1/13338G02F1/133514G02F1/133528G02F1/133784G02F1/134309G02F1/1368G02F1/137G02F1/292G09G3/003G09G2300/023H04N13/31H04N13/366H04N2213/001
    • Obtained is a configuration of a stereoscopic display device that allows a viewer to easily correct settings for stereoscopic display. A stereoscopic display device (1) includes: a display panel (10) for displaying an image; a switch liquid crystal panel (20) that is arranged so as to be stacked on the display panel (10); a position sensor for acquiring position information of a viewer; and a control unit for causing the switch liquid crystal panel (20) to display a parallax barrier in which transmitting regions and non-transmitting regions are formed in periodic fashion in a predetermined alignment direction. The control unit has, as operation modes, at least a tracking mode in which, according to the position information, the parallax barrier is moved in the alignment direction and is displayed on the switch liquid crystal panel (20), and a calibration mode for calibration of a reference position of the position information. The control unit sets a width of the transmitting region of the parallax barrier in the tracking mode, and a width of the transmitting region of the parallax barrier in the calibration mode, so that the widths are different from each other.
    • 获得的立体显示装置的配置允许观看者容易地校正立体显示的设置。 立体显示装置(1)包括:显示面板(10),用于显示图像; 布置成堆叠在显示面板(10)上的开关液晶面板(20); 用于获取观看者的位置信息的位置传感器; 以及控制单元,用于使开关液晶面板(20)以预定的排列方向以周期性方式显示其中透射区域和非透射区域形成的视差屏障。 控制单元具有作为操作模式的至少跟踪模式,其中根据位置信息,视差屏障沿对准方向移动并显示在开关液晶面板(20)上,并且具有校准模式 校准位置信息的参考位置。 控制单元在跟踪模式中设置视差屏障的发送区域的宽度,并且在校准模式中设置视差屏障的发送区域的宽度,使得宽度彼此不同。
    • 4. 发明申请
    • STEREOSCOPIC DISPLAY DEVICE
    • 立体显示设备
    • US20160261859A1
    • 2016-09-08
    • US15031311
    • 2014-08-25
    • Sharp Kabushiki Kaisha
    • Takehiro MURAORyoh KIKUCHITakuto YOSHINOHiroshi FUKUSHIMA
    • H04N13/04G02F1/1343G02F1/31G02F1/1337G02B27/22G02B27/26
    • H04N13/366G02B27/2214G02B27/26G02F1/133784G02F1/134309G02F1/1347G02F1/31G02F2001/133531H04N13/31H04N2213/001
    • A configuration of a stereoscopic display device that is capable of reducing luminance variation that occurs when a viewer moves is obtained, by making improvement regarding the angle dependency of luminance. A stereoscopic display device (1) includes: a display panel (10); a switch liquid crystal panel (20); a first polarizing plate (15); a second polarizing plate (24); a position sensor for acquiring position information of a viewer; and a control unit for moving a parallax barrier in which transmitting regions and non-transmitting regions are formed in periodic fashion in a predetermined alignment direction, in such a manner that the parallax barrier is moved in the predetermined alignment direction in accordance with the position information, and causing the switch liquid crystal panel (20) to display the parallax barrier. The transmitting region has a width greater than a width in the alignment direction of an opening of each of the pixels (110). The switch liquid crystal panel (20) includes: a first substrate (21); a first alignment film (216); a second substrate (22); a second alignment film (226); and a liquid crystal layer (23). The rubbing direction of the first alignment film (216) is parallel to the transmission axis of the first polarizing plate (15), and the rubbing direction of the second alignment film (226) is parallel to the transmission axis of the second polarizing plate (24).
    • 通过对亮度的角度依赖性进行改进,能够获得能够减少观察者移动时发生的亮度变化的立体显示装置的结构。 立体显示装置(1)包括:显示面板(10); 开关液晶面板(20); 第一偏振板(15); 第二偏振板(24); 用于获取观看者的位置信息的位置传感器; 以及控制单元,用于使视差屏障以预定的取向方向以周期性的方式移动,使得视差屏障根据位置信息在预定的取向方向上移动 并且使开关液晶面板(20)显示视差屏障。 发送区域的宽度大于每个像素(110)的开口的排列方向上的宽度。 开关液晶面板(20)包括:第一基板(21); 第一取向膜(216); 第二基板(22); 第二取向膜(226); 和液晶层(23)。 第一取向膜(216)的摩擦方向与第一偏振片(15)的透射轴平行,第二取向膜(226)的摩擦方向平行于第二偏振片 24)。
    • 6. 发明申请
    • STEREOSCOPIC DISPLAY DEVICE
    • 立体显示设备
    • US20160261857A1
    • 2016-09-08
    • US15030925
    • 2014-08-26
    • Sharp Kabushiki Kaisha
    • Ryoh KIKUCHITakehiro MURAOTakuto YOSHINOHiroshi FUKUSHIMA
    • H04N13/04G02F1/1343G02F1/1337G02F1/13G02B27/22G02F1/31
    • H04N13/31G02B27/2214G02F1/1323G02F1/133784G02F1/134309G02F1/134363G02F1/31H04N13/376H04N13/398
    • A stereoscopic display device (1) of the present invention includes a display panel (10), a switch liquid crystal panel (20), a first polarizing plate (15) and a second polarizing plate (24), and a control unit for moving a parallax barrier in which transmitting regions and non-transmitting regions are formed in periodic fashion in a predetermined alignment direction, in such a manner that the parallax barrier is moved in the predetermined alignment direction in accordance with position information, and causing the switch liquid crystal panel (20) to display the parallax barrier. A first alignment film (216) and a second alignment film (226) of the switch liquid crystal panel (20) are rubbed so that molecule long axes of liquid crystal molecules in the vicinities of the center of a liquid crystal layer (23) in the thickness direction in a state where no voltage is applied are oriented in a direction perpendicular to the alignment direction as viewed in a plan view. Retardation of the liquid crystal layer (23) is in a range of 380 nm to 466 nm both inclusive when an intersection angle that is an angle formed between a rubbing direction of the first alignment film (216) and a transmission axis of the first polarizing plate (15) is in a range of 0° exclusive to 18° inclusive, and is in a range of 410 nm to 450 nm both inclusive when the intersection angle is in a range of 18° exclusive to 45° inclusive.
    • 本发明的立体显示装置(1)包括显示面板(10),开关液晶面板(20),第一偏振板(15)和第二偏振板(24),以及用于移动的控制单元 视差屏障,其中透射区域和非透射区域以预定的取向方向以周期方式形成,使得视差屏障根据位置信息在预定的取向方向上移动,并且使开关液晶 面板(20)显示视差屏障。 将开关液晶面板(20)的第一取向膜(216)和第二取向膜(226)摩擦,使液晶层(23)的中央附近的液晶分子的分子长轴 在没有施加电压的状态下的厚度方向在与俯视图中的取向方向垂直的方向上取向。 当在第一取向膜(216)的摩擦方向和第一偏振片(216)的透射轴之间形成的角度的交叉角度(μm)时,液晶层(23)的延迟在380nm至466nm的范围内, 当交叉角度在专门为45°的45°范围内时,板(15)的范围为0°,不包括18°,并且在410nm至450nm的范围内。
    • 7. 发明申请
    • STEREOSCOPIC DISPLAY DEVICE
    • 立体显示设备
    • US20160223827A1
    • 2016-08-04
    • US15026301
    • 2014-08-20
    • Sharp Kabushiki Kaisha
    • Takehiro MURAORyoh KIKUCHITakuto YOSHINOHiroshi FUKUSHIMA
    • G02B27/22H04N13/04G02F1/1343
    • G02B27/2214G02F1/134309H04N13/31H04N13/312H04N13/366H04N13/376H04N13/398H04N2213/001
    • A configuration of a stereoscopic display device that is capable of maintaining crosstalk at a low level even when a viewer moves is provided. A stereoscopic display device (1) includes: a display panel (10) for displaying an image; a switch liquid crystal panel (20) that is arranged so as to be stacked on the display panel (10); a position sensor for acquiring position information of a viewer; and a control unit for moving a parallax barrier in which transmitting regions and non-transmitting regions are formed in periodic fashion in a predetermined alignment direction, in such a manner that the parallax barrier is moved in the predetermined alignment direction in accordance with the position information, and causing the switch liquid crystal panel (20) to display the parallax barrier. The switch liquid crystal panel (20) includes: a liquid crystal layer (23) in which refractive index anisotropy Δn of liquid crystal molecules is 0.14 or less; a first substrate (21) and a second substrate (22) that face each other with the liquid crystal layer (23) being interposed therebetween; and an electrode group including a plurality of electrodes that are formed on at least one of the first substrate (21) and the second substrate (22) and are arranged in the alignment direction.
    • 即使观察者移动,也能够将串扰保持在低水平的立体显示装置的结构。 立体显示装置(1)包括:显示面板(10),用于显示图像; 布置成堆叠在显示面板(10)上的开关液晶面板(20); 用于获取观看者的位置信息的位置传感器; 以及控制单元,用于使视差屏障以预定的取向方向以周期性的方式移动,使得视差屏障根据位置信息在预定的取向方向上移动 并且使开关液晶面板(20)显示视差屏障。 开关液晶面板(20)具有:液晶分子的折射率各向异性Δn为0.14以下的液晶层(23) 第一基板(21)和第二基板(22),其间夹着液晶层(23)彼此相对; 以及包括形成在所述第一基板(21)和所述第二基板(22)中的至少一个上并且沿所述排列方向布置的多个电极的电极组。