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    • 1. 再颁专利
    • Projection-type image display apparatus and method
    • 投影型图像显示装置及方法
    • USRE43743E1
    • 2012-10-16
    • US11106732
    • 2005-04-15
    • Kun-ho ChoSeung-Tae JungJang-hoon YooChul-woo Lee
    • Kun-ho ChoSeung-Tae JungJang-hoon YooChul-woo Lee
    • G03B21/00G03B21/26G03B21/14
    • G03B21/005H04N9/3117H04N13/305H04N13/324H04N13/337H04N13/363
    • A projection-type image display apparatus having a structure adapted so that the efficiency of the use of light and resolving power thereof can be enhanced. The projection-type image display apparatus includes a light source; a color separation unit separating incident rays according to predetermined wavelengths, and directing the separated rays at different angles; a lens array dividing the rays separated by the color separation unit into predetermined pixels; a driving portion driving the lens array to change the proceeding paths of the color rays; a polarizing beam splitter changing a proceeding path of incident rays depending on a direction of polarization; a reflection-type display device producing a color image using the rays entering via the polarizing beam splitter, and reflecting the color image toward the polarizing beam splitter; and a projection lens unit magnifying and projecting an incident image onto a screen. In addition, the projection-type image display apparatus may comprise. Alternative designs include a transmission-type display device in place of the reflection-type display device and a deflector changing the proceeding paths of the individual color rays separated by the color separation unit instead of the driving portion.
    • 一种投影型图像显示装置,其具有能够提高光的使用效率和分辨能力的结构。 投影型图像显示装置包括光源; 分离单元,根据预定波长分离入射光线,并以不同的角度引导分离的光线; 透镜阵列,将由分色单元分离的光线划分成预定的像素; 驱动所述透镜阵列以改变所述彩色光线的前进路径的驱动部; 偏振分束器根据偏振方向改变入射光线的行进路径; 反射型显示装置,使用通过偏振分束器进入的光线产生彩色图像,并将彩色图像反射向偏振分束器; 以及将投影图像放大并投影到屏幕上的投影透镜单元。 此外,投影型图像显示装置可以包括。 替代设计包括代替反射型显示装置的透射型显示装置和改变由分色单元分离的各个色光的行进路径而不是驱动部分的偏转器。
    • 2. 发明授权
    • Optical pickup apparatus
    • 光拾取装置
    • US07613095B2
    • 2009-11-03
    • US11290457
    • 2005-12-01
    • Bong-Gi KimSoo-Han ParkYoung-Man AhnJang-Hoon Yoo
    • Bong-Gi KimSoo-Han ParkYoung-Man AhnJang-Hoon Yoo
    • G11B7/00
    • G11B7/1356G11B7/123G11B7/1275G11B7/1374G11B7/13927G11B7/1395G11B2007/0006
    • An optical pickup apparatus according to an embodiment of the present invention, comprises an optical unit for projecting a plurality of wavelengths of light, the light including a celadon light, toward a recording medium and receiving the light reflected from the recording medium to thereby detect an information signal and an error signal, and a compatible objective lens for focusing a light projected from the optical unit to thereby form an optical spot on a recording surface of the recording medium and applying at least three light having different wavelength ranges to be compatibly used for both the high-density and the low-density recording mediums. Accordingly, the optical pickup apparatus is capable of compatibly employing a high-density recording medium, which uses a celadon light and is slimmer than a digital versatile disc (DVD), and at least one low-density recording medium.
    • 根据本发明实施例的光学拾取装置包括一个光学单元,用于将多个波长的光(包括青瓷光的光)投射到记录介质上,并接收从记录介质反射的光,从而检测一个 信息信号和误差信号,以及用于聚焦从光学单元投影的光的兼容物镜,从而在记录介质的记录表面上形成光点,并且将至少三个具有不同波长范围的光并入,用于 高密度和低密度记录介质。 因此,光拾取装置能够兼容使用青瓷光的高密度记录介质,并且比数字通用盘(DVD)更薄,以及至少一种低密度记录介质。
    • 3. 发明申请
    • OPTICAL PICK-UP
    • US20080049581A1
    • 2008-02-28
    • US11733345
    • 2007-04-10
    • Myoung Seok KimJang Hoon Yoo
    • Myoung Seok KimJang Hoon Yoo
    • G11B7/00
    • G11B7/0903G11B7/1353G11B7/1374G11B2007/0006
    • An optical pick-up including a first objective lens having a numerical aperture (NA) suitable for a BD, a second objective lens having an NA suitable for an HD-DVD, a light source to emit light beams suitable for the BD and the HD-DVD, a first beam splitter to transmit and reflect the emitted beams emitted to be selectively guided to one of the first and second objective lenses, a grated diffraction element to split the emitted beams into a zeroth order main beam and ±1st order sub-beams that can be projected on a single track of the BD and the HD-DVD in series, a first optical detector to receive a beam reflected by and returned from the BD, and a second optical detector to receive a beam reflected by and returned from the HD-DVD, wherein the first and second optical detectors are positioned at similar distances from the first beam splitter.
    • 一种光学拾取器,包括具有适用于BD的数值孔径(NA)的第一物镜,具有适合于HD-DVD的NA的第二物镜,用于发射适用于BD的光束的光源和HD -DVD,第一分束器,用于透射和反射被发射的发射光束,以被选择性地引导到第一和第二物镜之一;衍射元件,用于将发射的光束分裂成零级主光束; 可以投射在BD和HD-DVD的单个轨道上的第一<! - SIPO - >次级子束,用于接收由BD反射并从BD返回的光束的第一光学检测器,以及第二光学检测器 接收由HD-DVD反射和返回的光束,其中第一和第二光学检测器位于与第一分束器相似的距离处。
    • 5. 发明申请
    • Optical recording/reproducing apparatus
    • 光记录/重放装置
    • US20060274631A1
    • 2006-12-07
    • US11430847
    • 2006-05-10
    • Jang-hoon YooHag-hyun JangSoo-han ParkSoo-jin JeongTae-youn HeorBong-gi Kim
    • Jang-hoon YooHag-hyun JangSoo-han ParkSoo-jin JeongTae-youn HeorBong-gi Kim
    • G11B7/135
    • G11B7/1275G11B7/1353G11B2007/0006
    • An optical recording/reproducing apparatus featuring stable information signal detection ability and reduced number of components. The optical recording/reproducing apparatus includes: a plurality of light sources emitting lights with different wavelengths for use in recording/reproducing information onto/from various types of optical recording media of different recording densities, in which at least two lights emitted from the light sources have polarization components orthogonal to each other; an objective lens for focusing a light from each of the light sources to a corresponding optical recording medium; a collimating lens disposed between the light sources and the objective lens for collimating lights from the light sources; a hologram element installed between the collimating lens and the objective lens for refracting a light emitted from one of the light sources, in which the light to be refracted is selected by wavelength and polarization components; and a photodetector receiving a light that is reflected from the corresponding optical recording medium after being focused by the objective lens.
    • 一种具有稳定的信息信号检测能力和数量减少的光记录/再现装置。 光记录/重放装置包括:多个光源,发射不同波长的光,用于在各种不同记录密度的光学记录介质上记录/再现信息,其中从光源发出的至少两个光 具有彼此正交的极化分量; 用于将来自每个光源的光聚焦到相应的光学记录介质的物镜; 设置在光源和物镜之间的准直透镜,用于准直来自光源的光; 安置在准直透镜和物镜之间的全息元件,用于折射从其中一个光源发射的光,其中通过波长和偏振分量选择待折射的光; 以及光接收器,其在被物镜聚焦之后接收从对应的光记录介质反射的光。
    • 7. 发明申请
    • Optical pick-up device
    • 光学拾取装置
    • US20060164708A1
    • 2006-07-27
    • US11332243
    • 2006-01-17
    • Soo-han ParkJang-hoon YooHang-hyeon JangYong-han YoonSoo-jin Jung
    • Soo-han ParkJang-hoon YooHang-hyeon JangYong-han YoonSoo-jin Jung
    • G02B26/08
    • G11B7/1275G11B7/1353G11B7/1376G11B7/1378G11B7/13922G11B7/13925G11B2007/0006G11B2007/0013G11B2007/13727
    • An optical pickup device according to an embodiment of the present invention comprises a light source for projecting a beam of light to record and reproduce information with respect to an optical recording medium. A collimating lens is disposed on a path of the light to converge and convert the light into a parallel beam. An object lens condenses the parallel beam from the collimating lens and projects the parallel beam onto the optical recording medium. An optical element is disposed between the collimating lens and the object lens. A first actuator moves the collimating lens along the optical axis to thereby control a distance between the collimating lens and the optical element. A first controller drives the first actuator to find a position for the collimating lens, for reducing aberration generated in the light being projected to the optical recording medium. Accordingly, the aberration can be effectively prevented, thereby improving recording and reproducing performance of the optical pickup device.
    • 根据本发明的实施例的光学拾取装置包括用于投射光束以记录和再现关于光学记录介质的信息的光源。 准直透镜设置在光的路径上以会聚并将光转换成平行光束。 物镜将来自准直透镜的平行光束会聚并将平行光束投影到光记录介质上。 光学元件设置在准直透镜和物镜之间。 第一致动器沿着光轴移动准直透镜,从而控制准直透镜和光学元件之间的距离。 第一控制器驱动第一致动器以找到用于准直透镜的位置,用于减少投射到光记录介质的光中产生的像差。 因此,可以有效地防止像差,从而提高光拾取装置的记录和再现性能。