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    • 1. 发明申请
    • PROJECTION LENS FIXATION AND ADJUSTMENT MECHANISM
    • 投影镜头固定和调整机制
    • US20050185152A1
    • 2005-08-25
    • US10782289
    • 2004-02-19
    • Cindy VeldeJan ArteelKoen BeyersKoen Belle
    • Cindy VeldeJan ArteelKoen BeyersKoen Belle
    • G02B7/00G02B7/02H04N5/74H04N9/31G03B21/14
    • G02B7/023H04N9/3141H04N9/317
    • A system and method for fixing a projection lens 102 and adjusting the position of a projection lens 102 is provided, which is compact and has a high precision. The projection lens 102 is positioned on a base plate 104. The position of the projection lens can be adjusted by providing possibilities for horizontal and vertical shift in a plane perpendicular to the optical axis of the projection lens 102. This is performed by actuating three points of the base plate 104. Furthermore, by providing further shifting means at the three points of the base plate 104, tilting of the projection lens can be performed, thus providing Scheimpflug correction. In this way, motion of the projection lens in five degrees of freedom is provided by actuating three points at a base plate 104 whereon a projection lens 102 can be easily mounted and removed.
    • 提供一种用于固定投影透镜102并调整投影透镜102的位置的系统和方法,该系统和方法是紧凑的并且具有高精度。 投影透镜102位于基板104上。 可以通过提供垂直于投影透镜102的光轴的平面中的水平和垂直移动的可能性来调整投影透镜的位置。 这通过致动基板104的三个点来执行。 此外,通过在基板104的三个点处提供进一步的移位装置,可以执行投影透镜的倾斜,从而提供Scheimpflug校正。 以这种方式,投影透镜在五个自由度上的运动是通过在基板104处致动三个点而提供的,其中投影透镜102可以容易地安装和移除。
    • 2. 发明申请
    • Optical arrangement for non-inverting illumination system
    • 非反相照明系统的光学布置
    • US20050185143A1
    • 2005-08-25
    • US10785249
    • 2004-02-24
    • Bart BosscheKoen BeyersKoen BellePeter Meerleer
    • Bart BosscheKoen BeyersKoen BellePeter Meerleer
    • H04N9/31G03B21/00
    • H04N9/3105H04N9/317
    • An optical design is described to be used in a color projection system. The system comprises a white light source (52), a light splitting means to split the white beam into color subbeams, optical components to direct each color subbeam on a light modulating means (56) and a dichroic prism (70). The light splitting means and the optical components are arranged such that each of the images of the color subbeams imaged on the light modulating means (56) has equal size and orientation, i.e. such that the magnification of the color subimage on the light modulating means (56) is equal. This is obtained by providing equal light paths for each color subbeam or by providing optical components such that either all different color images on the screen are inverted or none of the different color images are inverted.
    • 光学设计被描述为用于彩色投影系统。 该系统包括白色光源(52),将白色光束分成彩色子光束的光分离装置,用于将每个颜色子光束引导到光调制装置(56)和二向色棱镜(70)上的光学部件。 光分离装置和光学部件被布置成使得在光调制装置(56)上成像的彩色子束的每个图像具有相同的尺寸和取向,即,使得光调制装置上的彩色子图像的放大 56)相等。 这是通过为每个颜色子光束提供相等的光路或通过提供光学部件使得屏幕上的所有不同的彩色图像被反转或者不会使不同的彩色图像反转而获得的。
    • 3. 发明授权
    • Optical arrangement for non-inverting illumination system
    • 非反相照明系统的光学布置
    • US07192141B2
    • 2007-03-20
    • US10785249
    • 2004-02-24
    • Bart Van Den BosscheKoen BeyersKoen Van BellePeter De Meerleer
    • Bart Van Den BosscheKoen BeyersKoen Van BellePeter De Meerleer
    • G03B21/14G02F1/1335
    • H04N9/3105H04N9/317
    • An optical design is described to be used in a color projection system. The system comprises a white light source (52), a light splitting means to split the white beam into color subbeams, optical components to direct each color subbeam on a light modulating means (56) and a dichroic prism (70). The light splitting means and the optical components are arranged such that each of the images of the color subbeams imaged on the light modulating means (56) has equal size and orientation, i.e. such that the magnification of the color subimage on the light modulating means (56) is equal. This is obtained by providing equal light paths for each color subbeam or by providing optical components such that either all different color images on the screen are inverted or none of the different color images are inverted.
    • 光学设计被描述为用于彩色投影系统。 该系统包括白色光源(52),将白色光束分成彩色子光束的光分离装置,用于将每个颜色子光束引导到光调制装置(56)和二向色棱镜(70)上的光学部件。 光分离装置和光学部件被布置成使得在光调制装置(56)上成像的彩色子束的每个图像具有相同的尺寸和取向,即,使得光调制装置上的彩色子图像的放大 56)相等。 这是通过为每个颜色子光束提供相等的光路或通过提供光学部件使得屏幕上的所有不同的彩色图像被反转或者不会使不同的彩色图像反转而获得的。
    • 4. 发明授权
    • Projection lens fixation and adjustment mechanism
    • 投影镜头固定和调节机制
    • US06966657B2
    • 2005-11-22
    • US10782289
    • 2004-02-19
    • Cindy Van De VeldeJan Leo ArteelKoen BeyersKoen Van Belle
    • Cindy Van De VeldeJan Leo ArteelKoen BeyersKoen Van Belle
    • G02B7/00G02B7/02H04N5/74H04N9/31G03B2/14G03B3/00
    • G02B7/023H04N9/3141H04N9/317
    • A system and method for fixing a projection lens 102 and adjusting the position of a projection lens 102 is provided, which is compact and has a high precision. The projection lens 102 is positioned on a base plate 104. The position of the projection lens can be adjusted by providing possibilities for horizontal and vertical shift in a plane perpendicular to the optical axis of the projection lens 102. This is performed by actuating three points of the base plate 104. Furthermore, by providing further shifting means at the three points of the base plate 104, tilting of the projection lens can be performed, thus providing Scheimpflug correction. In this way, motion of the projection lens in five degrees of freedom is provided by actuating three points at a base plate 104 whereon a projection lens 102 can be easily mounted and removed.
    • 提供一种用于固定投影透镜102并调整投影透镜102的位置的系统和方法,该系统和方法是紧凑的并且具有高精度。 投影透镜102位于基板104上。 可以通过提供垂直于投影透镜102的光轴的平面中的水平和垂直移动的可能性来调整投影透镜的位置。 这通过致动基板104的三个点来执行。 此外,通过在基板104的三个点处提供进一步的移位装置,可以执行投影透镜的倾斜,从而提供Scheimpflug校正。 以这种方式,投影透镜在五个自由度上的运动是通过在基板104处致动三个点而提供的,其中投影透镜102可以容易地安装和移除。