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    • 1. 发明申请
    • REDUNDANT POWER SUPPLY SYSTEM FOR REDUCING STANDBY POWER CONSUMPTION
    • 用于减少待机功耗的冗余电源系统
    • US20150200567A1
    • 2015-07-16
    • US14152587
    • 2014-01-10
    • ZIPPY TECHNOLOGY CORP.
    • Yung-Hsin HUANGTsung-Chun CHEN
    • H02J9/06
    • H02J9/061H02J9/062Y10T307/615
    • A redundant power supply system for reducing standby power consumption includes a plurality of power supply modules and a power integration backboard. Each power supply module includes a first power supply path, a second power supply path, and an operating power conversion unit disposed on the first power supply path and including a standby power input path. The power integration backboard is connected to the power supply modules and includes an operating power integration unit and a standby power conversion unit. The standby power conversion unit is connected to the standby power input paths of the power supply modules to provide the standby powers to the power supply modules. The standby power conversion unit includes a power adjustment mechanism which determines a corresponding number of the second power supply paths for converting the external powers to the standby powers according to a power consumption signal.
    • 用于降低待机功耗的冗余电源系统包括多个电源模块和电力集成背板。 每个电源模块包括第一电源路径,第二电源路径和设置在第一电源路径上并包括备用电力输入路径的工作电力转换单元。 电源集成背板连接到电源模块,并包括一个工作电源集成单元和一个备用电源转换单元。 备用电源转换单元连接到电源模块的备用电源输入路径,以向电源模块提供备用电源。 备用电力转换单元包括功率调节机构,其根据功耗信号确定用于将外部功率转换为待机功率的相应数量的第二电源路径。
    • 2. 发明申请
    • REDUNDANT POWER SUPPLY SYSTEM FOR REDUCING STANDBY POWER CONSUMPTION
    • 用于减少待机功耗的冗余电源系统
    • US20150200566A1
    • 2015-07-16
    • US14152498
    • 2014-01-10
    • ZIPPY TECHNOLOGY CORP.
    • Yung-Hsin HUANGTsung-Chun CHEN
    • H02J9/06G08B5/36
    • G06F1/263G06F1/3203G06F1/3212G06F1/3287Y02D10/171Y02D10/174Y10T307/615
    • A redundant power supply system for reducing standby power consumption includes a plurality of power supply modules and a power integration backboard. Each of the power supply modules includes an operating power modulation unit, a standby power modulation unit and a control unit connected to the standby power modulation unit. The power integration backboard is connected to the power supply modules, and includes an integration output unit and a standby power consumption management unit. The integration output unit integrates the operating powers and the standby powers of the power supply modules to provide an output to a load. The standby power consumption management unit outputs an operating signal to the control unit of each of the power supply modules according to a power consumption condition of the load, such that the control unit can activate or deactivate the standby power modulation unit according to the operating signal.
    • 用于降低待机功耗的冗余电源系统包括多个电源模块和电力集成背板。 每个电源模块包括操作功率调制单元,备用功率调制单元和连接到备用功率调制单元的控制单元。 电源一体化背板连接到电源模块,并包括集成输出单元和待机功耗管理单元。 集成输出单元集成了电源模块的工作电源和待机电源,为负载提供输出。 待机功耗管理单元根据负载的功耗条件向每个电源模块的控制单元输出操作信号,使得控制单元可以根据操作信号激活或停用备用功率调制单元 。
    • 3. 发明申请
    • START-UP ARCHITECTURE OF REDUNDANT POWER SUPPLY SYSTEM
    • 冗余电源系统启动架构
    • US20150346808A1
    • 2015-12-03
    • US14293701
    • 2014-06-02
    • ZIPPY TECHNOLOGY CORP.
    • Tsung-Chun CHEN
    • G06F1/32G06F9/44
    • G06F1/3293G06F1/263G06F1/3296G06F9/4401G06F11/2015
    • A start-up architecture of a redundant power supply system is provided. The redundant power supply system is electrically connected to a load, and includes N+M power supplies, where N≧1 and M≧1. The start-up architecture includes a power integration backboard electrically connected to the power supplies, and a mode switching member. The power integration backboard includes an activation circuit, and has a synchronous booting mode in which the power supplies are simultaneously activated and a sequential booting mode in which the power supplies are sequentially activated. The mode switching member is electrically connected to the activation circuit, and receives a manual switching of a user to output a synchronous booting signal that controls the power integration backboard to enter the synchronous booting mode and to output a sequential booting signal that controls the power integration backboard to enter the sequential booting mode.
    • 提供了冗余电源系统的启动架构。 冗余电源系统与负载电连接,并且包括N + M个电源,其中N≥1且M≥1。 启动架构包括电连接到电源的功率集成背板和模式切换部件。 功率集成背板包括激活电路,并且具有同步启动模式,其中电源被同时激活,并且顺序启动模式,其中电源被顺序地激活。 模式切换部件电连接到激活电路,并且接收用户的手动切换以输出控制功率集成背板进入同步启动模式的同步引导信号,并输出控制功率集成的顺序启动信号 背板进入顺序启动模式。