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    • 1. 发明授权
    • Symbology imaging and reading apparatus and method
    • 符号学成像和阅读设备及方法
    • US06283374B1
    • 2001-09-04
    • US09151766
    • 1998-09-11
    • Stephen D. FantoneDavid A. ImrieWilliam T. PlummerJon E. Van TassellPhilip E. McKinleyHarry R. McKinleyLuis A. FigarellaHoward SternJohn H. DowlingSteve Meister
    • Stephen D. FantoneDavid A. ImrieWilliam T. PlummerJon E. Van TassellPhilip E. McKinleyHarry R. McKinleyLuis A. FigarellaHoward SternJohn H. DowlingSteve Meister
    • G06K710
    • G06K7/10742G06K7/10722G06K7/10732G06K7/10811G06K7/10881
    • Diffuse “dark field” illumination and “bright field” illumination are each provided for a hand-held encoded symbology imager/reader; to be projected therefrom upon symbology disposed on a target (component part, goods, package, etc.). The imager/reader is encased in a housing ergonomically configured to be griped in more then one manner and to thus facilitate holding the imager/reader steady. The symbology to be imaged is targeted by a line that not only spots the symbology, but by extending a length commensurate with that of the symbology, indicates that the symbology is in the field of view of the imager/reader. A CCD, disposed to receive light reflected from the symbology, has its readout controlled so that only selected portions of the CCD need be analyzed for illumination and focusing purposes. To optimize imaging and decoding time, and to optimize use of power, readout from some portions of the CCD is accomplished in relatively rapid time by speeding up the readout of the CCD in some of its active area; while reverting back to a slower readout for data to be analyzed for illumination and focusing control and decoding purposes. In addition, special application of entropy principles facilitate determining the optimum focus and illumination conditions for the imager/reader.
    • 漫射“暗场”照明和“亮场”照明分别为手持编码的符号系统成像仪/阅读器提供; 从配置在目标上的符号系统(部件,商品,包装等)投射出来。 成像器/读取器被封装在符合人体工程学的外壳中,以便以一种方式被夹持,从而有利于保持成像器/读取器的稳定。 要成像的符号系统的目标是一条线,不仅可以识别符号系统,而且通过扩展与符号系统相匹配的长度,表示符号系统在成像器/读取器的视野中。 设置为接收从符号系统反射的光的CCD具有其读出控制,使得仅需要分析CCD的所选部分以进行照明和聚焦。 为了优化成像和解码时间,并且优化功率的使用,通过在其一些有效区域中加速CCD的读出,在相对较快的时间内从CCD的一些部分读出; 同时还原为较慢的读数,以供分析用于照明和聚焦控制和解码目的的数据。 此外,熵原理的特殊应用有助于确定成像器/读取器的最佳聚焦和照明条件。
    • 3. 发明授权
    • Optical symbologies imager
    • 光学符号成像仪
    • US06860428B1
    • 2005-03-01
    • US09151764
    • 1998-09-11
    • John H. DowlingHoward SternHarry R. McKinleyPhilip E. McKinleyJason J. LeeLuis Alberto Figarella
    • John H. DowlingHoward SternHarry R. McKinleyPhilip E. McKinleyJason J. LeeLuis Alberto Figarella
    • G06K7/10G06K9/22
    • G06K7/10742G06K7/10811
    • A hand-held imager which is capable of reading both linear and two dimensional symbologies, which can perform focusing and illuminating steps quickly and accurately so as to eliminate variation in the position of the imager relative to the code becoming a negative factor, in which can operate in environment where the imager is anywhere from 1.5 inches to 16 inches from the code. The imager includes an imaging system having a focusing system, an illumination system, and a two-dimensional photodetector which forms an image of the coded symbology. After achieving targeting of the coded symbology, the scanning system adjusts the focus between multiple different focuses, and utilizes a portion of the two-dimensional photodetector to determine the optimum focus. Upon the determination of optimum focus, the focusing system is returned to the focusing configuration established in the initial focusing step, and an image is created using the entire two-dimensional photodetector. Optimum illumination is determined using the same two-dimensional photodetector.
    • 一种能够读取线性和二维符号的手持式成像器,其可以快速和准确地执行聚焦和照明步骤,以便消除成像器相对于代码成为负面因素的位置的变化,其中可以 操作在成像器距离代码1.5英寸至16英寸的环境中。 成像器包括具有聚焦系统,照明系统和形成编码符号系统的图像的二维光电检测器的成像系统。 在实现编码符号系统的目标之后,扫描系统调整多个不同焦点之间的焦点,并利用二维光电探测器的一部分来确定最佳焦点。 在确定最佳焦点时,聚焦系统返回到初始聚焦步骤中建立的聚焦配置,并且使用整个二维光电检测器创建图像。 使用相同的二维光电探测器确定最佳照明。
    • 7. 发明授权
    • Stereoscopic zoom endoscope
    • 立体变焦内窥镜
    • US08081380B2
    • 2011-12-20
    • US11870005
    • 2007-10-10
    • Harry R. McKinley
    • Harry R. McKinley
    • G02B21/22G02B27/22A61B1/04
    • G03B35/10G02B23/2415G02B23/2438G03B17/02H04N13/218
    • A stereoscopic lens system for a stereo endoscope is disclosed, the stereoscopic lens system converting light propagated from an object and received at an objective end of the stereoscopic lens system to left and right optical images at an image plane end of the stereoscopic lens system. The system includes at least one linearly movable left optical element configured to selectably adjust the magnification and field of view of the left image in response to linear movement and at least one linearly movable right optical element configured to selectably adjust the magnification and field of view of the right image in response to linear movement. The at least one linearly movable left optical element and the at least one linearly movable right optical element are selectably movable in fixed relation to each other.
    • 公开了一种用于立体声内窥镜的立体透镜系统,该立体透镜系统将从物体传播并在立体透镜系统的目标端处接收的光转换为立体透镜系统的像平面端处的左右光学图像。 该系统包括至少一个可线性移动的左光学元件,其被配置为响应于线性运动可选择地调节左图像的倍率和视场,并且至少一个线性可移动的右光学元件被配置为可选择地调节放大倍数和视场的视场 正确的图像响应线性运动。 所述至少一个可线性移动的左光学元件和所述至少一个可直线移动的右光学元件可选择地彼此固定地移动。
    • 8. 发明申请
    • STEREOSCOPIC ZOOM ENDOSCOPE
    • 立体声缩放内窥镜
    • US20090096865A1
    • 2009-04-16
    • US11870005
    • 2007-10-10
    • Harry R. McKinley
    • Harry R. McKinley
    • H04N13/00
    • G03B35/10G02B23/2415G02B23/2438G03B17/02H04N13/218
    • A stereoscopic lens system for a stereo endoscope is disclosed, the stereoscopic lens system converting light propagated from an object and received at an objective end of the stereoscopic lens system to left and right optical images at an image plane end of the stereoscopic lens system. The system includes at least one linearly movable left optical element configured to selectably adjust the magnification and field of view of the left image in response to linear movement and at least one linearly movable right optical element configured to selectably adjust the magnification and field of view of the right image in response to linear movement. The at least one linearly movable left optical element and the at least one linearly movable right optical element are selectably movable in fixed relation to each other.
    • 公开了一种用于立体声内窥镜的立体透镜系统,该立体透镜系统将从物体传播并在立体透镜系统的目标端处接收的光转换成立体透镜系统的像平面端处的左右光学图像。 该系统包括至少一个可线性移动的左光学元件,其被配置为响应于线性运动可选择地调节左图像的倍率和视场,并且至少一个线性可移动的右光学元件被配置为可选择地调节放大倍数和视场的视场 正确的图像响应线性运动。 所述至少一个可线性移动的左光学元件和所述至少一个可直线移动的右光学元件可选择地彼此固定地移动。