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    • 1. 发明申请
    • FOLDED-SHEET-METAL HEATSINKS FOR CLOSELY PACKAGED HEAT-PRODUCING DEVICES
    • 用于封闭热封装置的折叠式金属热源
    • US20080123300A1
    • 2008-05-29
    • US11564353
    • 2006-11-29
    • Shurong TianShawn A. HallPaul W. Coteus
    • Shurong TianShawn A. HallPaul W. Coteus
    • H05K7/20
    • H01L23/3672G11C5/04H01L2924/0002H01L2924/3011H01L2924/00
    • A folded heatsink for cooling heat-producing devices. The folded heatsink includes a substantially planar base having a first end and a second end. The base is intended to be affixed in thermal contact to an exposed, substantially planar surface of one or more heat-producing devices. The folded heatsink also includes two shoulders each having a proximal end and a distal end. The proximal ends of the shoulders project substantially at right angles from the first and second ends of the base. The folded heatsink also includes two arms each having a proximal end and a distal end. The proximal ends of the arms project substantially at right angles from the distal ends of the shoulders such that the base, shoulders and arms from a nearly closed rectangular tube formed from a continuous sheet of metal.
    • 用于冷却发热装置的折叠式散热器。 折叠式散热器包括具有第一端和第二端的基本平坦的基座。 底座旨在与一个或多个发热装置的暴露的,基本平坦的表面热接触地固定。 折叠的散热器还包括两个肩部,每个肩部具有近端和远端。 肩部的近端从基座的第一端和第二端基本成直角地突出。 折叠的散热器还包括两个臂,每个臂具有近端和远端。 臂的近端从肩部的远端基本上以直角突出,使得基部,肩部和臂从近似接近的矩形管由连续的金属片形成。
    • 5. 发明授权
    • Folded-sheet-metal heatsinks for closely packaged heat-producing devices
    • 用于紧密包装的发热装置的折叠金属片散热片
    • US07474529B2
    • 2009-01-06
    • US11564353
    • 2006-11-29
    • Shurong TianShawn A. HallPaul W. Coteus
    • Shurong TianShawn A. HallPaul W. Coteus
    • H05K7/20
    • H01L23/3672G11C5/04H01L2924/0002H01L2924/3011H01L2924/00
    • A folded heatsink for cooling heat-producing devices. The folded heatsink includes a substantially planar base having a first end and a second end. The base is intended to be affixed in thermal contact to an exposed, substantially planar surface of one or more heat-producing devices. The folded heatsink also includes two shoulders each having a proximal end and a distal end. The proximal ends of the shoulders project substantially at right angles from the first and second ends of the base. The folded heatsink also includes two arms each having a proximal end and a distal end. The proximal ends of the arms project substantially at right angles from the distal ends of the shoulders such that the base, shoulders and arms from a nearly closed rectangular tube formed from a continuous sheet of metal.
    • 用于冷却发热装置的折叠式散热器。 折叠式散热器包括具有第一端和第二端的基本平坦的基座。 底座旨在与一个或多个发热装置的暴露的,基本平坦的表面热接触地固定。 折叠的散热器还包括两个肩部,每个肩部具有近端和远端。 肩部的近端从基座的第一端和第二端基本成直角地突出。 折叠的散热器还包括两个臂,每个臂具有近端和远端。 臂的近端从肩部的远端基本上以直角突出,使得基部,肩部和臂从近似接近的矩形管由连续的金属片形成。
    • 6. 发明授权
    • Efficiency of static core turn-off in a system-on-a-chip with variation
    • 在具有变化的片上系统中静态磁芯关断的效率
    • US08571847B2
    • 2013-10-29
    • US12727984
    • 2010-03-19
    • Chen-Yong CherPaul W. CoteusAlan GaraEren KursunDavid P. PaulsenBrian A. SchuelkeJohn E. Sheets, IIShurong Tian
    • Chen-Yong CherPaul W. CoteusAlan GaraEren KursunDavid P. PaulsenBrian A. SchuelkeJohn E. Sheets, IIShurong Tian
    • G06G7/75
    • G06F1/3203G06F1/206G06F1/3237G06F11/24Y02D10/128Y02D10/16
    • A processor-implemented method for improving efficiency of a static core turn-off in a multi-core processor with variation, the method comprising: conducting via a simulation a turn-off analysis of the multi-core processor at the multi-core processor's design stage, wherein the turn-off analysis of the multi-core processor at the multi-core processor's design stage includes a first output corresponding to a first multi-core processor core to turn off; conducting a turn-off analysis of the multi-core processor at the multi-core processor's testing stage, wherein the turn-off analysis of the multi-core processor at the multi-core processor's testing stage includes a second output corresponding to a second multi-core processor core to turn off; comparing the first output and the second output to determine if the first output is referring to the same core to turn off as the second output; outputting a third output corresponding to the first multi-core processor core if the first output and the second output are both referring to the same core to turn off.
    • 一种用于提高多核处理器中的静态核心关断的效率的处理器实现的方法,所述方法包括:通过模拟在多核处理器的设计处进行多核处理器的关断分析 其中所述多核处理器的设计阶段的所述多核处理器的关断分析包括对应于第一多核处理器核的第一输出关闭; 在多核处理器的测试阶段对多核处理器进行关断分析,其中多核处理器的测试阶段的多核处理器的关断分析包括对应于第二多核处理器的第二多输出 核心处理器核心关闭; 比较第一输出和第二输出以确定第一输出是否指相同的磁芯作为第二输出关闭; 如果第一输出和第二输出均指向相同的核来关闭,则输出对应于第一多核处理器核心的第三输出。