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    • 21. 发明授权
    • Support for components of an automatic focusing system
    • 支持自动对焦系统的组件
    • US4020496A
    • 1977-04-26
    • US630794
    • 1975-11-11
    • Dean M. PetersonJohn C. Wittenberger
    • Dean M. PetersonJohn C. Wittenberger
    • G02B7/30G03B3/10G03B13/20
    • G02B7/30
    • A support for a camera automatic focusing system has two identical plates that form top and bottom covers of the support. The top plate has a plurality of spaced openings that are in alignment with identical spaced apart openings formed in said bottom plate. A pair of shafts are positioned to extend through a different pair of the aligned openings in the plates. A separate image transferring mirror and a focusing lever is mounted on each shaft between opposing flat surface portions of the cover plates. A separate washer is mounted about each of said shafts between a lower end of said mirror and its associated focusing lever. An image receiving module having a height greater than the combined height of the mirror and thickness of the washer allows each focusing lever to be moved freely for angular adjustment of the associated mirror. The module has aligned spaced apart bosses on its surfaces adjacent the cover plates. Additional pairs of aligned openings formed in the top and bottom cover plates are positioned in snug engagement with associated bosses on said module. A mechanical connection extends between said cover plates to retain said image receiving module and said mirrors in optical relationship.
    • 对于相机自动对焦系统的支持具有形成支撑件的顶盖和底盖的两个相同的板。 顶板具有与形成在所述底板中的相同间隔开的开口对准的多个间隔开的开口。 一对轴被定位成延伸通过板中不同对的对齐的开口。 单独的图像转印镜和聚焦杆安装在每个轴上,在盖板的相对的平坦表面部分之间。 在所述反射镜的下端和其相关联的聚焦杆之间,围绕每个所述轴安装单独的垫圈。 具有高于镜子的组合高度和垫圈厚度的图像接收模块允许每个聚焦杆自由移动以便相关联的镜子进行角度调节。 该模块在邻近盖板的表面上具有对准的间隔开的凸起。 形成在顶盖板和底盖板中的另外成对的对齐开口定位成与所述模块上的相关联的凸起贴合接合。 机械连接在所述盖板之间延伸,以保持所述图像接收模块和所述反射镜的光学关系。
    • 25. 发明申请
    • IMAGE SENSOR
    • 图像传感器
    • US20160227143A1
    • 2016-08-04
    • US14961630
    • 2015-12-07
    • RENESAS ELECTRONICS CORPORATION
    • Tatsuya KITAMORIKatsumi DOSAKAFumihide MURAO
    • H04N5/378H04N5/372G02B7/36H04N5/369
    • G02B7/365G02B7/30H01L27/14627H04N5/3696H04N5/3742H04N5/37457
    • In an image sensor according to related art, charge information cannot be read at the same time from a pair of photoelectric conversion elements placed corresponding to one microlens. According to one embodiment, an image sensor includes a first photoelectric conversion element and a second photoelectric conversion element placed corresponding to one microlens, a first transfer transistor placed corresponding to the first photoelectric conversion element and a second transfer transistor placed corresponding to the second photoelectric conversion element, a read timing signal line that supplies a common read timing signal to the first transfer transistor and the second transfer transistor, a first output line that outputs a signal of the first photoelectric conversion element to the outside, and a second output line that outputs a signal of the second photoelectric conversion element to the outside.
    • 在根据现有技术的图像传感器中,不能同时从对应于一个微透镜放置的一对光电转换元件读取电荷信息。 根据一个实施例,图像传感器包括对应于一个微透镜放置的第一光电转换元件和第二光电转换元件,对应于第一光电转换元件放置的第一转移晶体管和与第二光电转换相对应放置的第二转移晶体管 元件,向第一传输晶体管和第二传输晶体管提供公共读定时信号的读定时信号线,将第一光电转换元件的信号输出到外部的第一输出线和输出 第二光电转换元件的信号到外部。
    • 27. 发明申请
    • POSITIONING METHOD AND POSITIONING DEVICE
    • 定位方法和定位装置
    • US20140176038A1
    • 2014-06-26
    • US13811389
    • 2012-12-26
    • SHENZHEN CHINA STAR OPTOELECTRONICS TECHNOLOGY CO., LTD.
    • Wen-da ChengChujen Wu
    • G02B21/26
    • G01B11/0608G02B7/30
    • The present disclosure provides a positioning method and a positioning device. The positioning device includes: an emitter for emitting light beams to a to-be-positioned point and auxiliary positioning points; a receiver for receiving reflected light beams reflected by the to-be-positioned point and the auxiliary positioning points; a judging module for judging whether the reflected light beam reflected by the to-be-positioned point is received or not; and a calculating module for receiving a judging result from the judging module and determining height information of the to-be-positioned point according to the reflected light beams reflected by the to-be-positioned point and the auxiliary positioning points. Thus, the height information of the to-be-positioned point can be determined according to the reflected light beams reflected by the auxiliary positioning points even if the reflected light beam reflected by the to-be-positioned point cannot be received, which improves the success rate of the positioning.
    • 本公开提供了一种定位方法和定位装置。 定位装置包括:用于将光束发射到待定位点的发射器和辅助定位点; 用于接收由待定位点和辅助定位点反射的反射光束的接收器; 用于判断是否接收到待定位点反射的反射光束的判断模块; 以及计算模块,用于从判断模块接收判断结果,并根据由待定位点和辅助定位点反射的反射光束确定待定位点的高度信息。 因此,即使由于待定位点反射的反射光束不能被接收,也可以根据由辅助定位点反射的反射光束来确定待定位点的高度信息,这改善了 成功率的定位。
    • 28. 发明授权
    • Lens control apparatus, optical apparatus and lens control method
    • 镜头控制装置,光学装置和镜头控制方法
    • US08135268B2
    • 2012-03-13
    • US12686762
    • 2010-01-13
    • Hideyasu Hongu
    • Hideyasu Hongu
    • G03B17/00
    • H04N5/23212G02B7/102G02B7/282G02B7/30H04N5/23296
    • The optical apparatus includes a focus signal generator generating a focus signal from a photoelectrical conversion signal of an optical image formed by an optical system including a first lens unit for zooming and a second lens unit for focusing, a memory storing data indicating a relationship between positions of the first and second lens units, the data being generated for each predetermined in-focus distance. The controller moves the second lens unit in infinite and close directions. The controller changes a movement amount of a center position of the movement of the second lens unit in the infinite and close directions according to at least one selected from information on an operation of the optical system, information on a state of the optical system, and information on a photoelectric conversion operation of the optical image.
    • 该光学装置包括:聚焦信号发生器,生成由包括用于变焦的第一透镜单元和用于聚焦的第一透镜单元的光学系统形成的光学图像的光电转换信号的聚焦信号;存储器,存储指示位置之间的关系的数据 的第一和第二透镜单元的数据,为每个预定的对焦距离产生数据。 控制器以无限和近的方向移动第二透镜单元。 控制器根据关于光学系统的操作的信息,关于光学系统的状态的信息和关于光学系统的状态的信息中选择的至少一个,在无限和近的方向上改变第二透镜单元的运动的中心位置的移动量,以及 关于光学图像的光电转换操作的信息。