DYNAMIC VOLTAGE AND FREQUENCY MANAGEMENT BASED ON ACTIVE PROCESSORS
    1.
    发明申请
    DYNAMIC VOLTAGE AND FREQUENCY MANAGEMENT BASED ON ACTIVE PROCESSORS 审中-公开
    基于主动处理器的动态电压和频率管理

    公开(公告)号:WO2014204568A1

    公开(公告)日:2014-12-24

    申请号:PCT/US2014/034386

    申请日:2014-04-16

    Applicant: APPLE INC.

    Abstract: In an embodiment, a system may include multiple processors and an automatic power state controller (APSC) configured to switch the processors between various operating points. The operating points may be described by data programmed into the APSC, and the APSC may include a register that is programmable with a target operating point request identifying a target operating point for the processors from among the described operating points. The data describing the operating points may also include an indication of whether or not the number of processors that may be concurrently active at the operating point is limited. Based on the indication and the number of active processors, the APSC may override the requested operating point with a reduced operating point. In some embodiments, a digital power estimator (DPE) may monitor operation of the processors and may throttle the processors when high power consumption is detected.

    Abstract translation: 在一个实施例中,系统可以包括多个处理器和配置成在各个操作点之间切换处理器的自动功率状态控制器(APSC)。 操作点可以由编程到APSC中的数据描述,并且APSC可以包括可编程的寄存器,其具有从所描述的操作点中识别处理器的目标操作点的目标操作点请求。 描述操作点的数据还可以包括在操作点处可能同时活动的处理器的数量是否受限制的指示。 基于指示和有效处理器的数量,APSC可以以减小的操作点覆盖所请求的操作点。 在一些实施例中,数字功率估计器(DPE)可以监视处理器的操作,并且可以在检测到高功耗时调节处理器。

    DYNAMIC VOLTAGE AND FREQUENCY MANAGEMENT BASED ON ACTIVE PROCESSORS
    3.
    发明公开
    DYNAMIC VOLTAGE AND FREQUENCY MANAGEMENT BASED ON ACTIVE PROCESSORS 审中-公开
    挪威飞行员协会

    公开(公告)号:EP3011450A1

    公开(公告)日:2016-04-27

    申请号:EP14724964.3

    申请日:2014-04-16

    Applicant: Apple Inc.

    Abstract: In an embodiment, a system may include multiple processors and an automatic power state controller (APSC) configured to switch the processors between various operating points. The operating points may be described by data programmed into the APSC, and the APSC may include a register that is programmable with a target operating point request identifying a target operating point for the processors from among the described operating points. The data describing the operating points may also include an indication of whether or not the number of processors that may be concurrently active at the operating point is limited. Based on the indication and the number of active processors, the APSC may override the requested operating point with a reduced operating point. In some embodiments, a digital power estimator (DPE) may monitor operation of the processors and may throttle the processors when high power consumption is detected.

    Abstract translation: 在一个实施例中,系统可以包括多个处理器和被配置成在各个操作点之间切换处理器的自动功率状态控制器(APSC)。 操作点可以由编程到APSC中的数据描述,并且APSC可以包括可编程的寄存器,其具有从所描述的操作点中识别处理器的目标工作点的目标操作点请求。 描述操作点的数据还可以包括在操作点处可能同时活动的处理器的数量是否被限制的指示。 基于指示和活动处理器的数量,APSC可以以减小的操作点覆盖所请求的操作点。 在一些实施例中,数字功率估计器(DPE)可以监视处理器的操作,并且可以在检测到高功耗时调节处理器。

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