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    • 4. 发明申请
    • SURFACE OBSERVATION APPARATUS AND SURFACE OBSERVATION METHOD
    • 表面观察装置和表面观测方法
    • US20120044262A1
    • 2012-02-23
    • US13318718
    • 2010-05-25
    • Takehiro HiraiKenji ObaraNaoma Ban
    • Takehiro HiraiKenji ObaraNaoma Ban
    • G06K9/62G09G5/377G06T3/40
    • H01L22/20G06T7/001G06T2200/24G06T2207/10061G06T2207/30148H01L22/12H01L2924/0002H01L2924/00
    • A surface observation apparatus is achieved, which enables even a beginner to easily select an optimal evaluation indicator for each of various patterns to be evaluated without a trial and error approach. A plurality of images to be evaluated are input from an image processing unit (114) to an evaluation image input unit (113a) (in step 901). The input images to be evaluated are displayed on a display (115). A user rearranges the images in accordance with an evaluation criterion of the user while referencing the display (115), and defines an evaluation criterion (in step 902). Evaluation values are calculated for the input images (to be evaluated) using a plurality of evaluation indicators (in step 903). The evaluation values for each of the evaluation indicators are compared with the evaluation criterion defined by the user, and correlation coefficients are then calculated (in step 904). An evaluation indicator having the maximum absolute value of a correlation coefficient is automatically selected as an evaluation criterion that is closest to the evaluation criterion defined by the user (in step 905). The images are rearranged in order of correlation coefficient and a list of the images is displayed on the display (115) so that the images are arranged in order of evaluation value (in step 906).
    • 实现了表面观察装置,即使初学者也能够在不进行试错法的情况下容易地选择要评估的各种图案中的各种图案的最佳评价指标。 将要评估的多个图像从图像处理单元(114)输入到评估图像输入单元(113a)(在步骤901中)。 待评估的输入图像显示在显示器(115)上。 用户根据用户的评价标准重新排列图像,同时参照显示器(115),并定义评估标准(步骤902)。 使用多个评价指标对输入图像(待评价)计算评价值(步骤903)。 将各评价指标的评价值与用户定义的评价标准进行比较,然后计算相关系数(步骤904)。 自动选择具有相关系数的最大绝对值的评估指标作为最接近用户定义的评估标准的评估标准(在步骤905中)。 按照相关系数的顺序重新排列图像,并且在显示器(115)上显示图像列表,使得以评估值的顺序排列图像(在步骤906中)。
    • 6. 发明授权
    • Method of correcting coordinates, and defect review apparatus
    • 校正坐标的方法和缺陷检查装置
    • US08036845B2
    • 2011-10-11
    • US12792795
    • 2010-06-03
    • Takehiro HiraiKazuo AokiKumi Kaneko
    • Takehiro HiraiKazuo AokiKumi Kaneko
    • G01C17/38G21C17/00
    • G01R31/2884
    • The present invention provides a method of correcting coordinates so as to quickly and properly arrange a sample in a field of view in a review apparatus for moving a sample stage onto the specified coordinates to review the sample. A review apparatus according to the present invention, which is a review apparatus for moving a sample stage onto coordinates previously calculated by a checking apparatus to review the sample, has a function of retaining a plurality of coordinate correction tables to correct a deviation between a coordinate value previously calculated by a checking apparatus and an actual sample position detected by the review apparatus. The review apparatus evaluates correction accuracy of the plurality of coordinate correction tables and applies one of the coordinate correction tables with the maximum evaluation value.
    • 本发明提供了一种校正坐标的方法,以便在用于将样品台移动到特定坐标上以检查样品的检查装置中的视场中快速且适当地布置样品。 根据本发明的检查装置,其是用于将样本台移动到由检查装置预先计算的坐标以检查样本的检查装置,具有保留多个坐标校正表以校正坐标的偏差的功能 先前由检查装置计算的值和由检查装置检测到的实际样品位置。 评估装置评估多个坐标校正表的校正精度,并且应用具有最大评估值的坐标校正表中的一个。
    • 7. 发明申请
    • REVIEW METHOD AND REVIEW DEVICE
    • 审查方法和审查装置
    • US20090206259A1
    • 2009-08-20
    • US12366179
    • 2009-02-05
    • Kenji ObaraTakehiro HiraiKohei YamaguchiNaoma Ban
    • Kenji ObaraTakehiro HiraiKohei YamaguchiNaoma Ban
    • G01N23/00
    • H01J37/21H01J37/28H01J2237/216H01J2237/221H01J2237/2817
    • A defect review method and a defect review device using an electron microscope, reduce the number of user processes necessary to set automatic focal adjustment of an electron beam to provide easier sample observation.The review method comprises the steps of: performing focal adjustment for a plurality of coordinate positions pre-registered on the coordinate on an object under observation; creating a criterion for focal adjustment based on a focal position at each of the plurality of coordinate positions; setting a focal probe range based on a deviation between the criterion and the focal position; and determining an automatic focal adjustment range for defect detection on the object under observation based on the set focal probe range.
    • 使用电子显微镜的缺陷检查方法和缺陷检查装置,减少设置电子束的自动聚焦调整所需的用户处理次数,以提供更容易的样品观察。 检查方法包括以下步骤:对预先登记在观察对象上的坐标上的多个坐标位置执行焦点调整; 基于所述多个坐标位置中的每个坐标位置处的焦点位置创建用于焦点调整的标准; 根据标准和焦点位置之间的偏差设置焦点探测范围; 以及基于所设置的焦点探测范围确定用于观察对象的缺陷检测的自动焦点调整范围。