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    • 2. 发明专利
    • Color separation and polarization device
    • 颜色分离和极化装置
    • JP2009199064A
    • 2009-09-03
    • JP2008325900
    • 2008-12-22
    • Ind Technol Res Inst財団法人工業技術研究院Industrial Technology Research Institute
    • LIN HUI-HSIUNGPAO YU-NAN
    • G02B5/04G02B1/08G02B3/00G02B5/18G02B5/30G02F1/1335
    • PROBLEM TO BE SOLVED: To provide a color separation and polarization device capable of utilizing a micro/nano-scaled complex structure containing a polarization material and controlling color separation, polarization and an aperture ratio. SOLUTION: The color separation and polarization device includes a lens module 10 and a module with triangle-shaped structure 20. The lens module has a first body 11 which includes the polarization material therein and a first light-entrance surface 111 and a first light-emitting surface 112 each having a lens structure thereon. The module with triangle-shaped structure has a second light-entrance surface 211 and a second light-emitting surface 212 each having a triangle-shaped microstructure thereon. When entering the first body through the first light-entrance surface, a white light beam 30 is polarized by the polarization material, converged by the lens structure of the first light-emitting surface, split into a red beam, a green beam, and a blue beam by the triangle-shaped microstructure of the second light-entrance surface and finally the three primary color beams are collimated by the triangle-shaped microstructure of the second light-emitting surface. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供能够利用含有极化材料的微/纳米级复合结构并控制颜色分离,偏振和孔径比的分色和偏振装置。 颜色分离和偏振装置包括透镜模块10和具有三角形结构20的模块。透镜模块具有包括其中的偏振材料的第一主体11和第一光入射表面111和 第一发光面112各自具有透镜结构。 具有三角形结构的模块具有在其上具有三角形微结构的第二光入射表面211和第二发光表面212。 当通过第一光入射表面进入第一体时,白光束30被偏振材料极化,由第一发光表面的透镜结构会聚,分成红光束,绿光束和 通过第二光入射表面的三角形微结构的蓝色光束和最终三原色光束被第二发光表面的三角形微结构准直。 版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Adjusting type range finder and distance measuring method thereof
    • 调整类型范围查找器及其距离测量方法
    • JP2011209262A
    • 2011-10-20
    • JP2010178435
    • 2010-08-09
    • Ind Technol Res Inst財団法人工業技術研究院Industrial Technology Research Institute
    • CHENG CHIH-CHENGSO SHIGOHU JWU-SHENGPAO YU-NANHSU CHIN-JUCHANG YEN-CHUNG
    • G01C3/06
    • H04N13/021G01C3/085G01C3/32H04N13/0235H04N2013/0081
    • PROBLEM TO BE SOLVED: To provide an adjusting type range finder and a distance measuring method thereof.SOLUTION: The adjusting type range finder and a method thereof causes a first light beam having an object video to pass through an optical deflection element and generates a second light beam having an object video. The optical deflection element includes a liquid crystal layer and a transparent type Blaze diffraction grating, and the liquid crystal layer is electrically connected to a voltage device. A first voltage is provided to the liquid crystal layer by the voltage device. The second light beam is projected to an optical image formation apparatus to form an M-th order diffracted video in which energy is concentrated. The voltage device is adjusted and the second voltage is provided to the liquid crystal layer. The second light beam is caused to form an N-th order diffracted video in the optical image formation apparatus. The M-th order diffracted video and the N-th order diffracted video forms a set of video series. An actual distance of the object from the optical deflection element is calculated, based on deviation amount of an image formation position of an object, in the set of video series.
    • 要解决的问题:提供一种调节型测距仪及其距离测量方法。解决方案:调节型测距仪及其方法使得具有物体视频的第一光束通过光学偏转元件,并产生第二 光束具有物体视频。 光学偏转元件包括液晶层和透明型火焰衍射光栅,并且液晶层电连接到电压装置。 通过电压装置向液晶层提供第一电压。 将第二光束投影到光学图像形成装置,以形成其中能量集中的M级衍射视频。 调整电压装置,并向液晶层提供第二电压。 使第二光束在光学图像形成装置中形成N级衍射视频。 M阶衍射视频和N阶衍射视频形成一组视频序列。 基于视频序列的集合中的物体的图像形成位置的偏离量,计算物体与光学偏转元件的实际距离。
    • 4. 发明专利
    • Composite optical dividing device
    • 复合光学分路器
    • JP2010008995A
    • 2010-01-14
    • JP2008262019
    • 2008-10-08
    • Ind Technol Res Inst財団法人工業技術研究院Industrial Technology Research Institute
    • LEE CHI-HUNGPAO YU-NANLIN HUI-HSIUNG
    • G02B3/00G02B5/04G02F1/1335G02F1/13357
    • G02B27/1086G02B3/0037G02B5/045G02B5/1866G02B27/1053G02B27/123
    • PROBLEM TO BE SOLVED: To provide a composite optical dividing device that can split an incident light into multiple primary color light beams based on a difference in wavelengths without using a color filter. SOLUTION: The composite optical dividing device can receive a light beam, which is mixed with at least multiple wavelength ranges of light. The optical dividing device includes a first optical film plate and a second optical film plate. The first optical film plate has multiple micro-structure lenses in same shape, for deflecting incident light with a condense level. The second optical film plate has multiple periodic polygon structures, for receiving the deflected light and dividing constitutions of the light beam, according to the wavelength ranges. Each of the multiple ranges of light respectively travels toward a predetermined region on a plane. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供一种复合光学分割装置,其可以在不使用滤色器的情况下基于波长的差异将入射光分离成多个原色光束。 解决方案:复合光分配装置可以接收与至少多个波长范围的光混合的光束。 光分路装置包括第一光学膜片和第二光学膜片。 第一光学薄膜板具有相同形状的多个微结构透镜,用于偏转具有冷凝水平的入射光。 第二光学薄膜板具有多个周期性多边形结构,用于接收偏转光并根据波长范围划分光束的构成。 多个光范围中的每一个分别朝着平面上的预定区域行进。 版权所有(C)2010,JPO&INPIT