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    • 2. 发明授权
    • Methods for configuring tubing for interconnecting in-series multiple liquid-cooled cold plates
    • 用于配置串联多个液冷冷板的管道的方法
    • US07751918B2
    • 2010-07-06
    • US11620088
    • 2007-01-05
    • Levi A. CampbellJohn L. ColbertMichael J. Ellsworth, Jr.Arvind K. Sinha
    • Levi A. CampbellJohn L. ColbertMichael J. Ellsworth, Jr.Arvind K. Sinha
    • G06F19/00F25B7/00H01G4/002H02B1/00
    • H05K7/20809G06F1/20
    • Methods of configuring a cooling subassembly for an electronics system are provided, that is, for establishing a coolant-carrying tube layout for interconnecting multiple liquid-cooled cold plates in series-fluid communication for cooling multiple heat-generating electronic components of an electronics system. The electronic components are to be plugged in fixed relation into a preconfigured motherboard, and the tube layout includes at least one rigid coolant-carrying tube. Simplified analysis is initially performed to evaluate stress on the rigid tube(s) and determine if loss of actuation load on the electronic components exceeds an acceptable threshold, and if so, at least one tube having high stress is identified and reconfigured. Thereafter, analysis is performed to determine whether, with available actuation load on the cooling subassembly, electrical connection loading between the electronic components and the supporting motherboard is above an acceptable minimum level. If so, the coolant-carrying tube layout is chosen as a final design.
    • 提供了构造用于电子系统的冷却子组件的方法,即,用于建立冷却剂承载管布局,用于将串联流体通信中的多个液冷冷板互连,以冷却电子系统的多个发热电子部件。 电子部件将以固定关系插入到预配置的主板中,并且管布置包括至少一个刚性的冷却剂输送管。 最初进行简化分析以评估刚性管上的应力,并确定电子部件上的致动负载的损失是否超过可接受的阈值,如果是,则识别和重新配置至少一个具有高应力的管。 此后,执行分析以确定在冷却子组件上的可用致动负载下,电子部件和支撑母板之间的电连接负载是否高于可接受的最低水平。 如果是这样,选择冷却剂载体管布局作为最终设计。
    • 9. 发明申请
    • Motherboard Assembly for Interconnecting and Distributing Signals and Power
    • 用于互连和分配信号和电源的主板组件
    • US20110085313A1
    • 2011-04-14
    • US12579051
    • 2009-10-14
    • John L. ColbertArvind K. SinhaRoger D. Weekly
    • John L. ColbertArvind K. SinhaRoger D. Weekly
    • H05K1/11G06F17/50
    • H05K1/144G11C5/025H05K1/113H05K1/114H05K1/141H05K3/0058H05K3/325H05K2201/044H05K2201/10378H05K2201/10545H05K2201/10719H05K2201/2009
    • A system, method, and motherboard assembly are described for interconnecting and distributing signals and power between co-planar boards that function as a single motherboard. The motherboard assembly includes a multilayered first printed circuit board having opposed parallel first and second surfaces, each having at least one land grid array (LGA) disposed thereon. The assembly further includes at least one wiring layer (Y) designed to only electrically interconnect components on or within the first PCB, and at least one wiring layer (X) designed to only electrically connect the components on the first PCB to a multilayered second PCB. The multilayered second PCB has opposed parallel first and second surfaces, the first surface having at least one LGA disposed thereon. It further includes at least one wiring layer (V) designed to only electrically interconnect components on or within the second PCB, and at least one layer (X) designed to only electrically interconnect the components on the second PCB with the components on the first PCB. A first LGA interposer couples to the LGA disposed on the first surface of the first PCB, and electrically connects at least one component to the first PCB. A second LGA interposer is sandwiched between and couples to the LGA disposed on the second surface of the first PCB and to the LGA disposed on the first surface of the second PCB. It electrically connects the first PCB to components on the second PCB.
    • 描述了用于在用作单个主板的共面板之间互连和分配信号和功率的系统,方法和主板组件。 主板组件包括具有相对的平行的第一和第二表面的多层第一印刷电路板,每个具有设置在其上的至少一个焊盘格栅阵列(LGA)。 组件还包括至少一个布线层(Y),其被设计成仅电连接第一PCB上或其内部的部件,以及至少一个布线层(X),其设计成仅将第一PCB上的部件电连接到多层第二PCB 。 所述多层第二PCB具有相对的平行的第一和第二表面,所述第一表面具有设置在其上的至少一个LGA。 它还包括至少一个被设计成仅电连接第二PCB上或第二PCB内的组件的布线层(V),以及设计成仅将第二PCB上的部件与第一PCB上的部件电互连的至少一个层(X) 。 第一LGA插入器耦合到布置在第一PCB的第一表面上的LGA,并且将至少一个部件电连接到第一PCB。 第二LGA插入件夹在布置在第一PCB的第二表面上的LGA之间并耦合到布置在第二PCB的第一表面上的LGA。 它将第一个PCB电连接到第二个PCB上的组件。