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    • 2. 发明授权
    • Apparatus, system, and method for autonomic control of grid system resources
    • 电网系统资源自主控制的装置,系统和方法
    • US08332483B2
    • 2012-12-11
    • US10735938
    • 2003-12-15
    • Joseph John Fatula, Jr.
    • Joseph John Fatula, Jr.
    • G06F15/16
    • G06F9/5072
    • An apparatus, system, and method are disclosed for autonomic management of data operations and performance resources on a grid computing system. An autonomic management apparatus includes a monitor module, a policy module, and a regulation module. The monitor module is configured to monitor the grid computing system for a trigger event. The policy module is configured to access one of a plurality of system policies. Each of the plurality of system policies corresponds to an operational control parameter of a system resource of the grid computing system. The regulation module is configured to autonomically regulate the system resource in response to a recognized trigger event according to one of the plurality of system policies. The trigger event may be a prediction trigger event, an initiation trigger event, a regulation trigger event, or a termination trigger event.
    • 公开了一种用于网格计算系统上的数据操作和性能资源的自主管理的装置,系统和方法。 自主管理装置包括监视器模块,策略模块和调节模块。 监视器模块被配置为监视网格计算系统的触发事件。 策略模块被配置为访问多个系统策略中的一个。 多个系统策略中的每一个对应于网格计算系统的系统资源的操作控制参数。 所述调节模块被配置为根据所述多个系统策略之一响应于所识别的触发事件来自动调节所述系统资源。 触发事件可以是预测触发事件,启动触发事件,调节触发事件或终止触发事件。
    • 3. 发明授权
    • Apparatus, system, and method for on-demand control of grid system resources
    • 电网系统资源按需控制的装置,系统和方法
    • US07680933B2
    • 2010-03-16
    • US10736473
    • 2003-12-15
    • Joseph John Fatula, Jr.
    • Joseph John Fatula, Jr.
    • G06F15/173G06F15/16G06F12/00G06F17/30
    • G06F9/5072G06F2209/5014
    • An apparatus, system, and method are disclosed for on-demand control of a grid system resource on a grid computing system. An on-demand management apparatus includes a user input module, a parameter module, and a reservation module. The user input module is configured to allow a user to input a parameter control request. The parameter control request corresponds to a performance parameter of the grid computing system. The global parameter module is configured to dynamically change the performance parameter, which corresponds to a performance resource, according to the parameter control request. The global reservation module is configured to reserve the performance resource for a grid computing operation. The on-demand management apparatus is also configured to terminate a performance resource reservation when a client reclaims the performance resources from the grid computing system.
    • 公开了一种用于网格计算系统上的网格系统资源的按需控制的装置,系统和方法。 按需管理装置包括用户输入模块,参数模块和预约模块。 用户输入模块被配置为允许用户输入参数控制请求。 参数控制请求对应于网格计算系统的性能参数。 全局参数模块被配置为根据参数控制请求动态地改变对应于性能资源的性能参数。 全局预留模块被配置为保留网格计算操作的性能资源。 按需管理装置还被配置为当客户端从网格计算系统回收性能资源时终止性能资源预留。
    • 5. 发明授权
    • Apparatus, system, and method for grid based data storage
    • 用于网格数据存储的装置,系统和方法
    • US07698428B2
    • 2010-04-13
    • US10736413
    • 2003-12-15
    • Joseph John Fatula, Jr.
    • Joseph John Fatula, Jr.
    • G06F12/00G06F17/30G06F15/16G06F15/173
    • G06F11/1464H04L29/06H04L67/1095H04L69/329
    • An apparatus, system, and method are disclosed for backing up data across a plurality of clients on a grid computing system. A sequence management apparatus includes a client request module, a sequence module, and packet storage module. The sequence module is configured to receive data to be backed up from a source client. The sequence module is configured to generate a non-transparent sequence key that identifies one or more target clients on the grid computing system. The packet storage module is configured to store a backup copy of the data from the source client on the plurality of target clients according to the non-transparent sequence key. The non-transparent sequence key may be generated by and known only to the sequence management apparatus in order to maintain a minimum security level for the data backed up on the plurality of target clients.
    • 公开了一种用于在网格计算系统上跨多个客户机备份数据的装置,系统和方法。 序列管理装置包括客户端请求模块,序列模块和分组存储模块。 序列模块被配置为从源客户端接收要备份的数据。 序列模块被配置为生成识别网格计算系统上的一个或多个目标客户端的不透明序列密钥。 分组存储模块被配置为根据不透明的序列密钥将来自源客户端的数据的备份副本存储在多个目标客户端上。 非透明序列密钥可以由序列管理装置生成并且仅为序列管理装置而知道,以便为在多个目标客户端上备份的数据保持最小的安全级别。
    • 9. 发明授权
    • Method of making high definition chevron type MR sensor
    • 制造高清晰度人字形MR传感器的方法
    • US06379570B1
    • 2002-04-30
    • US09450092
    • 1999-11-29
    • Joseph John Fatula, Jr.Richard HsiaoCarol Yoshiko InouyeLi-Chung Lee
    • Joseph John Fatula, Jr.Richard HsiaoCarol Yoshiko InouyeLi-Chung Lee
    • B44C122
    • G11B5/3903G11B5/00813G11B5/3163G11B5/3967G11B5/398G11B5/399G11B5/4893G11B5/5504G11B5/584Y10T29/49021Y10T29/49052
    • A method is provided for making a well-defined, highly-predictable chevron type MR sensor for a read head. A first material is selected for a first gap layer. A selected second material is deposited on the first gap layer followed by a resist frame that has elongated openings exposing elongated top portions of the first gap layer that extend at an acute angle to a head surface of the read head. A selected reactive ion etch (RIE) is employed to etch away the exposed portions of the second material layer down to the first material of the first gap layer. The material of the second material layer is chosen to be etched by the RIE while the material of the first gap layer is chosen not to be etched by the RIE. An example is Al2O3 for the first gap layer, SiO2 for the second material layer and a RIE that is fluorine based. The resist frame is removed leaving elongated strips of the second material layer extending at the aforementioned angle to the head surface. MR material is then sputtered on top of the first gap layer and on the second material strips building up a MR sensor which has a ribbed structure on each of its first and second surfaces. The resultant MR head has second material strips sandwiched between the first gap layer and the MR sensor.
    • 提供了一种用于制造用于读取头的良好定义的,高度可预测的人字形MR传感器的方法。 为第一间隙层选择第一材料。 所选择的第二材料沉积在第一间隙层上,随后是抗蚀剂框架,该抗蚀剂框架具有细长的开口,其暴露第一间隙层的细长顶部,其与读取头的头表面成锐角地延伸。 使用选择的反应离子蚀刻(RIE)来将第二材料层的暴露部分向下蚀刻到第一间隙层的第一材料。 选择第二材料层的材料被RIE蚀刻,同时选择第一间隙层的材料不被RIE蚀刻。 例如,用于第一间隙层的Al 2 O 3,第二材料层的SiO 2和氟基的RIE。 除去抗蚀剂框架,留下第二材料层的长条,以与前表面成上述角度延伸。 然后将MR材料溅射在第一间隙层的顶部上,并且在第二材料条上形成MR传感器,该传感器在其第一和第二表面的每一个上具有肋状结构。 所得MR头具有夹在第一间隙层和MR传感器之间的第二材料条。
    • 10. 发明授权
    • High definition chevron type MR sensor
    • 高分辨率人字形MR传感器
    • US6118623A
    • 2000-09-12
    • US926264
    • 1997-09-05
    • Joseph John Fatula, Jr.Richard HsiaoCarol Yoshiko InouyeLi-Chung Lee
    • Joseph John Fatula, Jr.Richard HsiaoCarol Yoshiko InouyeLi-Chung Lee
    • G11B5/008G11B5/31G11B5/39G11B5/48G11B5/55G11B5/584
    • G11B5/3903G11B5/3967G11B5/399G11B5/4893G11B5/5504G11B5/584G11B5/00813G11B5/3163G11B5/398Y10T29/49021Y10T29/49052
    • A method is provided for making a well-defined, highly-predictable chevron type MR sensor for a read head. A first material is selected for a first gap layer. A selected second material is deposited on the first gap layer followed by a resist frame that has elongated openings exposing elongated top portions of the first gap layer that extend at an acute angle to a head surface of the read head. A selected reactive ion etch (RIE) is employed to etch away the exposed portions of the second material layer down to the first material of the first gap layer. The material of the second material layer is chosen to be etched by the RIE while the material of the first gap layer is chosen not to be etched by the RIE. An example is Al.sub.2 O.sub.3 for the first gap layer, SiO.sub.2 for the second material layer and a RIE that is fluorine based. The resist frame is removed leaving elongated strips of the second material layer extending at the aforementioned angle to the head surface. MR material is then sputtered on top of the first gap layer and on the second material strips building up a MR sensor which has a ribbed structure on each of its first and second surfaces. The resultant MR head has second material strips sandwiched between the first gap layer and the MR sensor.
    • 提供了一种用于制造用于读取头的良好定义的,高度可预测的人字形MR传感器的方法。 为第一间隙层选择第一材料。 所选择的第二材料沉积在第一间隙层上,随后是抗蚀剂框架,该抗蚀剂框架具有细长的开口,其暴露第一间隙层的细长顶部,其与读取头的头表面成锐角地延伸。 使用选择的反应离子蚀刻(RIE)来将第二材料层的暴露部分向下蚀刻到第一间隙层的第一材料。 选择第二材料层的材料被RIE蚀刻,同时选择第一间隙层的材料不被RIE蚀刻。 例如,用于第一间隙层的Al 2 O 3,第二材料层的SiO 2和氟基的RIE。 除去抗蚀剂框架,留下第二材料层的长条,以与前表面成上述角度延伸。 然后将MR材料溅射在第一间隙层的顶部上,并且在第二材料条上形成MR传感器,该传感器在其第一和第二表面的每一个上具有肋状结构。 所得MR头具有夹在第一间隙层和MR传感器之间的第二材料条。