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    • 31. 发明申请
    • CONTINUOUS HEAT TREATMENT FURNACE
    • 连续热处理炉
    • US20100068669A1
    • 2010-03-18
    • US12560085
    • 2009-09-15
    • Takashi ISHIMOTOTakaya OchiaiKenji ShimizuMasato Ogawa
    • Takashi ISHIMOTOTakaya OchiaiKenji ShimizuMasato Ogawa
    • F27D15/02
    • C21D9/0062C21D9/0056F27B9/042F27B9/2407F27D15/02
    • The present invention provides a continuous heat treatment furnace including: a heating chamber heating a treatment object in an inert gas atmosphere; a front chamber provided at one end of the heating chamber; and a first cooling chamber cooling the treatment object in an inert gas atmosphere, a vacuum purge chamber, and a second cooling chamber cooling the treatment object in an oxidizing gas atmosphere, which are connected in this order to the other end of the heating chamber, in which the treatment object transferred from the front chamber to the heating chamber is subjected to the heating in the heating chamber, and then subjected to one cooling selected from the cooling in the inert gas atmosphere in the first cooling chamber and the cooling in the oxidizing gas atmosphere in the second cooling chamber depending on a type of the treatment object.
    • 本发明提供一种连续热处理炉,包括:在惰性气体气氛中加热处理对象的加热室; 设置在加热室的一端的前室; 以及在惰性气体气氛中冷却处理对象物的第一冷却室,真空净化室和在氧化气体气氛中将处理对象冷却的第二冷却室,其依次连接到加热室的另一端, 其中将从前室转移到加热室的处理对象在加热室中进行加热,然后进行从第一冷却室中的惰性气体气氛中的冷却中选择的一次冷却,并且在氧化 气体气氛在第二冷却室中取决于处理对象的类型。
    • 33. 发明授权
    • Storage device system and signal transmission method for storage device system
    • 存储设备系统和存储设备系统的信号传输方法
    • US07644199B2
    • 2010-01-05
    • US11603129
    • 2006-11-22
    • Hiromi MatsushigeHiroshi SuzukiMasato Ogawa
    • Hiromi MatsushigeHiroshi SuzukiMasato Ogawa
    • G06F3/00G06F13/12
    • G06F13/4072H04L25/03343
    • The storage device system comprises: a plurality of signal transmission paths connected respectively to a plurality of installed storage devices; a plurality of system side communications sections for transmitting and receiving signals respectively to and from the plurality of storage devices, via the plurality of signal transmission paths; and one or a plurality of signal correcting sections for inputting a signal exchanged between the plurality of storage devices and the plurality of system side communications sections, correcting the input signal on the basis of a previously established correction parameter, and outputting the corrected signal. The correction parameter is a value set on the basis of at least one of the length of the signal transmission path between the storage device and the system side communications section, the wavelength attribute of the signal input to the signal correcting section, and the storage device attribute relating to the storage device.
    • 存储装置系统包括:分别连接到多个安装的存储装置的多个信号传输路径; 多个系统侧通信部分,经由多个信号传输路径分别发送和接收来自多个存储设备的信号; 以及一个或多个信号校正部分,用于输入在多个存储装置和多个系统侧通信部分之间交换的信号,基于先前建立的校正参数校正输入信号,并输出校正的信号。 校正参数是基于存储装置和系统侧通信部之间的信号传输路径的长度,输入到信号校正部的信号的波长属性和存储装置中的至少一个设定的值 属性与存储设备有关。
    • 34. 发明申请
    • STORAGE CONTROL SYSTEM AND CONTROL METHOD FOR STORAGE CONTROL SYSTEM
    • 存储控制系统存储控制系统及其控制方法
    • US20080177906A1
    • 2008-07-24
    • US11968207
    • 2008-01-02
    • Hiroshi SUZUKIHiromi MatsushigeTetsuya InoueMasato OgawaTomokazu Yokoyama
    • Hiroshi SUZUKIHiromi MatsushigeTetsuya InoueMasato OgawaTomokazu Yokoyama
    • G06F3/00
    • G06F11/201G06F11/2005
    • A storage control system of the present invention can carry out settings for a storage device using redundantly configured access channels. A controller of the storage control system can access a storage device using a plurality of access channels of system A and system B. Respective I/F control units each comprise a plurality of normally open-type switches. The switches of system A and the switches of system B are respectively wired-OR connected. A disk control unit outputs a control signal to an I/F control unit on the basis of a setting table. When a failure occurs in an I/F control unit of system A, the output signals of the respective switches transfer to a high-impedance state. Therefore, a storage device can be set by outputting, from an I/F control unit of system B, a signal corresponding to a desired operational mode and identification information.
    • 本发明的存储控制系统可以使用冗余配置的访问信道来执行存储设备的设置。 存储控制系统的控制器可以使用系统A和系统B的多个存取通道访问存储设备。各个I / F控制单元各自包括多个常开型开关。 系统A的开关和系统B的开关分别与线或线连接。 盘控制单元根据设定表将控制信号输出到I / F控制单元。 当在系统A的I / F控制单元发生故障时,各开关的输出信号转移到高阻抗状态。 因此,可以通过从系统B的I / F控制单元输出与期望的操作模式和识别信息对应的信号来设置存储装置。
    • 35. 发明授权
    • Storage device system and signal transmission method for storage device system
    • 存储设备系统和存储设备系统的信号传输方法
    • US07353435B2
    • 2008-04-01
    • US10943916
    • 2004-09-20
    • Hiromi MatsushigeHiroshi SuzukiMasato Ogawa
    • Hiromi MatsushigeHiroshi SuzukiMasato Ogawa
    • G06K5/04G06F11/00G06F13/00G01V1/00
    • G06F13/4072H04L25/03343
    • The storage device system comprises: a plurality of signal transmission paths connected respectively to a plurality of installed storage devices; a plurality of system side communications sections for transmitting and receiving signals respectively to and from the plurality of storage devices, via the plurality of signal transmission paths; and one or a plurality of signal correcting sections for inputting a signal exchanged between the plurality of storage devices and the plurality of system side communications sections, correcting the input signal on the basis of a previously established correction parameter, and outputting the corrected signal. The correction parameter is a value set on the basis of at least one of the length of the signal transmission path between the storage device and the system side communications section, the wavelength attribute of the signal input to the signal correcting section, and the storage device attribute relating to the storage device.
    • 存储装置系统包括:分别连接到多个安装的存储装置的多个信号传输路径; 多个系统侧通信部分,经由多个信号传输路径分别发送和接收来自多个存储设备的信号; 以及一个或多个信号校正部分,用于输入在多个存储装置和多个系统侧通信部分之间交换的信号,基于先前建立的校正参数校正输入信号,并输出校正的信号。 校正参数是基于存储装置和系统侧通信部之间的信号传输路径的长度,输入到信号校正部的信号的波长属性和存储装置中的至少一个设定的值 属性与存储设备有关。
    • 37. 发明授权
    • Disk array apparatus and data relay method of the disk array apparatus
    • 磁盘阵列装置的磁盘阵列装置和数据中继方法
    • US07284073B2
    • 2007-10-16
    • US11353004
    • 2006-02-14
    • Hiromi MatsushigeHiroshi SuzukiMasato Ogawa
    • Hiromi MatsushigeHiroshi SuzukiMasato Ogawa
    • G06F3/00G06F12/00
    • G06F3/0661G06F3/0604G06F3/0607G06F3/0613G06F3/0658G06F3/0689G06F11/1076G06F13/4068
    • A disk array apparatus of the invention improves the quality of Fibre Channel signals corresponding to mounting positions of disk drives. The disk array apparatus comprises first to fourth groups of a plurality of disk drives each of which stores data; a first data relay device for connecting a first group of a plurality of data transfer paths wired in a direction orthogonally intersecting the row direction and to be connected to the first group of a plurality of disk drives through a first loop-like data transfer path; a second data relay device for connecting a second group of a plurality of data transfer paths wired in a direction orthogonally intersecting the row direction and to be connected to the second group of a plurality of disk drives through a second loop-like data transfer path; a third data relay device for connecting a third group of a plurality of data transfer paths wired in a direction orthogonally intersecting the row direction and to be connected to the third group of a plurality of disk drives through a third loop-like data transfer path; and a fourth data relay device for connecting a fourth group of a plurality of data transfer paths wired in a direction orthogonally intersecting the row direction and to be connected to the fourth group of a plurality of disk drives through a fourth loop-like data transfer path The first and third relay devices are interposed between the first and third groups of a plurality of disk drives. The second and fourth relay devices are interposed between the second and fourth groups of a plurality of disk drives.
    • 本发明的磁盘阵列装置提高了对应于磁盘驱动器的安装位置的光纤通道信号的质量。 磁盘阵列装置包括多个盘驱动器中的第一至第四组,每个盘驱动器存储数据; 第一数据中继装置,用于连接沿与行方向正交的方向布线的多个数据传输路径的第一组,并通过第一环状数据传送路径连接到多个磁盘驱动器的第一组; 第二数据中继装置,用于连接沿着与行方向正交的方向布线的多个数据传送路径的第二组,并通过第二环状数据传送路径连接到多个盘驱动器的第二组; 第三数据中继装置,用于连接沿与行方向正交的方向布线的多个数据传送路径的第三组,并通过第三环状数据传送路径连接到多个盘驱动器的第三组; 以及第四数据中继装置,用于连接沿与行方向正交的方向布线的多个数据传输路径的第四组,并通过第四环状数据传送路径连接到多个盘驱动器的第四组 第一和第三继电器装置插入在多个磁盘驱动器的第一组和第三组之间。 第二和第四中继装置插入在多个磁盘驱动器的第二组和第四组之间。
    • 39. 发明申请
    • Storage device system and signal transmission method for storage device system
    • 存储设备系统和存储设备系统的信号传输方法
    • US20070064132A1
    • 2007-03-22
    • US11603129
    • 2006-11-22
    • Hiromi MatsushigeHiroshi SuzukiMasato Ogawa
    • Hiromi MatsushigeHiroshi SuzukiMasato Ogawa
    • H04N5/335
    • G06F13/4072H04L25/03343
    • The storage device system comprises: a plurality of signal transmission paths connected respectively to a plurality of installed storage devices; a plurality of system side communications sections for transmitting and receiving signals respectively to and from the plurality of storage devices, via the plurality of signal transmission paths; and one or a plurality of signal correcting sections for inputting a signal exchanged between the plurality of storage devices and the plurality of system side communications sections, correcting the input signal on the basis of a previously established correction parameter, and outputting the corrected signal. The correction parameter is a value set on the basis of at least one of the length of the signal transmission path between the storage device and the system side communications section, the wavelength attribute of the signal input to the signal correcting section, and the storage device attribute relating to the storage device.
    • 存储装置系统包括:分别连接到多个安装的存储装置的多个信号传输路径; 多个系统侧通信部分,经由多个信号传输路径分别发送和接收来自多个存储设备的信号; 以及一个或多个信号校正部分,用于输入在多个存储装置和多个系统侧通信部分之间交换的信号,基于先前建立的校正参数校正输入信号,并输出校正的信号。 校正参数是基于存储装置和系统侧通信部之间的信号传输路径的长度,输入到信号校正部的信号的波长属性和存储装置中的至少一个设定的值 属性与存储设备有关。
    • 40. 发明申请
    • Storage system having a power source state detection unit
    • 具有电源状态检测单元的存储系统
    • US20060291085A1
    • 2006-12-28
    • US11512164
    • 2006-08-30
    • Hiroshi SuzukiHiromi MatsushigeMasato Ogawa
    • Hiroshi SuzukiHiromi MatsushigeMasato Ogawa
    • G11B15/18G11B15/46G06F1/00
    • G11B19/20G06F1/26G06F11/2015G11B19/209
    • A storage system capable of reducing the start-up time of disk drives is provided. If a power source monitor circuit itself is normal (S93), the power source monitor circuit reads a detection signal from a detection circuit, and checks power sources (S94). If the power sources are normal (S95), all disks are spun up (S96). When the spin-up of all disks is completed (S98), processing is completed. If either of two power sources fails (S95), the power source monitor circuit reports the fact to a host control logical part (S99). The power source monitor circuit clears its internal counter to zero (S100) and issues a drive command to HDDs (S101). When the spin-up of all disks is completed (S103), processing is completed. If there is a disk which has not yet been spun up, the power source monitor circuit sets the internal counter to n+1 (S104) and returns to Step S101. N-number of HDDs are divided into groups respectively including six disks, six disks, four disks and one disk, and if the disks are driven in units of the groups, the power source monitor circuit sets the internal counter to n+Δn.
    • 提供了能够减少磁盘驱动器启动时间的存储系统。 如果电源监视电路本身正常(S93),则电源监视电路从检测电路读取检测信号,并检查电源(S94)。 如果电源正常(S95),则所有的磁盘都被旋转(S96)。 当所有磁盘的启动完成时(S98),处理完成。 如果两个电源中的任一个发生故障(S95),电源监视电路将事件报告给主机控制逻辑部分(S 99)。 电源监视电路将其内部计数器清零(S100),并向HDD发出驱动命令(S101)。 当所有磁盘的旋转完成时(S103),处理完成。 如果存在尚未旋转的盘,则电源监视电路将内部计数器设置为n + 1(S104),并返回到步骤S101。 N个HDD被分成包括六个磁盘,六个磁盘,四个磁盘和一个磁盘的组,并且如果以组为单位驱动磁盘,则电源监视器电路将内部计数器设置为n + Deltan。