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    • 1. 发明申请
    • Power Management Events Profiling
    • 电力管理事件分析
    • US20100281309A1
    • 2010-11-04
    • US12478273
    • 2009-06-04
    • Gilbert LaurentiDario Cardini
    • Gilbert LaurentiDario Cardini
    • G06F11/34G06F1/32
    • G06F11/3648G06F11/3013G06F11/3055G06F11/3093G06F11/3409G06F11/3476G06F11/348G06F11/3636G06F2201/86G06F2201/88Y02D10/34
    • In a method for monitoring power consumption by a system within an integrated circuit, one or more software programs are executed on the system on a chip (SOC). While the program executes, power control settings of a plurality of functional units within the SOC may be adjusted in response to executing the one or more software programs, whereby power consumption within the SOC varies over time. The power control settings may be changed in response to explicit directions from the executing software, or may occur autonomously in response to load monitoring control modules within the SOC. A sequence of power states is reported for the plurality of functional units within the SOC. Each of the sequence of power states may include clock frequencies from multiple clock domains, voltage levels for multiple voltage domains, initiator activity, target activity, memory module power enablement, or power enablement of each of the plurality of functional units.
    • 在用于监视集成电路内的系统的功率消耗的方法中,在芯片上的系统(SOC)上执行一个或多个软件程序。 在程序执行时,可以响应于执行一个或多个软件程序来调整SOC内的多个功能单元的功率控制设置,由此SOC内的功耗随时间而变化。 功率控制设置可以响应于来自执行软件的显式指示而改变,或者可以响应于SOC内的负载监视控制模块自主地发生。 针对SOC内的多个功能单元报告功率状态序列。 功率状态序列中的每一个可以包括来自多个时钟域的时钟频率,多个电压域的电压电平,启动器活动,目标活动,存储器模块功率使能或多个功能单元中的每一个的功率使能。
    • 2. 发明授权
    • Power management events profiling
    • 电源管理事件分析
    • US08190931B2
    • 2012-05-29
    • US12478273
    • 2009-06-04
    • Gilbert LaurentiDario Cardini
    • Gilbert LaurentiDario Cardini
    • G06F15/00
    • G06F11/3648G06F11/3013G06F11/3055G06F11/3093G06F11/3409G06F11/3476G06F11/348G06F11/3636G06F2201/86G06F2201/88Y02D10/34
    • In a method for monitoring power consumption by a system within an integrated circuit, one or more software programs are executed on the system on a chip (SOC). While the program executes, power control settings of a plurality of functional units within the SOC may be adjusted in response to executing the one or more software programs, whereby power consumption within the SOC varies over time. The power control settings may be changed in response to explicit directions from the executing software, or may occur autonomously in response to load monitoring control modules within the SOC. A sequence of power states is reported for the plurality of functional units within the SOC. Each of the sequence of power states may include clock frequencies from multiple clock domains, voltage levels for multiple voltage domains, initiator activity, target activity, memory module power enablement, or power enablement of each of the plurality of functional units.
    • 在用于监视集成电路内的系统的功率消耗的方法中,在芯片上的系统(SOC)上执行一个或多个软件程序。 在程序执行时,可以响应于执行一个或多个软件程序来调整SOC内的多个功能单元的功率控制设置,由此SOC内的功耗随时间而变化。 功率控制设置可以响应于来自执行软件的显式指示而改变,或者可以响应于SOC内的负载监视控制模块自主地发生。 针对SOC内的多个功能单元报告功率状态序列。 功率状态序列中的每一个可以包括来自多个时钟域的时钟频率,多个电压域的电压电平,启动器活动,目标活动,存储器模块功率使能或多个功能单元中的每一个的功率使能。