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    • 3. 发明授权
    • Optical system for endoscope
    • 内窥镜光学系统
    • US4746203A
    • 1988-05-24
    • US96344
    • 1987-09-11
    • Kimihiko NishiokaTsutomu YamamotoSusumu TakahashiAkira Yokota
    • Kimihiko NishiokaTsutomu YamamotoSusumu TakahashiAkira Yokota
    • A61B1/05G02B17/02G02B23/24H04N5/225A61B1/04G02B5/04G02B5/22G02B5/30
    • H04N5/2253A61B1/05G02B17/02G02B23/2423H04N2005/2255
    • An optical system is disclosed for an endoscope having a generally tubular distal end in which an objective lens assembly and an image sensor in the form of a solid-state video camera are internally housed so that an image formed by the lens assembly is focussed upon the input or pickup surface of the video camera. The video camera is disposed along or in proximity to the center axis of the distal end of the endoscope and in some instances is oblique with respect to the center axis. The video camera may be positioned in this way due to the provision of a reflecting surface which is angularly disposed in opposing relationship with an input surface of the video camera, and deflection means disposed in front of the lens assembly and within the objective lens assembly, or between the lens assembly and the reflecting surface so that an image formed by the lens assembly can be focussed on the input surface of the video camera.
    • 公开了一种用于内窥镜的光学系统,其具有大致管状的远端,其中物镜组件和固态摄像机形式的图像传感器在内部被容纳,使得由透镜组件形成的图像聚焦在 输入或摄像机表面。 视频摄像机沿着或靠近内窥镜的远端的中心轴设置,并且在一些情况下相对于中心轴线倾斜。 由于提供了与摄像机的输入表面成对角关系地设置的反射表面以及设置在透镜组件前面和物镜组件内的偏转装置,摄像机可以以这种方式定位, 或者在透镜组件和反射表面之间,使得由透镜组件形成的图像可以聚焦在摄像机的输入表面上。
    • 9. 发明申请
    • Light reuse sheet, solar battery module, and light source module
    • 光再利用片,太阳能电池模块和光源模块
    • US20110240095A1
    • 2011-10-06
    • US12998677
    • 2009-11-19
    • Luis Manuel Murillo-MoraHideaki HonmaKohei MoronagaSusumu Takahashi
    • Luis Manuel Murillo-MoraHideaki HonmaKohei MoronagaSusumu Takahashi
    • H01L31/0232H01J1/62G02B5/08
    • H01L31/056H01L31/0547H01L33/60Y02E10/52
    • A light reuse sheet includes a reflective surface having an uneven configuration, the reflective surface in order to reflect light in a specific direction so as to cause light to be incident to a solar battery cell, the light being incident to a solar battery module, or in order to exit light in a specific direction by reflecting the light, the light being emitted from a light emitting element of a light source module. The reflective surface satisfies the following formula where a length in a horizontal direction of a solar battery cell or a light emitting element is represented by Lx; a length in a vertical direction of a solar battery cell or a light emitting element is represented by Ly; an angle formed between a direction of an uneven configuration of the reflective surface and an edge in a horizontal direction of the solar battery cell or the light emitting element is represented by φ; and maximum width of light which passes between adjacent solar battery cells and which is reflected by a light reuse sheet and is incident to a light receiving face of a solar battery cell or maximum width of light which is not emitted from a light emitting element in a specific direction and which exits in a specific direction by reflecting the light at a light reuse sheet is represented by A.  f  φ = 0 = Ly · cos   φ - Lx · sin   φ - A  ( cos 2  φ - sin 2   φ ) ( Formula   1 )
    • 光再利用片材包括具有不均匀构造的反射表面,反射表面以反射特定方向的光,以使光入射到太阳能电池单元,该光入射到太阳能电池模块,或 为了通过反射光而在特定方向上退出光,光从光源模块的发光元件发射。 反射面满足下式,其中太阳能电池单元或发光元件的水平方向上的长度由Lx表示; 太阳能电池单元或发光元件的垂直方向的长度由Ly表示; 在太阳能电池单元或发光元件的反射表面的不均匀构造的方向与水平方向的边缘之间形成的角度由&phgr; 和相邻的太阳能电池单元之间通过并由光再利用片材反射并入射到太阳能电池单元的光接收面的光的最大宽度或不从发光元件发射的最大宽度的光 特定方向,通过将光反射在光再利用片材上而沿特定方向退出。 = 0 = Ly·cosθ&phgr - sin;; - 公式(公式1)
    • 10. 发明授权
    • Projector
    • 投影机
    • US07854521B2
    • 2010-12-21
    • US11644147
    • 2006-12-22
    • Susumu Takahashi
    • Susumu Takahashi
    • G03B21/00
    • G03B21/26G03B21/005
    • There is provided a projector having a point light source disposed to an edge of an optical fiber for transmitting exciting light and including a fluorescent illuminant for emitting fluorescence by being exited by the exiting light, a light collecting optical system for collecting the fluorescence emitted from the point light source, a reflective display device for reflecting the fluorescence collected by the light collecting optical system and overlapping the fluorescence with an image signal, an outgoing aperture for stopping down the fluorescence overlapped with the image signal by the reflective display device, wherein the outgoing aperture and the point light source are disposed side by side in the vicinity of the front focusing surface of the light collecting optical system. With this arrangement, a bright projected image can be obtained while disposing the outgoing aperture and the point light source sufficiently near to each other, reducing aberration, and reducing the diameter of a collecting lens so that the overall size of the projector can be reduced.
    • 提供一种具有点光源的投影仪,其设置在用于透射激发光的光纤的边缘并且包括用于通过出射光射出而发射荧光的荧光发光体;聚光光学系统,用于收集从所述光源发出的荧光 反射显示装置,用于反射由聚光光学系统收集的荧光并将荧光与图像信号重叠,用于通过反射显示装置停止与图像信号重叠的荧光的出射孔,其中, 光圈和点光源并排设置在聚光光学系统的前聚焦表面附近。 通过这种布置,可以获得明亮的投影图像,同时将出射孔和点光源充分地彼此靠近设置,减少像差,并且减小聚光透镜的直径,从而可以减小投影仪的总体尺寸。