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    • 71. 发明授权
    • Identification document with three dimensional image of bearer
    • 识别文件与承载的三维图像
    • US08033476B2
    • 2011-10-11
    • US12687284
    • 2010-01-14
    • Robert L. Jones
    • Robert L. Jones
    • G06K19/06
    • B42D25/23B42D25/00B42D25/42B42D25/45B42D2033/24G06K19/08G06K19/10G06K19/18
    • An identification document includes a lens system and a specially prepared photo of a document bearer. The lens system and the specially prepared photo cooperate to create a three dimensional photo effect. The document includes two or more document layers. There is a lens structure in one of the document layers, and it includes lens elements. A photo is printed on one or more of the document layers. The photo depicts the document bearer, and includes two or more separate images of the bearer from different perspectives. Parts of the separate images are interleaved together into sets, and the sets are positioned relative to corresponding lens elements of the lens structure. These sets include parts of the separate images such that when viewed through the lens structure, the parts are viewed simultaneously making the subject appear three-dimensional to a viewer.
    • 识别文件包括镜头系统和专门准备的文件承载照片。 镜头系统和专门制作的照片合作,创造三维照片效果。 该文档包括两个或多个文档层。 在其中一个文件层中存在透镜结构,并且其包括透镜元件。 照片打印在一个或多个文档图层上。 照片描绘了文件载体,并且包括来自不同视角的载体的两个或更多个单独的图像。 单独图像的一部分被交织在一起成组,并且这些组相对于透镜结构的相应透镜元件定位。 这些集合包括单独图像的部分,使得当通过透镜结构观察时,同时观看部分,使得被摄体向观看者呈现三维。
    • 74. 发明授权
    • Three dimensional data storage
    • 三维数据存储
    • US07789311B2
    • 2010-09-07
    • US11758609
    • 2007-06-05
    • Robert L. JonesLeo M. Kenen
    • Robert L. JonesLeo M. Kenen
    • G06K19/00
    • G06K19/06018G06K7/1417G06K19/06037G06K19/06046G06K19/06056G06K19/14
    • One aspect of the invention comprises a method of embedding data in a code readable by machine from a visible light scan of the code. The method comprises pre-printing a two dimensional array of pixels on a substrate. The pixels include at least one calibration pixel, and each have color values. The method selectively alters at least a subset of the pixels by using laser radiation to alter color saturation of the color values of the pixels in the subset relative to the calibration pixel according to digital data values of the code to be embedded in the subset of pixels. This method has been adapted to embed personalized information in pre-printed graphic elements on ID cards.
    • 本发明的一个方面包括一种将数据嵌入机器可读代码的代码的可见光扫描中的方法。 该方法包括在衬底上预先打印二维像素阵列。 像素包括至少一个校准像素,并且每个具有颜色值。 该方法通过使用激光辐射来选择性地改变像素的至少一个子集,以根据要嵌入在像素子集中的代码的数字数据值相对于校准像素改变子集中的像素的颜色饱和度 。 该方法已经适应于在个人识别卡上将预先印刷的图形元素嵌入个性化信息。
    • 76. 发明授权
    • Readers to analyze security features on objects
    • 读者分析对象的安全功能
    • US07762468B2
    • 2010-07-27
    • US12234938
    • 2008-09-22
    • Robert L. JonesAlastair M. Reed
    • Robert L. JonesAlastair M. Reed
    • G06K19/06
    • B42D25/378B41M3/144B42D25/00B42D25/23B42D25/382B42D25/387B42D25/41G07D7/0043G07D7/12G07D7/1205G07D7/206G07F7/08G07F7/125
    • The present invention provides readers to analyze emerging security or authentication feature for physical objects (e.g., identification documents, product packaging, banknotes, etc.). One claim recites a reader including: an excitation source to excite an object with first non-visible light, the object comprising first indicia provided with a first ink or dye and second indicia provided with a second ink or dye, the second ink or dye comprising an emission decay time that is relatively longer than an emission decay time of the first ink or dye, the first indicia and the second indicia collectively conveying a first machine readable feature when illuminated with the first non-visible light, with the second indicia individually conveying a second machine readable feature after emissions attributable to the first indicia fall to a first level; and a code reader to read at least the second machine readable feature after emissions attributable to the first ink or dye fall to the first level and before emissions attributable to the second ink or dye fall to a second level. Other claims and combinations are provided as well.
    • 本发明提供读者分析物理对象(例如,身份证件,产品包装,纸币等)的新出现的安全性或认证特征。 读者包括:用第一不可见光激发物体的激发源,所述物体包括设置有第一墨或染料的第一标记,以及设置有第二墨或染料的第二标记,所述第二墨或染料包含 相对长于第一墨水或染料的发射衰减时间的发射衰减时间,当用第一不可见光照射时,第一标记和第二标记共同地传送第一机器可读特征,第二标记单独输送 在归因于第一标记的排放物之后的第二机器可读特征落到第一级; 以及代码读取器,用于在归因于第一墨水或染料的排放物排放到第一水平之后以及归因于第二墨水或染料的排放物落入第二水平之前至少读取第二机器可读特征。 还提供了其他权利要求和组合。
    • 78. 发明授权
    • Piering device with adjustable helical plate
    • 带可调节螺旋板的穿孔装置
    • US06682267B1
    • 2004-01-27
    • US10308505
    • 2002-12-03
    • Robert L. Jones
    • Robert L. Jones
    • E02D500
    • E02D27/48E02D5/523E02D5/56E02D5/801E02D35/00E02D2200/1671
    • A piering device includes a shaft having a polygonal cross-section with a series of notches spaced at intervals along the vertices of the shaft. For example, the shaft can have a square cross-section with rounded corners. The helical plate has a passageway with a cross-section to slide along the shaft when the helical plate is in a first rotational position on the shaft. However, notches within the passageway of the helical plate engage the notches on the shaft when the helical plate is rotated to a second rotational position, thereby preventing the helical plate from sliding along the shaft. A key is inserted between the shaft and helical plate to hold the helical plate in the second rotational position and thereby fix the axial position of the helical plate on the shaft.
    • 一种穿孔装置包括具有多边形横截面的轴,该轴具有沿轴的顶点间隔开的一系列凹口。 例如,轴可以具有带有圆角的正方形横截面。 当螺旋板处于轴上的第一旋转位置时,螺旋板具有横截面沿着轴滑动的通道。 然而,当螺旋板旋转到第二旋转位置时,螺旋板的通道内的凹口接合轴上的凹口,从而防止螺旋板沿着轴滑动。 在轴和螺旋板之间插入钥匙以将螺旋板保持在第二旋转位置,从而将螺旋板的轴向位置固定在轴上。
    • 80. 发明授权
    • Capacitively readout multi-element sensor array with common-mode cancellation
    • 电容式读出具有共模消除的多元件传感器阵列
    • US06167748A
    • 2001-01-02
    • US09144309
    • 1998-08-31
    • Charles L. Britton, Jr.Robert J. WarmackWilliam L. BryanRobert L. JonesPatrick Ian OdenThomas Thundat
    • Charles L. Britton, Jr.Robert J. WarmackWilliam L. BryanRobert L. JonesPatrick Ian OdenThomas Thundat
    • G01B716
    • G01B7/023G01D5/2417G01N27/227Y10S436/806
    • An improved multi-element apparatus for detecting the presence of at least one chemical, biological or physical component in a monitored area comprising an array or single set of the following elements: a capacitive transducer having at least one cantilever spring element secured thereto, the cantilever element having an area thereof coated with a chemical having an affinity for the component to be detected; a pick-up plate positioned adjacent to the cantilever element at a distance such that a capacitance between the cantilever element and the pick-up plate changes as the distance between the cantilever element and the pick-up plate varies, the change in capacitance being a measurable variation; a detection means for measuring the measurable variation in the capacitance between the cantilever element and the pick-up plate that forms a measurement channel signal; and at least one feedback cantilever spring element positioned apart from the coated cantilever element, the cantilever element substantially unaffected by the component being monitored and providing a reference channel signal to the detection means that achieves a common mode cancellation between the measurement channel signal and reference channel signal.
    • 一种用于检测被监测区域中至少一种化学,生物或物理组分的存在的改进的多元件装置,包括阵列或单组以下元件:具有固定到其上的至少一个悬臂弹簧元件的电容换能器,所述悬臂 元件,其面积涂覆有对要检测的组分具有亲和性的化学品; 一个与悬臂元件相邻的拾取板,其距离使得悬臂元件和拾取板之间的电容随着悬臂元件和拾取板之间的距离而变化,电容的变化是 可测量变化; 用于测量形成测量通道信号的悬臂元件和拾取板之间的电容的可测量变化的检测装置; 以及至少一个反向悬臂弹簧元件,其与所述涂覆的悬臂元件分开定位,所述悬臂元件基本上不受所监视的部件的影响,并且向所述检测装置提供参考通道信号,所述参考通道信号实现所述测量通道信号和参考通道之间的共模消除 信号。