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    • 6. 发明授权
    • Multi-fluid, two-phase immersion-cooling of electronic component(s)
    • 电子元件的多流体,两相浸没冷却
    • US08619425B2
    • 2013-12-31
    • US13281945
    • 2011-10-26
    • Levi A. CampbellRichard C. ChuMilnes P. DavidMichael J. Ellsworth, Jr.Madhusudan K. IyengarRobert E. Simons
    • Levi A. CampbellRichard C. ChuMilnes P. DavidMichael J. Ellsworth, Jr.Madhusudan K. IyengarRobert E. Simons
    • H05K7/20
    • H05K7/203H05K7/20809
    • Cooling apparatuses and methods are provided for immersion-cooling one or more electronic components. The cooling apparatus includes a housing at least partially surrounding and forming a fluid-tight compartment about the electronic component(s), and a boiling fluid mixture of first and second dielectric fluids within the fluid-tight compartment, with the electronic component(s) immersed within the mixture. A condensing fluid is also provided within the fluid-tight compartment, and is immiscible with the boiling fluid mixture. The condensing fluid has a lower specific gravity and a higher thermal conductivity than the boiling fluid mixture, and facilitates condensing of vaporized boiling fluid mixture. A cooling structure is provided within the compartment, and includes a condensing region and a sub-cooling region, with the condensing region being in contact with the condensing fluid, and the sub-cooling region being in contact with the boiling fluid mixture. The cooling structure facilitates heat removal from the fluid-tight compartment.
    • 提供冷却装置和方法用于浸入冷却一个或多个电子部件。 冷却装置包括至少部分围绕电子部件周围并形成流体密封的隔室的壳体,以及流体密封室内的第一和第二介电流体的沸腾流体混合物,其中电子部件 浸在混合物中。 冷凝流体也设置在流体密封室内,并与沸腾的流体混合物不混溶。 冷凝液具有比沸腾流体混合物更低的比重和更高的热导率,并且有助于蒸发的沸腾流体混合物的冷凝。 冷却结构设置在隔室内,并且包括冷凝区域和副冷却区域,其中冷凝区域与冷凝流体接触,并且副冷却区域与沸腾流体混合物接触。 冷却结构便于从流体密封隔室中的热量去除。