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    • 1. 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。
    • 5. 发明申请
    • Methods and apparatuses for dynamic power control
    • 动态功率控制的方法和装置
    • US20070049133A1
    • 2007-03-01
    • US11327275
    • 2006-01-05
    • David ConroyMichael CulbertKeith Cox
    • David ConroyMichael CulbertKeith Cox
    • H01R13/73
    • G06F1/26G05D23/19G06F1/28G06F1/30G06F1/3203G06F1/324G06F1/3287G06F1/3296Y02B70/14Y02B70/32Y02B70/3216Y02D10/126Y02D10/171Y02D10/172Y10T307/461
    • Exemplary embodiments of methods and apparatuses to dynamically redistribute power in a system that includes a plurality of subsystems are described. A load profile of the system is identified. The power is redistributed between the subsystems while tracking the load profile. The load profile may be an asymmetric, or a balanced load profile. The load profile is identified based on a utilization factor for each of the subsystems. In one embodiment, the power used by each of the subsystems is sensed by one or more sensors or predicted or estimated. A utilization factor, which may be a ratio of the actual power used by the subsystem to the power allocated to the subsystem, is calculated. The load profile is determined using the utilization factor of each of the subsystems. A power weighting arrangement between the subsystems, for example, a power distribution table, is selected based on the load profile.
    • 描述了在包括多个子系统的系统中动态地重新分配功率的方法和装置的示例性实施例。 识别系统的负载曲线。 在跟踪负载曲线之间,子系统之间重新分配电源。 负载曲线可以是不对称或平衡负载曲线。 基于每个子系统的利用率来识别负载分布。 在一个实施例中,由每个子系统使用的功率由一个或多个传感器感测或预测或估计。 计算利用率,其可以是子系统使用的实际功率与分配给子系统的功率的比率。 使用每个子系统的利用率确定负载曲线。 基于负载曲线来选择子系统之间的功率加权布置,例如功率分配表。
    • 6. 发明申请
    • Methods and apparatuses for dynamic power estimation
    • 动态功率估计方法和装置
    • US20070050647A1
    • 2007-03-01
    • US11212974
    • 2005-08-25
    • David ConroyKeith CoxMichael Culbert
    • David ConroyKeith CoxMichael Culbert
    • G06F1/00
    • G06F1/3203Y02D10/126
    • Methods and apparatuses for dynamically budgeting power usage in a data processing system. In one aspect, a data processing system, includes: one or more components including a first component; and a computing element, such as a microprocessor or a microcontroller, coupled to the first component to obtain one or more operating signals from the first component and to determine, based at least in part on the one or more operating signals, an estimate of a power consumption requirement of the one or more components for operating under the current condition. In one example, one or more sensors are used to determine information on actual power usage for a past period of time. A performance level setting of a second component, such as a CPU, a GPU, or a bus, is determined using the estimate and the information on the actual power usage, such as the operating voltage and frequency.
    • 用于在数据处理系统中动态预算功率使用的方法和装置。 一方面,一种数据处理系统,包括:一个或多个组件,包括第一组件; 以及耦合到第一组件的计算元件,例如微处理器或微控制器,以从第一组件获得一个或多个操作信号,并且至少部分地基于一个或多个操作信号来确定一个或多个操作信号的估计 一种或多种组件在当前状况下运行的功耗要求。 在一个示例中,使用一个或多个传感器来确定关于过去一段时间内的实际功率使用的信息。 使用估计和关于实际功率使用的信息(诸如工作电压和频率)来确定诸如CPU,GPU或总线的第二组件的性能水平设置。
    • 9. 发明授权
    • Strut holding assembly
    • 支撑组件
    • US07416316B2
    • 2008-08-26
    • US11567582
    • 2006-12-06
    • Finn M H O'BrienDavid Conroy
    • Finn M H O'BrienDavid Conroy
    • F21V19/00
    • F21V7/18F16G11/10F16G11/14G03B21/58
    • A strut holding assembly for flexible elongated struts engaging a flexible wall, the assembly including a hub, a plurality of holding arms pivotally connected at spaced locations to the hub between storage positions adjacent the hub, and extended positions extending outwardly of the hub, each holding arm being adapted to immobilize a free inner end of one strut. At least one of the holding arms has a seat adapted for receiving and immobilize the free inner end of a strut in at least one direction and a hook spaced from the seat by a fulcrum distance, the hook being adapted for engaging the strut at a distance from the free inner end of the strut equal to the fulcrum distance, for immobilizing the strut in a bent and tensioned position and in at least three directions and being free to move in a remaining direction.
    • 用于柔性细长支柱的撑杆保持组件,其接合柔性壁,所述组件包括毂,多个保持臂,所述保持臂在与所述毂相邻的存储位置之间以间隔开的位置枢转地连接到所述毂,以及从所述毂向外延伸的延伸位置, 臂适于固定一个支柱的自由内端。 至少一个握持臂具有适于接收和固定支柱在至少一个方向上的自由内端的座位和与支座间隔开的钩子的支点距离,所述钩子适于在一定距离处接合支柱 从支柱的自由内端等于支点距离,用于将支柱固定在弯曲和张紧的位置并且至少在三个方向上并且在剩余方向上自由移动。
    • 10. 发明授权
    • Light with front and rear panels
    • 灯与前面板和后面板
    • US07234843B2
    • 2007-06-26
    • US11379083
    • 2006-04-18
    • Gary RegesterDavid Conroy
    • Gary RegesterDavid Conroy
    • B60Q1/14F21V14/08G03B15/021
    • G03B15/02F21V1/14F21V13/02F21V17/002F21Y2103/30F21Y2113/00G03B15/07
    • A light comprising a rear light modifying panel having a front surface and opposite sides; a lamp support panel assembly connected at least at two spaced apart locations to the rear light modifying panel assembly, for supporting at least one lamp in front of the front surface and between the opposite sides of the rear light modifying panel assembly; and a front light modifying panel having a rear surface spaced from the front surface of the rear light modifying panel, the front light modifying panel having opposite sides connected to the opposite sides of the rear light modifying panel. The lamp support panel assembly is between the front and rear light modifying panels for holding the at least one lamp between the front and rear light modifying panels.
    • 一种灯,包括具有前表面和相对侧的后光修改板; 至少在两个间隔开的位置处连接到后光修改面板组件的灯支撑面板组件,用于在后光修改面板组件的前表面之前和相对侧之间支撑至少一个灯; 以及具有与后侧光修改面板的前表面间隔开的后表面的前光修改面板,前光修改面板具有连接到后光修改面板的相对侧的相对侧。 灯支撑面板组件位于前后光修改面板之间,用于将至少一个灯保持在前后光修改面板之间。