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    • 2. 发明申请
    • AUTOMATIC ADJUSTMENT OF THERMAL REQUIREMENT
    • 自动调整热量要求
    • US20100235012A1
    • 2010-09-16
    • US12564025
    • 2009-09-21
    • Keith CoxGaurav KapoorMichael Culbert
    • Keith CoxGaurav KapoorMichael Culbert
    • G05D23/19G06N5/02
    • G06F1/203G06F1/1677G06F1/206G06F1/3203G06F1/324G06F1/3296Y02D10/126Y02D10/172
    • Methods and apparatuses to automatically adjust a thermal requirement of a data processing system are described. One or more conditions associated with a data processing system are detected. A temperature requirement for the data processing system is determined based on the one or more conditions. The performance of the data processing system may be throttled to maintain a temperature of the data processing system below the temperature requirement. Detecting the one or more conditions associated with the data processing system may include determining a location of the data processing system based on a measured motion, a state of a peripheral device, a position of one portion of the data processing system (e.g., a lid) relative another portion of the data processing system (e.g., a bottom portion), a type of application operating on the data processing system, or any combination thereof.
    • 描述了自动调整数据处理系统的热要求的方法和装置。 检测与数据处理系统相关联的一个或多个条件。 基于一个或多个条件来确定数据处理系统的温度要求。 可以限制数据处理系统的性能,以将数据处理系统的温度保持在温度要求以下。 检测与数据处理系统相关联的一个或多个条件可以包括基于所测量的运动,外围设备的状态,数据处理系统的一部分的位置来确定数据处理系统的位置(例如,盖 )数据处理系统的相对另一部分(例如,底部),在数据处理系统上操作的应用的类型或其任何组合。
    • 3. 发明申请
    • FORCED IDLE OF A DATA PROCESSING SYSTEM
    • 数据处理系统的强制空闲
    • US20110219247A1
    • 2011-09-08
    • US13112634
    • 2011-05-20
    • Guy G. Sotomayor, JR.Keith CoxDavid G. ConroyMichael Culbert
    • Guy G. Sotomayor, JR.Keith CoxDavid G. ConroyMichael Culbert
    • G06F1/32
    • G06F1/3203G06F1/324G06F1/3296G06F11/3423Y02D10/126Y02D10/172Y02D10/34Y02D50/20
    • Exemplary embodiments of methods and apparatuses to manage a power of a data processing system are described. One or more constraint parameters of a system are monitored. The data processing system is forced into an idle state for a first portion of a time while allowed to operate for a second portion of the time based on the one or more constraint parameters, wherein the system is forced into the idle state in response to comparing a target idle time to an actual idle time. The target idle time of the system is determined, in one embodiment, based on the one or more constraint parameters. The actual idle time of the system may be monitored to take into account interrupts which disrupt an idle time and idle times resulting from no software instructions to execute. The system may be allowed to operate based on comparisons of the target idle time and the actual idle time.
    • 描述了用于管理数据处理系统的功率的方法和装置的示例性实施例。 监视系统的一个或多个约束参数。 数据处理系统在一段时间内被强制进入空闲状态,同时基于一个或多个约束参数允许对时间的第二部分进行操作,其中响应于比较而将系统强制进入空闲状态 目标空闲时间到实际空闲时间。 在一个实施例中,基于一个或多个约束参数确定系统的目标空闲时间。 可以监视系统的实际空闲时间以考虑中断,其中断由空闲时间和空闲时间引起的无法执行的软件指令。 可以基于目标空闲时间和实际空闲时间的比较来允许系统操作。
    • 4. 发明授权
    • Forced idle of a data processing system
    • 强制空闲的数据处理系统
    • US07949889B2
    • 2011-05-24
    • US11970483
    • 2008-01-07
    • Guy G. Sotomayor, Jr.Keith CoxDavid G. ConroyMichael Culbert
    • Guy G. Sotomayor, Jr.Keith CoxDavid G. ConroyMichael Culbert
    • G06F1/00
    • G06F1/3203G06F1/324G06F1/3296G06F11/3423Y02D10/126Y02D10/172Y02D10/34Y02D50/20
    • Exemplary embodiments of methods and apparatuses to manage a power of a data processing system are described. One or more constraint parameters of a system are monitored. The data processing system is forced into an idle state for a first portion of a time while allowed to operate for a second portion of the time based on the one or more constraint parameters, wherein the system is forced into the idle state in response to comparing a target idle time to an actual idle time. The target idle time of the system is determined, in one embodiment, based on the one or more constraint parameters. The actual idle time of the system may be monitored to take into account interrupts which disrupt an idle time and idle times resulting from no software instructions to execute. The system may be allowed to operate based on comparisons of the target idle time and the actual idle time.
    • 描述了用于管理数据处理系统的功率的方法和装置的示例性实施例。 监视系统的一个或多个约束参数。 数据处理系统在一段时间内被强制进入空闲状态,同时基于一个或多个约束参数允许对时间的第二部分进行操作,其中响应于比较而将系统强制进入空闲状态 目标空闲时间到实际空闲时间。 在一个实施例中,基于一个或多个约束参数确定系统的目标空闲时间。 可以监视系统的实际空闲时间以考虑中断,其中断由空闲时间和空闲时间引起的无法执行的软件指令。 可以基于目标空闲时间和实际空闲时间的比较来允许系统操作。
    • 6. 发明申请
    • Methods and apparatuses for dynamic thermal control
    • 动态热控制的方法和装置
    • US20070067136A1
    • 2007-03-22
    • US11212983
    • 2005-08-25
    • David ConroyKeith CoxMichael Culbert
    • David ConroyKeith CoxMichael Culbert
    • G01K1/00G06F1/00
    • G06F1/206
    • Methods and apparatuses for dynamically budgeting power usage to control temperatures in a data processing system. In one aspect, a data processing system includes: a first sensor to determine an ambient temperature of an environment in which the data processing system is; and a controller (e.g., a microcontroller or a microprocessor) coupled to the sensor to control operations of the data processing system according to the ambient temperature. In one example, the data processing system further includes a second sensor to determine an actual temperature of a component of the data processing system. In one example, a controller is coupled to the temperature sensors to determine an operating setting of the data processing system based on a prediction of a temperature of the data processing system which is a function of the plurality of actual temperatures and the operating setting of the data processing system.
    • 用于动态预算功率使用以控制数据处理系统中的温度的方法和装置。 一方面,数据处理系统包括:第一传感器,用于确定数据处理系统所处环境的环境温度; 以及耦合到传感器的控制器(例如,微控制器或微处理器),以根据环境温度来控制数据处理系统的操作。 在一个示例中,数据处理系统还包括用于确定数据处理系统的部件的实际温度的第二传感器。 在一个示例中,控制器耦合到温度传感器,以基于数据处理系统的温度的预测来确定数据处理系统的操作设置,数据处理系统的温度是多个实际温度和操作设置的函数 数据处理系统。