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    • 3. 发明申请
    • FILE STORAGE SYSTEM AND FILE CLONING METHOD
    • 文件存储系统和文件克隆方法
    • WO2013160942A2
    • 2013-10-31
    • PCT/JP2012/002831
    • 2012-04-25
    • HITACHI, LTD.FUKATANI, TakayukiKAMEI, HitoshiMATSUZAWA, KeiichiIWASAKI, Masaaki
    • FUKATANI, TakayukiKAMEI, HitoshiMATSUZAWA, KeiichiIWASAKI, Masaaki
    • G06F17/30
    • G06F17/30212
    • The present invention enables creation of a clone file of a parent file stored in a different volume or a different storage system, and enables migration of a parent file and a clone file among volumes and storage systems. A file storage performs control to create a virtual parent file having an identifier capable of uniquely identifying a parent file among storage systems and volumes, and to acquire block layout information of the parent file using said identifier. The file storage creates a virtual parent file in the volume in which the clone file is created, and sets the file as a virtual parent file of the clone file so as to enable creation of a clone file of a parent file that exists in a different volume or a different storage system. Moreover, by combining creating the virtual parent file and switching the identifier of the parent file which is pointed by the virtual parent file, migration of clone files and parent files astride storage systems and volumes is enabled.
    • 本发明能够创建存储在不同卷或不同存储系统中的父文件的克隆文件,并且使得能够在卷和存储系统之间迁移父文件和克隆文件。 文件存储器执行控制以创建具有能够在存储系统和卷之间唯一地标识父文件的标识符的虚拟父文件,并使用所述标识符获取父文件的块布局信息。 文件存储在创建克隆文件的卷中创建虚拟父文件,并将该文件设置为克隆文件的虚拟父文件,以便能够创建存在于不同的父文件中的父文件的克隆文件 卷或不同的存储系统。 此外,通过组合创建虚拟父文件并切换虚拟父文件指向的父文件的标识符,启用跨越存储系统和卷的克隆文件和父文件的迁移。
    • 6. 发明申请
    • LIGHT-EMITTING DIODE DEVICE AND PRODUCTION METHOD THEREOF
    • 发光二极管器件及其制造方法
    • WO2004070851A1
    • 2004-08-19
    • PCT/JP2004/001338
    • 2004-02-09
    • SHOWA DENKO K.K.TAKEUCHI, RyouichiMATSUZAWA, KeiichiYAMAZAKI, Junichi
    • TAKEUCHI, RyouichiMATSUZAWA, KeiichiYAMAZAKI, Junichi
    • H01L33/00
    • H01L33/30H01L33/02H01L33/14H01L33/38H01L2933/0016
    • A double hetero structure light-emitting diode device includes an active layer (6), a positive-electrode-side cladding layer, a negative-electrode-side cladding layer (4), a window layer (9) and an undoped AlInP layer. The positive-electrode-side cladding layer includes an undoped AlInP layer (7) grown to have a thickness of 0.5 dam and an intermediate layer (8) doped to assume p-type conductivity and having an intermediate energy band gap value between that of the undoped AlInP layer and that of the window layer. The window layer on the intermediate layer is a GaP layer grown at 730 ° C or higher and at a growth rate of 7.8 pm/hour or more in the presence of Ze serving as a dopant. The negative-electrode-side cladding layer is provided with an undoped A1InP layer (5) having a thickness of 0.lpm or more. With this configuration, there is provided a light-emitting diode device that enhances the crystallinity of a window layer, prevents generation of faults caused by a high-temperature process and attains high luminance at a wavelength falling within a yellow-green band.
    • 双异质结构发光二极管装置包括有源层(6),正电极侧覆层,负电极侧覆层(4),窗口层(9)和未掺杂的AlInP层。 正电极侧包覆层包括生长为厚度为0.5μm的未掺杂的AlInP层(7)和被掺杂为具有p型导电性的中间层(8),并且具有中间能带隙值 未掺杂的AlInP层和窗口层的。 中间层上的窗口层是在作为掺杂剂的Ze的存在下,在730℃以上生长并以7.8μm/小时以上的生长速度生长的GaP层。 负极侧包层设置有厚度为0.1μm以上的未掺杂的AlInP层(5)。 采用这种结构,提供了一种提高窗口层的结晶度的发光二极管装置,防止由高温处理引起的故障的产生,并且在落在黄绿色带中的波长下获得高亮度。
    • 7. 发明申请
    • DISTRIBUTION PROCESSING UNIT OF SHARED STORAGE
    • 分销处理单位共享存储
    • WO2014061065A1
    • 2014-04-24
    • PCT/JP2012/006690
    • 2012-10-18
    • HITACHI, LTD.
    • MATSUZAWA, KeiichiYAMAMOTO, Akira
    • G06F3/06
    • G06F3/067G06F3/0607G06F3/0631G06F15/167G06F17/30203
    • When processing data via multiple computers, the number of computers can be increased or decreased without actually moving the data assigned to the respective computers, and the data can be arranged and processed so as to enhance the performance of the system in response to the increase of the number of computers. A plurality of computers for performing data processing stores target data to be processed in a shared storage system, and when data processing is to performed, the shared storage divides the storage area storing data corresponding to the number of computers, and creates virtual data storage areas referring to a portion of the storage area for each computer, so as to enable each computer to refer to independent virtual data storage areas and to complete data processing.
    • 当通过多台计算机处理数据时,可以增加或减少计算机的数量,而不会实际移动分配给各个计算机的数据,并且可以对数据进行排列和处理,以便响应于增加系统的性能而增强系统的性能 电脑数量。 用于执行数据处理的多个计算机存储在共享存储系统中要处理的目标数据,并且当执行数据处理时,共享存储器分割存储对应于计算机数量的数据的存储区域,并且创建虚拟数据存储区域 参考每个计算机的存储区域的一部分,以使每个计算机能够引用独立的虚拟数据存储区域并完成数据处理。