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    • 3. 发明申请
    • Write journaling using battery backed cache
    • 使用电池支持的高速缓存写入日志记录
    • US20070055909A1
    • 2007-03-08
    • US11220936
    • 2005-09-07
    • Gerald SmithAnant Baderdinni
    • Gerald SmithAnant Baderdinni
    • G06F11/00
    • G06F11/1441G06F11/1076G06F2211/1009
    • A system, apparatus and method for maintaining information related to a write operation is described. In one embodiment of the invention, a write journal is provided that contains a list of entries that store information related to active write operations so that a particular write may be restarted in order to correct an inconsistency. The journal may have a battery backed cache, in which data is stored prior to writing to a disk, which is provided power in the case of a power failure. The journal may be located in memory positioned at various locations within a system including on a controller card for a disk array system or on a motherboard of a host system.
    • 描述用于维护与写入操作有关的信息的系统,装置和方法。 在本发明的一个实施例中,提供一种写入日志,其包含存储与活动写入操作有关的信息的条目列表,以便可以重新启动特定写入以便校正不一致。 该日志可能具有电池备份的高速缓存,其中在写入到磁盘之前存储数据,在电源故障的情况下提供电源。 该期刊可能位于位于系统内的不同位置的存储器中,包括用于磁盘阵列系统的控制器卡或主机系统的主板上。
    • 5. 发明授权
    • Write journaling using battery backed cache
    • 使用电池支持的高速缓存写入日志记录
    • US07533298B2
    • 2009-05-12
    • US11220936
    • 2005-09-07
    • Gerald SmithAnant Baderdinni
    • Gerald SmithAnant Baderdinni
    • G06F11/00
    • G06F11/1441G06F11/1076G06F2211/1009
    • A system, apparatus and method for maintaining information related to a write operation is described. In one embodiment of the invention, a write journal is provided that contains a list of entries that store information related to active write operations so that a particular write may be restarted in order to correct an inconsistency. The journal may have a battery backed cache, in which data is stored prior to writing to a disk, which is provided power in the case of a power failure. The journal may be located in memory positioned at various locations within a system including on a controller card for a disk array system or on a motherboard of a host system.
    • 描述用于维护与写入操作有关的信息的系统,装置和方法。 在本发明的一个实施例中,提供一种写入日志,其包含存储与活动写入操作有关的信息的条目列表,以便可以重新启动特定写入以便校正不一致。 该日志可能具有电池备份的高速缓存,其中在写入到磁盘之前存储数据,在电源故障的情况下提供电源。 该期刊可能位于位于系统内的不同位置的存储器中,包括用于磁盘阵列系统的控制器卡或主机系统的主板上。
    • 6. 发明申请
    • POSITRONIUM-MEDIATED METHOD FOR IDENTIFYING AN ORGANISM
    • 用于识别有机体的方法
    • US20070238087A1
    • 2007-10-11
    • US11130761
    • 2005-05-17
    • Gerald Smith
    • Gerald Smith
    • C12Q1/00G01T1/161
    • G01N23/22G01N2001/022Y10T436/163333
    • A monitor is provided for measuring the presence of a small concentration of at least one hazardous material within a vessel. A positron source emits positrons into an annihilation region of the vessel. A plurality of species of positronium are formed from the positrons as they interact with a sample of the ambient environment disposed within the vessel. At least one gamma ray detector is located externally of the vessel for detecting gamma rays generated primarily by the absorption of the species of positronium within the annihilation region. A method is also provided where a source of positrons is arranged to direct positrons into a vessel containing a specimen of gas and a contaminant to form species of positronium. The timing of the application of positrons is sensed along with the annihilation of each of the plurality of species of positronium. The time delay between the time of application of each positron and the annihilation of the of positronium is measured to obtain a decay rate characteristic of the specimen of gas.
    • 提供了一种监测器,用于测量容器内少量至少一种危险物质的存在。 正电子源将正电子发射到容器的湮灭区域。 由正电子形成多种正电子,因为它们与设置在容器内的环境环境的样品相互作用。 至少一个伽马射线检测器位于容器的外部,用于检测主要由湮灭区域内的正电子物质的吸收产生的γ射线。 还提供了一种方法,其中正电子源被布置成将正电子引导到含有气体样品和污染物的容器中以形成正电子的物质。 正电子的应用时间与多种正电子中的每一种的湮灭一起被检测。 测量每个正电子的施加时间与正电子的湮灭之间的时间延迟,以获得气体样本的衰变速率特性。
    • 10. 发明申请
    • POSITRONIUM-MEDIATED METHOD FOR IDENTIFYING A CONTAMINANT GAS IN A GASEOUS MIXTURE
    • 用于识别气体混合物中的污染物气体的方法
    • US20080087852A1
    • 2008-04-17
    • US11130763
    • 2005-05-17
    • Gerald Smith
    • Gerald Smith
    • G01N23/04C12M1/34
    • G01N23/22G01N2001/022Y10T436/163333
    • A monitor is provided for measuring the presence of a small concentration of at least one hazardous material within a vessel. A positron source emits positrons into an annihilation region of the vessel. A plurality of species of positronium are formed from the positrons as they interact with a sample of the ambient environment disposed within the vessel. At least one gamma ray detector is located externally of the vessel for detecting gamma rays generated primarily by the absorption of the species of positronium within the annihilation region. A method is also provided where a source of positrons is arranged to direct positrons into a vessel containing a specimen of gas and a contaminant to form species of positronium. The timing of the application of positrons is sensed along with the annihilation of each of the plurality of species of positronium. The time delay between the time of application of each positron and the annihilation of the of positronium is measured to obtain a decay rate characteristic of the specimen of gas.
    • 提供了一种监测器,用于测量容器内少量至少一种危险物质的存在。 正电子源将正电子发射到容器的湮灭区域。 由正电子形成多种正电子,因为它们与设置在容器内的环境环境的样品相互作用。 至少一个伽马射线检测器位于容器的外部,用于检测主要由湮灭区域内的正电子物质的吸收产生的γ射线。 还提供了一种方法,其中正电子源被布置成将正电子引导到含有气体样品和污染物的容器中以形成正电子的物质。 正电子的应用时间与多种正电子中的每一种的湮灭一起被检测。 测量每个正电子的施加时间与正电子的湮灭之间的时间延迟,以获得气体样本的衰变速率特性。