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    • 5. 发明申请
    • Cooling manifold
    • 冷却歧管
    • US20100230079A1
    • 2010-09-16
    • US12381385
    • 2009-03-11
    • Charles C. ByersWilliam H. Scofield
    • Charles C. ByersWilliam H. Scofield
    • F28F9/02F28F7/00
    • H01L23/473F28D15/0275F28F7/02H01L2924/0002H01L2924/00
    • Apparatus including cooling manifold, having metal cooling body and metal cooling block. Metal cooling body has internal passageway. Metal cooling block extends away from metal cooling body. Metal cooling block has surface oriented for being placed adjacent to and in substantially direct thermal communication with an electronic component located at distance away from metal cooling body. Cooling manifold is configured for circulating a working fluid through internal passageway and for precluding passage of the working fluid from metal cooling body into metal cooling block. Method that includes providing electronic component and cooling manifold. Provided cooling manifold includes metal cooling body and metal cooling block; metal cooling body has internal passageway; metal cooling block extends away from metal cooling body; metal cooling block has surface oriented adjacent to and in substantially direct thermal communication with electronic component being located at distance away from metal cooling body. Method also includes causing working fluid to be circulated through internal passageway while precluding passage of working fluid from metal cooling body into metal cooling block, such that heat is transferred from electronic component to working fluid.
    • 装置包括具有金属冷却体和金属冷却块的冷却歧管。 金属冷却体有内部通道。 金属冷却块远离金属冷却体。 金属冷却块具有表面定向以便放置成与位于离金属冷却体远的电子部件相邻并且与之基本上直接热连通。 冷却歧管被构造成使工作流体通过内部通道循环并且用于阻止工作流体从金属冷却体通入金属冷却块。 包括提供电子部件和冷却歧管的方法。 提供的冷却歧管包括金属冷却体和金属冷却块; 金属冷却体有内部通道; 金属冷却块远离金属冷却体; 金属冷却块具有与电子部件相邻并且与电子部件基本上直接热连通的表面取向,远离金属冷却体。 方法还包括使工作流体通过内部通道循环,同时阻止工作流体从金属冷却体通入金属冷却块,使得热量从电子部件转移到工作流体。
    • 6. 发明授权
    • Apparatus for providing holdover power
    • 用于提供保持电力的装置
    • US07423852B2
    • 2008-09-09
    • US11137524
    • 2005-05-25
    • Charles C. Byers
    • Charles C. Byers
    • H02H3/22
    • H02J9/061
    • Apparatus defining a circuit module for receiving an operating voltage on an input and for generating a voltage of a lower magnitude that is applied to an intermediate bus. A holdover energy source, such as an ultra capacitor or the like, of the circuit module has a voltage lower than said input voltage and the voltage of said intermediate bus. The holdover energy source is connected under control of a voltage supervisor to a boost converter in response to the receipt of a transient on the input. The boost converter is responsive to the connection to generate a boost voltage that maintains a constant voltage on the intermediate bus.
    • 定义用于接收输入上的工作电压并产生施加到中间总线的较低幅度的电压的电路模块的装置。 电路模块的诸如超级电容器等的保持能量源具有低于所述输入电压和所述中间总线的电压的电压。 响应于输入上的瞬态接收,保持能量源在电压监控器的控制下连接到升压转换器。 升压转换器响应于连接以产生在中间总线上维持恒定电压的升压电压。
    • 10. 发明授权
    • Cooling manifold
    • 冷却歧管
    • US08844609B2
    • 2014-09-30
    • US12381385
    • 2009-03-11
    • Charles C. ByersWilliam H. Scofield
    • Charles C. ByersWilliam H. Scofield
    • H01L23/473F28F7/02
    • H01L23/473F28D15/0275F28F7/02H01L2924/0002H01L2924/00
    • Apparatus including cooling manifold, having metal cooling body and metal cooling block. Metal cooling body has internal passageway. Metal cooling block extends away from metal cooling body. Metal cooling block has surface oriented for being placed adjacent to and in substantially direct thermal communication with an electronic component located at distance away from metal cooling body. Cooling manifold is configured for circulating a working fluid through internal passageway and for precluding passage of the working fluid from metal cooling body into metal cooling block. Method that includes providing electronic component and cooling manifold. Provided cooling manifold includes metal cooling body and metal cooling block; metal cooling body has internal passageway; metal cooling block extends away from metal cooling body; metal cooling block has surface oriented adjacent to and in substantially direct thermal communication with electronic component being located at distance away from metal cooling body. Method also includes causing working fluid to be circulated through internal passageway while precluding passage of working fluid from metal cooling body into metal cooling block, such that heat is transferred from electronic component to working fluid.
    • 装置包括具有金属冷却体和金属冷却块的冷却歧管。 金属冷却体有内部通道。 金属冷却块远离金属冷却体。 金属冷却块具有表面定向以便放置成与位于离金属冷却体远的电子部件相邻并且与之基本上直接热连通。 冷却歧管被构造成使工作流体通过内部通道循环并且用于阻止工作流体从金属冷却体通入金属冷却块。 包括提供电子部件和冷却歧管的方法。 提供的冷却歧管包括金属冷却体和金属冷却块; 金属冷却体有内部通道; 金属冷却块远离金属冷却体; 金属冷却块具有与电子部件相邻并且与电子部件基本上直接热连通的表面取向,远离金属冷却体。 方法还包括使工作流体通过内部通道循环,同时阻止工作流体从金属冷却体通入金属冷却块,使得热量从电子部件转移到工作流体。