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    • 12. 发明授权
    • Focus adjusting apparatus and imaging apparatus
    • 聚焦调节装置和成像装置
    • US08611739B2
    • 2013-12-17
    • US12883692
    • 2010-09-16
    • Kenichi HonjoMitsuyoshi OkamotoKoji Shibuno
    • Kenichi HonjoMitsuyoshi OkamotoKoji Shibuno
    • G03B13/34
    • G03B13/34G02B7/282G02B7/38G03B31/00
    • A focus adjusting apparatus includes an optical system including a focus lens, a driver configured to move the focus lens along an optical axis of the optical system, an obtaining unit configured to periodically obtain an evaluation value of a subject image formed via the focus lens, a determining unit configured to determine a target position to which the focus lens is moved based on the evaluation value, and a controller configured to control an operation of the driver based on the determined target position. The controller controls the driver to move the focus lens at a first speed for a first period including a backlash period which is defined from start of the operation of the driver to start of an actual movement of the focus lens, and controls the driver to move the focus lens at a second speed faster than the first speed for a second period after the end of the first period.
    • 一种聚焦调节装置,包括:光学系统,包括聚焦透镜;被配置为沿着所述光学系统的光轴移动所述聚焦透镜的驱动器;获取单元,被配置为周期性地获得经由所述聚焦透镜形成的被摄体图像的评估值; 确定单元,被配置为基于所述评估值确定所述聚焦透镜所移动的目标位置;以及控制器,被配置为基于所确定的目标位置来控制所述驾驶员的操作。 控制器控制驾驶员以第一速度移动聚焦透镜,该第一周期包括从驾驶员的操作开始到开始实现焦点透镜的开始定义的间隙周期,并且控制驾驶员移动 该焦点透镜在第一时段结束之后的第二时间段以比第一速度快的第二速度。
    • 13. 发明授权
    • Camera system and camera body
    • 相机系统和相机机身
    • US08553135B2
    • 2013-10-08
    • US13446152
    • 2012-04-13
    • Norikazu KatsuyamaKenichi Honjo
    • Norikazu KatsuyamaKenichi Honjo
    • H04N5/232
    • H04N5/23209G02B7/36G03B13/36G03B17/14H04N5/23212H04N5/23293H04N2101/00
    • A camera system includes an interchangeable lens and a camera body. The interchangeable lens has a focal adjuster including a focus lens group, an absolute position detector configured to detect the position of the focus lens group with respect to a movable range, and a relative position detector configured to detect the movement amount of the focus lens group. The camera body has a first focal detector configured to detect the focal state on the basis of a contrast value and a second focal detector configured to detect the focal state by phase difference detection method on the basis of the optical image. When the first focal detector is used for focal adjustment, a detection of the focal state is performed on the basis of only the information obtained by the relative position detector.
    • 相机系统包括可互换镜头和照相机主体。 可互换镜头具有焦点调节器,包括聚焦透镜组,绝对位置检测器,被配置为检测聚焦透镜组相对于可移动范围的位置;以及相对位置检测器,被配置为检测聚焦透镜组的移动量 。 相机机身具有:第一焦点检测器,被配置为基于对比度值检测焦点状态;以及第二焦点检测器,被配置为基于光学图像通过相位差检测方法检测焦点状态。 当第一焦点检测器用于焦点调整时,仅基于由相对位置检测器获得的信息执行焦点状态的检测。
    • 16. 发明授权
    • Control system for oscillatory actuator
    • 振荡执行器控制系统
    • US08183738B2
    • 2012-05-22
    • US12469257
    • 2009-05-20
    • Kenichi HonjoHideaki MukaeYusuke Adachi
    • Kenichi HonjoHideaki MukaeYusuke Adachi
    • H01L41/09
    • H01L41/0913H02N2/004H02N2/026H02N2/028H02N2/062H02N2/065
    • In driving a target body only by one of actuators, the target body is smoothly driven.A drive unit (1) includes a stage (3), a first ultrasonic actuator (4A) for driving the stage (3) in an X direction and a second ultrasonic actuator (4B) for driving the stage (3) in a Y direction. When the stage (3) is driven only in one of the X direction and the Y direction, one of the first and second ultrasonic actuators (4A and 4B) which corresponds to the direction generates composite vibration of longitudinal direction parallel to a contact surface of the stage (3) and bending vibration perpendicular to the contact surface of the stage (3). On the other hand, the other one of the first and second ultrasonic actuators (4A and 4B) generates only longitudinal vibration parallel to the contact surface of the stage (3).
    • 在仅通过致动器中的一个驱动目标体时,目标体平稳地被驱动。 驱动单元(1)包括:阶段(3),用于在X方向上驱动平台(3)的第一超声波致动器(4A)和用于沿Y方向驱动平台(3)的第二超声致动器(4B) 。 当阶段(3)仅在X方向和Y方向中的一个方向上被驱动时,对应于该方向的第一和第二超声致动器(4A和4B)中的一个产生平行于接触表面的纵向的复合振动 舞台(3)和垂直于舞台(3)的接触表面的弯曲振动。 另一方面,第一和第二超声波致动器(4A和4B)中的另一个仅产生平行于载物台(3)的接触表面的纵向振动。
    • 18. 发明授权
    • Imaging device
    • 成像设备
    • US08068141B2
    • 2011-11-29
    • US11997826
    • 2006-07-27
    • Kenichi Honjo
    • Kenichi Honjo
    • H04N5/228
    • G02B27/646G03B5/02G03B2205/0015G03B2217/005H04N5/23248H04N5/23258H04N5/23274H04N5/23287
    • An imaging device ICD, which realizes an image blurring compensation function which achieves image blurring compensation during a framing period and image blurring compensation during releasing, is provided. In the imaging device (ICD), an OIS unit control section (104) compensates image blurring occurring in an optical image by moving an optical axis of an imaging optical system (100), and compensates the image blurring by changing a position of cutout of image data outputted from an image sensor (106). An image shift amount calculation section (39x, 39y) detects image blurring information. A system controller (120) causes the OIS unit control section (104) to mainly move the optical axis during an exposure period based on the detected image blurring information, and to mainly change the position of the cutout of the image data during a period other than the exposure period, thereby compensating image blurring which occurs in a taken image.
    • 提供了一种成像装置ICD,其实现了在成帧周期期间实现图像模糊补偿的图像模糊补偿功能以及在释放期间的图像模糊补偿。 在成像装置(ICD)中,OIS单元控制部(104)通过移动成像光学系统(100)的光轴来补偿在光学图像中发生的图像模糊,并且通过改变图像模糊位置 从图像传感器(106)输出的图像数据。 图像偏移量计算部(39x,39y)检测图像模糊信息。 系统控制器(120)使得OIS单元控制部分(104)在曝光期间主要基于检测到的图像模糊信息来移动光轴,并且主要在其他时间段内改变图像数据的切口的位置 从而补偿拍摄图像中发生的图像模糊。
    • 19. 发明授权
    • Imaging apparatus
    • 成像设备
    • US08035721B2
    • 2011-10-11
    • US11194778
    • 2005-08-02
    • Kenichi HonjoMitsuyoshi OkamotoMinori SatoKenji MaedaSeiichi Suzuki
    • Kenichi HonjoMitsuyoshi OkamotoMinori SatoKenji MaedaSeiichi Suzuki
    • G02B13/16H04N5/225
    • G06T1/00H04N5/23212H04N9/045
    • An imaging apparatus has an image sensor that captures the optical image of an object formed by an imaging optical system and converts the optical image into the electrical still image signal, a signal processor for dividing a representation of the image signal into a plurality of areas, and for determining a color characteristic for each area of the plurality of areas, the color characteristic consisting of a hue and/or chroma saturation, a selector for selecting at least one area of the plurality of area for which its respective color characteristic substantially corresponds to a preset color characteristic, and a focus controller for determining focus parameters of the imaging apparatus for the selected area and generating a focus control signal for adjusting the image optical system based on the focus parameters.
    • 一种成像装置具有:图像传感器,其捕获由成像光学系统形成的物体的光学图像,并将光学图像转换成电子静止图像信号;信号处理器,用于将图像信号的表示分割成多个区域, 并且用于确定所述多个区域中的每个区域的颜色特性,所述颜色特征由色调和/或色度饱和度组成,所述选择器用于选择其各自颜色特征基本对应于的多个区域中的至少一个区域 预设的颜色特性,以及用于确定所选择的区域的成像装置的焦点参数的焦点控制器,并且基于焦点参数产生用于调整图像光学系统的聚焦控制信号。