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    • 11. 发明授权
    • Tubular flame burner and method for controlling combustion
    • 管式火焰燃烧器及燃烧控制方法
    • US07654819B2
    • 2010-02-02
    • US10514668
    • 2003-08-07
    • Kuniaki OkadaMunehiro IshiokaHitoshi OishiTatsuya ShimadaKoichi TakashiYutaka SuzukawaYoshiki FujiiTakamitsu Kusada
    • Kuniaki OkadaMunehiro IshiokaHitoshi OishiTatsuya ShimadaKoichi TakashiYutaka SuzukawaYoshiki FujiiTakamitsu Kusada
    • F23D17/00F23D14/02F23C3/00
    • F23C5/32F23C3/002F23C3/006F23N1/022
    • A tubular flame burner, a combustion method, and combustion controller, are disclosed. Here, the tubular flame burner comprises: a tubular combustion chamber whose h one end is open; fuel-spraying nozzles and oxygen-containing-gas spraying nozzles. The respective nozzle orifices are formed in the inner face of the combustion chamber so that each spraying direction is in a neighborhood of a tangential direction of the inner circumferential wall of the combustion chamber. And an ignition device is disposed at a position r/2 from the tube axis of the combustion chamber (r: the radius of the combustion chamber). The length of the combustion chamber can be adjusted, the tubular flame burner is a multi-stage burner formed of multiple tubular flame burners, and a gap between the inner tube and the outer tube serves as a gas-flow path. A combustion control method for the tubular flame burner is disclosed, wherein on/off of switching valves is controlled so that the spraying speed from each nozzle is maintained in a predetermined range corresponding to the combustion load.
    • 公开了一种管状火焰燃烧器,燃烧方法和燃烧控制器。 这里,管状火焰燃烧器包括:一端敞开的管状燃烧室; 燃料喷射喷嘴和含氧气体喷嘴。 相应的喷嘴孔形成在燃烧室的内表面中,使得每个喷射方向在燃烧室的内周壁的切线方向附近。 并且点火装置设置在从燃烧室的管轴(r:燃烧室的半径)的r / 2的位置。 可以调节燃烧室的长度,管状火焰燃烧器是由多个管状火焰燃烧器形成的多级燃烧器,内管和外管之间的间隙用作气体流路。 公开了一种用于管状火焰燃烧器的燃烧控制方法,其中控制切换阀的开/关使得来自每个喷嘴的喷射速度保持在对应于燃烧负荷的预定范围内。
    • 15. 发明授权
    • Surface state inspecting method and substrate inspecting apparatus
    • 表面状态检查方法和基板检查装置
    • US06947151B2
    • 2005-09-20
    • US10338020
    • 2003-01-08
    • Yoshiki FujiiKiyoshi Murakami
    • Yoshiki FujiiKiyoshi Murakami
    • G01B11/24G01J3/08G01J3/46G01N21/88G01N21/956
    • G01N21/8806G01N21/95684
    • In a substrate inspecting apparatus comprising a projecting section (4) in which light sources (8), (9) and (10) are provided for emitting colored lights of R, G and B in directions having different elevation angles, one or two color components which is/are greater than the mean value of the intensities of color components is/are extracted for an inspecting region including a soldered portion. Inclined surfaces adapted to the light sources (8), (9) and (10) are converted into monochromatic shaded images by the extraction processing. A boundary position between the inclined surfaces adapted to the light sources (8) and (9) are converted into one shaded image having a mixed color of red and green and the boundary position between the inclined surfaces adapted to the light sources (9) and (10) is converted into a different shaded image.
    • 在包括其中设置有光源(8),(9)和(10)的投影部分(4)的基板检查装置中,用于沿着具有不同仰角的方向发射R,G和B的彩色光,一个或两个颜色 对于包括焊接部分的检查区域,提取/大于颜色分量的强度的平均值的分量。 适于光源(8),(9)和(10)的倾斜表面通过提取处理被转换为单色阴影图像。 适合于光源(8)和(9)的倾斜表面之间的边界位置被转换为具有红色和绿色混合颜色的一个阴影图像,以及适合于光源(9)和 (10)被转换成不同的阴影图像。
    • 18. 发明授权
    • Mounting-error inspecting method and substrate inspecting apparatus using the method
    • 使用该方法的安装误差检测方法和基板检查装置
    • US07356176B2
    • 2008-04-08
    • US10786605
    • 2004-02-26
    • Yoshiki FujiiHiroshi Yamazaki
    • Yoshiki FujiiHiroshi Yamazaki
    • G06K9/00
    • G01N21/8851H01L21/67253H01L21/67294H05K13/08
    • When a component is replaced or replenished in a predetermined feeder, mounters 3A and 3B refer to mount data in accordance with the feeder number for the feeder and read out the mounting position of the replaced or replenished component. The mounting position data is transmitted to a substrate inspecting apparatus 5 together with the substrate identification code of a substrate first processed after reel replacement. When the substrate corresponding to the substrate identification code is supplied, the substrate inspecting apparatus 5 refers to substrate inspection data in accordance with the mounting position data, specifies a component to be inspected, and executes the mounting error inspection according to character-string recognition for the specified component. When a mounting error is detected in this inspection, the substrate inspecting apparatus 5 transmits no-good determination to the mounters 3A and 3B receiving information.
    • 当在预定的进料器中更换或补充组件时,安装器3 A和3 B根据进料器的进料器编号来指定安装数据,并读出更换或补充的部件的安装位置。 安装位置数据连同在卷轴更换之后首先处理的基板的基板识别码一起传送到基板检查装置5。 当提供与基板识别码相对应的基板时,基板检查装置5根据安装位置数据参考基板检查数据,指定要检查的部件,并且根据字符串识别执行安装错误检查 指定的组件。 当在该检查中检测到安装错误时,基板检查装置5向接收器3A和3B接收信息发送不良判定。
    • 19. 发明申请
    • Substrate inspection system
    • 基板检查系统
    • US20070058853A1
    • 2007-03-15
    • US11517651
    • 2006-09-08
    • Taku MinakataYoshiki Fujii
    • Taku MinakataYoshiki Fujii
    • G06K9/00
    • G06T7/0004G06T2207/30141
    • A substrate inspection system is formed with an inspection device associated with a reflow process at the end of a series of production processes for substrates, image collectors each associated with a different one of the production processes upstream to the reflow process and an image display device for receiving images from the inspection device and the image collector and displaying the received images. The inspection device inspects a specified number of substrates to obtain measured values and calculates an margin for each component with respect to a specified reference value and transmits to the image collectors and the image display device the component code of the component with a small margin value. The image collectors save the image corresponding to the component code from the inspection device. The image display device receives images of the component corresponding to the component code from the inspection device and the image collectors and display images of the same component and the same substrate at each process.
    • 基板检查系统在基板的一系列生产过程结束时形成有与回流工艺相关联的检查装置,每个与回流处理上游的不同的生产工艺相关联的图像收集器和图像显示装置, 从检查装置和图像采集器接收图像并显示所接收的图像。 检查装置检查指定数量的基板以获得测量值,并且针对指定的参考值计算每个部件的余量,并向图像收集器和图像显示装置发送具有小裕度值的部件的部件代码。 图像采集器从检查装置保存与分量代码对应的图像。 图像显示装置在每个处理中从检查装置和图像收集器接收对应于分量代码的分量的图像并显示相同分量和相同基底的图像。