Segmented directional backlight and related methods of backlight illumination

    公开(公告)号:US20160223824A1

    公开(公告)日:2016-08-04

    申请号:US15012758

    申请日:2016-02-01

    Applicant: RealD Inc.

    CPC classification number: G02B27/225 G02B6/0048

    Abstract: Backlit display systems, such as those employed with LED backlit displays, including those configured for autostereoscopic operation, may employ synchronization between the backlight and the presentation of sequential left and right eye images at a frame rate exceeding approximately 100 Hz. To successfully directionally illuminate isolated frames, the disclosed principles provide for segmenting the directional illumination and introducing a phase shifted, synchronized, pulsed drive scheme for the illumination segments. Accordingly, the principles disclosed herein are directed to segmented directional illumination systems and related techniques for segmented directional backlight illumination.

    Electronic display tiling apparatus and method thereof

    公开(公告)号:US09348553B2

    公开(公告)日:2016-05-24

    申请号:US14615313

    申请日:2015-02-05

    Applicant: RealD Inc.

    Abstract: Disclosed is a method and apparatus for substantially eliminating the appearance of seams between tiled panels of a display. Non-imaging magnification may be used to substantially eliminate the appearance of seams. Additionally, the appearance of seams between the tiled panels of a display may be substantially eliminated by employing propagation based elimination. The methods disclosed can be used to generate substantially seamless 2D and 3D displays. Additionally, a method and apparatus for achieving substantially uniform panel brightness and color correction may be addressed. The substantially seamless tiled displays may employ specific data formats for use in displaying images on the individual displays which may be tiled together to form a larger, substantially seamless tiled display and may employ other techniques not utilized in known video wall applications. These functions may include an intensity envelope in addition to substantially complying with the Digital Cinema Initiative (“DCI”) security concerns.

    Directional backlight
    24.
    发明申请
    Directional backlight 有权
    定向背光

    公开(公告)号:US20160131825A1

    公开(公告)日:2016-05-12

    申请号:US14877196

    申请日:2015-10-07

    Applicant: RealD Inc.

    Abstract: An electrical connection assembly for a directional display comprising a directional backlight may include stack of flat connectors and a strip comprising an end portion with an array of light sources and a base portion with an array of connectors. The end portion and base portion may be shaped so that the base portion extends outwardly from the end portion. Light sources of the directional display may be individually addressable by means of a highly compact arrangement of connections, achieving low thickness and small bezel width.

    Abstract translation: 用于包括方向性背光源的方向显示器的电连接组件可以包括平坦连接器的堆叠和包括具有光源阵列的端部的条带和具有连接器阵列的基部。 端部和基部可以被成形为使得基部从端部向外延伸。 方向显示器的光源可以通过紧凑的连接布置来单独寻址,实现低厚度和小的挡板宽度。

    Wide field-of-view stereoscopic projection system
    25.
    发明申请
    Wide field-of-view stereoscopic projection system 有权
    宽视场立体投影系统

    公开(公告)号:US20160100157A1

    公开(公告)日:2016-04-07

    申请号:US14965382

    申请日:2015-12-10

    Applicant: RealD Inc.

    Abstract: Disclosed embodiments relate to a stereoscopic projection system and methods. An exemplary disclosed projection system includes an optical component disposed between the lenses of a lens arrangement. An exemplary lens arrangement includes a first power group, a second power group, and an aperture stop. In an embodiment, the optical component is disposed between the first power group and the aperture stop. In an exemplary embodiment, the optical component is proximate to the aperture stop. By disposing the optical component closer to or proximate to the aperture stop in the lens arrangement, various benefits may be realized, including improved contrast uniformity.

    Abstract translation: 公开的实施例涉及立体投影系统和方法。 一种示例性的公开的投影系统包括设置在透镜装置的透镜之间的光学部件。 示例性透镜装置包括第一电源组,第二电源组和孔径光阑。 在一个实施例中,光学部件设置在第一电源组和孔径光阑之间。 在示例性实施例中,光学部件靠近孔径光阑。 通过将光学部件设置在透镜装置中更接近或靠近孔径光阑,可以实现各种益处,包括改进的对比度均匀性。

    Directional backlight
    26.
    发明授权
    Directional backlight 有权
    定向背光

    公开(公告)号:US09188731B2

    公开(公告)日:2015-11-17

    申请号:US13838936

    申请日:2013-03-15

    Applicant: REALD INC.

    Abstract: Disclosed is a light guiding valve apparatus including at least one transparent stepped waveguide optical valve for providing large area collimated illumination from localized light sources, and at least one further illumination source. A stepped waveguide may be a stepped structure, where the steps include extraction features hidden to guided light, propagating in a first forward direction. Returning light propagating in a second backward direction may be refracted, diffracted, or reflected by the features to provide discrete illumination beams exiting from the top surface of the waveguide. Such controlled illumination may provide for efficient, multi-user autostereoscopic displays as well as improved 2D display functionality. Light from a separate illumination source may pass through the transparent stepped waveguide optical valve to provide at least one further additional illumination function.

    Abstract translation: 公开了一种导光阀装置,其包括至少一个用于从局部光源提供大面积准直照明的透明阶梯式波导光阀,以及至少一个另外的照明源。 阶梯式波导可以是阶梯式结构,其中步骤包括对引导光隐藏的提取特征,在第一向前方向上传播。 在第二反向传播的返回光可以由特征折射,衍射或反射,以提供从波导的顶表面离开的离散照明光束。 这种受控照明可以提供有效的多用户自动立体显示器以及改进的2D显示功能。 来自单独的照明源的光可以通过透明的阶梯式波导光阀,以提供至少一个另外的照明功能。

    Polarization preserving projection screen with engineered pigment and method for making same
    27.
    发明授权
    Polarization preserving projection screen with engineered pigment and method for making same 有权
    具有工程颜料的极化保存投影屏幕及其制造方法

    公开(公告)号:US09110363B2

    公开(公告)日:2015-08-18

    申请号:US13942259

    申请日:2013-07-15

    Applicant: REALD INC.

    Abstract: Polarization preserving projection screens provide optimum polarization preservation for 3D viewing. The projection screens additionally provide improved light control for enhanced brightness, uniformity, and contrast for both 2D and 3D systems. Generally, the disclosed method for providing a projection screen comprises stripping an optically functional material from a carrier substrate, thus creating engineered particles from the optically functional material. The engineered particles may then be deposited on a second substrate to create a substantially homogeneous optical appearance of the projection screen.

    Abstract translation: 极化保护投影屏为3D观看提供最佳的极化保存。 投影屏幕另外提供改进的光控制,以提高2D和3D系统的亮度,均匀性和对比度。 通常,所提供的用于提供投影屏幕的方法包括从载体基底剥离光学功能材料,从而从光学功能材料产生工程化的颗粒。 然后将工程化颗粒沉积在第二基底上以产生投影屏幕的基本均匀的光学外观。

    Polarization compensated stereoscopic projection
    28.
    发明申请
    Polarization compensated stereoscopic projection 有权
    极化补偿立体投影

    公开(公告)号:US20150153582A1

    公开(公告)日:2015-06-04

    申请号:US14508945

    申请日:2014-10-07

    Applicant: RealD Inc.

    Abstract: Disclosed embodiments include stereoscopic systems having at least one compensator operable to reduce the sensitivity of polarization control over incidence angle of image source optics and analyzer optics. In an exemplary embodiment, the disclosed compensator is operable to compensate polarization changes induced by optics at either or both the image source subsystem and the analyzer subsystem, in which the polarization changes would be operable to cause leakage at the analyzer subsystem if uncompensated. As such, the disclosed compensators and compensation techniques are operable to reduce leakage at the analyzer subsystem even if the disclosed compensator may be located at the analyzer subsystem.

    Abstract translation: 公开的实施例包括具有至少一个补偿器的立体系统,其可操作以降低偏振控制对图像源光学器件和分析器光学器件的入射角的灵敏度。 在示例性实施例中,所公开的补偿器可操作以补偿由图像源子系统和分析器子系统中的一个或两者由光学器件引起的偏振变化,其中如果未补偿,则极化改变将可操作以在分析器子系统处引起泄漏。 因此,所公开的补偿器和补偿技术可操作以减少分析器子系统的泄漏,即使所公开的补偿器可能位于分析器子系统。

    Electronic display numerical aberration correction
    30.
    发明申请
    Electronic display numerical aberration correction 审中-公开
    电子显示数字像差校正

    公开(公告)号:US20150035953A1

    公开(公告)日:2015-02-05

    申请号:US14448098

    申请日:2014-07-31

    Applicant: RealD Inc.

    CPC classification number: H04N13/133 H04N13/122 H04N13/327 H04N13/376

    Abstract: Disclosed is a method for stereoscopic numerical aberration compensation. One embodiment of this may be implemented as a software module which may be invoked after the display content has been copied, as in the case of prepared content such as a movie, or rendered, as in the case of dynamically-generated content, such as a game or design visualization application. This scheme windows the image in the frame buffer in-place, as a final processing step prior to transmission to the display. A less-tightly-integrated embodiment modifies the data during transmission, with minimal additional buffering.

    Abstract translation: 公开了一种用于立体数字像差补偿的方法。 一个实施例可以实现为可以在复制显示内容之后调用的软件模块,如在诸如电影或已渲染的准备的内容的情况下,如在动态生成的内容的情况下,例如 游戏或设计可视化应用程序。 该方案将帧缓冲器中的图像初始化,作为在传输到显示器之前的最后处理步骤。 较不紧密集成的实施例在传输期间以最少的额外缓冲来修改数据。

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