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    • 83. 发明授权
    • System and method for detecting defects in a light-management film
    • 用于检测光管理膜中的缺陷的系统和方法
    • US07199386B2
    • 2007-04-03
    • US10710708
    • 2004-07-29
    • Kevin Patrick CapaldoMark ChevertonKevin George HardingRobert Tait
    • Kevin Patrick CapaldoMark ChevertonKevin George HardingRobert Tait
    • G01N21/86G01N21/00H01L27/00
    • G01N21/95G01N2021/9513
    • A system and a method for detecting defects in a light-management film are provided. The system includes a first light source configured to emit light onto a first side of the film in a first predetermined region of the film. The system further includes a second light source configured to emit light onto a second side of the film in the first predetermined region of the film. The system further includes a first camera configured to receive a first portion of light reflected from the first predetermined region of film from the first light source and a second portion of the light propagating through the film from the second light source. Finally, the system includes a signal-processing device operably coupled to the first camera configured to detect a defect in the first predetermined region of the film based on at least one of the first and second portions of light.
    • 提供了一种用于检测光管理膜中的缺陷的系统和方法。 该系统包括配置成在膜的第一预定区域中将光发射到膜的第一侧上的第一光源。 该系统还包括被配置为在薄膜的第一预定区域中将光发射到薄膜的第二侧上的第二光源。 该系统还包括第一照相机,其配置为从第一光源接收从第一预定区域反射的光的第一部分,以及从第二光源传播通过膜的光的第二部分。 最后,该系统包括可操作地耦合到第一照相机的信号处理设备,其被配置为基于第一和第二光部分中的至少一个来检测胶片的第一预定区域中的缺陷。
    • 86. 发明授权
    • Method of measuring a part with a wide range of surface reflectivities
    • 测量具有广泛表面反射率的部件的方法
    • US06700668B2
    • 2004-03-02
    • US10064246
    • 2002-06-25
    • Joseph LeGrand MundyKevin George HardingJoseph Benjamin RossThomas Watkins Lloyd
    • Joseph LeGrand MundyKevin George HardingJoseph Benjamin RossThomas Watkins Lloyd
    • G01B1124
    • G01B5/205G01B11/25
    • A method for optical part shape measurement of a bare metal part to determine acceptability of the manufactured part. A variable level light source illuminates the part which is mounted on positioning equipment that allows the part to be moved from one position to another. Localized variations in light level are first determined and are compared with a reflectivity model of the part to determine optimization of the setup. Light level and viewing orientation of the part are adjusted to optimize the quality of test data obtained. Data quality is reviewed to ascertain a confidence factor for each location on the part's surface. Using both the reflectivity model and quality test results, data acquired for specified areas of the part is either accepted or rejected. Light level and part orientation are changed based upon how a reflectivity map of the part changes with each adjustment. New and acceptable data are now acquired for those areas of the part where data was previously discarded. This new acceptable data is combined with the previously acceptable data to obtain a complete set of data upon which acceptability of the part is determined.
    • 一种用于裸金属部件的光学部件形状测量以确定制造部件的可接受性的方法。 可变电平光源照亮安装在定位设备上的部件,允许零件从一个位置移动到另一个位置。 首先确定光级的局部变化,并将其与该部分的反射率模型进行比较,以确定设置的优化。 调整零件的光线和观察方向,以优化所获得的测试数据的质量。 审查数据质量以确定零件表面上每个位置的置信因子。 使用反射率模型和质量测试结果,对部件的特定区域采集的数据被接受或拒绝。 根据部件的反射率图如何随着每次调整而改变,灯光水平和部件方向都会发生变化。 现在,为先前丢弃数据的部分区域获取新的和可接受的数据。 这个新的可接受数据与以前可接受的数据相结合,以获得确定零件可接受性的完整数据集。