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    • 1. 发明授权
    • Optical pickup
    • 光学拾音
    • US07643385B2
    • 2010-01-05
    • US11191940
    • 2005-07-29
    • Manabu OchiKatsuhiko KimuraMasaya HorinoJunichi SengaMasayoshi WatanabeTetsuo Itou
    • Manabu OchiKatsuhiko KimuraMasaya HorinoJunichi SengaMasayoshi WatanabeTetsuo Itou
    • G11B7/00
    • G11B7/0933G11B7/0935
    • To improve the reliability to an environmental temperature change of an optical pickup, an optical pickup 7 has a semiconductor laser 711 for generating a laser beam. An objective lens drive leads the laser beam to a predetermined position of a disk. The semiconductor laser and objective lens drive are mounted on a pickup hosing 70. The objective lens drive has a movable portion 74 and the movable portion has an objective lens 716 for condensing the laser beam on the recording face of the disk. A fixed portion 72 holds the movable portion through a support member. The fixed portion has a magnetic yoke 75. An extended portion formed by extending a part of the yoke to the fixed portion side and the upside 72b of a cutout formed at the intermediate portion of the fixed portion in the tracking direction are adhered and fixed.
    • 为了提高光学拾取器的环境温度变化的可靠性,光学拾取器7具有用于产生激光束的半导体激光器711。 物镜驱动器将激光束引导到盘的预定位置。 半导体激光器和物镜驱动器安装在拾取器连接件70上。物镜驱动器具有可移动部分74,并且可移动部分具有用于将激光束聚集在盘的记录面上的物镜716。 固定部分72通过支撑构件保持可动部分。 固定部分具有磁轭75.通过将磁轭的一部分延伸到沿着跟踪方向的固定部分的中间部分处的固定部分侧和切口的上侧72b形成的延伸部分被固定。
    • 2. 发明申请
    • Optical pickup
    • 光学拾音
    • US20060087931A1
    • 2006-04-27
    • US11191940
    • 2005-07-29
    • Manabu OchiKatsuhiko KimuraMasaya HorinoJunichi SengaMasayoshi WatanabeTetsuo Itou
    • Manabu OchiKatsuhiko KimuraMasaya HorinoJunichi SengaMasayoshi WatanabeTetsuo Itou
    • G11B7/00
    • G11B7/0933G11B7/0935
    • To improve the reliability to an environmental temperature change of an optical pickup, an optical pickup 7 has a semiconductor laser 711 for generating a laser beam. An objective lens drive leads the laser beam to a predetermined position of a disk. The semiconductor laser and objective lens drive are mounted on a pickup hosing 70. The objective lens drive has a movable portion 74 and the movable portion has an objective lens 716 for condensing the laser beam on the recording face of the disk. A fixed portion 72 holds the movable portion through a support member. The fixed portion has a magnetic yoke 75. An extended portion formed by extending a part of the yoke to the fixed portion side and the upside 72b of a cutout formed at the intermediate portion of the fixed portion in the tracking direction are adhered and fixed.
    • 为了提高光学拾取器的环境温度变化的可靠性,光学拾取器7具有用于产生激光束的半导体激光器711。 物镜驱动器将激光束引导到盘的预定位置。 半导体激光器和物镜驱动器安装在拾取器连接件70上。 物镜驱动器具有可移动部分74,并且可移动部分具有用于将激光束聚集在盘的记录面上的物镜716。 固定部分72通过支撑构件保持可动部分。 固定部分具有磁轭75。 通过将磁轭的一部分延伸到固定部分侧而形成的延伸部分和形成在沿跟踪方向的固定部分的中间部分处的切口的上侧72b被粘合并固定。
    • 3. 发明授权
    • Optical switch
    • 光开关
    • US06577784B2
    • 2003-06-10
    • US09828980
    • 2001-04-10
    • Masaya HorinoHisao KurosawaMasafumi KokuboHideaki Tsushima
    • Masaya HorinoHisao KurosawaMasafumi KokuboHideaki Tsushima
    • G02B626
    • G02B6/3508G02B6/3572G02B6/358G02B6/3582
    • In order to provide a small-sized and compact optical switch of 1×4 type. Two movable optical fibers are fixed on a substrate by a fixing block disposed in a middle portion of the fibers. Two movable blocks made of a soft magnetic body are mounted to the both ends of the movable optical fibers. Two soft magnetic fixing blocks are arranged on the substrate for fixing one optical fiber so as to oppose to one of the movable block, and for fixing four optical fibers so as to oppose to the movable block, respectively. Two movable blocks can be independently moved with respect to the respective fixing blocks by means of actuators. Further, it is possible to detect a position of each movable block with respect to the fixing block by means of detecting electrodes.
    • 为了提供1x4型小型紧凑型光开关。 两个可移动光纤通过设置在纤维的中间部分中的固定块固定在基板上。 由可动光纤的两端安装由软磁体构成的两个可动块。 两个软磁性固定块被布置在基板上,用于固定一根光纤,以便与可移动块中的一个相对,并分别固定四根光纤以便与可动块相对。 两个可移动块可以通过致动器相对于相应的固定块独立地移动。 此外,可以通过检测电极来检测每个可移动块相对于固定块的位置。
    • 6. 发明授权
    • Optical switch and optical switch system
    • 光开关和光开关系统
    • US07233715B2
    • 2007-06-19
    • US10765984
    • 2004-01-29
    • Atsushi KazamaKazuyuki FukudaMasaya HorinoYasuhiro Itou
    • Atsushi KazamaKazuyuki FukudaMasaya HorinoYasuhiro Itou
    • G02B6/26G02B6/42
    • G02B6/3564G02B6/3518G02B6/3556G02B6/357G02B6/359
    • A small-size thin-bodied 3-dimensional matrix switch using a micro mirror array, comprises a collimator array with a plurality of collimators coupled to optical fibers, a mirror array with a plurality of movable mirrors, in which each movable mirror has light from a first collimator of the collimator array optically coupled thereto, a first mirror which has the light from the mirror of the mirror array optically coupled thereto, a second mirror which has the light from the first mirror optically coupled thereto, and a second collimator of the collimator array, which has the light from the second mirror coupled thereto, wherein the light leaving the second mirror passes the first mirror and the mirror array and optically couples to the second collimator.
    • 使用微反射镜阵列的小尺寸薄体3维矩阵开关包括具有耦合到光纤的多个准直器的准直器阵列,具有多个可移动反射镜的反射镜阵列,其中每个可移动镜具有来自 光学耦合到其上的准直器阵列的第一准直器,第一反射镜,其具有与其光学耦合的反射镜阵列的反射镜的光;第二反射镜,其具有与第一反射镜光耦合的光;以及第二准直器, 准直器阵列具有耦合到其上的第二反射镜的光,其中离开第二反射镜的光通过第一反射镜和反射镜阵列并光学耦合到第二准直器。
    • 10. 发明申请
    • Process of microlens mold
    • 微透镜模具的工艺
    • US20070102842A1
    • 2007-05-10
    • US11528517
    • 2006-09-28
    • Irizo NaniwaMasatoshi KanamaruTakeshi ShimanoShigeo NakamuraMasaya HorinoYumiko Anzai
    • Irizo NaniwaMasatoshi KanamaruTakeshi ShimanoShigeo NakamuraMasaya HorinoYumiko Anzai
    • B29C33/40
    • B29C33/3842B29D11/00365B29L2011/0016
    • The present invention provides a method of making a mold for manufacturing a microlens having a smooth surface and an arbitrary aspherical surface, or more specifically, an aspheric microlens of dimensions such that an aperture is equal to or less than 1 mm and a thickness is equal to or more than 0.5 mm. A mask layer having plural circular apertures with different sizes formed therein for a mold for one lens is formed on a silicon substrate. Plural holes are formed for the lens in the silicon substrate by applying anisotropic dry etching to a surface to be processed, which is the surface having the mask layer formed thereon. The depths of the respective holes vary depending on the sizes of the circular apertures. Isotropic etching is performed to remove sidewalls of the plural holes with different depths formed in the silicon substrate, thereby merging the holes into one hole corresponding to the lens.
    • 本发明提供一种制造用于制造具有平滑表面和任意非球面的微透镜的模具的方法,或者更具体地说,是使得孔径等于或小于1mm并且厚度相等的尺寸的非球面微透镜 至或大于0.5mm。 在硅基板上形成具有用于一个透镜的模具形成有多个具有不同尺寸的圆形孔的掩模层。 通过对作为其上形成有掩模层的表面的待加工表面施加各向异性干蚀刻,在硅衬底中形成多个孔。 各个孔的深度根据圆形孔的尺寸而变化。 进行各向同性蚀刻以去除在硅衬底中形成的不同深度的多个孔的侧壁,从而将孔合并成与透镜相对应的一个孔。