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    • 21. 发明申请
    • X-RAY IMAGING APPARATUS
    • X射线成像装置
    • US20120039441A1
    • 2012-02-16
    • US13262029
    • 2010-04-22
    • Hidetomo SuwaMasaaki KobayashiTetsuo Watanabe
    • Hidetomo SuwaMasaaki KobayashiTetsuo Watanabe
    • G01N23/04
    • A61B6/00A61B6/4233G03B42/04
    • An X-ray imaging apparatus includes an X-ray irradiation unit which irradiates X-rays, a detection unit which detects the X-rays transmitted through an object, and a housing which contains the detection unit. The housing includes a first housing in which an X-ray transmission member which transmits the X-rays is placed in an incident range of the X-rays irradiated from the X-ray irradiation unit; a second housing which supports the detection unit while being spaced apart from the X-ray transmission member on an opposite side to an incident side on which the X-rays strike the X-ray transmission member; and a plurality of connecting members which connect the first housing to the second housing.
    • X射线成像装置包括:X射线照射单元,其照射X射线;检测单元,其检测透过物体的X射线;以及壳体,其容纳检测单元。 壳体包括:第一壳体,其中透射X射线的X射线透射构件被放置在从X射线照射单元照射的X射线的入射范围内; 第二壳体,其与所述X射线透射构件所在的入射侧相反的一侧与所述X射线透射构件间隔开地支撑所述检测单元; 以及将第一壳体连接到第二壳体的多个连接构件。
    • 22. 发明申请
    • METHOD OF DETECTING TARGET SUBSTANCE
    • 检测目标物质的方法
    • US20120003666A1
    • 2012-01-05
    • US12744047
    • 2008-12-10
    • Masaaki Kobayashi
    • Masaaki Kobayashi
    • G01N33/82G01N21/55G01N21/59G01N33/53
    • G01N21/27G01N21/45G01N21/554G01N33/543G01N33/54306G01N33/74
    • Provided is a method of measuring a being state of a target substance at unknown concentration contained in a sample. The method includes identifying a kind of a target substance when one kind of target substance is contained in a sample and determining a concentration ratio when plural kinds of target substances are contained in the sample: by obtaining, with respect to each of plural kinds of known substances having the same recognition site, a relationship between Parameter A of the known substance and Parameter B of the known substance; and measuring Parameter A of the target substance contained in the sample and Parameter B of the target substance contained in the sample, wherein Parameter A of X is a value derived from a number of molecules of X and Parameter B of X is a value derived from the number and a molecular weight of X.
    • 提供了测量样品中包含的未知浓度的目标物质的状态的方法。 该方法包括当样品中包含一种目标物质时确定目标物质的种类,并且在样品中含有多种目标物质时确定浓度比:通过获得关于多种已知的多种目标物质 具有相同识别位点的物质,已知物质的参数A与已知物质的参数B之间的关系; 测定样品中包含的目标物质的参数A和样品中所含的目标物质的参数B,其中X的参数A是从X的分子数和X的参数B得出的值,是从 X的数量和分子量
    • 28. 发明申请
    • Storage system and data management method
    • 存储系统和数据管理方法
    • US20080294858A1
    • 2008-11-27
    • US12007331
    • 2008-01-09
    • Kosuke SakaiKoji NagataMasaaki Kobayashi
    • Kosuke SakaiKoji NagataMasaaki Kobayashi
    • G06F12/00
    • G06F3/0632G06F3/0605G06F3/067G06F11/2069G06F11/2071G06F2206/1008
    • Provided are a storage system and a data management method capable of simplifying the operation of pair configuration by storing information concerning the pair configuration as pair definition information in a storage apparatus. This storage system includes one or more storage controllers for storing data sent from a host system, and a management terminal for managing the input and output of data stored in the one or more storage controllers. In this storage system, the one or more storage controllers include a storage unit for forming two or more logical volumes to be pair-configured in a storage area of a plurality of hard disk drives, and storing as pair definition information the status of not executing initial copy of data to be stored in a pair-configured copy source logical volume to a copy destination logical volume based on a command from the management terminal.
    • 提供一种存储系统和数据管理方法,其能够通过将关于配对配置的信息作为对定义信息存储在存储装置中来简化配对配置的操作。 该存储系统包括用于存储从主机系统发送的数据的一个或多个存储控制器和用于管理存储在一个或多个存储控制器中的数据的输入和输出的管理终端。 在该存储系统中,一个以上的存储控制器包括用于形成要配置在多个硬盘驱动器的存储区域中的两个或多个逻辑卷的存储单元,并且将对定义信息存储为不执行的状态 基于来自管理终端的命令,要存储在配对的复制源逻辑卷中的数据的初始副本到复制目的地逻辑卷。
    • 30. 发明授权
    • Solid electrolytic capacitor and a method for manufacturing a solid electrolytic capacitor
    • 固体电解电容器及固体电解电容器的制造方法
    • US07342771B2
    • 2008-03-11
    • US10518687
    • 2003-06-18
    • Masaaki KobayashiMasaaki Togashi
    • Masaaki KobayashiMasaaki Togashi
    • H01G9/00
    • H01G9/012H01G2/065H01G9/14Y10T29/41Y10T29/417
    • A solid electrolytic capacitor is provided, which can reduce impedance, particularly, the ESL and the ESR. In one embodiment, such a solid electrolytic capacitor comprises a foil-like valve metal substrate formed with an insulating oxide film on the surface thereof, a valve metal body whose one end portion region is bonded to one of two opposite end portion regions of the foil-like valve metal substrate, a conductive metal substrate whose one end portion region is bonded to the other end portion region of the foil-like valve metal substrate, a cathode electrode formed by sequentially laminating at least a solid high molecular polymer electrolyte layer and a conductive layer on the surface of the foil-like valve metal substrate, and a cathode lead electrode being drawn out from the cathode electrode in a direction perpendicular to one major surface of the foil-like valve metal substrate.
    • 提供了一种固体电解电容器,可以减少阻抗,特别是ESL和ESR。 在一个实施例中,这种固体电解电容器包括在其表面上形成有绝缘氧化膜的箔状阀金属基板,其一个端部区域结合到箔片的两个相对端部区域中的一个的阀金属体 一个端部区域与箔状阀金属基板的另一个端部区域接合的导电金属基板,通过依次层叠至少固体高分子聚合物电解质层和 在箔状阀金属基板的表面上形成导电层,阴极引线电极从垂直于箔状阀金属基板的一个主表面的方向从阴极引出。