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    • 42. 发明申请
    • Power Converter Apparatus
    • 电力转换装置
    • US20090237904A1
    • 2009-09-24
    • US12397151
    • 2009-03-03
    • Hiroyuki OnishiToshiaki NagaseJun IshikawaKazuyoshi KontaniToshinari FukatsuHiroyuki KobayashiNaohito KanieTakahiro Nakamura
    • Hiroyuki OnishiToshiaki NagaseJun IshikawaKazuyoshi KontaniToshinari FukatsuHiroyuki KobayashiNaohito KanieTakahiro Nakamura
    • H05K1/18
    • H02M7/003H01L2224/48095H01L2224/48227
    • A power converter apparatus includes a substrate 22 on which switching elements Q, Q1 to Q6 are mounted, positive and negative terminal interconnection members 27, 28 mounted on the substrate, and a capacitor 17 having a positive terminal 17a connected to the main body of the positive terminal interconnection member 27 and a negative terminal 17b connected to the main body of the negative terminal interconnection member 28. The interconnection members each have a plate-like main body 27a, 28a that is located above and parallel to the substrate 22. The main bodies of the interconnection members are stacked to be close to each other while being electrically insulated from each other. Each of the positive terminal interconnection member and the negative terminal interconnection member further includes a plate-like extension 27b, 28b that extends from the corresponding main body toward the substrate, and a terminal portion 27c, 28c that extends from the extension and is joined to the substrate. The extensions extend to positions closest to the substrate, while being parallel to and close to each other.
    • 电力转换装置包括:基板22,安装有开关元件Q,Q1〜Q6的基板22,安装在基板上的正极和负极连接部件27,28;电容器17,其具有连接到主体的正极端子17a 正端子互连构件27和连接到负端子互连构件28的主体的负极端子17b。互连构件各自具有位于基板22的上方并平行的板状主体27a,28a。主体 互连构件的主体在彼此电绝缘的同时堆叠成彼此靠近。 正极端子互连构件和负极端子互连构件中的每一个还包括从相应的主体朝向衬底延伸的板状延伸部27b,28b以及从延伸部延伸并连接到的端子部27c,28c 底物。 延伸部延伸到最靠近基板的位置,同时彼此平行并相互靠近。
    • 43. 发明申请
    • CHARGED PARTICLE BEAM DEVICE
    • 充电颗粒光束装置
    • US20090218507A1
    • 2009-09-03
    • US12389838
    • 2009-02-20
    • Akiko FujisawaHiroyuki KobayashiEiko Nakazawa
    • Akiko FujisawaHiroyuki KobayashiEiko Nakazawa
    • H01J3/14
    • H01J37/1471H01J37/26H01J2237/024H01J2237/065H01J2237/1501H01J2237/2802
    • The present invention provides a charged particle beam device which can effectively restrain misalignment of an optical axis even if a position of an anode is changed. The present invention is a charged particle beam device comprising a cathode provided with a charged particle source which emits a charged particle, an anode which applies an electric field to the emitted charged particle, a charged particle beam deflector which deflects an orbit of a charged particle beam having passed the anode, and a charged particle beam detector which detects the charged particle beam from a sample to which the charged particle is irradiated, wherein a distance changing mechanism which changes a distance between the cathode and the anode, corresponding to a charged particle amount emitted from the charged particle source and a deflection amount control mechanism which detects a condition of the deflector under which the charged particle dose detected from the sample scanned by deflecting the charged particle beam in the changed distance becomes a desired size and controls deflection of the deflector at sample measurement on the basis of the condition are provided.
    • 本发明提供一种带电粒子束装置,即使改变阳极的位置,也能够有效地抑制光轴的未对准。 本发明是一种带电粒子束装置,它包括一个阴极,该阴极设有带电粒子源,该粒子源发射一个带电粒子,一个向发射的带电粒子施加电场的阳极,一个带电粒子束偏转器,它使带电粒子的轨道偏转 通过阳极的光束和从被照射带电粒子的样品检测带电粒子束的带电粒子束检测器,其中改变对应于带电粒子的阴极和阳极之间的距离的距离改变机构 从所述带电粒子源发射的量;以及偏转量控制机构,其检测所述偏转器的状态,在所述偏转量条件下,通过使所述带电粒子束在变化的距离偏转而被扫描的样本中检测到的带电粒子剂量成为期望的尺寸, 提供了基于条件的样品测量的偏转器。
    • 45. 发明申请
    • SEMICONDUCTOR MEMORY AND TEST SYSTEM
    • 半导体存储器和测试系统
    • US20090027982A1
    • 2009-01-29
    • US12239052
    • 2008-09-26
    • Hiroyuki Kobayashi
    • Hiroyuki Kobayashi
    • G11C29/12
    • G11C29/44G11C11/401G11C29/026G11C29/1201G11C29/50G11C29/78
    • A cell array has a word line and a bit line coupled to memory cells, and a redundancy word line and a redundancy bit line coupled to redundancy memory cells. A read unit reads data held in the memory cell. A defect detection input unit receives a defect detection signal from a test apparatus. A dummy defect output unit outputs a dummy defect signal during a predetermined period of time after the defect detection input unit receives the defect detection signal. A data output unit inverts a logic of the read data output from the read unit during an activation of the dummy defect signal. Accordingly, an artificial defect can be generated by the semiconductor memory without changing the test apparatus or a test program. As a result of this, a relief efficiency can be enhanced and a test cost can be reduced.
    • 单元阵列具有耦合到存储器单元的字线和位线,以及耦合到冗余存储器单元的冗余字线和冗余位线。 读取单元读取存储单元中保存的数据。 缺陷检测输入单元从测试装置接收缺陷检测信号。 虚设缺陷输出单元在缺陷检测输入单元接收到缺陷检测信号之后的预定时间段期间输出虚拟缺陷信号。 在虚拟缺陷信号的激活期间,数据输出单元反转从读取单元输出的读取数据的逻辑。 因此,在不改变测试装置或测试程序的情况下,半导体存储器可以产生人为缺陷。 结果,可以提高救援效率,并且可以降低测试成本。
    • 49. 发明申请
    • HOLDING APPARATUS AND METHOD FOR MANUFACTURING HONEYCOMB STRUCTURE
    • 用于制造蜂窝结构的控制装置和方法
    • US20080088072A1
    • 2008-04-17
    • US11925374
    • 2007-10-26
    • Hiroyuki Kobayashi
    • Hiroyuki Kobayashi
    • B23Q3/00B28B1/00
    • B28B13/04B28B17/00B65G47/90Y10T29/49345Y10T29/49998
    • A holding apparatus includes a first holding unit including at least two supporting rollers rotatable around rotation shafts which extend substantially parallel with each other; a second holding unit including at least one supporting roller rotatable around a rotation shaft; and at least one holding mechanism having the first holding unit and the second holding unit. The rotation shafts of the supporting rollers of the first holding unit and the rotation shaft of the supporting roller of the second holding unit are substantially in parallel with each other. By moving at least one of the first holding unit and the second holding unit, an object to be held is held between the first holding unit and the second holding unit by using the supporting rollers.
    • 保持装置包括:第一保持单元,其包括至少两个支撑辊,所述至少两个支撑辊可围绕基本上彼此平行延伸的旋转轴旋转; 第二保持单元,包括可围绕旋转轴旋转的至少一个支撑辊; 以及具有第一保持单元和第二保持单元的至少一个保持机构。 第一保持单元的支撑辊和第二保持单元的支撑辊的旋转轴的旋转轴基本上彼此平行。 通过移动第一保持单元和第二保持单元中的至少一个,通过使用支撑辊将待保持的物体保持在第一保持单元和第二保持单元之间。