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    • 6. 发明授权
    • Optical system for endoscopes and endoscopes using same
    • 用于内窥镜和使用其的内窥镜的光学系统
    • US5177605A
    • 1993-01-05
    • US870754
    • 1992-04-20
    • Susumu TakahashiTsutomu IgarashiAtsushi MiyazakiKimihiko NishiokaAkira HasegawaMasahiro ChibaKoji Takamura
    • Susumu TakahashiTsutomu IgarashiAtsushi MiyazakiKimihiko NishiokaAkira HasegawaMasahiro ChibaKoji Takamura
    • A61B1/05G02B17/08G02B23/24
    • G02B23/2423A61B1/05
    • In order to enable to sufficiently deflect the viewing direction for a distal end having an end surface substantially perpendicular to the optical axis of an objective optical system and minimize aberrations produced due to the deflecting action, the objective optical system for endoscopes comprises at least one surface designed as a deflecting surface or an eccentric surface on the image side of the surface nearest the object to be observed out of the surfaces of the optical components composing the objective optical system so that the light is refracted at least twice for deflecting the viewing direction. In order to shorten total length and minimize outside diameter of the objective optical system and enable to sufficiently eliminate the infrared light incident from the object, the objective optical system comprises at least one optical component made of a substance absorbing the light having the oscillation frequency of the YAG laser light and interference films reflecting the light having the oscillation frequency of the YAG laser light formed on the cemented surfaces of the optical components and/or the surface of emergence of a rear group designed as a positive lens component.
    • 为了能够使具有基本上垂直于物镜光学系统的光轴的端面的远端足够偏转观察方向,并且使由于偏转动作产生的像差最小化,内窥镜用物镜系统包括至少一个表面 被设计为在构成物镜光学系统的光学部件的表面之外最靠近被观察物体的表面的像侧上的偏转表面或偏心表面,使得光被折射至少两次以偏转观察方向。 为了缩短物镜光学系统的总长度和最小化外径,能够充分消除从物体入射的红外光,物镜光学系统包括至少一个光学部件,该光学部件由吸收具有振荡频率 反射具有形成在光学部件的胶合表面上的YAG激光的振荡频率的光和/或设计为正透镜部件的后组的出射表面的YAG激光和干涉膜。
    • 10. 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)