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    • 4. 发明申请
    • Processor, multiprocessor system, processor system, information processing apparatus, and temperature control method
    • 处理器,多处理器系统,处理器系统,信息处理装置和温度控制方法
    • US20070198134A1
    • 2007-08-23
    • US10589380
    • 2004-12-22
    • Kenichi AdachiKazuaki YazawaIwao TakiguchiAtsuhiko ImaiTetsuji Tamura
    • Kenichi AdachiKazuaki YazawaIwao TakiguchiAtsuhiko ImaiTetsuji Tamura
    • G05D23/00
    • G06F1/206G06F1/3203G06F1/329G06F9/3836G06F9/3869G06F9/4881G06F9/505Y02D10/126Y02D10/24
    • An instruction decoder identifies, for each instruction, an operational block involved in the execution of the instruction and an associated heat release coefficient. The instruction decoder stores identified information in a heat release coefficient profile. An instruction scheduler schedules the instructions in accordance with the dependence of the instructions on data. A heat release frequency adder cumulatively adds the heat release coefficient to the heat release frequency of the operational block held in the operational block heat release frequency register as the execution of the scheduled instructions proceeds. A heat release frequency subtractor subtracts from the heat release frequency of the operational blocks in the operational block heat release frequency register in accordance with heat discharge that occurs with time. A hot spot detector detects an operational block with its heat release frequency, held in the operational block heat release frequency register, exceeding a predetermined threshold value as a hot spot. The instruction scheduler delays the execution of the instruction involving for its execution the operational block identified as a hot spot.
    • 指令解码器针对每个指令识别涉及执行指令的操作块和相关的放热系数。 指令解码器将识别的信息存储在放热系数分布中。 指令调度器根据指令对数据的依赖性来调度指令。 随着调度指令的执行进行,放热频率加法器将放热系数累积地加到保持在操作块放热频率寄存器中的操作块的放热频率。 热释放频率减法器根据随时间发生的放热量从操作块放热频率寄存器中的操作块的放热频率中减去。 热点检测器以其热释放频率检测到操作块放热频率寄存器中的操作块超过预定阈值作为热点。 指令调度器延迟涉及其执行的指令的执行被识别为热点的操作块。
    • 5. 发明申请
    • Systems and methods for thermal management
    • 热管理系统和方法
    • US20070106428A1
    • 2007-05-10
    • US11271460
    • 2005-11-10
    • Takashi OmizoCharles JohnsMichael WangKazuaki YazawaToshiyuki Hiroi
    • Takashi OmizoCharles JohnsMichael WangKazuaki YazawaToshiyuki Hiroi
    • G05D23/00
    • G05D23/19
    • Systems and methods for sensing temperatures of multiple functional blocks within a digital device and controlling the operation of these functional blocks in a manner that selectively reduces temperatures associated with some of the functional blocks, but not others. One embodiment comprises an integrated circuit having multiple functional blocks (such as processor cores) and a set of thermal sensors coupled to sense the temperatures of the functional blocks. The integrated circuit includes control circuitry configured to receive signals from the thermal sensors, detect thermal events in the functional blocks and to individually adjust operation of the functional blocks to reduce the temperatures causing the thermal events. In one embodiment, the control circuitry includes a detection/control circuit coupled to each of the functional blocks and a thermal management unit configured to evaluate detected thermal events and to determine actions to be taken in response to the thermal events.
    • 用于感测数字设备内的多个功能块的温度的系统和方法,并且以选择性地降低与一些功能块相关联的温度而不是其它功能块的方式来控制这些功能块的操作。 一个实施例包括具有多个功能块(例如处理器核)的集成电路和耦合以感测功能块的温度的一组热传感器。 集成电路包括控制电路,其被配置为从热传感器接收信号,检测功能块中的热事件并且单独地调整功能块的操作以降低导致热事件的温度。 在一个实施例中,控制电路包括耦合到每个功能块的检测/控制电路和被配置为评估检测到的热事件并且确定响应于热事件而采取的动作的热管理单元。