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    • 71. 发明申请
    • Isolation Switching For Backup Memory
    • 隔离切换备份内存
    • US20140156919A1
    • 2014-06-05
    • US14173219
    • 2014-02-05
    • Netlist, Inc.
    • Chi-She ChenJeffrey C. SolomonScott H. MiltonJayesh Bhakta
    • G06F12/02
    • G06F3/061G06F3/0634G06F3/065G06F3/0655G06F3/0688G06F11/1072G06F11/1441G06F11/2015G06F12/00G06F12/0246G06F2212/7201G11C5/141G11C5/143G11C7/1072G11C11/005G11C14/0018G11C29/52
    • Certain embodiments described herein include a memory system having a volatile memory subsystem, a non-volatile memory subsystem, a controller coupled to the non-volatile memory subsystem, and a circuit coupled to the volatile memory subsystem, to the controller, and to a host system. In a first mode of operation, the circuit is operable to selectively isolate the controller from the volatile memory subsystem, and to selectively couple the volatile memory subsystem to the host system to allow data to be communicated between the volatile memory subsystem and the host system. In a second mode of operation, the circuit is operable to selectively couple the controller to the volatile memory subsystem to allow data to be communicated between the volatile memory subsystem and the nonvolatile memory subsystem using the controller, and the circuit is operable to selectively isolate the volatile memory subsystem from the host system.
    • 本文描述的某些实施例包括具有易失性存储器子系统,非易失性存储器子系统,耦合到非易失性存储器子系统的控制器和耦合到易失性存储器子系统的电路,到控制器以及主机的存储器系统 系统。 在第一操作模式中,电路可操作以选择性地将控制器与易失性存储器子系统隔离开,并且将易失性存储器子系统选择性地耦合到主机系统以允许在易失性存储器子系统和主机系统之间传送数据。 在第二操作模式中,电路可操作以选择性地将控制器耦合到易失性存储器子系统,以允许使用控制器在易失性存储器子系统和非易失性存储器子系统之间传送数据,并且该电路可操作以选择性地隔离 来自主机系统的易失性存储器子系统。
    • 73. 发明申请
    • RACK AND POWER CONTROL METHOD THEREOF
    • 其机架和功率控制方法
    • US20140136866A1
    • 2014-05-15
    • US13830051
    • 2013-03-14
    • INVENTEC (PUDONG) TECHNOLOGY CORPORATIONINVENTEC CORPORATION
    • Hao-Yen KuanShu-Yen Wang
    • G06F1/32
    • G06F1/3296G06F1/26G06F1/263G06F1/30G06F1/3203G06F11/2015Y02D10/172
    • A power control method of a rack having a plurality of nodes includes the following steps. Power information of each node is received. a total power consumption value of the plurality of nodes according to the power information is calculated. A number of power supply units to be turned on according to the total power consumption value and a maximum supplied power value of a single power supply unit is calculated. At least one primary power supply unit and at least one secondary power supply unit in pairs according to the number of power supply units to be turned on is started. The at least one primary power supply unit provides a duty voltage to the plurality of nodes, and the at least one secondary power supply unit does not provide the duty voltage to the plurality of nodes.
    • 具有多个节点的机架的功率控制方法包括以下步骤。 接收每个节点的功率信息。 计算出根据功率信息的多个节点的总功耗值。 计算出根据总功耗值和单个电源单元的最大供电功率值接通的多个电源单元。 至少一个主电源单元和至少一个次级电源单元成对地根据要接通的电源单元的数量成对。 所述至少一个主电源单元向所述多个节点提供占空比电压,并且所述至少一个次级电源单元不向所述多个节点提供占空比电压。
    • 75. 发明授权
    • Systems, methods and devices for controlling backup power provided to memory devices and used for storing of sensitive data
    • 用于控制提供给存储器设备并用于存储敏感数据的备用电源的系统,方法和设备
    • US08719629B2
    • 2014-05-06
    • US13552402
    • 2012-07-18
    • Dean Clark Wilson
    • Dean Clark Wilson
    • G06F11/00
    • G06F11/2015G11C5/141
    • Power-backup capabilities are provided by implementing a variety of different methods, systems and devices. According to one such implementation, a solid-state memory device is implemented with a primary power source that provides primary power. A secondary power source provides secondary power. A power controller provides the primary power to an operating power circuit. The secondary power is provided by enabling a secondary switch located between the secondary power source and the operating power circuit. A solid-state memory uses power from the operating power circuit as a primary source of power when accessing stored data and retains data in the absence of power being provided by the operating power circuit. A memory controller facilitates access to the stored data. In response to problems with the primary power source, pending writes are completed to the solid-state memory circuit. A timing circuit substantially delays full enablement of the secondary switch.
    • 通过实施各种不同的方法,系统和设备来提供电源备份功能。 根据一个这样的实现,固态存储器件被实现为具有主电源的主电源。 次级电源提供次级电源。 电源控制器为工作电源电路提供主电源。 次级电源通过使能位于次级电源和工作电源电路之间的次级开关来提供。 固态存储器在访问存储的数据时使用来自工作电源电路的电源作为主要电源,并且在没有由工作电源电路提供电力的情况下保留数据。 存储器控制器便于访问存储的数据。 为了响应主电源的问题,完成对固态存储器电路的等待写入。 定时电路基本上延迟了二次开关的全部启用。
    • 76. 发明授权
    • Information processing apparatus, control apparatus, and method
    • 信息处理装置,控制装置和方法
    • US08707097B2
    • 2014-04-22
    • US13272326
    • 2011-10-13
    • Ryo KubotaTakanori IshiiKentarou Yuasa
    • Ryo KubotaTakanori IshiiKentarou Yuasa
    • G06F11/00
    • G06F1/30G06F11/2015
    • An information processing apparatus includes a controller, a plurality of electric power supply units and a backup electric power supply unit that supply electric power to the controller. The controller detects a malfunction occurring in the plurality of electric power supply units, stops electric power supply from the plurality of electric power supply units, starts electric power supply from the backup electric power supply unit when a malfunction is detected, identifies an electric power supply unit having a malfunction from the plurality of electric power supply units, disconnects the identified electric power supply unit, resumes electric power supply from an electric power supply unit determined to function normally and stops the electric power supply from the backup electric power supply unit when the electric power supply unit having the malfunction is disconnected.
    • 信息处理装置包括控制器,多个电源单元和向控制器提供电力的备用电源单元。 控制器检测多个电力供应单元中发生的故障,停止来自多个电力供应单元的电力供应,当检测到故障时从备用电力供应单元开始供电,识别电力供应 单元具有来自多个电力供应单元的故障,断开所识别的电力供应单元,从被确定为正常工作的电力供应单元恢复电力供应,并且当该备用电力供应单元的电力供应停止时, 具有故障的电力供应单元断开。
    • 77. 发明申请
    • System and Method for Extending System Uptime while Running on Backup Power
    • 在备份电源运行时延长系统正常运行时间的系统和方法
    • US20140101474A1
    • 2014-04-10
    • US14101050
    • 2013-12-09
    • Dell Products, LP
    • Wayne R. Weilnau, JR.Elie A. Jreij
    • G06F1/30G06F1/32
    • G06F1/30G06F1/3234G06F1/3287G06F11/2015G06F2201/845
    • A server chassis includes an uninterruptible power supply, and a server including a controller. The uninterruptible power supply is configured to provide a reserve power when a primary power is lost, and to send a power loss signal when the primary power is lost. The controller is configured to receive a desired server uptime, to receive an indication that a power limit for the server is fixed or decreasing over the desired server, to receive the power loss signal from the uninterruptible power supply, to send a power capacity query to the uninterruptible power supply, to receive a reserve power capacity of the uninterruptible power supply in response to the power capacity query, to calculate the power limit for the server based on the reserve power capacity of the uninterruptible power supply and on the desired server uptime, and to enforce the power limit on the server.
    • 服务器机箱包括不间断电源以及包括控制器的服务器。 不间断电源被配置为在主电源丢失时提供备用电力,并且在主电源丢失时发送功率损失信号。 控制器被配置为接收期望的服务器正常运行时间,以接收指示服务器的功率限制在期望的服务器上固定或减小,以从不间断电源接收功率损耗信号,以将功率容量查询发送到 不间断电源,为了响应于电力容量查询而接收不间断电源的备用电力容量,基于不间断电源的备用电力容量和期望的服务器正常运行时间来计算服务器的功率限制, 并强制执行服务器的电源限制。