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    • 32. 发明授权
    • Automated camera system with one or more fluidic lenses
    • 具有一个或多个流体透镜的自动相机系统
    • US09191568B2
    • 2015-11-17
    • US14461263
    • 2014-08-15
    • Gholam A. Peyman
    • Gholam A. Peyman
    • A61B3/10G02C5/00A61B3/00A61B3/14A61B3/02H04N5/232G03B13/32G02B7/28A61F2/16G02B3/14A61B3/12A61B1/00
    • H04N5/23212A61B1/0019A61B3/12A61B3/1225A61F2/16A61F2/1635A61F2/1648A61F2/1651A61F2250/0002G02B3/14G02B7/28G03B13/32
    • An automated camera system is disclosed herein. The automated camera system includes a camera configured to capture an image of an object; at least one fluidic lens disposed between the camera and the object, the at least one fluidic lens having a chamber that receives a fluid therein; a fluid control system operatively coupled to the at least one fluidic lens, the fluid control system configured to insert, or remove, an amount of the fluid into, or from, the chamber of the at least one fluidic lens; and a Shack-Hartmann sensor assembly operatively coupled to the fluid control system, the Shack-Hartmann sensor assembly by means of the fluid control system configured to automatically control the amount of the fluid in the chamber of the at least one fluidic lens, thereby automatically focusing the camera so that the image captured of the object is in focus.
    • 本文公开了一种自动相机系统。 自动相机系统包括被配置为捕获对象的图像的照相机; 设置在相机和物体之间的至少一个流体透镜,所述至少一个流体透镜具有容纳流体的腔室; 流体控制系统,其可操作地耦合到所述至少一个流体透镜,所述流体控制系统被配置为将一定量的流体插入或移除到所述至少一个流体透镜的室中或从所述至少一个流体透镜的室中移除; 以及可操作地耦合到流体控制系统的Shack-Hartmann传感器组件,所述Shack-Hartmann传感器组件通过被配置为自动控制所述至少一个流体透镜的腔室中的流体的量的流体控制系统,从而自动地 聚焦相机,使被拍摄对象的图像保持对焦。
    • 33. 发明申请
    • Photographic Lens Optical System
    • 摄影镜头光学系统
    • US20150177487A1
    • 2015-06-25
    • US14567764
    • 2014-12-11
    • KOLEN CO., LTD.
    • Chi Ho AhnKyoung Soo SongJi Eun KimChan Goo KangSeong Hee Bae
    • G02B13/00G02B9/34G03B13/32
    • G02B13/004G02B9/34
    • A photographic lens optical system includes: a first lens having a negative refractive power and a meniscus shape convex toward an object side; a second lens having a negative refractive power and a meniscus shape convex toward the object side; a third lens having a positive refractive power and a meniscus shape convex toward the object side; and a fourth lens having a positive refractive power and a double convex shape, wherein the first to fourth lenses are sequentially arranged in a direction from the object side to an image side, and the photographic lens optical system satisfies the following condition: 0.18
    • 摄影透镜光学系统包括:具有朝向物体侧凸起的负折光力和弯月形状的第一透镜; 具有朝向物体侧凸出的负屈光力和弯月面形状的第二透镜; 第三透镜,具有朝向物体侧凸起的正折射光焦度和弯月面形状; 以及具有正折射力和双凸形状的第四透镜,其中,所述第一透镜至所述第四透镜沿着从所述物体侧到像侧的方向依次配置,所述摄影透镜光学系统满足以下条件:0.18 < (tan&thetas;)/ f | <0.35其中&thetas; f分别表示摄影镜头光学系统的视角和焦距。
    • 39. 发明授权
    • Focus detection device, imaging apparatus, and method of controlling focus detection device
    • 焦点检测装置,成像装置和控制焦点检测装置的方法
    • US08831420B2
    • 2014-09-09
    • US13951963
    • 2013-07-26
    • Sony Corporation
    • Yoshitaka Miyatani
    • G03B3/00G03B13/32
    • G03B13/32G03B13/36G03B2206/00H04N5/23212
    • There is provided a focus detection device including a phase difference acquisition unit that calculates an amount of deviation between light-reception amount distributions of a pair of light-receiving element groups arranged in a predetermined direction perpendicular to an optical axis direction as a phase difference, a conversion coefficient correction unit that corrects a conversion coefficient, representing a ratio of an amount of focus deviation in the optical axis direction to the phase difference when shapes of the light-reception amount distributions are same, according to a degree of discrepancy between the shapes of the light-reception amount distributions, and a defocus amount generation unit that generates the amount of focus deviation as an amount of defocus based on the corrected conversion coefficient and the phase difference.
    • 提供了一种焦点检测装置,包括相位差获取单元,该相位差获取单元计算沿与光轴方向垂直的预定方向布置的一对光接收元件组的光接收量分布之间的偏差量作为相位差, 转换系数校正单元,其根据所述形状之间的差异程度来校正表示所述光轴方向上的聚焦偏差与所述光接收量分布的形状相同时的相位差的比率的转换系数 以及散焦量生成单元,其基于校正后的转换系数和相位差,生成聚焦偏差量作为散焦量。