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    • 42. 发明申请
    • CAMERA APPARATUS
    • 相机设备
    • US20130222685A1
    • 2013-08-29
    • US13814766
    • 2011-08-03
    • Richard ToplissAndrew Benjamin David Brown
    • Richard ToplissAndrew Benjamin David Brown
    • H04N5/225
    • H04N5/2251G02B27/646G03B5/00G03B2205/0023G03B2205/0076H04N1/00307H04N5/2257H04N5/23287
    • In a camera apparatus, two SMA actuator subsystems each comprise two SMA wires connected between a camera unit and a support structure, hooked over a pivot element defining pivot axes that lie in a common plane along the optical axis. Differential contraction of the SMA wires drives rotation. The SMA actuator subsystems are opposed, but the SMA wires of each subsystem are fixed respectively to the camera unit and the support structure, reducing the height. A non-conductive substrate supporting conductive tracks electrically connected to the SMA actuator system is configured as a flexure arrangement between the camera unit and the support structure. The flexure arrangement is connected to the camera unit at a position in the common plane reducing lateral resistance to tilt. Use of an intermediate connector element allows the circuit board to be arranged in front of the intermediate connector inside the height of the lens system.
    • 在相机装置中,两个SMA致动器子系统各自包括连接在相机单元和支撑结构之间的两条SMA线,钩在枢轴元件上,该枢轴元件限定位于沿着光轴的公共平面中的枢转轴线。 SMA线的差动收缩驱动旋转。 SMA执行器子系统相对,但每个子系统的SMA线分别固定在摄像机单元和支撑结构上,降低了高度。 电连接到SMA致动器系统的支撑导电轨道的非导电衬底被配置为相机单元和支撑结构之间的挠曲布置。 弯曲布置在公共平面中的位置处连接到相机单元,减小横向阻力以倾斜。 使用中间连接器元件允许电路板布置在透镜系统的高度内的中间连接器的前面。
    • 45. 发明申请
    • ESTIMATING OPTICAL CHARACTERISTICS OF A CAMERA COMPONENT USING SHARPNESS SWEEP DATA
    • 使用锐度扫描数据估计摄像机组件的光学特性
    • US20120307089A1
    • 2012-12-06
    • US13149580
    • 2011-05-31
    • Jason R. Rukes
    • Jason R. Rukes
    • H04N5/232H04N5/228
    • H04N5/232G02B7/09G02B27/646G03B43/00G03B2205/0023H04N5/2259H04N5/23229H04N5/2328
    • The sharpness sweep of a camera lens is performed while capturing several digital images of an object through the lens. The lens is swept in accordance with a range of distance-representing values. The images are analyzed to calculate a respective sharpness variable for each of several different regions of interest. For each region of interest, a peak value of the sharpness variable is found, as well as the distance-representing value associated with the peak. The pixel coordinates of each region of interest are converted into a pair of distance coordinates, which become part of a triple that is created for the region of interest and that also includes the associated distance-representing value. A surface to fit the triples is estimated, and a measure of the optical characteristic is computed using the estimated surface. Optical characteristics that may be estimated in this manner include tilt and curvature of field. Other embodiments are also described and claimed.
    • 在通过透镜捕获物体的几个数字图像的同时执行相机镜头的清晰度扫描。 根据距离表示值的范围扫描镜头。 分析图像以针对感兴趣的几个不同区域中的每一个计算相应的锐度变量。 对于每个感兴趣区域,找到锐度变量的峰值以及与峰值相关联的距离表示值。 每个感兴趣区域的像素坐标被转换成一对距离坐标,其成为为感兴趣区域创建的三重组的一部分,并且还包括关联的距离表示值。 估计拟合三元组的表面,并使用估计的表面计算光学特性的度量。 可以以这种方式估计的光学特性包括倾斜和曲率。 还描述和要求保护其他实施例。
    • 48. 发明授权
    • Image stabilization system
    • 图像稳定系统
    • US07991279B2
    • 2011-08-02
    • US12770755
    • 2010-04-30
    • Shun-Fan Chiang
    • Shun-Fan Chiang
    • G03B17/00
    • G02B27/646G03B5/02G03B2205/0023G03B2205/0069
    • An exemplary image stabilization system includes a fixed body having a first receiving cavity therein, a movable unit received in the first receiving cavity, a pivot member located between the fixed body and the movable unit, a motion sensor, a driving module, and a U-shaped magnetic shield. The pivot member is engagingly received in and between the fixed body and the movable unit. The motion sensor is disposed on the fixed body for detecting a movement of the image stabilization system. The driving module is configured for driving the movable unit to rotate around the pivot member to compensate a movement of the image stabilization system based on the motion detection result of the motion sensor. The U-shaped magnetic shield includes a first plate, a second plate, and a connecting plate between the first and second plates. The first vertical is securely mounted on the movable unit. The second plate is located on an opposite side of the first plate to the fixed barrel. The driving module is arranged between the first plate and the second plate.
    • 示例性的图像稳定系统包括其中具有第一接收腔的固定体,容纳在第一容纳腔中的可移动单元,位于固定体和可移动单元之间的枢转构件,运动传感器,驱动模块和U 形磁屏蔽 枢转构件被接合地容纳在固定体和可移动单元之中和之间。 运动传感器设置在固定体上,用于检测图像稳定系统的移动。 驱动模块被配置为用于驱动可移动单元围绕枢轴构件旋转,以基于运动传感器的运动检测结果补偿图像稳定系统的移动。 U形磁屏蔽包括第一板,第二板和第一板和第二板之间的连接板。 第一垂直安装在可移动单元上。 第二板位于第一板与固定筒的相反侧。 驱动模块布置在第一板和第二板之间。