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    • 1. 发明申请
    • Laser processing machine and laser processing method
    • 激光加工机和激光加工方法
    • US20060102608A1
    • 2006-05-18
    • US11270600
    • 2005-11-10
    • Daisuke KatsutaMineo NomotoKazushi Yoshimura
    • Daisuke KatsutaMineo NomotoKazushi Yoshimura
    • B23K26/03
    • B23K26/032B23K26/03B23K26/04B23K26/043B23K26/0853B23K2101/40
    • The laser beam machine of the present invention includes: an XY stage on which to rest a workpiece with multiple machining objects arrayed on it, and which moves the workpiece in an XY direction on the basis of NC data; an image acquisition head which is provided in an image acquisition station and has oblique illumination optical system and detection optical system; and a laser machining head which is provided in a laser machining station and has a laser light source, an XY optical beam deflector for deflecting a laser beam in the XY direction on the basis of the deflection control data obtained in accordance with the image signals from each machining object that have been acquired by the image acquisition head, and an irradiation lens for admitting the above-deflected laser beam into each machining object from a substantially perpendicular direction.
    • 本发明的激光束机包括:XY台,其上放置有多个加工对象的工件,并且基于NC数据在XY方向上移动工件; 图像获取头,设置在图像采集站中,具有倾斜照明光学系统和检测光学系统; 以及激光加工头,其设置在激光加工台中并具有激光光源,XY光束偏转器,用于根据根据来自于...的图像信号获得的偏转控制数据在XY方向上偏转激光束 由图像获取头获取的每个加工对象以及用于从大致垂直的方向将上述偏转的激光束进入每个加工对象的照射透镜。
    • 2. 发明授权
    • Method for pattern inspection and apparatus therefor
    • 图案检查方法及其设备
    • US5301248A
    • 1994-04-05
    • US904892
    • 1992-06-25
    • Ninomiya TakanoriKazushi YoshimuraMineo Nomoto
    • Ninomiya TakanoriKazushi YoshimuraMineo Nomoto
    • G01R31/308G06T7/00G06K9/00
    • G06T7/001G01R31/308G06T7/0006G06T2207/20036G06T2207/20144G06T2207/30141
    • A detected pattern is binarized, the binarized pattern is expanded, an image size is reduced while a connectivity of the expanded pattern is preserved and stored in a first memory. In turn, the binarized pattern is contracted, the image size is reduced while a connectivity of the contracted pattern is preserved and stored in a second memory. Then the expanded pattern is read out from the first memory and a connectivity of the pattern is selected. The contracted pattern is read out from the second pattern and the connectivity of the pattern is extracted. The selected connectivities are compared with the connectivity of a normal pattern to detect a non-coincidence. The circuit pattern having a short circuit or a semi-short circuit defect and a circuit pattern having an open circuit or a semi-open circuit defect are classified and selected in response to these non-coincidences. Further, a pattern shape stored in the first memory is analyzed to specify the position where the short circuit or a semi-short circuit defect is present.
    • 检测到的图案被二值化,二值化图案被扩展,图像尺寸减小,而扩展图案的连接被保存并存储在第一存储器中。 反过来,二进制图案被缩小,图像尺寸减小,而合同图案的连接被保存并存储在第二存储器中。 然后,从第一存储器读出扩展模式,并且选择模式的连接。 从第二模式读出收缩模式,并提取模式的连接。 将所选择的连接性与正常模式的连接进行比较以检测不重合。 具有短路或半短路缺陷的电路图案以及具有开路或半开路缺陷的电路图案被分类并响应于这些非重合而选择。 此外,分析存储在第一存储器中的图案形状以指定存在短路或半短路缺陷的位置。
    • 4. 发明授权
    • Sterling refrigerating system and cooling device
    • Sterling冷冻系统和冷却装置
    • US06779349B2
    • 2004-08-24
    • US10362187
    • 2003-02-21
    • Kazushi Yoshimura
    • Kazushi Yoshimura
    • F25B900
    • F25B9/14F25B2309/001F25B2500/01F25D11/00
    • A ring-shaped jacket is fitted around the warm section of a Stirling refrigerating device, and a cylindrical heat-rejecting heat exchanger is disposed around the body of the Stirling refrigerating device with a gap secured in between. The jacket and the heat-rejecting heat exchanger are connected together with a pipe to form a closed circuit, and a refrigerant is circulated through the closed circuit. This allows the heat in the warm section to be transferred by the refrigerant, permitting efficient heat rejection from the heat-rejecting heat exchanger. Thus, the desired cold is obtained stably from the cold section of the Stirling refrigerating device.
    • 在斯特林制冷装置的温暖部分周围装有一个环形护套,圆柱形散热热交换器设置在斯特林制冷装置的主体周围,间隙固定在其间。 夹套和排热热交换器与管连接在一起形成闭路,制冷剂循环通过闭路。 这允许温暖部分中的热量被制冷剂转移,从而允许来自排热热交换器的高效散热。 因此,从斯特林制冷装置的冷部稳定地获得所需的冷却。