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    • 1. 发明申请
    • MOUNTING DEVICE, PLASMA PROCESSING APPARATUS AND PLASMA PROCESSING METHOD
    • 安装装置,等离子体处理装置和等离子体处理方法
    • US20080106842A1
    • 2008-05-08
    • US11934313
    • 2007-11-02
    • Hiroharu ITOKenichi KatoTakehiro Ueda
    • Hiroharu ITOKenichi KatoTakehiro Ueda
    • H01L21/683B44C1/22C23C16/00H01L21/306
    • H01L21/6831H01L21/67028H01L21/68757
    • A mounting device includes a mounting body for sustaining a target object to be processed thereon; an electrostatic chuck disposed on the mounting body and having an electrode layer interposed between insulating layers, and the electrostatic chuck serving to electrostatically attract and hold the target object on a surface of the insulating layer by a electrostatic force generated between the electrode layer and the target object by a voltage applied to the electrode layer. Herein, an electrostatic chuck layer, which is one of the insulating layers on the side of a top surface of the electrode layer, is made of a plasma spray coating of yttrium oxide, which is formed by a plasma spraying, having a thickness of about 200 μm to 280 μm, and the electrostatic chuck layer has a surface roughness dependent on a particle diameter of the yttrium oxide used in the plasma spraying.
    • 安装装置包括用于维持要处理的目标物体的安装体; 设置在所述安装体上并具有介于绝缘层之间的电极层的静电吸盘,并且所述静电吸盘用于通过在所述电极层和所述靶材之间产生的静电力将所述目标物体静电吸引并保持在所述绝缘层的表面上 通过施加到电极层的电压来对象。 这里,作为电极层顶面一侧的绝缘层之一的静电吸盘层由等离子体喷涂等离子体喷涂法制成,其通过等离子喷涂形成,其厚度为约 200μm至280μm,并且静电吸盘层具有取决于等离子体喷涂中使用的氧化钇的粒径的表面粗糙度。
    • 3. 发明授权
    • Electrical device and smoke detector
    • 电气设备和烟雾探测器
    • US08225656B2
    • 2012-07-24
    • US12382389
    • 2009-03-16
    • Kenichi KatoHiroyuki Yokota
    • Kenichi KatoHiroyuki Yokota
    • G01D11/24
    • G08B17/10G08B17/113H05K5/0221
    • An electrical device that is free from trouble in opening/closing of the cover even if the housing is distorted. The electric device includes: a case (3) having a substantially box shape and an opened end surface (3a); a cover (5) including a lid surface (5a) for covering the end surface of the case, a hinge (4) arranged between the case and the cover, for opening/closing the case and the cover; and an engagement section (12) for holding a closed state of the case and the cover. The engagement section includes: an engaged portion (7) arranged in the case and including a shaft member (9) having a shaft portion substantially orthogonal to an inner surface of the case, and a bearing member (11) for fixing the shaft member with a distal end (9a) thereof projecting from a guide hole end surface (10a) of a shaft member pushing portion (10); and an engaging portion (19) including a coupling component (20) provided with an attachment piece (23) attached to the cover (5), and a substantially horseshoe shaped portion (27) defining an elongated cutout (25) and connected to an end of the attachment piece.
    • 即使外壳发生扭曲,也不会有打开/关闭盖子的麻烦的电气设备。 电气装置包括:具有大致盒形的壳体(3)和敞开的端面(3a); 包括用于覆盖壳体的端面的盖表面(5a)的盖(5),布置在壳体和盖之间的用于打开/关闭壳体和盖的铰链(4) 以及用于保持壳体和盖子的闭合状态的接合部分(12)。 接合部包括:布置在壳体中并包括具有基本上正交于壳体的内表面的轴部的轴构件(9)的被接合部(7)和用于将轴构件固定的轴承构件 其远端(9a)从轴构件推动部(10)的引导孔端面(10a)突出; 以及包括联接部件(20)的接合部分(19),所述连接部件(20)设置有附接到所述盖子(5)的附接件(23),以及大致马蹄形部分(27),限定了细长切口(25) 附件的末端。
    • 4. 发明申请
    • Image reading device and image reading method
    • 图像读取装置和图像读取方法
    • US20060176527A1
    • 2006-08-10
    • US11338776
    • 2006-01-25
    • Kenichi KatoHiroshi Kurono
    • Kenichi KatoHiroshi Kurono
    • H04N1/46
    • H04N1/04G03B1/32G03B1/40G03B1/48G03B1/60H04N2201/0408H04N2201/0416
    • In an image reading system, a photographic film is conveyed, an image frame is conveyed to a reading position, pre-scanned and fine scanned. An image obtained by pre-scanning is displayed on a display section. The film is conveyed after the inspection processing ends. Further, by using data output from six image surface detecting sensors disposed along a transverse direction of the film, inter-frame region candidates (edge candidates) are detected within an inspection range per frame. A region surmised to be between frames is detected from film light amounts input from the sensors. Edge slopes, the edges' density differences, are computed as evaluation values for detecting an edge to be used as a reference from among the candidates, and are compared. An edge having a largest density difference is extracted. With the extracted edge as a reference, an image frame position is determined while considering an image frame size.
    • 在图像读取系统中,传送照相胶片,将图像帧传送到读取位置,预扫描和精细扫描。 通过预扫描获得的图像显示在显示部分上。 检查处理结束后传送胶卷。 此外,通过使用沿着胶片的横向设置的六个图像表面检测传感器输出的数据,在每帧的检查范围内检测帧间区域候选(边缘候选)。 从传感器输入的胶片光量检测被推测为帧之间的区域。 计算边缘的密度差,作为用于检测候选中用作参考的边缘的评估值,并进行比较。 提取具有最大密度差的边缘。 利用提取的边缘作为参考,在考虑图像帧大小的同时确定图像帧位置。