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    • 8. 发明授权
    • Controlling power management in micro-server cores and peripherals
    • 控制微服务器内核和外围设备的电源管理
    • US09454210B2
    • 2016-09-27
    • US13997874
    • 2012-03-31
    • Anil K. Kumar
    • Anil K. Kumar
    • G06F1/00G06F1/32
    • G06F1/3215G06F1/3206G06F1/3234G06F1/325
    • Systems and methods of enabling power management in a micro server include providing multiple cores, a power management module coupled to the cores, and one or more peripherals coupled to the power management module. The power management module may be configured to cause the one or more peripherals to delay operations based on determining that the cores are in a first power consumption state, and place the cores in a second power consumption state for a predetermined time period. The second power consumption state may consume less power than the first power consumption state. The power management module may cause the one or more peripherals to resume their operations based on expiration of the predetermined time period and may place the cores in a third power consumption state based on the expiration of the time period.
    • 在微服务器中实现电源管理的系统和方法包括提供多个核,耦合到核的电源管理模块以及耦合到电源管理模块的一个或多个外围设备。 功率管理模块可以被配置为使得一个或多个外围设备基于确定核心处于第一功耗状态来延迟操作,并且将核心处于第二功耗状态预定时间段。 第二功耗状态可以消耗比第一功耗状态更少的功率。 功率管理模块可以使得一个或多个外围设备基于预定时间段的到期恢复其操作,并且可以基于该时间段的到期将核心置于第三功耗状态。
    • 9. 发明授权
    • Signal amplitude and clock signal frequency selection
    • 信号幅度和时钟信号频率选择
    • US07606353B2
    • 2009-10-20
    • US10668137
    • 2003-09-22
    • Anil K. Kumar
    • Anil K. Kumar
    • H04M11/06
    • H04L25/0282H04L5/1438H04M11/062H04M19/001H04Q2213/13039
    • In one embodiment, a method is provided. The method of this embodiment may include, in response, at least in part, to receipt at a first node of a request issued from a second node to change from one mode of operation to another mode of operation, selecting an amplitude of a signal to be propagated between the first node and the second node during the another mode of operation. The amplitude of the signal may be different from another amplitude of the signal during the one mode of operation. The method of this embodiment also may include, in response, at least in part, to the receipt of the request, selecting a frequency of a clock signal to be supplied in the first node during the another mode of operation. The frequency may be different from another frequency of the clock signal during the one mode of operation.
    • 在一个实施例中,提供了一种方法。 该实施例的方法可以响应于至少部分地包括在第一节点接收从第二节点发出的请求以从一种操作模式转换到另一种操作模式,将信号的幅度选择为 在另一种操作模式期间在第一节点和第二节点之间传播。 在一种操作模式下,信号的幅度可能与信号的另一幅度不同。 该实施例的方法还可以响应于至少部分地响应于接收请求,在另一操作模式期间选择要在第一节点中提供的时钟信号的频率。 在一种操作模式期间,该频率可能与时钟信号的另一个频率不同。
    • 10. 发明申请
    • CONTROLLING POWER MANAGEMENT IN MICRO-SERVERS
    • 控制微服务器的电源管理
    • US20140237278A1
    • 2014-08-21
    • US13997874
    • 2012-03-31
    • Anil K. Kumar
    • Anil K. Kumar
    • G06F1/32
    • G06F1/3215G06F1/3206G06F1/3234G06F1/325
    • Systems and methods of enabling power management in a micro server include providing multiple cores, a power management module coupled to the cores, and one or more peripherals coupled to the power management module. The power management module may be configured to cause the one or more peripherals to delay operations based on determining that the cores are in a first power consumption state, and place the cores in a second power consumption state for a predetermined time period. The second power consumption state may consume less power than the first power consumption state. The power management module may cause the one or more peripherals to resume their operations based on expiration of the predetermined time period and may place the cores in a third power consumption state based on the expiration of the time period.
    • 在微服务器中实现电源管理的系统和方法包括提供多个核,耦合到核的电源管理模块以及耦合到电源管理模块的一个或多个外围设备。 功率管理模块可以被配置为使得一个或多个外围设备基于确定核心处于第一功耗状态来延迟操作,并且将核心处于第二功耗状态预定时间段。 第二功耗状态可以消耗比第一功耗状态更少的功率。 功率管理模块可以使得一个或多个外围设备基于预定时间段的到期恢复其操作,并且可以基于该时间段的到期将核心置于第三功耗状态。