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    • 6. 发明授权
    • Method and computer aided apparatus for aligning large density fiber arrays
    • 用于校准大密度光纤阵列的方法和计算机辅助设备
    • US06614517B1
    • 2003-09-02
    • US09956261
    • 2001-09-18
    • Christopher AubuchonSascha Hallstein
    • Christopher AubuchonSascha Hallstein
    • G01B900
    • G02B6/3582G02B6/32G02B6/3512G02B6/3556G02B6/359G02B6/3664
    • A method (and system) for manufacturing an optical switching device. The method includes forming an array plate comprising at least one hundred sites from a first physical process, where each of the sites is for coupling to an optical fiber. The sites have a first spatial degree of error relative to an ideal mathematical grid of the sites. The first spatial degree of error is derived from at least the first physical process. The method forms a lens plate comprising a plurality of lenses from a second physical process. Each of the lenses is going to be coupled to at least one of the sites on the array plate. The lenses have a second spatial degree of error relative to a second mathematical grid of lenses. The second spatial degree of error is derived from at least the second physical process. The method then derives lens measurement values from each of the plurality of lenses. The method compares each of the site measurement values with its respective lens measurement value to determine an error measurement between the lens measurement values and the respective site measurement values at a first reference point. The method then shifts the site measurement values relative to the lens measurement values by a selected increment relative to the first reference point. The selected increment is an x-direction, a y-direction, or a theta direction, or any combination of these. The method repeats the comparing to derive an other error measurement after the site measurement values have been shifted and continuing to perform the comparing and shifting in an iterative manner to reduce and/or possibly minimize the error measurement between the site measurement values with its respective lens measurement values.
    • 一种用于制造光开关装置的方法(和系统)。 该方法包括从第一物理过程形成包括至少一百个位点的阵列板,其中每个位置用于耦合到光纤。 这些场地相对于场地的理想数学网格具有第一空间误差。 至少第一个物理过程导出第一个空间误差度。 该方法从第二物理过程形成包括多个透镜的透镜板。 每个透镜将被耦合到阵列板上的至少一个位置。 透镜相对于透镜的第二数学格子具有第二空间误差。 至少第二物理过程导出第二空间误差度。 该方法然后从多个透镜中的每一个获得透镜测量值。 该方法将每个现场测量值与其各自的透镜测量值进行比较,以确定在第一参考点处的透镜测量值和各个位置测量值之间的误差测量。 该方法然后相对于第一参考点将相对于透镜测量值的位置测量值相对于所选择的增量移动。 所选择的增量是x方向,y方向或θ方向,或这些的任何组合。 该方法重复比较以在站点测量值已经移位之后导出其他误差测量,并且以迭代方式继续执行比较和移位,以减少和/或可能地使得其相应透镜在现场测量值之间的误差测量最小化 测量值。
    • 7. 发明申请
    • Multiple beam-directing micromirror device
    • 多光束导向微镜装置
    • US20050286115A1
    • 2005-12-29
    • US11167378
    • 2005-06-27
    • Christopher AubuchonSteven Gottke
    • Christopher AubuchonSteven Gottke
    • G02B17/04G02B26/00G02B27/14H04N5/74
    • H04N5/74G02B17/04G02B27/1033G02B27/126H04N5/7458H04N9/3117Y10S359/904
    • A reliable micromirror device for imaging applications is presented. The device includes a projection lens assembly and an array of micromirrors for fast and efficient color separation and projection. Each of the micromirrors simultaneously receives a plurality of light beams. The position of a micromirror in the array of micromirrors is adjustable such that the micromirror selects one of the plurality of light beams to direct toward the projection lens assembly. Each micromirror also has an “off” position where none of the reflected light beams is directed toward the projection lens assembly. An image is formed when each of the micromirrors in the array either directs one of the light beams toward the projection lens assembly or is turned “off.” The device may include a total internal reflection prism assembly that separates the light beams for improved contrast.
    • 介绍了一种用于成像应用的可靠的微镜器件。 该装置包括投影透镜组件和微镜阵列,用于快速和有效地分色和投影。 每个微镜同时接收多个光束。 微镜阵列中的微镜的位置是可调节的,使得微镜选择多个光束中的一个来指向投影透镜组件。 每个微镜还具有“关闭”位置,其中没有一个反射光束被引向投影透镜组件。 当阵列中的每个微反射镜将一个光束引向投影透镜组件或者被“关闭”时,形成图像。 该装置可以包括分离光束以提高对比度的全内反射棱镜组件。