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    • 4. 发明申请
    • DEVICE AND METHOD FOR MEASURING SCATTERING OF RADIATION
    • 用于测量辐射散射的装置和方法
    • WO2009095679A3
    • 2009-12-10
    • PCT/GB2009000259
    • 2009-02-02
    • CAMBRIDGE CONSULTANTSJONES ROBERTSEWELL ROGER FANERYDER PAUL DHAYES MATTHEW JCARTER EDWIN C
    • JONES ROBERTSEWELL ROGER FANERYDER PAUL DHAYES MATTHEW JCARTER EDWIN C
    • G01N15/02G01J1/08G01N21/49
    • G01N21/49G01J1/0242G01J1/0266G01J3/02G01J3/0208G01J3/0218G01J3/0229G01J3/0291G01J3/4412G01N15/0205G01N21/51G01N21/53G01N21/532G01N21/64G01N2015/03G01N2021/4792G01N2021/6419G01N2021/6421G01N2021/6476
    • A photometric device for investigating a sample, comprises an array of radiation sources that are spaced apart from one another, and which are operable to generate radiation that differs from that generated by the other radiation sources in the array. The device includes a lens arrangement for focusing the radiation at a region of space where a sample may be located for example by means of a sample holder, and at least one detector for receiving radiation from the region of space. Preferably, a number of detectors are employed that are spaced apart from one another, and especially about an axis of the device, so that one radiation detector can detect radiation transmitted by the sample and the other detectors can detect radiation scattered by it. The radiation sources may be time division multiplexed so that in each time slot the detectors receive radiation originating from each radiation source. In an alternative embodiment, the radiation from the region of space may be transmitted to the sample via a beam homogeniser, for example an optical waveguide in the form of an optical fibre, which may be used to reduce or remove speckle where laser diodes are employed as the radiation sources. The device may be used to determine the particle size distribution of particles in a sample by a method employing Bayesian inference.
    • 用于调查样品的测光装置包括彼此间隔开的辐射源阵列,并且其可操作以产生与由阵列中的其它辐射源产生的辐射不同的辐射。 该装置包括用于将辐射聚焦在例如借助于样品保持器的样品可能位于的空间区域处的透镜装置,以及用于接收来自空间区域的辐射的至少一个检测器。 优选地,使用彼此间隔开的多个检测器,特别是围绕设备的轴线,使得一个辐射检测器可以检测由样品传输的辐射,并且其它检测器可以检测由其散射的辐射。 辐射源可以被时分复用,使得在每个时隙中,检测器接收来自每个辐射源的辐射。 在替代实施例中,来自空间区域的辐射可以经由光束均化器(例如,光纤形式的光波导)传输到样品,该光波导可用于减少或去除使用激光二极管的斑点 作为辐射源。 该装置可用于通过采用贝叶斯推理的方法来确定样品中颗粒的粒度分布。
    • 6. 发明申请
    • SYSTEMS, COMPOSITIONS, AND METHODS FOR FULL COLOR LASER ENGRAVING OF ID DOCUMENTS
    • 用于全文颜色激光雕刻的文件的系统,组成和方法
    • WO03056507B1
    • 2003-12-11
    • PCT/US0241681
    • 2002-12-24
    • DIGIMARC ID SYSTEMS LLCJONES ROBERT
    • JONES ROBERT
    • B41M3/14B41M5/28B41M5/34B41M5/46B42D15/10G06K1/12G06K19/06B42D15/00G06K5/00
    • B42D25/435B41M3/14B41M3/142B41M5/286B41M5/323B41M5/34B41M5/46B42D25/00B42D25/23B42D25/382B42D25/387B42D25/41G06K1/126
    • In one embodiment, the invention provides a method for forming a full color laser engraved image on an ID card. As described below, a special image capable layer (200) is prepared that is addressable by one or more near infrared (NIR) lasers (208, 210, 212). Each type of particle (202, 204, 206) contained within the image capable layer (200) is associated with a particular color (e.g., cyan, magenta, or yellow) and is responsive (i.e., can selectively absorb) a particular wavelength of laser energy to form a laser engraved pixel in that respective color. In one embodiment, the particles (202, 204, 206) are selected such that the wavelengths that they respond to do not overlap significantly. By providing discrete physical particles and preventing a given particle from responding to more than one laser wavelenght, it can be possible to minimize so-called "cross talk" between the cyan, magenta, and yellow centers and minimize contamination and/or chemical mixing of image formers. This helps to ensure image accuracy and quality.
    • 在一个实施例中,本发明提供了一种用于在ID卡上形成全色激光雕刻图像的方法。 如下所述,准备可由一个或多个近红外(NIR)激光器(208,210,212)寻址的特殊图像能力层(200)。 包含在图像能力层(200)内的每种类型的颗粒(202,204,206)与特定颜色(例如,青色,品红色或黄色)相关联,并且响应(即,可以选择性地吸收)特定波长的 激光能量形成激光雕刻像素的相应颜色。 在一个实施例中,颗粒(202,204,206)被选择为使得它们响应的波长不显着重叠。 通过提供离散的物理颗粒并防止给定的颗粒响应多于一个的激光波长,可以最小化青色,品红色和黄色中心之间的所谓“串扰”,并将污染和/或化学混合最小化 形象者 这有助于确保图像的准确性和质量。
    • 7. 发明申请
    • TRAP FOR INSECTS AND SMALL RODENTS CROSS REFERENCE TO RELATED APPLICATIONS
    • 昆虫和小鼠的诱捕器相关申请的交叉引用
    • WO02056679A9
    • 2002-10-31
    • PCT/US0200972
    • 2002-01-15
    • JONES ROBERT
    • JONES ROBERT
    • A01M1/14A01M23/00A01M
    • A01M1/14A01M23/005A01M2200/011
    • A trap (10) for small insects and rodents has a shallow tray (12) with a bottom plate (14) and a continuous side wall (16, 18, 20, 22). A contiguous lip (34) extends along the periphery of the side wall (16, 18, 20, 22) and substantially perpendicularly thereto. A narrow protuberance (36) extends from the lip (34) to elevate one side of the tray (12) above a mounting surface (40) when the tray is placed with an outer surface (28) of the bottom plate (14) facing upwardly. A layer of adhesive (30) substance is deposited on an inner surface (26) of the bottom plate (14). A small amount of bait (32) is placed on the adhesive layer (30). When the trap (10) is placed with the inner surface (26) facing down, the upper surface becomes inclined to trap even smaller insects trying to escape. The higher portion of the tray (12) adjacent the protuberance (36) forms the widest entryway for the crawling insects and small rodents, such as house mice.
    • 用于小型昆虫和啮齿动物的捕捉器(10)具有带有底板(14)和连续侧壁(16,18,20,22)的浅托盘(12)。 连续的唇缘(34)沿着侧壁(16,18,20,22)的周边并基本垂直于其延伸。 当托盘与底板(14)的外表面(28)面对放置时,窄凸起(36)从唇部(34)延伸以将托盘(12)的一侧升高到安装表面(40) 向上。 一层粘合剂(30)物质沉积在底板(14)的内表面(26)上。 少量诱饵(32)放置在粘合剂层(30)上。 当捕捉器(10)放置成内表面(26)朝下时,上表面变得倾斜以捕捉试图逃跑的更小的昆虫。 靠近突起(36)的托盘(12)的较高部分为爬行昆虫和小型啮齿动物(如家鼠)形成最宽的入口通道。
    • 10. 发明申请
    • WEIGHING STATION
    • 称重站
    • WO2006039672A3
    • 2007-02-08
    • PCT/US2005035546
    • 2005-10-03
    • JOHNSON FOOD EQUIPMENT INCWINKELMOLEN ANTOINE J HJONES ROBERTBARNETT DOUGLAS B
    • WINKELMOLEN ANTOINE J HJONES ROBERTBARNETT DOUGLAS B
    • G01G13/02
    • G01G13/02
    • The present invention is directed to a weighing station (10) that comprises a positioning apparatus (140-170), a drive mechanism (90-130), and a scale apparatus (180-230). In one embodiment, the positioning apparatus (140-170) includes a plurality of partitions (160) that define a plurality of product compartments. The positioning apparatus (140-170) further includes a guide wall (70, 80) located beyond the exterior end of the partitions (160), with the guide wall (70, 80) defining a loading aperture where product (250) may be loaded into the weighing station (10) and a discharge aperture where product (250) is weighed and then exits the station (10). The drive mechanism (90-130) is coupled to the positioning apparatus (140-170) and is operable to move the partitions (160) and thereby move the product compartments so that the product compartments pass the guide wall apertures. The scale apparatus (180-230) is positioned at the leading edge of the discharge aperture in the guide wall and is operable to weigh product (250).
    • 本发明涉及一种包括定位装置(140-170),驱动机构(90-130)和秤装置(180-230)的称重站(10)。 在一个实施例中,定位装置(140-170)包括限定多个产品隔室的多个隔板(160)。 定位装置(140-170)还包括位于隔板(160)的外端之外的引导壁(70,80),导向壁(70,80)限定了产品(250)可以是 装载到称重站(10)中,并且其中产品(250)被称重然后离开站(10)的排放孔。 驱动机构(90-130)联接到定位装置(140-170)并且可操作以移动隔板(160),从而移动产品隔间,使得产品隔间通过引导壁孔。 刻度装置(180-230)位于导向壁中的排出孔的前缘处,并且可操作以称重产品(250)。