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    • 81. 发明申请
    • CAMERA BODY
    • 相机身体
    • US20100073507A1
    • 2010-03-25
    • US12561766
    • 2009-09-17
    • Kenichi HonjoKyoichi Miyazaki
    • Kenichi HonjoKyoichi Miyazaki
    • H04N5/228H04N5/232H04N5/225
    • H04N5/23209G03B17/14H04N5/23212H04N5/2354
    • A camera body includes an imaging element, a hot shoe, and a camera controller. The imaging element is configured to convert an optical image of the subject into an electrical signal, and is configured to produce image data about the subject. The hot shoe allows the flash device to be mounted. The camera controller is configured to calculate an evaluation value on the basis of the image data produced by the imaging element, and is configured to perform video autofocusing on the basis of this evaluation value. The camera controller is configured to control the imaging element and the flash device so that when the camera controller decides that auxiliary light is needed, and the camera controller decides that the external auxiliary light source of the flash device mounted to the hot shoe is not compatible with video autofocusing, the image data is acquired while an external main light source of the flash device intermittently emits light during the video autofocusing.
    • 相机主体包括成像元件,热靴和照相机控制器。 成像元件被配置为将被摄体的光学图像转换成电信号,并且被配置为产生关于被摄体的图像数据。 热靴允许安装闪光灯设备。 相机控制器被配置为基于由成像元件产生的图像数据来计算评估值,并且被配置为基于该评估值执行视频自动对焦。 相机控制器被配置为控制成像元件和闪光装置,使得当相机控制器确定需要辅助光时,并且相机控制器确定安装到热靴的闪光装置的外部辅助光源不兼容 利用视频自动对焦,在视频自动对焦期间闪光装置的外部主光源间歇地发光时,获取图像数据。
    • 82. 发明授权
    • Zoom lens system, imaging device and camera
    • 变焦镜头系统,成像设备和相机
    • US07630140B2
    • 2009-12-08
    • US12155157
    • 2008-05-30
    • Yoshiaki KuriokaKeiki YoshitsuguKyoichi Miyazaki
    • Yoshiaki KuriokaKeiki YoshitsuguKyoichi Miyazaki
    • G02B15/14
    • G02B15/177
    • A zoom lens system comprising a first lens unit having negative power, a second lens unit having positive power and a third lens unit having positive power, wherein in zooming from a wide-angle limit to a telephoto limit, the lens units move respectively along an optical axis in such a manner that an interval between the first lens unit and the second lens unit decreases while an interval between the second lens unit and the third lens unit changes so that variable magnification is achieved, the first lens unit comprises one object side negative lens element and one image side positive lens element with a convex surface facing the object side, which have an aspheric surface, and the conditions: n12>1.88 and ν12
    • 一种变焦透镜系统,包括具有负功率的第一透镜单元,具有正光焦度的第二透镜单元和具有正光焦度的第三透镜单元,其中,从广角限制到远摄极限的变焦中,透镜单元分别沿着 光轴,使得第一透镜单元和第二透镜单元之间的间隔减小,同时第二透镜单元和第三透镜单元之间的间隔变化,使得实现可变放大倍率,第一透镜单元包括一个物体侧负 透镜元件和具有面向物体侧的凸面的一个像侧正透镜元件,其具有非球面,并且条件为:n12> 1.88和nu12 <26(n12和nu12)分别为折射率和阿贝数 第一透镜单元的像侧正透镜元件)。
    • 83. 发明申请
    • Zoom lens system, imaging device and camera
    • 变焦镜头系统,成像设备和相机
    • US20080285147A1
    • 2008-11-20
    • US12155159
    • 2008-05-30
    • Yoshiaki KuriokaKeiki YoshitsuguKyoichi Miyazaki
    • Yoshiaki KuriokaKeiki YoshitsuguKyoichi Miyazaki
    • G02B15/177
    • G02B15/177
    • A zoom lens system comprising a first lens unit having negative power, a second lens unit having positive power and a third lens unit having positive power, wherein in zooming from a wide-angle limit to a telephoto limit, the lens units move respectively along an optical axis in such a manner that an interval between the first lens unit and the second lens unit decreases while an interval between the second lens unit and the third lens unit changes so that variable magnification is achieved, the first lens unit comprises one object side negative lens element and one image side positive lens element with a convex surface facing the object side, which have an aspheric surface, and the conditions: n12>1.88 and ν12
    • 一种变焦透镜系统,包括具有负功率的第一透镜单元,具有正光焦度的第二透镜单元和具有正光焦度的第三透镜单元,其中,从广角限制到远摄极限的变焦中,透镜单元分别沿着 光轴,使得第一透镜单元和第二透镜单元之间的间隔减小,同时第二透镜单元和第三透镜单元之间的间隔变化,使得实现可变放大倍数,第一透镜单元包括一个物体侧负 透镜元件和具有面向物体侧的凸面的一个像侧正透镜元件,其具有非球面,并且条件为:n12> 1.88和nu12 <26(n12和nu12)分别为折射率和阿贝数 第一透镜单元的像侧正透镜元件)。
    • 85. 发明授权
    • Position sensor having a reflective projecting system and device
fabrication method using the sensor
    • 具有反射投影系统的位置传感器和使用传感器的装置制造方法
    • US6124601A
    • 2000-09-26
    • US766755
    • 1996-12-13
    • Minoru YoshiiMasanobu HasegawaKyoichi Miyazaki
    • Minoru YoshiiMasanobu HasegawaKyoichi Miyazaki
    • G03F7/20G03F9/00H01L21/027G01N21/86
    • G03F9/7026
    • A position detecting apparatus for detecting the position of a substrate in an interval direction in which the substrate is spaced by an interval form a pattern-printing projection optical system for printing pattern on the substrate includes first and second luminous flux projecting and receiving systems and a detector. The first luminous flux projecting system projects a first luminous flux to the substrate form a direction oblique to the interval direction. The first luminous flux receiving system receives a first luminous flux after the first luminous flux is reflected form the substrate. The second luminous flux projecting system projects a second luminous flux to a reflection member secured to the bottom end of the pattern-printing projection optical system. The second luminous flux receiving system receives the second luminous flux after the second luminous flux is reflected by the reflection member. The detection detects the position of the substrate in the interval direction by detecting the position at which the first luminous flux receiving system receives the first luminous flux and by detecting the position at which the second luminous flux receiving system receives the second luminous flux.
    • 一种位置检测装置,用于在衬底间隔开的间隔方向上检测衬底的位置,形成用于在衬底上印刷图案的图案印刷投影光学系统,包括第一和第二光束投射和接收系统,以及 探测器。 第一光通量投影系统将第一光束投射到基板,形成与间隔方向相反的方向。 第一光束接收系统在从基板反射第一光通量之后接收第一光通量。 第二光通量投影系统将第二光束投射到固定到图案印刷投影光学系统的底端的反射构件。 第二光束接收系统在第二光束被反射构件反射之后接收第二光束。 该检测通过检测第一光束接收系统接收到第一光通量的位置,并且通过检测第二光束接收系统接收到第二光束的位置来检测基板在间隔方向上的位置。