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    • 2. 发明授权
    • Tape drive device, tape library device, and data storing method
    • 磁带驱动装置,磁带库装置和数据存储方法
    • US08873184B2
    • 2014-10-28
    • US13528892
    • 2012-06-21
    • Junichi Sato
    • Junichi Sato
    • G11B5/008G11B20/10G11B15/02G11B23/04G11B15/68
    • G11B20/10G11B15/02G11B15/689G11B23/042G11B2020/10981G11B2220/45G11B2220/60G11B2220/90
    • A tape drive device for storing data in a tape cartridge includes a comparison unit that compares a transfer speed of the data transmitted from a host machine to the tape drive device with a speed threshold, a speed determination unit that determines a writing speed to a tape cartridge using the speed threshold, and a data write unit that writes data to the tape cartridge, the data write unit writing data to the magnetic tape provided for the tape cartridge when the determined writing speed is higher than the speed threshold, and the data write unit writing subsequent data following data written to the magnetic tape to the non-volatile semiconductor memory provided for the tape cartridge when the determined writing speed is lower than the speed threshold.
    • 一种用于将数据存储在磁带盒中的磁带驱动装置,包括:比较单元,其将从主机发送的数据的传送速度与带驱动装置的速度阈值进行比较;速度确定单元,确定对磁带的写入速度 并且当所确定的写入速度高于速度阈值时,数据写入单元向数据写入单元写入数据到数据写入单元,该数据写入单元向磁带盒提供的磁带写入数据,并且数据写入 当确定的写入速度低于速度阈值时,将写入磁带的数据的后续数据写入到提供给带盒的非易失性半导体存储器。
    • 3. 发明授权
    • Controller based shock detection for storage systems
    • 用于存储系统的基于控制器的冲击检测
    • US08132196B2
    • 2012-03-06
    • US12489643
    • 2009-06-23
    • Charles Powell MorrisPaul Andrew Ashmore
    • Charles Powell MorrisPaul Andrew Ashmore
    • G11B17/03
    • G11B27/36G11B19/042G11B2220/2516G11B2220/45G11B2220/60
    • A data storage system controller having a shock detection sensor and methods utilizing such a controller are provided. The data storage system controller receives information or signals regarding shock events from the associated shock sensor, enabling the data storage system controller to take remedial action. The particular remedial action taken may be dependent on the severity of the detected shock event. The data storage system controller may also receive information regarding shock events from shock sensors provided separately from the data storage system controller, allowing the data storage system controller to take remedial action that is tailored to the locale of a shock event.
    • 提供一种具有冲击检测传感器和利用这种控制器的方法的数据存储系统控制器。 数据存储系统控制器从相关联的冲击传感器接收关于冲击事件的信息或信号,使得数据存储系统控制器能够采取补救措施。 所采取的具体补救措施可能取决于检测到的休克事件的严重程度。 数据存储系统控制器还可以从与数据存储系统控制器分开提供的冲击传感器接收关于冲击事件的信息,允许数据存储系统控制器采取针对冲击事件的场所定制的补救动作。
    • 4. 发明申请
    • CONTROL APPARATUS, METHOD OF CONTROLLING APPARATUS AND COMPUTER-READABLE RECORDING MEDIUM
    • 控制装置,控制装置和计算机可读记录介质的方法
    • US20100328814A1
    • 2010-12-30
    • US12795981
    • 2010-06-08
    • Yusuke INAI
    • Yusuke INAI
    • G11B5/584
    • G11B5/00813G06F11/2087G11B15/02G11B27/002G11B27/032G11B27/107G11B27/36G11B2220/417G11B2220/45
    • A control apparatus connectable to a memory unit for storing data, for controlling a first tape writing unit including a plurality of first tapes and a second tape writing unit including a plurality of second tapes so that the first and second writing units write same data stored in the memory unit to one of the first tapes and one of the second tapes, respectively, has an obtaining unit for obtaining a progress value indicating a progress of writing data into the one of the second tapes upon completely writing the data into one of the first tapes and a controller for controlling the first and the second tape writing units so that the first and the second writing unit change the writing tapes to another of the first tapes and another of second tapes when the progress value being not more than a predetermined value.
    • 一种可连接到用于存储数据的存储单元的控制装置,用于控制包括多个第一磁带的第一磁带写入单元和包括多个第二磁带的第二磁带写入单元,使得第一和第二写入单元写入存储在 存储单元分别到第一磁带和第二磁带之一分别具有获取单元,用于在将数据完全写入第一磁带之一时获得指示将数据写入到一个第二磁带的进度的进度值 磁带和用于控制第一和第二磁带写入单元的控制器,使得当进度值不大于预定值时,第一和第二写入单元将写入磁带改变为另一个第一磁带和另一个磁带。
    • 6. 发明申请
    • DATA TRANSFER APPARATUS AND DATA TRANSFER METHOD
    • 数据传输设备和数据传输方法
    • US20100007767A1
    • 2010-01-14
    • US12496169
    • 2009-07-01
    • Tsuyoshi KAWAGUCHIMasafumi NOSAKAMasafumi SATO
    • Tsuyoshi KAWAGUCHIMasafumi NOSAKAMasafumi SATO
    • H04N5/76
    • H04N5/772G11B27/034G11B2220/2516G11B2220/45G11B2220/61H04N5/781H04N5/907H04N9/8042H04N9/8205
    • The data transfer apparatus according to the present invention includes a transfer portion that reads out image data stored in a first storage medium, and transfers the image data to a second storage medium; an identification portion that identifies image data stored in the first storage medium and image data stored in the second storage medium; a specification portion that, when transfer of image data by the transfer portion is terminated partway, determines the presence or absence of untransferred image data to the second storage medium among interrelated image data based on the identification result by the identification portion, and that, when the presence of untransferred image data is determined, specifies image data related to the untransferred image data among image data stored in the second storage medium; and a deletion portion that deletes the image data specified by the specification portion from the second storage medium.
    • 根据本发明的数据传送装置包括:读出存储在第一存储介质中的图像数据并将图像数据传送到第二存储介质的传送部分; 标识存储在第一存储介质中的图像数据和存储在第二存储介质中的图像数据的识别部分; 当通过传送部分的图像数据的传送中途终止的情况下,基于识别部分的识别结果,在相互关联的图像数据之间确定是否存在未传送的图像数据到第二存储介质,并且当 确定未转印图像数据的存在,指定存储在第二存储介质中的图像数据中与未转印图像数据相关的图像数据; 以及删除部,其从所述第二存储介质中删除由所述规格部指定的图像数据。
    • 10. 发明申请
    • OPTICAL COLD STORAGE
    • 光学冷藏
    • US20170017427A1
    • 2017-01-19
    • US15281691
    • 2016-09-30
    • Facebook, Inc.
    • Giovanni CoglitoreNarsing VijayraoKestutis Patiejunas
    • G06F3/06G06F11/10H03M13/15
    • G06F3/0619G06F3/0608G06F3/0643G06F3/0647G06F3/0665G06F3/0683G06F3/0686G06F3/0689G06F11/1092G06F11/1451G06F13/102G06F2201/80G11B27/00G11B27/002G11B2220/45H03M13/1515
    • Various embodiments (“systems”) are described for transferring data from a primary storage (e.g., magnetic disk drives, solid state drives, etc.) to an optical cold storage rack. The optical cold storage rack may include many physical optical storage disks, but a much smaller number of burners and readers (e.g., optical disk drives). When data is to be transferred to the optical cold storage rack, the system may generate a plan for performing the transfer. “Migration worker” components may then implement the plan and may be exclusively dedicated to implementing such plans. In various embodiments, the plan may specify how large data file “aggregates” (collections of portions of one or more data files) are to be distributed across optical disks (“disks”) to improve throughput during subsequent reading operations from the optical cold storage rack. The plan may also anticipate the relation between the limited number of burners/readers and the overall optical cold storage rack disk capacity.
    • 描述了用于将数据从主存储器(例如,磁盘驱动器,固态驱动器等)传送到光学冷藏架的各种实施例(“系统”)。 光学冷藏架可以包括许多物理光学存储盘,但是燃烧器和读取器(例如,光盘驱动器)的数量要少得多。 当数据要传送到光学冷藏架时,系统可以产生执行传送的计划。 “移民工”部门可能会实施该计划,并可能专门用于实施这些计划。 在各种实施例中,该计划可以指定要在光盘(“盘”)之间分布大量数据文件“聚集”(一个或多个数据文件的部分集合)以提高在后续读取操作期间的光通量 架。 该计划也可能预期有限数量的燃烧器/读取器与整体光学冷藏机架磁盘容量之间的关系。