Stereoscopic projection system
    12.
    发明公开
    Stereoscopic projection system 有权
    Stereoskopischer Projektionsapparat

    公开(公告)号:EP2520967A1

    公开(公告)日:2012-11-07

    申请号:EP12176569.7

    申请日:2009-09-03

    摘要: An optical system which includes some or all of the following parts: a laser light source which illuminates a spatial light modulator such that optical characteristics are preserved; a stereoscopic display which has a polarization-switching light source; a stereoscopic display which includes two infrared lasers, two optical parametric oscillators, and six second harmonic generators; two light sources processed by two parts of the same spatial light modulator; a method of assembly using an alignment plate to align kinematic rollers on a holding plate; an optical support structure which includes stacked, compartmented layers; a collimated optical beam between an optical parametric oscillator and a second harmonic generator; a laser gain module with two retroreflective mirrors; an optical tap which keeps the monitored beam co-linear; an optical coupler which includes an optical fiber and a rotating diffuser; and an optical fiber that has a core with at least one flat side.

    摘要翻译: 一种包括以下部分或全部的光学系统:照射空间光调制器从而保持光学特性的激光光源; 具有偏振切换光源的立体显示器; 包括两个红外激光器,两个光学参数振荡器和六个二次谐波发生器的立体显示器; 由相同空间光调制器的两部分处理的两个光源; 使用对准板来组装保持板上的运动辊的组装方法; 光学支撑结构,其包括层叠的隔层; 在光学参量振荡器和二次谐波发生器之间的准直光束; 具有两个回射反射镜的激光增益模块; 保持监视的光束共线的光学抽头; 包括光纤和旋转扩散器的光耦合器; 以及具有至少一个平坦侧的芯的光纤。

    POLARIZED, MULTICOLOR LED-BASED ILLUMINATION SOURCE
    16.
    发明公开
    POLARIZED, MULTICOLOR LED-BASED ILLUMINATION SOURCE 审中-公开
    极化ON多色基于LED照明光源

    公开(公告)号:EP1963915A4

    公开(公告)日:2011-02-23

    申请号:EP06839420

    申请日:2006-12-18

    发明人: CONNER ARLIE R

    摘要: Light emitting diodes (LEDs) emit light at a first wavelength. A phosphor material close to LEDs converts at least some of the light to a second wavelength. The light at both wavelengths passes through a light collecting unit. A reflecting polarizer transmits both wavelengths in a first polarization state and reflects light at both wavelengths in a second, orthogonal, polarization state. Light reflected by the reflective polarizer is directed back towards the phosphor material without any substantial increase in angular range. The resulting output light beam contains polarized light at the first and second wavelengths. In some embodiments, an array of LEDs includes LEDs that emit light at a first wavelength and others that emit light at a second wavelength. The phosphor material is disposed on the LEDs emitting the light at the first wavelength.

    LIQUID CRYSTAL PROJECTOR AND IMAGE REPRODUCING DEVICE
    18.
    发明公开
    LIQUID CRYSTAL PROJECTOR AND IMAGE REPRODUCING DEVICE 审中-公开
    FLÜSSIGKRISTALLPROJEKTORUND BILDWIEDERGABEVORRICHTUNG

    公开(公告)号:EP2006735A1

    公开(公告)日:2008-12-24

    申请号:EP07741325.0

    申请日:2007-04-10

    申请人: Sony Corporation

    发明人: KAISE, Kikuo

    IPC分类号: G03B21/14 G02F1/13 G03B21/00

    摘要: In order to miniaturize a projector as a whole to such a degree that the projector can be included in a small device such as a portable telephone terminal or the like, a red laser light beam (1R) is diffused and shaped by a diffractive optical element (21R) for red, a green laser light beam (1G) is diffused and shaped by a diffractive optical element (21G) for green, and a blue laser light beam (1B) is diffused and shaped by a diffractive optical element (21B) for blue, so as to be each spread over an entire display area of a liquid crystal display panel (40) and be incident on corresponding pixels of a liquid crystal layer (48). The diffused and shaped laser light beams (2R, 2G, and 2B) are made incident on the liquid crystal display panel (40) via a field lens (31). In the liquid crystal display panel (40), red, green, and blue pixels are formed, and a microlens array is formed in an incidence side substrate (41). The liquid crystal display panel (40) distributes and condenses the laser light of the colors by microlenses, and makes the laser light incident on the corresponding pixels. Refraction type optical elements can be used in place of the diffractive optical elements.

    摘要翻译: 为了使投影机整体小型化,使得投影仪可以包括在诸如便携式电话终端等的小型设备中,红色激光束(1R)被衍射光学元件扩散和成形 (21R)用于红色,绿色激光(1G)被用于绿色的衍射光学元件(21G)扩散和成形,并且蓝色激光束(1B)被衍射光学元件(21B)扩散和成形, 用于蓝色,以便分散在液晶显示面板(40)的整个显示区域上并入射到液晶层(48)的相应像素上。 扩散形状的激光束(2R,2G,2B)通过场透镜(31)入射到液晶显示面板(40)上。 在液晶显示面板(40)中,形成红色,绿色和蓝色像素,并且在入射侧基板(41)上形成微透镜阵列。 液晶显示面板(40)通过微透镜分配和冷凝颜色的激光,并使激光入射到相应的像素上。 可以使用折射型光学元件代替衍射光学元件。