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    • 1. 发明申请
    • A DYNAMIC AIR MOVING SYSTEM
    • 动态空气移动系统
    • US20080024983A1
    • 2008-01-31
    • US11461250
    • 2006-07-31
    • William J. AnderlMaurice F. HolahanArvind K. SinhaGregory S. Vande Corput
    • William J. AnderlMaurice F. HolahanArvind K. SinhaGregory S. Vande Corput
    • H05K7/20
    • H05K7/20836H05K7/20727
    • Disclosed is a dynamic air moving system comprising a rail system disposed in an electronic enclosure, at least one fan housing moveably disposed on the rail system, the fan being actuatable along the rail system, a pivotable fan disposed in each of the at least one fan housings, at least one blade included with the fan, the at least one blade being rotatable about at least one blade axes, a fan controller chip controlling actuation of at least one fan housing, individual rotation of at least one blade, and rotation of the fan, a chip thermal sensor disposed on at least one chip located in the electronic enclosure, the thermal sensor being linked to the fan controller chip, and a drive thermal sensor disposed on at least one disk drive associated with the electronic enclosure, the drive thermal sensor being linked to the fan controller chip.
    • 公开了一种动态空气移动系统,其包括设置在电子外壳中的轨道系统,至少一个风扇壳体,其可移动地设置在轨道系统上,风扇可沿轨道系统致动,可枢转风扇设置在每个至少一个风扇 壳体,包括在风扇中的至少一个叶片,所述至少一个叶片可围绕至少一个叶片轴线旋转;风扇控制器芯片,其控制至少一个风扇壳体的致动,至少一个叶片的单独旋转, 风扇,设置在位于电子外壳中的至少一个芯片上的芯片热传感器,热传感器连接到风扇控制器芯片,以及设置在与电子外壳相关联的至少一个磁盘驱动器上的驱动热传感器,驱动热 传感器连接到风扇控制器芯片。
    • 2. 发明授权
    • Dynamic air moving system
    • 动态空气移动系统
    • US07352575B2
    • 2008-04-01
    • US11461250
    • 2006-07-31
    • William J. AnderlMaurice F. HolahanArvind K. SinhaGregory S. Vande Corput
    • William J. AnderlMaurice F. HolahanArvind K. SinhaGregory S. Vande Corput
    • H05K7/20
    • H05K7/20836H05K7/20727
    • Disclosed is a dynamic air moving system comprising a rail system disposed in an electronic enclosure, at least one fan housing moveably disposed on the rail system, the fan being actuatable along the rail system, a pivotable fan disposed in each of the at least one fan housings, at least one blade included with the fan, the at least one blade being rotatable about at least one blade axes, a fan controller chip controlling actuation of at least one fan housing, individual rotation of at least one blade, and rotation of the fan, a chip thermal sensor disposed on at least one chip located in the electronic enclosure, the thermal sensor being linked to the fan controller chip, and a drive thermal sensor disposed on at least one disk drive associated with the electronic enclosure, the drive thermal sensor being linked to the fan controller chip.
    • 公开了一种动态空气移动系统,其包括设置在电子外壳中的轨道系统,至少一个风扇壳体,其可移动地设置在轨道系统上,风扇可沿轨道系统致动,可枢转风扇设置在每个至少一个风扇 壳体,包括在风扇中的至少一个叶片,所述至少一个叶片可围绕至少一个叶片轴线旋转;风扇控制器芯片,其控制至少一个风扇壳体的致动,至少一个叶片的单独旋转, 风扇,设置在位于电子外壳中的至少一个芯片上的芯片热传感器,热传感器连接到风扇控制器芯片,以及设置在与电子外壳相关联的至少一个磁盘驱动器上的驱动热传感器,驱动热 传感器连接到风扇控制器芯片。
    • 3. 发明申请
    • Flexible Heat Exchanger
    • 柔性换热器
    • US20110303403A1
    • 2011-12-15
    • US12814175
    • 2010-06-11
    • Maurice F. HolahanEric V. KlinePaul N. KrystekMichael R. RasmussenArvind K. SinhaStephen M. Zins
    • Maurice F. HolahanEric V. KlinePaul N. KrystekMichael R. RasmussenArvind K. SinhaStephen M. Zins
    • F28F21/00B21D53/02
    • H01L23/4332F28F3/12F28F2255/02H01L23/473H01L2924/0002Y10T29/4935H01L2924/00
    • An embodiment of the invention comprises a method for constructing a heat exchanger for cooling one or more semiconductor components. The method comprises the step of providing first and second planar sheets of specified thermally conductive metal foil, wherein each of the sheets has and exterior side and an interior side. The method further comprises forming one or more thermal contact nodes (TCNs) in the first sheet, wherein each TCN extends outward from the exterior side of the first sheet, and comprises a planar contact member and one or more side sections, the side sections respectively including resilient components that enable the contact member of the TCN to move toward and away from the exterior side of the first sheet, and the side sections and contact member of a TCN collectively forming a coolant chamber. Channel segments are configured along the interior side of the first sheet, wherein each channel extends between the coolant chambers and two TCNs, or between the coolant chamber of a TCN and an input port or output port, selectively. The method further comprises joining the interior side of the second sheet to the interior side of the first sheet, in order to form a sealed flow path that includes each channel segment, and enables liquid coolant to flow into and out of the coolant chamber of each TCN.
    • 本发明的实施例包括一种用于构造用于冷却一个或多个半导体部件的热交换器的方法。 该方法包括提供特定导热金属箔的第一和第二平面片的步骤,其中每个片具有外侧和内侧。 该方法还包括在第一片材中形成一个或多个热接触节点(TCN),其中每个TCN从第一片材的外侧向外延伸,并且包括平面接触构件和一个或多个侧面部分,侧面部分 包括能够使TCN的接触构件朝向和远离第一板的外侧移动的弹性部件,以及TCN的侧部和接触部件共同形成冷却剂室。 通道段沿着第一片材的内侧配置,其中每个通道选择性地在冷却剂室和两个TCN之间或TCN的冷却剂室与输入端口或输出端口之间延伸。 该方法还包括将第二片材的内侧连接到第一片材的内侧,以便形成包括每个通道段的密封流动路径,并且使液体冷却剂能够流入和流出每个通道段的冷却剂室 TCN。
    • 6. 发明授权
    • Method and apparatus for a low impedance anti-recirculation air moving inlet device
    • 低阻抗再循环空气移动入口装置的方法和装置
    • US08388423B2
    • 2013-03-05
    • US12170940
    • 2008-07-10
    • Ethan E. CruzMaurice F. HolahanRoger R. Schmidt
    • Ethan E. CruzMaurice F. HolahanRoger R. Schmidt
    • H05K5/00H05K7/20
    • H05K7/2019
    • An inlet recirculation apparatus for an air moving device includes a housing defined by a wall extending from a base. The base includes an aperture therethrough receptive to alignment with an inlet of the air moving device. A plurality of flaps each pivotally extends radially outwardly from a center pivot to another corresponding pivot disposed around a perimeter of the wall. The center pivot is coaxial with a center of the aperture. Each flap moves to an open position due to air pressure from the air moving device causing air to flow into the inlet wherein each flap pivotally rotates about the center pivot and corresponding pivot at the wall, and moves to a closed position when air pressure from the air moving device ceases wherein a space between contiguous flaps is eliminated when each flap pivotally rotates to the closed position about the center pivot and corresponding pivot at the wall to prevent reverse airflow through the air moving device.
    • 用于空气移动装置的入口再循环装置包括由从基座延伸的壁限定的壳体。 底座包括一个穿过其的孔,该孔穿过空气移动装置的入口对准。 多个翼片各自枢转地从中心枢轴径向向外延伸到围绕壁的周边设置的另一对应的枢轴。 中心枢轴与孔的中心同轴。 由于来自空气移动装置的空气压力,每个翼片移动到打开位置,导致空气流入入口,其中每个翼片围绕中心枢轴和在壁处的相应枢轴枢转地旋转,并且当来自 空气移动装置停止,其中当每个翼片围绕中心枢轴转动到关闭位置时在相邻翼片之间的空间被消除,并且在壁处具有相应的枢轴以防止通过空气移动装置的反向气流。