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    • 1. 发明授权
    • Imaging apparatus and driving method of its imaging optical system
    • 其成像光学系统的成像设备及其驱动方法
    • US07483219B2
    • 2009-01-27
    • US11407709
    • 2006-04-20
    • Kenichi HayashiTakayuki HayashiEiichi NagaokaKeiji SakamotoNaoto YumikiDaisuke Ito
    • Kenichi HayashiTakayuki HayashiEiichi NagaokaKeiji SakamotoNaoto YumikiDaisuke Ito
    • G02B15/14G02B7/02
    • G02B15/173G02B7/102
    • An imaging optical system is configured with a first lens group disposed on a first optical axis and capturing a luminous flux from a subject along the first optical axis, a prism that folds the luminous flux passed through the first lens group toward a direction along a second optical axis that is substantially perpendicular to the first optical axis and second to fifth lens groups disposed on the second optical axis. At the end of the operation, while the first lens group is driven in a direction of the prism along the first optical axis, the second to the fourth lens groups are driven to an initial angle of view position where these lens groups are to be present at the start of the operation. Thereby, an imaging apparatus whose chassis is very thin and that can realize a high pixel counter and a large magnification, while enabling the speeding-up of the starting operation and the ending operation, can be provided.
    • 成像光学系统被配置为具有设置在第一光轴上的第一透镜组并且沿着第一光轴捕获来自被摄体的光束;棱镜,其将穿过第一透镜组的光束朝向第二光轴的方向 光轴基本上垂直于设置在第二光轴上的第一光轴和第二至第五透镜组。 在操作结束时,当第一透镜组沿着第一光轴沿棱镜的方向被驱动时,第二至第四透镜组被驱动到要存在这些透镜组的初始视角位置 在操作开始时。 由此,能够提供其底盘非常薄并能够实现高像素计数器和大放大率的成像装置,同时能够实现启动操作和结束操作的加速。
    • 10. 发明授权
    • Imaging apparatus
    • 成像设备
    • US08391704B2
    • 2013-03-05
    • US13358590
    • 2012-01-26
    • Naoto Yumiki
    • Naoto Yumiki
    • G03B17/18G03B41/00
    • G03B17/00H04N1/00326H04N1/00336H04N1/2112H04N1/215H04N5/232H04N5/23219H04N5/23245H04N5/23248H04N5/23254H04N5/23258H04N5/23287H04N5/2353H04N2101/00H04N2201/3247
    • Digital camera is provided with face detection section that detects faces of a plurality of photographing objects, microcomputer performs continuous shooting in optimum photographing conditions in accordance with the number of faces of the photographing objects for each face of the plurality of photographing objects by a single shutter operation and performs control by assigning serial photographing object numbers to the images of the plurality of photographing objects taken by continuous shooting and recording the images in a single continuous-shooting image folder. Furthermore, microcomputer performs continuous shooting in predetermined order in accordance with the number of faces of the photographing objects and detects, when the photographing object speed is equal to or higher than a predetermined value, the photographing object speed again after photographing other photographing objects.
    • 数码相机设置有检测多个拍摄对象的面部的面部检测部,微型计算机根据通过单个快门的多个拍摄对象的每个面的拍摄对象的面部的数量在最佳拍摄条件下进行连拍 通过将连续拍摄对象编号分配给通过连续拍摄拍摄的多个拍摄对象的图像并将图像记录在单个连续拍摄图像文件夹中来进行控制。 此外,微型计算机根据拍摄对象的面数以预定顺序执行连续拍摄,并且在拍摄其他拍摄对象之后再次检测拍摄对象速度等于或高于预定值时的拍摄对象速度。