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    • 13. 发明申请
    • IMAGE PICKUP LENS UNIT AND MANUFACTURING METHOD THEREOF
    • 图像拾取镜头单元及其制造方法
    • US20140016215A1
    • 2014-01-16
    • US14007184
    • 2012-03-27
    • Dai AkutsuHajime MoriTakemi Miyazaki
    • Dai AkutsuHajime MoriTakemi Miyazaki
    • G02B7/02B29D11/00
    • G02B7/02B29D11/0074G02B7/006G02B7/021G02B7/022
    • A small, high-performance image pickup lens unit having an IR cut filter that can be incorporated reliably therein while avoiding an increase in processing complexity. A sealing portion 14 is disposed between a lens 11 and an IR cut filter 12 in order to seal an internal space IS sandwiched between the lens 11 and the IR cut filter 12, and therefore a holder 40 can be molded integrally with the lens 11 and the IR cut filter 12 incorporated therein while preventing liquid resin MP from flowing in between the lens 11 and the IR cut filter 12. By molding the holder 40 integrally with the lens 11 and the IR cut filter 12 incorporated therein in this manner, an image pickup lens unit 100 can be reduced in size, and reductions in the number of components and the number of assembly man-hours can be achieved.
    • 一种小型,高性能的摄像镜头单元,其具有可以可靠地结合在其中的IR截止滤波器,同时避免了处理复杂性的增加。 密封部分14设置在透镜11和IR截止滤光器12之间,以密封夹在透镜11和IR截止滤光片12之间的内部空间IS,因此保持器40可与透镜11一体地模制, 其中并入红外截止滤光片12,同时防止液晶树脂MP在透镜11和红外截止滤光片12之间流动。通过以这种方式将保持器40与透镜11和其中并入的红外截止滤光器12一体模制, 拾取镜头单元100的尺寸可以减小,并且可以实现部件数量的减少和组装工时的数量。
    • 16. 发明申请
    • Storage control device, and control method for storage control device
    • 存储控制装置及存储控制装置的控制方法
    • US20070233944A1
    • 2007-10-04
    • US11448950
    • 2006-06-06
    • Hajime MoriAkira Nishimoto
    • Hajime MoriAkira Nishimoto
    • G06F12/00
    • G06F3/0661G06F3/0608G06F3/064G06F3/0689G06F11/1076G06F12/0866G06F12/0886G06F2211/1007G06F2212/262G06F2212/401
    • The storage control device of the present invention is able to perform input and output of data between blocks whose size is different with good efficiency. The size of extended logical blocks, which are units of data input and output within a storage control device, and the size of physical blocks, which are provided within the storage device, are different from one another. A write object range generation unit reads out both of the extended logical blocks which are adjacent to the write data, and creates a write object range by linking them to the write data. An assurance code checking unit checks a corresponding assurance code for each of these extended logical blocks. And a block size adjustment unit deletes superfluous data from the adjacent blocks, and adjusts the size of the write object range, so that it becomes an integral multiple of the size of the physical blocks.
    • 本发明的存储控制装置能够以高效率在大小不同的块之间进行数据的输入输出。 作为存储控制装置内的数据输入和输出的单位的扩展逻辑块的大小以及在存储装置内提供的物理块的大小彼此不同。 写对象范围生成单元读出与写入数据相邻的两个扩展逻辑块,并通过将写入对象范围与写入数据相连接来创建写入对象范围。 保证代码检查单元检查每个这些扩展逻辑块的相应保证代码。 并且块大小调整单元从相邻块中删除多余的数据,并调整写入对象范围的大小,使其成为物理块大小的整数倍。
    • 17. 发明申请
    • Method of controlling storage system
    • 控制存储系统的方法
    • US20060287961A1
    • 2006-12-21
    • US11216169
    • 2005-09-01
    • Hajime MoriNobuhiro MakiYukinori SakashitaMasahide Sato
    • Hajime MoriNobuhiro MakiYukinori SakashitaMasahide Sato
    • G06Q99/00
    • G06F21/10
    • Provided is a computer system including: a plurality of storage systems interconnected via a network, each storage system including a logical volume that stores data; and a management computer that is connected to the storage systems via the network and includes a port connected to the network and a processor connected to the port, wherein: a logical volume of a transfer source in a storage system of the data transfer source and a logical volume of a transfer destination in a storage system of the data transfer destination are decided; it is determined whether it is necessary or not to migrate a license of a program used for the logical volume of the transfer source from one of the plurality of storage systems to the storage system of the transfer destination; and when it is determined necessary to migrate the license, license information regarding the license to the storage system of the transfer destination is migrated. Accordingly, costs of purchasing licenses necessary during data migration or the like are reduced.
    • 提供一种计算机系统,包括:通过网络互连的多个存储系统,每个存储系统包括存储数据的逻辑卷; 以及管理计算机,其经由所述网络连接到所述存储系统,并且包括连接到所述网络的端口和连接到所述端口的处理器,其中:所述数据传输源的存储系统中的传输源的逻辑卷和 决定数据传送目的地的存储系统中的传送目的地的逻辑卷; 确定是否需要将用于传送源的逻辑卷的程序的许可证从多个存储系统之一迁移到传送目的地的存储系统; 并且当确定需要迁移许可证时,迁移有关许可证的许可证信息到转移目的地的存储系统。 因此,减少在数据迁移等期间所需的购买许可证的成本。
    • 19. 发明授权
    • Jet pump beam and method for producing the same
    • 喷射泵梁及其制造方法
    • US08879683B2
    • 2014-11-04
    • US13139835
    • 2009-12-01
    • Yoshinori KatayamaMotoji TsubotaYuuji SaitoHajime MoriNorihiko Tanaka
    • Yoshinori KatayamaMotoji TsubotaYuuji SaitoHajime MoriNorihiko Tanaka
    • G21C19/00C22C19/05C22F1/10G21C15/25
    • G21C15/25C22C19/055C22C19/056C22F1/10Y02E30/40
    • A jet pump beam is made of improved heat-treated precipitation-hardened nickel base alloy excellent in anti-stress corrosion cracking properties and high-temperature strength, and having high ductility and a high elastic modulus. A jet pump beam 27 made of improved heat-treated nickel base alloy is produced by preparing a precipitation-strengthened nickel base alloy material having a component composition containing by mass %, Ni: 50.0% to 55.0%, Cr: 17.0% to 21.0%, Nb+Ta: 4.75% to 5.50%, Mo: 2.8% to 3.3%, Ti: 0.65% to 1.15%, Al: 0.2% to 0.8%, C: 0.08% or less, Mn: 0.35% or less, Si: 0.35% or less, S: 0.015% or less, P: 0.03% or less, Cu: 0.30% or less, B: 0.006% or less, and Co: 1.0% or less, and Fe and inevitable impurities constituting a remaining part, subjecting the nickel base alloy material to solution heat treatment at a temperature of 1010° C. to 1090° C., and subjecting the nickel base alloy material to age-hardening heat treatment at a temperature of 694° C. to 714° C. for 5 to 7 hours after the solution heat treatment.
    • 喷射泵梁由改进的经热处理的沉淀硬化镍基合金制成,具有优异的抗应力腐蚀开裂性能和高温强度,并且具有高延展性和高弹性模量。 通过制备具有以质量%计含量的组分组成的沉淀强化镍基合金材料制备由改进的热处理镍基合金制成的喷射泵梁27,Ni:50.0%至55.0%,Cr:17.0%至21.0% ,Nb + Ta:4.75〜5.50%,Mo:2.8〜3.3%,Ti:0.65%〜1.15%,Al:0.2〜0.8%,C:0.08%以下,Mn:0.35% :0.35%以下,S:0.015%以下,P:0.03%以下,Cu:0.30%以下,B:0.006%以下,Co:1.0%以下,Fe和不可避免的杂质构成残留 将镍基合金材料在1010℃至1090℃的温度下进行固溶热处理,并将镍基合金材料在694℃至714℃的温度下进行老化硬化热处理 C.溶解热处理后5〜7小时。