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    • 81. 发明申请
    • Disk array device and remote coping control method for disk array device
    • 磁盘阵列设备和磁盘阵列设备的远程应对控制方法
    • US20060117138A1
    • 2006-06-01
    • US11328307
    • 2006-01-10
    • Hidenori SuzukiKeiichi KaiyaYusuke Hirakawa
    • Hidenori SuzukiKeiichi KaiyaYusuke Hirakawa
    • G06F12/00
    • C02F1/68C02F1/54C02F2103/08C02F2209/05G06F3/061G06F3/0617G06F3/0653G06F3/0659G06F3/0689G06F11/3495Y10S707/99953Y10S707/99955
    • Various types of resources of the disk array device are divided for respective users and communications resources used in remote copying are appropriately assigned to the users so that functional interference between the split units is prevented and stable remote copying is realized. SLPRs which are dedicated regions for the respective users are set inside the disk array device 10. Each SLPR is constituted by dividing various types of resources of ports, cache memories, logical units and the like, and cannot be accessed by an unauthorized host computer 1. Furthermore, a manager of one of the SLPRs likewise cannot refer to or alter the constructions of the other SLPRs. During remote copying, the amount of transfer within the unit time is detected for each of the SLPRs. If the amount of transfer within the unit time exceeds the maximum amount of transfer, a response to the host computer 1 from this SLPR is deliberately delayed, so that the inflow of data from the host computer 1 is restricted.
    • 磁盘阵列装置的各种资源被划分为相应的用户,并且用于远程复制的通信资源被适当地分配给用户,从而防止了分离单元之间的功能干扰,并实现了稳定的远程复制。 作为各个用户的专用区域的SLPR被设置在盘阵列装置10的内部。 每个SLPR通过分割端口,高速缓冲存储器,逻辑单元等的各种类型的资源构成,并且不能被未经授权的主机计算机1访问。 此外,SLPR之一的管理者也不能参考或改变其他SLPR的结构。 在远程复制期间,针对每个SLPR检测单位时间内的传送量。 如果在单位时间内的传送量超过最大传送量,则故意延迟对来自该SLPR的主计算机1的响应,从而限制来自主计算机1的数据流入。
    • 86. 发明授权
    • Exhaust pipe joint assembly
    • 排气管接头总成
    • US06419280B2
    • 2002-07-16
    • US09754336
    • 2001-01-05
    • Masayuki UeganeHidekazu AkiyamaKazunori KoinumaKazutoshi TakizawaTakahiko NaitouHidenori Suzuki
    • Masayuki UeganeHidekazu AkiyamaKazunori KoinumaKazutoshi TakizawaTakahiko NaitouHidenori Suzuki
    • F16L2712
    • F01N13/1816F16L27/1004F16L27/11
    • An exhaust pipe assembly provided with a bellows pipe for connecting an upstream exhaust pipe and a downstream exhaust pipe is disposed so as to form a double pipe construction with a first joint pipe which is connected to the upstream exhaust pipe and a second joint pipe which is connected to the downstream exhaust pipe. A pair of ball receiving portions are disposed on a peripheral surface of the first joint pipe at a distance from each other in a circumferential direction, and a pair of ball receiving portions are disposed on a peripheral surface of the second joint pipe at a distance from each other in a circumferential direction. The ball receiving portions are disposed at an angular phase difference with each other in the circumferential direction. There is provided a coupling piece which has a pair of first ball joint portions engaged with the pair of ball receiving portions of the first joint pipe through a ball, and a pair of second ball joint portions engaged with the pair of ball receiving portions of the second joint pipe respectively through a ball.
    • 设置有用于连接上游排气管和下游排气管的波纹管的排气管组件设置成形成具有与上游排气管连接的第一接头管和双层管结构的双管结构,第二接合管是 连接到下游排气管。 一对球接收部分在第一接合管的圆周表面上沿圆周方向彼此间隔设置,并且一对球接收部分设置在第二接合管的外周表面上距离 彼此沿圆周方向。 球接收部在圆周方向上彼此成角度相位差。 提供了一个联接件,其具有通过球与第一接合管的一对球接收部分接合的一对第一球接头部分,以及一对第二球接头部分, 第二关节管分别通过球。