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    • 1. 发明授权
    • Focusing system using light source and image sensor
    • 使用光源和图像传感器的聚焦系统
    • US07253384B2
    • 2007-08-07
    • US11088362
    • 2005-03-23
    • Danny S. BarnesDavid A. MarksGordon W. Lam
    • Danny S. BarnesDavid A. MarksGordon W. Lam
    • G02B7/04G03B17/00G03B3/10G01B11/14
    • H04N5/23212G02B7/08G02B7/32G03B13/36G06K7/14G06K7/1469G06K7/1478G06K7/1486
    • An apparatus comprising a movable optical element having an optical axis and including one or more focusing elements, an image sensor positioned along the optical axis and substantially normal thereto, and a radiation source attached to the movable optical element, wherein the radiation source directs a beam of radiation onto the sensor at a selected angle relative to the optical axis. A process comprising positioning a sensor along, and normal to, an optical axis of a movable optical element, projecting a radiation beam onto the sensor from a radiation source attached to the movable optical element, wherein the radiation beam is at a selected angle relative to the optical axis, and adjusting the position of the movable optical element until the position where the radiation beam falls on the sensor corresponds to the position where the radiation beam is expected to fall on the sensor when the movable optical element is in focus. Other embodiments are disclosed and claimed.
    • 一种装置,包括具有光轴并且包括一个或多个聚焦元件的可移动光学元件,沿着光轴定位并且基本上垂直于其的图像传感器,以及附接到可移动光学元件的辐射源,其中,辐射源引导光束 以相对于光轴成一定角度的辐射传播到传感器上。 一种方法,包括将传感器定位在可移动光学元件的光轴上并垂直于可移动光学元件的光轴,从附接到可移动光学元件的辐射源将辐射束投射到传感器上,其中辐射束相对于 光轴,并且调整可移动光学元件的位置,直到辐射束落在传感器上的位置对应于当可移动光学元件聚焦时期望辐射束落在传感器上的位置。 公开和要求保护其他实施例。
    • 3. 发明授权
    • Camera positioning and confirmation feedback system
    • 相机定位和确认反馈系统
    • US07311260B2
    • 2007-12-25
    • US10052677
    • 2002-01-18
    • Andrew J. ZoselDanny S. BarnesMatthew E. Allen
    • Andrew J. ZoselDanny S. BarnesMatthew E. Allen
    • G02B26/08
    • G06K7/10881G06K2207/1011
    • An apparatus is disclosed comprising a base capable of receiving a camera including a lens, and a projector coupled to the base and adapted to project a plurality of beams of light onto a plane positioned at a focus distance from the base, wherein the projections of the beams of light on the plane are geometric shapes, and wherein an intersection of the geometric shapes is at the center of the field of view of the lens when the lens is installed on the base. In addition, an apparatus is disclosed comprising a base capable of receiving a camera including a lens, an image processor capable of being coupled to the camera for processing an image of a target captured by the camera, and a confirmation projector coupled to the image processor, wherein the projector projects a confirmation beam onto the plane of the target when the image processor signals the confirmation projector that it has processed the image.
    • 公开了一种装置,其包括能够接收包括透镜的相机的基座,以及耦合到所述基座并且适于将多个光束投射到位于距离所述基座的聚焦距离的平面上的投影仪的投影仪,其中, 平面上的光束是几何形状,并且其中当透镜安装在基座上时,几何形状的交点位于透镜视场的中心。 此外,公开了一种装置,其包括能够接收包括透镜的相机的基座,能够耦合到相机的图像处理器,用于处理由相机拍摄的目标的图像,以及耦合到图像处理器的确认投影仪 其中当所述图像处理器向所述确认投影仪发信号通知所述图像时,所述投影仪将确认光束投影到所述目标的平面上。
    • 7. 发明授权
    • Method and apparatus for rapid image capture in an image system
    • 用于在图像系统中快速图像捕获的方法和装置
    • US07118042B2
    • 2006-10-10
    • US10052678
    • 2002-01-18
    • James W. MooreDanny S. BarnesMatthew E. Allen
    • James W. MooreDanny S. BarnesMatthew E. Allen
    • G06K7/10
    • G06K7/10861
    • Embodiments of a method, apparatus, and article of manufacture for rapidly capturing images in an automated identification system to effectively extend one dimension of a field of view of an image system are disclosed herein. In one embodiment, the image system captures and processes multiple images of at least a portion of a surface of a component in the automated identification system in response to a trigger signal communicated from a triggering device configured to sense a location of the component. Various embodiments of the invention include multiple sources for capturing images, and/or multiple user-specified schemes for effectively extending the field of view of the image system along the axis of component travel in the automated identification system.
    • 本文公开了用于在自动识别系统中快速捕获图像以有效地扩展图像系统的视场的一个维度的方法,装置和制品的实施例。 在一个实施例中,响应于从被配置为感测组件的位置的触发装置传送的触发信号,图像系统捕获并处理自动识别系统中部件表面的至少一部分的多个图像。 本发明的各种实施例包括用于捕获图像的多个源和/或多个用户指定的方案,用于在自动识别系统中有效地沿着部件行进的轴线延伸图像系统的视场。
    • 8. 发明授权
    • Optical assemblies for adjusting working distance and field of view in an imaging system
    • 用于调整成像系统中的工作距离和视野的光学组件
    • US08154810B2
    • 2012-04-10
    • US12504531
    • 2009-07-16
    • Danny S. BarnesErik R. StockingerDavid P. BajorinsChace H. Fadlovich
    • Danny S. BarnesErik R. StockingerDavid P. BajorinsChace H. Fadlovich
    • G02B7/02G02B3/12
    • G03B3/00A61B1/0019G02B3/14G02B7/08G02B15/06G02B15/08G02B26/005
    • Embodiments of an apparatus comprising a base including a proximal end, a distal end, and a receptacle in the distal end that is adapted to interchangeably receive a lens adapter; a set of base optics positioned in the proximal end of the base; and adjustable-focus optics positioned in the base and optically coupled to the base optics and, when the lens adapter is present, to the lens adapter. Embodiments of a process including forming a base including a proximal end, a distal end, and a receptacle in the distal end that is adapted to interchangeably receive any one of a plurality of lens adapters; positioning a set of base optics in the proximal end of the base; and positioning adjustable-focus optics positioned in the base such that they are optically coupled to the base optics and, when the lens adapter is present, to the lens adapter. Other embodiments are disclosed and claimed.
    • 一种装置的实施例,其包括基部,该基部包括远端中的近端,远端和容器,其适于互换地接收透镜适配器; 位于基座的近端的一组基座光学器件; 以及可调聚焦光学器件,其定位在基座中并且光学耦合到基底光学器件,并且当镜头适配器存在时,镜片适配器。 一种方法的实施例包括形成包括远端中的近端,远端和容器的基座,其适于可互换地容纳多个透镜适配器中的任何一个; 将一组基部光学器件定位在基部的近端中; 以及定位在基座中的可调节聚焦光学器件,使得它们光学地耦合到基底光学器件,并且当存在镜头适配器时,将其固定到镜头适配器。 公开和要求保护其他实施例。
    • 9. 发明授权
    • Method and apparatus for rapid image capture in an image system
    • 用于在图像系统中快速图像捕获的方法和装置
    • US08146823B2
    • 2012-04-03
    • US12029387
    • 2008-02-11
    • James W. MooreDanny S. BarnesMatthew E. AllenBruce R. Scharf
    • James W. MooreDanny S. BarnesMatthew E. AllenBruce R. Scharf
    • G06K7/10
    • G06K7/10722G06K7/1465
    • Embodiments of a method, apparatus, and article of manufacture for rapidly capturing images in an automated identification system to effectively extend one dimension of a field of view of an image system are disclosed herein. In one embodiment, the image system captures and processes multiple images of at least a portion of a surface of a component in the automated identification system in response to a trigger signal communicated from a triggering device configured to sense a location of the component. Various embodiments of the invention include multiple sources for capturing images, and/or multiple user-specified schemas for effectively extending the field of view of the image system along the axis of component travel in the automated identification system.
    • 本文公开了用于在自动识别系统中快速捕获图像以有效地扩展图像系统的视场的一个维度的方法,装置和制品的实施例。 在一个实施例中,响应于从被配置为感测组件的位置的触发装置传送的触发信号,图像系统捕获并处理自动识别系统中部件表面的至少一部分的多个图像。 本发明的各种实施例包括用于捕获图像的多个源和/或多个用户指定的模式,用于在自动识别系统中沿着分量行进的轴线有效地扩展图像系统的视场。
    • 10. 发明授权
    • Method and apparatus for rapid image capture in an image system
    • 用于在图像系统中快速图像捕获的方法和装置
    • US07341190B2
    • 2008-03-11
    • US11541317
    • 2006-09-28
    • James W. MooreDanny S. BarnesMatthew E. Allen
    • James W. MooreDanny S. BarnesMatthew E. Allen
    • G06K7/10
    • G06K7/10861
    • Embodiments of a method, apparatus, and article of manufacture for rapidly capturing images in an automated identification system to effectively extend one dimension of a field of view of an image system are disclosed herein. In one embodiment, the image system captures and processes multiple images of at least a portion of a surface of a component in the automated identification system in response to a trigger signal communicated from a triggering device configured to sense a location of the component. Various embodiments of the invention include multiple sources for capturing images, and/or multiple user-specified schemas for effectively extending the field of view of the image system along the axis of component travel in the automated identification system.
    • 本文公开了用于在自动识别系统中快速捕获图像以有效地扩展图像系统的视场的一个维度的方法,装置和制品的实施例。 在一个实施例中,响应于从被配置为感测组件的位置的触发装置传送的触发信号,图像系统捕获并处理自动识别系统中部件表面的至少一部分的多个图像。 本发明的各种实施例包括用于捕获图像的多个源和/或多个用户指定的模式,用于在自动识别系统中沿着分量行进的轴线有效地扩展图像系统的视场。