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    • 2. 发明申请
    • Combination RFID/image reader
    • 组合RFID /图像阅读器
    • US20060202032A1
    • 2006-09-14
    • US11076157
    • 2005-03-10
    • Gregg Kricorissian
    • Gregg Kricorissian
    • G06K7/00G08B13/14
    • G06K7/0004
    • An automatic identification and data capture (AIDC) system is provided. The system includes a radio frequency identification (RFID) reader, an image reader, a memory module, and a central processing unit (CPU). The image reader captures image data from a label and transmits the data to the memory module. The RFID reader captures RFID data from another label and transmits the data to the memory module. The memory module assembles the received image data and RFID data into respective frames, and then transmits the frames to the CPU. The CPU decodes the frames and outputs identifying information as a result of the decoding. The image data may include a two-dimensional image. The system may further include a flash emitter for emitting a flash of light upon the first label after prompting by a user. The system may be contained in a housing, such as a hand-held scanning module. The system may use a low-voltage battery to provide operating power.
    • 提供自动识别和数据采集(AIDC)系统。 该系统包括射频识别(RFID)读取器,图像读取器,存储器模块和中央处理单元(CPU)。 图像读取器从标签捕获图像数据并将数据发送到存储器模块。 RFID读取器从另一个标签捕获RFID数据,并将数据传输到存储器模块。 存储器模块将接收到的图像数据和RFID数据组装到相应的帧中,然后将帧发送到CPU。 CPU解码帧并输出作为解码结果的识别信息。 图像数据可以包括二维图像。 该系统还可以包括闪光发射器,用于在用户提示之后在第一标签上发射闪光。 系统可以容纳在诸如手持扫描模块的壳体中。 该系统可以使用低压电池来提供工作电源。
    • 3. 发明申请
    • Targeting system for a portable image reader
    • 用于便携式图像读取器的目标系统
    • US20060151608A1
    • 2006-07-13
    • US11033093
    • 2005-01-10
    • Gregg KricorissianXinjun Xie
    • Gregg KricorissianXinjun Xie
    • G06K7/10
    • G06K7/10544G06K2207/1011
    • A targeting system for a portable image reader, which advantageously combines a number of functions including alignment, aiming, framing and range finding and provides a wide imaging range with an optimal field of view, is described. The targeting system projects a predetermined pattern having two or more components onto the target such that the components maintain a uniform distance between one another to bound the target and further vary in size as a function of their distance between the image reader and the target. The targeting system comprises targeting LED's, apertures positioned over the targeting LED's, and cylindrical lenses positioned over the apertures. With this arrangement, at least two vertical lines are projected onto a target such that the lines maintain a uniform distance apart from one another, but vary in length as a function of the reader distance from the target. This allows the operator to quickly position the imaging device over a target.
    • 描述了便携式图像读取器的瞄准系统,其有利地组合了许多功能,包括对准,瞄准,成帧和测距,并且提供具有最佳视场的宽成像范围。 瞄准系统将具有两个或更多个部件的预定图案投射到目标上,使得部件保持彼此之间的均匀距离以限制目标,并根据其图像读取器和目标之间的距离进一步变化大小。 瞄准系统包括瞄准LED,位于瞄准LED上的孔和位于孔上方的柱面透镜。 利用这种布置,将至少两条垂直线投影到目标上,使得线条彼此之间保持均匀的距离,但是随读取器距离目标的距离而变化。 这允许操作者快速地将成像装置放置在目标上。
    • 4. 发明申请
    • Motion induced blur minimization in a portable image reader
    • 移动感应模糊最小化在便携式图像读取器
    • US20050236488A1
    • 2005-10-27
    • US10831861
    • 2004-04-26
    • Gregg Kricorissian
    • Gregg Kricorissian
    • G06K7/10
    • G06K7/10851
    • The invention describes a method and apparatus for reducing motion-induced blur inherent in portable image readers. The method consists of adding a time delay to the operation of the reader after the trigger has been activated, in order to delay the start of the acquisition cycle. When the trigger or button on a portable imaging reader is pulled or pressed, the motion imparted on the reader can be excessive. Images acquired during this time generally suffer from excessive blurring. Incorporating a short delay between trigger and acquisition, allows the image acquisition to occur at an optimal time when the reader motion is at a minimum. The time delay may be of a fixed duration in the range of 50 ms to 250 ms. In another arrangement, the time delay may determined by the time it takes for the reader motion to decelerate below a predetermined threshold.
    • 本发明描述了用于减少便携式图像读取器中固有的运动引起的模糊的方法和装置。 该方法包括在触发器被激活之后向读取器的操作添加时间延迟,以便延迟采集周期的开始。 当拉动或按下便携式成像读取器上的触发器或按钮时,传递给读取器的动作可能过大。 在此期间获得的图像通常会遭受过度模糊。 在触发和采集之间加入短暂的延迟,允许在读取器运动最小时的最佳时间进行图像采集。 时间延迟可以在50ms至250ms的范围内的固定持续时间。 在另一种布置中,时间延迟可以由读取器运动减速到预定阈值以下所花费的时间来确定。
    • 6. 发明申请
    • Imaging method and apparatus for object identification
    • 用于物体识别的成像方法和装置
    • US20060043188A1
    • 2006-03-02
    • US10927695
    • 2004-08-27
    • Gregg Kricorissian
    • Gregg Kricorissian
    • G06K7/10
    • G06K9/00993B07C3/14
    • The system for identifying objects comprises an imaging system, such as a CMOS imager or a CCD camera, for capturing images of the objects and for identifying certain objects from the captured images. An external processor, which is coupled to imaging system by a high-speed communications link, is adapted to identify objects from the captured images that are transmitted to it by the imaging system. The imaging system thus captures images of the objects passed by it and then identifies certain of the objects from the images due to its processing capacity. The external processor with its superior processing capacity identifies the objects from the captured images transmitted to it by the imaging system. The imaging system may be adapted to transmit the captured images of the objects that it cannot identify or to transmit all of the captured images of the objects to the external processor for parallel processing. The targets for the imaging system may be one or more regions of interest on the object such as symbology, barcodes, text, graphics or shapes.
    • 用于识别物体的系统包括诸如CMOS成像器或CCD照相机的成像系统,用于捕获物体的图像并从捕获的图像中识别某些物体。 通过高速通信链路耦合到成像系统的外部处理器适于从由成像系统发送给它的捕获图像中识别对象。 因此,成像系统捕获由其传递的对象的图像,然后由于其处理能力而从图像中识别出某些对象。 具有优异处理能力的外部处理器从成像系统识别从其传输的捕获图像中的对象。 成像系统可以适于传送其不能识别的对象的所捕获的图像,或将所有被拍摄的对象的图像发送到外部处理器用于并行处理。 成像系统的目标可以是对象上的一个或多个感兴趣区域,诸如符号,条形码,文本,图形或形状。
    • 7. 发明授权
    • Optical image reader having a replaceable optical array panel
    • 具有可更换光学阵列面板的光学图像读取器
    • US07304290B2
    • 2007-12-04
    • US10927694
    • 2004-08-27
    • Gregg KricorissianXinjun XieTao Zhang
    • Gregg KricorissianXinjun XieTao Zhang
    • H01J3/14H01J40/14H01J5/16H01J5/02
    • G02B13/16G02B7/00G02B27/09
    • The optical image reader is versatile since it can be assembled for use in a variety of reader applications, such as an ultra high definition reader, a high definition reader, a standard reader and an ultra long range reader. In addition to a housing enclosing an image sensor, an adjustable objective lens assembly for focusing an image of a target on the image sensor and a light source for illuminating and/or targeting the target, the reader includes a light shaping optical element array comprising optical elements assembled together as an integral unit and adapted to be fixed to the housing for shaping and directing light on the target. The optical elements are mounted on a panel, which is adapted to be fixed to the reader housing either permanently, or releasably to permit replacement of the panel on the housing. The method of assembling the image reader comprises the steps of selecting a light shaping optical element array from the variety of optical element arrays for the specific application, adjusting the objective lens assembly for optimum focal length for the specific application, and fixing the light shaping optical element array panel to the image reader housing. The present invention is further directed to a kit for an imaging system. The kit for an imaging system comprises an image reader mounted in a housing and one or more light shaping optical element array panels, each adapted to be releasably attached to the image reader housing.
    • 光学图像读取器是多功能的,因为它可以被组装用于各种读取器应用中,例如超高清晰度读取器,高清晰度读取器,标准读取器和超长距离读取器。 除了包围图像传感器的壳体之外,用于将图像的图像聚焦在图像传感器上的可调整物镜组件和用于照明和/或瞄准目标的光源,读取器包括光成形光学元件阵列,其包括光学 元件组装在一起作为整体单元并且适于固定到壳体上,用于将光引导到靶上。 光学元件安装在面板上,该面板适于永久地或可释放地固定到阅读器外壳,以允许将面板更换在外壳上。 组装图像读取器的方法包括以下步骤:从用于特定应用的各种光学元件阵列中选择光成形光学元件阵列,调整物镜组件以获得用于特定应用的最佳焦距,以及将光成形光学 元件阵列面板到图像读取器外壳。 本发明还涉及用于成像系统的套件。 用于成像系统的套件包括安装在壳体中的图像读取器和一个或多个光成形光学元件阵列面板,每个适于可释放地附接到图像读取器外壳。
    • 8. 发明申请
    • Dual laser targeting system
    • 双激光瞄准系统
    • US20060118626A1
    • 2006-06-08
    • US11006163
    • 2004-12-07
    • Gregg Kricorissian
    • Gregg Kricorissian
    • G06K7/10
    • G06K7/10881G06K7/10732
    • A dual laser targeting system is described. At least one pair of lasers is arranged symmetrically about an objective lens in a symbology reader. The lasers project a beam along their respective axis, which, when an optical element is placed in front of the laser, produces multiple beams concentric about each laser axis. These multiple beams produce a composite pattern that appears to be symmetrical about the optical axis of the objective lens. The resulting targeting pattern includes laser beam spots that frame the field of view (FOV) of the symbology reader, and the laser beam spots on the laser axes frame the optical center of the target.
    • 描述了双激光瞄准系统。 至少一对激光器在对称读取器中围绕物镜对称地布置。 激光器沿其各自的轴线投射光束,当将光学元件放置在激光器的前面时,其产生围绕每个激光轴同心的多个光束。 这些多个光束产生似乎关于物镜的光轴对称的复合图案。 所得到的瞄准图案包括构成符号读取器的视野(FOV)的激光束斑点,并且激光轴上的激光束斑点构成目标的光学中心。
    • 9. 发明申请
    • Optical image reader
    • 光学图像阅读器
    • US20060054779A1
    • 2006-03-16
    • US10927694
    • 2004-08-27
    • Gregg Kricorissian
    • Gregg Kricorissian
    • H01J5/02H01L27/00
    • G02B13/16G02B7/00G02B27/09
    • The optical image reader is versatile since it can be assembled for use in a variety of reader applications, such as an ultra high definition reader, a high definition reader, a standard reader and an ultra long range reader. In addition to a housing enclosing an image sensor, an adjustable objective lens assembly for focusing an image of a target on the image sensor and a light source for illuminating and/or targeting the target, the reader includes a light shaping optical element array comprising optical elements assembled together as an integral unit and adapted to be fixed to the housing for shaping and directing light on the target. The optical elements are mounted on a panel, which is adapted to be fixed to the reader housing either permanently, or releasably to permit replacement of the panel on the housing. The method of assembling the image reader comprises the steps of selecting a light shaping optical element array from the variety of optical element arrays for the specific application, adjusting the objective lens assembly for optimum focal length for the specific application, and fixing the light shaping optical element array panel to the image reader housing. The present invention is further directed to a kit for an imaging system. The kit for an imaging system comprises an image reader mounted in a housing and one or more light shaping optical element array panels, each adapted to be releasably attached to the image reader housing.
    • 光学图像读取器是多功能的,因为它可以被组装用于各种读取器应用中,例如超高清晰度读取器,高清晰度读取器,标准读取器和超长距离读取器。 除了包围图像传感器的壳体之外,用于将图像的图像聚焦在图像传感器上的可调整物镜组件和用于照明和/或瞄准目标的光源,读取器包括光成形光学元件阵列,其包括光学 元件组装在一起作为整体单元并且适于固定到壳体上,用于将光引导到靶上。 光学元件安装在面板上,该面板适于永久地或可释放地固定到阅读器外壳,以允许将面板更换在外壳上。 组装图像读取器的方法包括以下步骤:从用于特定应用的各种光学元件阵列中选择光成形光学元件阵列,调整物镜组件以获得用于特定应用的最佳焦距,以及将光成形光学 元件阵列面板到图像读取器外壳。 本发明还涉及用于成像系统的套件。 用于成像系统的套件包括安装在壳体中的图像读取器和一个或多个光成形光学元件阵列面板,每个适于可释放地附接到图像读取器外壳。