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    • 1. 发明申请
    • Apparatus and method to overlay (N) first sectors onto (M) second sectors using a data queue
    • 使用数据队列将(N)个第一扇区覆盖到(M)第二扇区上的装置和方法
    • US20060028948A1
    • 2006-02-09
    • US10912827
    • 2004-08-05
    • Gary BatchelorCarl JonesRobert KuboGregg Lucas
    • Gary BatchelorCarl JonesRobert KuboGregg Lucas
    • G11B19/02G11B5/09
    • G06F3/0661G06F3/0619G06F3/0683
    • A method to convert a plurality of sectors from a first sector format to a second sector format is disclosed. The method provides (N) contiguous first sectors comprising a first sector format to a sector format conversion device which includes a buffer and a data queue, where those (N) first sectors comprise a first number of bytes, and determines that (M) contiguous second sectors, comprising a second sector format, comprise at least the first number of bytes. The method overlays the (i)th first sector onto part or all of the (j)th second sector, and enqueues the newly-overlain (j)th second sector. The method then transmits the newly-overlain (j)th second sector to a data storage device, and writes that (j)th overlain second sector to an information storage medium.
    • 公开了一种将多个扇区从第一扇区格式转换成第二扇区格式的方法。 该方法提供包括第一扇区格式的(N)连续的第一扇区到扇区格式转换设备,该扇区格式转换设备包括缓冲器和数据队列,其中那些(N)个第一扇区包括第一字节数,并确定(M)连续 包括第二扇区格式的第二扇区至少包括第一个字节数。 该方法将(i)第一扇区覆盖到第(j)个第二扇区的部分或全部,并且对新近覆盖(j)第二扇区进行排队。 该方法然后将新近叠加的第(j)个第二扇区发送到数据存储装置,并将(j)第二扇区写入信息存储介质。
    • 2. 发明申请
    • Apparatus and method to preserve data integrity during a power loss
    • 在功率损耗期间保持数据完整性的装置和方法
    • US20060031714A1
    • 2006-02-09
    • US10912641
    • 2004-08-05
    • Gary BatchelorCarl JonesRobert KuboGregg Lucas
    • Gary BatchelorCarl JonesRobert KuboGregg Lucas
    • G06F11/00
    • G06F11/1441
    • A method is disclosed to preserve data integrity during loss of power to an information storage and retrieval system. Applicants' method converts a plurality of sectors having a first sector format to a plurality of sectors having a second sector format. If a power failure warning is received during the sector format conversion process, the method prefetches the next second sector, overlays the next first sector onto part of all of that prefetched second sector, and saves the newly-written second sector before loss of utility power. After restoration of utility power to the information storage and retrieval system, Applicants' method writes that newly-written second sector to an information storage medium.
    • 公开了一种在向信息存储和检索系统断电的过程中保持数据完整性的方法。 申请人的方法将具有第一扇区格式的多个扇区转换成具有第二扇区格式的多个扇区。 如果在扇区格式转换过程中接收到电源故障警告,则该方法预取下一个第二扇区,将下一个第一扇区叠加到所有预取的第二扇区的一部分上,并且在公用电源丢失之前保存新写入的第二扇区 。 在公用电力恢复到信息存储和检索系统之后,申请人的方法将新写的第二扇区写入信息存储介质。
    • 3. 发明申请
    • Apparatus, system, and method for maximizing power system holdup time during loss of input power
    • 用于在输入功率损失期间最大化电力系统保持时间的装置,系统和方法
    • US20060146461A1
    • 2006-07-06
    • US11030461
    • 2005-01-06
    • Carl JonesRobert KuboGregg Lucas
    • Carl JonesRobert KuboGregg Lucas
    • H02H3/00
    • G06F1/30H02J9/061Y10T307/625
    • An apparatus, system, and method are disclosed for maximizing power system holdup time during loss of input power. An energy storage module is included to deliver energy from an output stage of a first power supply to a bus. A power loss module is included to detect loss of power transmitting capability from an input stage of the first power supply to the output stage of the first power supply. A set-point reduction module is included to reduce an output voltage of the first power supply in response to the power loss module detecting loss of power transmitting capability. An isolation module is included to prevent energy flow from the energy storage module to the bus when the output voltage of the first power supply is lower than a voltage on the bus sustained by a second power supply.
    • 公开了一种用于在输入功率损失期间最大化电力系统保持时间的装置,系统和方法。 包括能量存储模块以将能量从第一电源的输出级传送到总线。 包括功率损耗模块以检测从第一电源的输入级到第一电源的输出级的功率传输能力的损失。 包括设定点减少模块,以响应于功率损耗模块检测功率传输能力的损失来降低第一电源的输出电压。 当第一电源的输出电压低于由第二电源供应的总线上的电压时,包括隔离模块以防止能量从能量存储模块流向总线。
    • 9. 发明申请
    • Systems and methods for thermally isolating independent energy producing entities
    • 用于隔离独立能量产生实体的系统和方法
    • US20060164795A1
    • 2006-07-27
    • US11040869
    • 2005-01-21
    • Carl JonesRobert KuboGregg Lucas
    • Carl JonesRobert KuboGregg Lucas
    • H02B1/00H01M2/02H01M8/24
    • H01M8/04007H01M2/1094H01M10/486H01M10/613H01M10/633H01M10/643
    • Systems and methods for thermally isolating multiple energy producing entities and for monitoring the operational status of each entity. A thermal dielectric placed between each of the multiple energy producing entities creates isolation or containment zones, and a monitor provided within each isolation or containment zone determines the operational status of each entity. The thermal dielectric minimizes the adverse impact a failed entity can have on neighboring entities by isolating loads generated from each individual energy producing entity. The thermal dielectric also helps isolate a monitor within one isolation or containment zone from conditions existing in a neighboring zone. Each monitor helps to identify the operational status and conditions of one of the isolation or containment zones and a corresponding one of the entities located within such zone. By minimizing the thermal interaction of loads generated by neighboring entities, each entity is less susceptible to overheating or failure due to excess thermal or other energy produced from one of the entities, and each monitor may more accurately identify the operational status of the zone and entity within which the monitor is associated. False indications of the operational data of an entity and zone are minimized as a result.
    • 用于热隔离多个能量产生实体并监测每个实体的运行状态的系统和方法。 放置在多个能量产生实体中的每一个之间的热电介质创建隔离或容纳区域,并且在每个隔离或容纳区域内提供的监视器确定每个实体的操作状态。 热介质通过隔离从每个单独的能量产生实体产生的负载来最小化失败的实体对相邻实体可能产生的不利影响。 热电介质还有助于将监测器隔离在一个隔离或收容区内,避免邻近区域中存在的状况。 每个监视器有助于识别其中一个隔离或遏制区域的操作状态和状况以及位于该区域内的相应实体之一。 通过最小化由相邻实体产生的负载的热相互作用,每个实体由于从一个实体产生的过热或其他能量而不太容易发生过热或故障,并且每个监视器可以更准确地识别区域和实体的操作状态 显示器在其中关联。 因此,实体和区域的操作数据的虚假指示被最小化。