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    • 52. 发明授权
    • Mechanical highly compliant thermal interface pad
    • 机械高度兼容的热界面垫
    • US07131199B2
    • 2006-11-07
    • US11049346
    • 2005-02-01
    • Eric C. PetersonBrent A. BoudreauxChristian L. Belady
    • Eric C. PetersonBrent A. BoudreauxChristian L. Belady
    • B21D53/02H05K7/20
    • F28F23/00F28F2013/005Y10T29/4935
    • A thermal interface pad is constructed from a plurality of thermal interface plate assemblies. Alternate thermal interface plate assemblies are rotated about 180 degrees from each other within the pad. Each plate assembly includes one or more spring members configured such that the completed thermal interface pad includes a plurality of spring members on at least two sides of the pad. The thermal interface plate assemblies are configured to allow the thermal interface pad to vary greatly in thickness. The pad is sufficiently adjustable in thickness to accommodate gross tolerance differences between multiple heat generating and sinking devices. Rods inserted in openings in the plates may be used to align the plate assemblies and to apply compressive force to the plates, improving the thermal conductivity between adjacent plates and greatly decreasing the overall thermal resistance of the thermal interface pad.
    • 热界面垫由多个热界面板组件构成。 替代的热界面板组件在衬垫内相互旋转约180度。 每个板组件包括一个或多个弹簧构件,其构造成使得完整的热界面垫在衬垫的至少两侧上包括多个弹簧构件。 热界面板组件被配置为允许热界面垫的厚度变化很大。 垫片的厚度可以充分调节,以适应多个发热和下沉装置之间的总容差。 插入板中的开口中的杆可以用于对准板组件并且向板施加压力,改善相邻板之间的热导率并大大降低热界面垫的总体热阻。
    • 59. 发明授权
    • System and method for controlling power to resources based on historical utilization data
    • 基于历史使用数据控制资源的系统和方法
    • US08041967B2
    • 2011-10-18
    • US11058554
    • 2005-02-15
    • Christian L. BeladyTom L. Vaden
    • Christian L. BeladyTom L. Vaden
    • G06F1/26G06F1/32
    • G06F1/3203G06F1/325G06F1/3275G06F1/3287Y02D10/14Y02D10/171
    • A method comprises collecting utilization data for a resource, and predicting by a power management system, based on the collected utilization data, future utilization of the resource. The method further comprises controlling, by the power management system, power to the resource, based at least in part on the predicted future utilization of the resource. In one embodiment, the utilization data is collected for a plurality of resources that are operable to perform tasks, and the method further comprises determining, by the power management system, how many of the resources are needed to provide a desired capacity for servicing the predicted future utilization of the resources for performing the tasks. The method further comprises configuring, by the power management system, ones of the resources exceeding the determined number of resources needed to provide the desired capacity in a reduced power-consumption mode.
    • 一种方法包括收集资源的利用数据,以及由电力管理系统基于收集的利用数据预测资源的未来利用。 该方法还包括至少部分地基于资源的预测的未来利用来控制电力管理系统对资源的功率。 在一个实施例中,针对可操作以执行任务的多个资源收集利用数据,并且该方法还包括由电力管理系统确定需要多少资源以提供用于维护预测的所需能力 未来利用资源执行任务。 该方法还包括通过电力管理系统配置超过确定的资源数量中的一个资源,以在降低的功耗模式中提供期望的容量所需的资源。