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    • 3. 发明公开
    • Drop detection using lens position sensing of camera module
    • Vorrichtung zur Erkennung des Herunterfallens eines Kameramodules mit Hilfe des Linsenpositionssensors
    • EP2341381A1
    • 2011-07-06
    • EP10368006.2
    • 2010-01-19
    • Dialog Imaging Systems GmbH
    • Gerhards, Timo
    • G02B7/08G02B13/00
    • G03B5/00G02B7/08G03B13/36G03B2217/18
    • Systems and methods to achieve an auto-focus camera with a movable lens barrel having a mechanic shock detection capability combined with a re-initialization of the camera module have been disclosed. This re-initialization may comprise moving the lens barrel displaced by the shock to a home position. In a preferred embodiment of the invention a motor with integrated position detection has been used. In a normal operation the position detection feature senses the actual position of the lens, e.g. during auto-focusing of the lens barrel, and provides this position information to a control unit which is controlling the movement of the lens barrel to a target position. In case of a mechanic shock, e.g. if the camera module drops to ground, the control unit detects an extreme rapid displacement of the lens barrel and initiates a re-initialization of the camera module.
    • 已经公开了实现具有与相机模块的重新初始化相结合的机械冲击检测能力的可移动镜筒的自动对焦相机的系统和方法。 这种重新初始化可以包括将由冲击移位的透镜镜移动到原始位置。 在本发明的优选实施例中,已经使用具有集成位置检测的马达。 在正常操作中,位置检测特征检测透镜的实际位置,例如, 在透镜镜筒的自动聚焦期间,并且将该位置信息提供给控制单元,该控制单元正在控制透镜镜筒的移动到目标位置。 在机械冲击的情况下,例如 如果相机模块落地,则控制单元检测到镜筒的极端快速位移并且启动相机模块的重新初始化。
    • 10. 发明公开
    • Surveillance camera with automatic exposure control
    • Überwachungskameramit automatischer Helligkeitsregelung。
    • EP0519379A2
    • 1992-12-23
    • EP92110073.1
    • 1992-06-15
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Fujita, ShigeruSakai, Toshio
    • H04N7/18H04N5/235
    • G03B7/085G03B2217/18H04N5/235H04N7/18
    • There is disclosed an apparatus comprising:
      input means for inputting multi-value data having gradation; identifying means for identifying a tone-graphic part and a line-image part from data inputted through said input means; and output means for combining the tone-graphic part and the line-image part and outputting thus combined data. By this means data representing tone-graphic and line image parts of an image are identified, processed and combined to reproduce the image. There is detailed an apparatus including a multi-level converter for converting multi-level value image data into bi-level value image data and vice versa, a resolution converter operated in synchronism with the multi-level converter to convert a resolution of the multi-level value image data, an area data memory for storing area data corresponding to an instruction input representing a multi-level or bi-level value image area, and an output device for selecting the multi-level value image data from the resolution converter or the multi-level value image data from the multi-level converter on the basis of the area data and for outputting selected data to an image output device.
    • 本发明的目的是控制透镜光圈和快门速度,使得自动光量调节是由要被拾取的图像而不受环境光量的影响而进行的。 本发明的另一个目的是控制摄像照相机的快门速度,以便在旋转支架旋转期间拾取目标物体的图像,而不允许图像异步流动。 图像拾取照相机1包括用于检测照相机1的旋转位置的垂直位置检测器12和水平位置检测器13.控制检测到的位置信息20的光量的数据21被预先存储在校正数据存储器 用于位置信息20的校正数据21被传送到相机1.透镜光圈驱动器10从透镜2的光量中减去校正数据21,以产生自动控制透镜光圈的光量的信号 11.