-
公开(公告)号:US6132105A
公开(公告)日:2000-10-17
申请号:US304950
申请日:1999-05-05
申请人: Hideya Konda , Kazuki Sogabe , Shoji Sugino
发明人: Hideya Konda , Kazuki Sogabe , Shoji Sugino
CPC分类号: G02B6/3839 , G02B6/3885 , G02B6/3636 , G02B6/3652 , G02B6/3825
摘要: A multi-core-fiber optical connector includes a first ferrule and a second ferrule. The first ferrule has a first step defining a first upper surface and a first lower surface. The first upper surface has a plurality of first receiving grooves for receiving the vicinities of leading end portions of optical fibers and engaging portions formed on opposite sides of the first upper surface. The second ferrule has a second step being abuttable against the first step, and defining a second lower surface opposite to the first upper surface and a second upper surface opposite to the first lower surface. The second lower surface has a plurality of second receiving grooves receiving the leading end portions of the optical fibers. The second upper surface has engaged portions engageable with said engaging portions, and is formed with a recess receiving a band-like elastic cushioning member therein. The first and second ferrules are detachably joined with each other in conjunction with the engagement of the engaging portions and the engaged portions.
摘要翻译: 多芯光纤光连接器包括第一套圈和第二套圈。 第一套圈具有限定第一上表面和第一下表面的第一步骤。 第一上表面具有多个第一容纳槽,用于容纳光纤的前端部分附近以及形成在第一上表面的相对侧上的接合部分。 第二套圈具有可抵靠第一台阶的第二台阶,并且限定与第一上表面相对的第二下表面和与第一下表面相对的第二上表面。 第二下表面具有容纳光纤的前端部的多个第二容纳槽。 第二上表面具有可与所述接合部接合的接合部,并且在其中形成有容纳带状弹性缓冲构件的凹部。 第一和第二套圈与接合部分和接合部分的接合结合在一起。
-
公开(公告)号:US08037246B2
公开(公告)日:2011-10-11
申请号:US12149295
申请日:2008-04-30
申请人: Yoshinori Igarashi , Shoji Sugino , Atsushi Tejima
发明人: Yoshinori Igarashi , Shoji Sugino , Atsushi Tejima
CPC分类号: G06F3/067
摘要: A storage system whereby all managers of the storage system can easily collect the history data of the manager of each partition. The storage system is designed such that the memory resources within the system are managed by a system manager while partitions of the memory resources are managed by partition managers assigned for every partition unit. The storage system is provided with management modules that change the configuration of the memory resources corresponding to the content set by the system manager or partition manager, a history data management module that creates history data correlating the identifier of the partition unit that has undergone modification of the configuration of the memory resources, the setting content, and the identification data of the manager, and a history data storage unit that stores the history data.
摘要翻译: 存储系统,其中存储系统的所有管理者可以容易地收集每个分区的管理器的历史数据。 存储系统被设计为使得系统内的存储器资源由系统管理器管理,而存储器资源的分区由为每个分区单元分配的分区管理器管理。 该存储系统设置有改变与由系统管理器或分区管理器设置的内容相对应的存储器资源的配置的管理模块,历史数据管理模块创建历史数据,该历史数据管理模块将已经经过修改的分区单元的标识符相关联 存储器资源的配置,设置内容和管理器的标识数据以及存储历史数据的历史数据存储单元。
-
公开(公告)号:US07380094B2
公开(公告)日:2008-05-27
申请号:US11070207
申请日:2005-03-03
申请人: Yoshinori Igarashi , Shoji Sugino , Atsushi Tejima
发明人: Yoshinori Igarashi , Shoji Sugino , Atsushi Tejima
CPC分类号: G06F3/067
摘要: A storage system whereby all managers of the storage system can easily collect the history data of the manager of each partition. The storage system is designed such that the memory resources within the system are managed by a system manager while partitions of the memory resources are managed by partition managers assigned for every partition unit. The storage system is provided with management modules that change the configuration of the memory resources corresponding to the content set by the system manager or partition manager, a history data management module that creates history data correlating the identifier of the partition unit that has undergone modification of the configuration of the memory resources, the setting content, and the identification data of the manager, and a history data storage unit that stores the history data.
摘要翻译: 存储系统,其中存储系统的所有管理者可以容易地收集每个分区的管理器的历史数据。 存储系统被设计为使得系统内的存储器资源由系统管理器管理,而存储器资源的分区由为每个分区单元分配的分区管理器管理。 该存储系统设置有改变与由系统管理器或分区管理器设置的内容相对应的存储器资源的配置的管理模块,历史数据管理模块创建历史数据,该历史数据管理模块将已经经过修改的分区单元的标识符相关联 存储器资源的配置,设置内容和管理器的标识数据以及存储历史数据的历史数据存储单元。
-
公开(公告)号:US20070245085A1
公开(公告)日:2007-10-18
申请号:US11808606
申请日:2007-06-12
IPC分类号: G06F12/06
CPC分类号: G06F12/084 , G06F3/0601 , G06F12/0866 , G06F12/0871 , G06F2003/0697 , G06F2212/282 , G06F2212/311 , G06F2212/312 , G06F2212/6042 , Y10S707/99943
摘要: The present invention partitions a cache region of a storage subsystem for each user and prevents interference between user-dedicated regions. A plurality of CLPR can be established within the storage subsystem. A CLPR is a user-dedicated region that can be used by partitioning the cache region of a cache memory. Management information required to manage the data stored in the cache memory is allocated to each CLPR in accordance with the attribute of the segment or slot. The clean queue and clean counter, which manage the segments in a clean state, are provided in each CLPR. The dirty queue and dirty counter are used jointly by all the CLPR. The free queue, classification queue, and BIND queue are applied jointly to all the CLPR, only the counters being provided in each CLPR.
-
公开(公告)号:US20050177684A1
公开(公告)日:2005-08-11
申请号:US10822725
申请日:2004-04-13
CPC分类号: G06F12/084 , G06F3/0601 , G06F12/0866 , G06F12/0871 , G06F2003/0697 , G06F2212/282 , G06F2212/311 , G06F2212/312 , G06F2212/6042 , Y10S707/99943
摘要: The present invention partitions a cache region of a storage subsystem for each user and prevents interference between user-dedicated regions. A plurality of CLPR can be established within the storage subsystem. A CLPR is a user-dedicated region that can be used by partitioning the cache region of a cache memory. Management information required to manage the data stored in the cache memory is allocated to each CLPR in accordance with the attribute of the segment or slot. The clean queue and clean counter, which manage the segments in a clean state, are provided in each CLPR. The dirty queue and dirty counter are used jointly by all the CLPR. The free queue, classification queue, and BIND queue are applied jointly to all the CLPR, only the counters being provided in each CLPR.
摘要翻译: 本发明为每个用户分配存储子系统的高速缓存区域,并防止用户专用区域之间的干扰。 可以在存储子系统内建立多个CLPR。 CLPR是可以通过对高速缓冲存储器的高速缓存区域进行分区来使用的用户专用区域。 管理存储在高速缓冲存储器中的数据所需的管理信息根据段或时隙的属性分配给每个CLPR。 在每个CLPR中提供清洁队列和清洁计数器,它们管理清洁状态下的段。 脏排队和脏计数器由所有CLPR联合使用。 空闲队列,分类队列和BIND队列联合应用于所有CLPR,只有每个CLPR中提供的计数器。
-
公开(公告)号:US07739454B2
公开(公告)日:2010-06-15
申请号:US11808606
申请日:2007-06-12
IPC分类号: G06F12/08
CPC分类号: G06F12/084 , G06F3/0601 , G06F12/0866 , G06F12/0871 , G06F2003/0697 , G06F2212/282 , G06F2212/311 , G06F2212/312 , G06F2212/6042 , Y10S707/99943
摘要: The present invention partitions a cache region of a storage subsystem for each user and prevents interference between user-dedicated regions. A plurality of CLPR can be established within the storage subsystem. A CLPR is a user-dedicated region that can be used by partitioning the cache region of a cache memory. Management information required to manage the data stored in the cache memory is allocated to each CLPR in accordance with the attribute of the segment or slot. The clean queue and clean counter, which manage the segments in a clean state, are provided in each CLPR. The dirty queue and dirty counter are used jointly by all the CLPR. The free queue, classification queue, and BIND queue are applied jointly to all the CLPR, only the counters being provided in each CLPR.
摘要翻译: 本发明为每个用户分配存储子系统的高速缓存区域,并防止用户专用区域之间的干扰。 可以在存储子系统内建立多个CLPR。 CLPR是可以通过对高速缓冲存储器的高速缓存区域进行分区来使用的用户专用区域。 管理存储在高速缓冲存储器中的数据所需的管理信息根据段或时隙的属性分配给每个CLPR。 在每个CLPR中提供清洁队列和清洁计数器,它们管理清洁状态下的段。 脏排队和脏计数器由所有CLPR联合使用。 空闲队列,分类队列和BIND队列联合应用于所有CLPR,只有每个CLPR中提供的计数器。
-
公开(公告)号:US20080215813A1
公开(公告)日:2008-09-04
申请号:US12149295
申请日:2008-04-30
申请人: Yoshinori Igarashi , Shoji Sugino , Atsushi Tejima
发明人: Yoshinori Igarashi , Shoji Sugino , Atsushi Tejima
IPC分类号: G06F12/00
CPC分类号: G06F3/067
摘要: A storage system whereby all managers of the storage system can easily collect the history data of the manager of each partition. The storage system is designed such that the memory resources within the system are managed by a system manager while partitions of the memory resources are managed by partition managers assigned for every partition unit. The storage system is provided with management modules that change the configuration of the memory resources corresponding to the content set by the system manager or partition manager, a history data management module that creates history data correlating the identifier of the partition unit that has undergone modification of the configuration of the memory resources, the setting content, and the identification data of the manager, and a history data storage unit that stores the history data.
-
公开(公告)号:US07240156B2
公开(公告)日:2007-07-03
申请号:US11328057
申请日:2006-01-10
IPC分类号: G06F12/06
CPC分类号: G06F12/084 , G06F3/0601 , G06F12/0866 , G06F12/0871 , G06F2003/0697 , G06F2212/282 , G06F2212/311 , G06F2212/312 , G06F2212/6042 , Y10S707/99943
摘要: The present invention partitions a cache region of a storage subsystem for each user and prevents interference between user-dedicated regions.A plurality of CLPR can be established within the storage subsystem. A CLPR is a user-dedicated region that can be used by partitioning the cache region of a cache memory. Management information required to manage the data stored in the cache memory is allocated to each CLPR in accordance with the attribute of the segment or slot. The clean queue and clean counter, which manage the segments in a clean state, are provided in each CLPR. The dirty queue and dirty counter are used jointly by all the CLPR. The free queue, classification queue, and BIND queue are applied jointly to all the CLPR, only the counters being provided in each CLPR.
摘要翻译: 本发明为每个用户分配存储子系统的高速缓存区域,并防止用户专用区域之间的干扰。 可以在存储子系统内建立多个CLPR。 CLPR是可以通过对高速缓冲存储器的高速缓存区域进行分区来使用的用户专用区域。 管理存储在高速缓冲存储器中的数据所需的管理信息根据段或时隙的属性分配给每个CLPR。 在每个CLPR中提供清洁队列和清洁计数器,它们管理清洁状态下的段。 脏排队和脏计数器由所有CLPR联合使用。 空闲队列,分类队列和BIND队列联合应用于所有CLPR,只有每个CLPR中提供的计数器。
-
公开(公告)号:US07065615B2
公开(公告)日:2006-06-20
申请号:US10784796
申请日:2004-02-24
申请人: Shoji Sugino , Masanobu Yamamoto
发明人: Shoji Sugino , Masanobu Yamamoto
IPC分类号: G06F12/00
CPC分类号: G06F3/0653 , G06F3/0605 , G06F3/0689
摘要: It is an object of the present invention to reduce a burden on a maintenance terminal of a storage control system. A storage control system 13 includes one or more operation information storages 59 in which operation information of the storage control system 13 is stored. Among plural DKAs 43 in the storage control system 13, a representative DKA 43D connected to the operation information storage 59 reads out operation information stored in an SM 39 and stores the operation information in the operation information storage 59. The operation information stored in the operation information storage 59 is outputted to an SVP 11 in a form in which the operation information is not stored in an HDD 7 of the SVP 11.
摘要翻译: 本发明的目的是减轻存储控制系统的维护终端的负担。 存储控制系统13包括其中存储有存储控制系统13的操作信息的一个或多个操作信息存储器59。 在存储控制系统13中的多个DKA43中,连接到操作信息存储器59的代表性DKA 43D读出存储在SM39中的操作信息,并将操作信息存储在操作信息存储器59中。存储在 操作信息存储器59以SVP11的HDD7中没有存储操作信息的形式向SVP11输出。
-
公开(公告)号:US20060059301A1
公开(公告)日:2006-03-16
申请号:US10982912
申请日:2004-11-08
IPC分类号: G06F13/00
CPC分类号: G06F3/0647 , G06F3/0613 , G06F3/0631 , G06F3/0689 , G06F11/3409 , G06F11/3485 , G06F2201/81
摘要: A storage apparatus is capable of relocating volumes accurately even when a plurality of storage apparatuses are connected. The storage apparatus comprises an external connection function for recognizing an external logical volume set on a physical storage device as a logical volume inside the storage apparatus, a storage control device with a volume relocation function for relocating the logical volumes based on set conditions, and a storage unit with a plurality of physical storage devices. When the host sends a read request to the logical volume set on the physical storage device of the storage unit, the volume relocation function generates internally the same read request to the external storage volume set on the physical storage device in the external storage apparatus and relocates volumes based on the monitor information obtained by monitoring responses to the read request.
摘要翻译: 即使连接多个存储装置,存储装置也能够精确地重新定位卷。 存储装置包括用于将物理存储装置上设置的外部逻辑卷识别为存储装置内的逻辑卷的外部连接功能,具有用于基于设定条件重新定位逻辑卷的卷重定位功能的存储控制装置,以及 存储单元与多个物理存储设备。 当主机向存储单元的物理存储设备上设置的逻辑卷发送读取请求时,卷重定位功能在内部生成与外部存储设备中物理存储设备上设置的外部存储卷相同的读取请求,并重新定位 基于通过监视对读请求的响应而获得的监视信息的卷。
-
-
-
-
-
-
-
-
-