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    • 6. 发明授权
    • Integrated circuit cooling device having internal cooling conduit
    • 具有内部冷却导管的集成电路冷却装置
    • US5529115A
    • 1996-06-25
    • US274947
    • 1994-07-14
    • Robert W. Paterson
    • Robert W. Paterson
    • F28D15/02H01L23/427F28D15/00
    • H01L23/427F28D15/02H01L2924/0002H01L2924/3011
    • An apparatus for cooling an integrated circuit device includes a container defining a chamber that is partially filled with a coolant which forms a coolant pool in the chamber, wherein heat generated by the integrated circuit device causes boiling of the coolant in the coolant pool so that vaporized coolant rises upwardly from the coolant pool and condenses on a ceiling of the chamber forming coolant droplets thereon. The apparatus further includes a cooling conduit positioned within the chamber and at least partially out of the coolant pool, the cooling conduit further being positioned (1) in a first path traveled by the vaporized coolant as it rises upwardly from the coolant pool towards the ceiling, and (2) in a second path traveled by the coolant droplets falling from the ceiling due to gravity.
    • 用于冷却集成电路装置的装置包括限定腔室的容器,所述腔室部分地填充有在腔室中形成冷却剂池的冷却剂,其中由集成电路装置产生的热量导致冷却剂池中的冷却剂沸腾,使得汽化 冷却剂从冷却剂池向上升起,并在其上形成冷却剂液滴的室的天花板上冷凝。 该装置还包括一个位于腔室内并且至少部分地位于冷却剂池内的冷却导管,该冷却导管进一步定位在由蒸发的冷却剂沿着从冷却剂池向上朝向顶板向上升起的第一路径中 ,和(2)在由重力从天花板落下的冷却剂液滴行进的第二路径中。
    • 9. 发明授权
    • Fluid dynamic pump
    • 流体动力泵
    • US4835961A
    • 1989-06-06
    • US857908
    • 1986-04-30
    • Walter M. Presz, Jr.Robert W. PatersonMichael J. Werle
    • Walter M. Presz, Jr.Robert W. PatersonMichael J. Werle
    • F04F5/18F02C3/32F02K1/38F02K1/46F04F5/44F04F5/46
    • F04F5/466F02K1/386F02K1/46
    • A fluid dynamic pump, such as an ejector, has a common wall which separates a primary high energy fluid flow passage and a secondary low-energy fluid flow passage. The common wall includes a plurality of adjoining lobes extending in the direction of flow to the outlets of the passages at the downstream end of the common wall. A lobe on one side of the wall forms a corresponding trough on the other side. The common wall therefore has a wave-like shape at its downstream end. Primary and secondary fluid flow from the trough outlets on their respective sides of the common wall and are mixed together rapidly in a mixing region downstream of the outlets. A diffuser is located at the downstream end of the mixing region and enhances the pumping ability of the ejector. Secondary fluid is thereby drawn or pumped into the mixing region as a result of this transfer of energy from the primary stream to the secondary stream. Viscous losses are low during the process.
    • 诸如喷射器的流体动力泵具有分开初级高能流体流动通道和次级低能流体流动通道的公共壁。 公共壁包括沿公共壁的下游端在通道的出口方向上延伸的多个相邻的叶片。 墙的一侧的叶片在另一侧形成相应的槽。 因此,普通壁在其下游端具有波状形状。 初级和次级流体从公共壁的相应侧面上的槽出口流出并且在出口下游的混合区域中快速混合在一起。 扩散器位于混合区域的下游端,并提高喷射器的泵送能力。 因此,由于将能量从初级流转移到次级流中,二次流体被抽吸或泵入混合区域。 此过程中粘性损失较低。