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    • 62. 发明授权
    • Camera and method of controlling operation of same
    • 摄像机及其操作方法
    • US09264624B2
    • 2016-02-16
    • US14604107
    • 2015-01-23
    • FUJIFILM Corporation
    • Atsushi MisawaHiroki Saitou
    • H04N5/232G03B13/06G03B13/16G02B7/28G03B13/10H04N5/335G03B17/20
    • H04N5/23293G02B7/282G03B13/06G03B13/10G03B13/16G03B17/20H04N5/23212H04N5/335
    • An image obtained by superimposing the image of the subject, which is displayed on the display screen of an electronic viewfinder, upon the optical image of the subject can be seen by the user looking through a finder unit. Display position on the display screen of the electronic viewfinder is shifted so as to correct for parallax between the finder unit and the solid-state electronic image sensing device. When the image of the subject is in focus, the optical image of the subject and the electronically captured image of the subject coincide. When the image of the subject is not in focus, the optical image and the electronically captured image are offset from each other. Correct focus can be achieved while observing the extent of offset between these images of the subject through the finder unit.
    • 用户通过取景器单元观察可以看到通过将显示在电子取景器的显示屏幕上的被摄体的图像叠加在被摄体的光学图像上而获得的图像。 偏移电子取景器的显示屏上的显示位置,以校正取景器单元和固态电子图像感测装置之间的视差。 当被摄体的图像处于焦点时,被摄体的光学图像和被摄体的电子捕获图像一致。 当被摄体的图像不在焦点时,光学图像和电子捕获图像彼此偏移。 在通过取景器单元观察被摄体的这些图像之间的偏移程度时,可以实现正确的对焦。
    • 63. 发明授权
    • Focusing apparatus that effectively sets a focus area of an image when a focusing mode is changed
    • 聚焦模式改变时有效地设定图像的聚焦区域的聚焦装置
    • US08947581B2
    • 2015-02-03
    • US14242284
    • 2014-04-01
    • Samsung Electronics Co., Ltd.
    • Masataka HamadaKenji Ishibashi
    • H04N5/232G03B13/00G02B7/10G02B7/28G03B13/16G03B17/14H04N5/222
    • H04N5/23293G02B7/102G02B7/282G03B13/16G03B17/14H04N5/23212
    • A focusing apparatus includes a focus area setting unit that sets a first focus area in a first captured image, an auto focusing control unit that performs focusing according to a first focus evaluation value that is calculated from the first focus area by automatically adjusting a focus lens, an information deriving unit that derives focus aid information corresponding to a second focus evaluation value that is calculated from a second focus area in a second captured image by manually adjusting the focus lens, and a storage unit that stores at least one of first focus area information about the first focus area and second focus area information about the second focus area, wherein the focus area setting unit sets a third focus area in a third captured image from among the first focus area information and the second focus area information stored during another focusing.
    • 聚焦装置包括设置第一拍摄图像中的第一聚焦区域的聚焦区域设置单元,根据从第一对焦区域计算出的第一焦点评估值进行聚焦的自动聚焦控制单元,通过自动调节聚焦透镜 信息导出单元,其通过手动调节所述聚焦透镜来导出与通过第二拍摄图像中的第二焦点区域计算的第二焦点评估值相对应的对焦辅助信息;以及存储单元,其存储第一对焦区域 关于关于第二对焦区域的第一聚焦区域和第二聚焦区域信息的信息,其中聚焦区域设置单元从在第一聚焦区域信息和另一聚焦期间存储的第二聚焦区域信息中设置第三拍摄图像中的第三聚焦区域 。
    • 64. 发明授权
    • Vibrating device and image equipment having the same
    • 具有相同的振动装置和图像设备
    • US08180215B2
    • 2012-05-15
    • US12643041
    • 2009-12-21
    • Sumio KawaiTakashi Miyazawa
    • Sumio KawaiTakashi Miyazawa
    • G03B17/48G03B13/16A47L13/502
    • G03B19/02B06B1/02H04N5/2171
    • A vibrating device includes a drive unit configured to drive a vibrating member to produce vibration Z (x, y) at a dust-screening member, the vibration being expressed as follows: Z(x,y)=Wmn(x,y)·cos(γ)+Wnm(x,y)·sin(γ) where Z (x, y) is vibration at a given point P (x, y) on the dust-screening member, m and n are positive integers including 0, indicating the order of natural vibration corresponding to a vibrational mode, W mn ⁡ ( x , y ) = sin ⁡ ( n ⁢ ⁢ π · x + π 2 ) · sin ⁡ ( m ⁢ ⁢ π · y + π 2 ) , ⁢ W n ⁢ ⁢ m ⁡ ( x , y ) = sin ⁡ ( m ⁢ ⁢ π · x + π 2 ) · sin ⁡ ( n ⁢ ⁢ π · y + π 2 ) , and γ is +π/4 or ranges from −π/8 to −π/4. A ratio between a first bending rigidity along the X-axis of at least the dust-screening member and vibrating member in the section orthogonal to the X-axis at the intersection of the X- and Y-axes, to a second bending rigidity along the Y-axis of at least the dust-screening member and vibrating member in the section orthogonal to the Y-axis at the intersection is 0.4 or more, but less than 1.0.
    • 振动装置包括驱动单元,其构造成驱动振动构件以在防尘构件处产生振动Z(x,y),所述振动表示如下:Z(x,y)= Wmn(x,y)· cos(γ)+ Wnm(x,y)·sin(γ)其中Z(x,y)是防尘构件上给定点P(x,y)的振动,m和n是包括0的正整数 表示与振动模式相对应的自然振动的次序,W mn⁡(x,y)= sin⁡(n∞&pgr;·x +&pgr; 2)·sin⁡(m⁢&&pgr;·y +&pgr ; 2),W n笨m⁡(x,y)= sin⁡(m uch&pgr;·x +&pgr; 2)·sin⁡(n∞&pgr;·y +&pgr; 2) γ为+&pgr; / 4或范围为 - &pgr; / 8至 - &pgr; / 4。 至少防尘部件的X轴的第一弯曲刚度与在X轴方向和Y轴的交点处与X轴正交的截面中的振动部件之间的比例为第二弯曲刚度 至少在交叉点处与Y轴正交的部分中的防尘部件和振动部件的Y轴为0.4以上,但小于1.0。
    • 69. 发明授权
    • Real-image viewfinder with stationary and movable real image planes
    • 具有固定和可移动真实图像平面的实时图像取景器
    • US5915136A
    • 1999-06-22
    • US975764
    • 1992-11-13
    • Paul L. Ruben
    • Paul L. Ruben
    • G02B23/14G03B13/12G03B13/16G03B13/08G03B13/10
    • G03B13/12G02B23/145
    • A real image viewfinder includes an objective lens, a variator, an image reflecting optic unit, and an eyepiece lens that define a first optical path in which a first real image plane is located between the objective lens and the eyepiece lens, and can be viewed through the eyepiece lens. The reflecting optic unit is movable to compensate for variations in the position of the first real image focal plane such that the real image focal plane moves simultaneously with movement of the reflecting optic unit and also is adapted to define a second optical path through the viewfinder such that a second real image plane is located at the focal plane of the eyepiece lens, where an information display can be located.
    • 真实的图像取景器包括物镜,变倍器,图像反射光学单元和目镜,其限定第一实际图像平面位于物镜和目镜之间的第一光路,并且可以被观察 透过目镜。 反射光学单元可移动以补偿第一实像焦平面的位置的变化,使得实像焦平面随反射光学单元的移动同时移动,并且还适于限定通过取景器的第二光路, 第二实像平面位于目镜的焦平面处,其中可以定位信息显示。