Method and apparatus for efficient vertical fluid delivery for cooling a heat producing device
A heat exchanger and method of manufacturing thereof comprises an interface layer for cooling a heat source. The interface layer is coupled to the heat source and is configured to pass fluid therethrough. The heat exchanger further comprises a manifold layer that is coupled to the interface layer. T...
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Format | Patent |
Language | English |
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21.02.2006
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Abstract | A heat exchanger and method of manufacturing thereof comprises an interface layer for cooling a heat source. The interface layer is coupled to the heat source and is configured to pass fluid therethrough. The heat exchanger further comprises a manifold layer that is coupled to the interface layer. The manifold layer includes at least one first port that is coupled to a first set of individualized holes which channel fluid through the first set. The manifold layer includes at least one second port coupled to a second set of individualized holes which channel fluid through the second set. The first set of holes and second set of holes are arranged to provide a minimized fluid path distance between the first and second ports to adequately cool the heat source. Preferably, each hole in the first set is positioned a closest optimal distance to an adjacent hole the second set. |
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AbstractList | A heat exchanger and method of manufacturing thereof comprises an interface layer for cooling a heat source. The interface layer is coupled to the heat source and is configured to pass fluid therethrough. The heat exchanger further comprises a manifold layer that is coupled to the interface layer. The manifold layer includes at least one first port that is coupled to a first set of individualized holes which channel fluid through the first set. The manifold layer includes at least one second port coupled to a second set of individualized holes which channel fluid through the second set. The first set of holes and second set of holes are arranged to provide a minimized fluid path distance between the first and second ports to adequately cool the heat source. Preferably, each hole in the first set is positioned a closest optimal distance to an adjacent hole the second set. |
Author | Corbin, Dave Munch, Mark McMaster, Mark Goodson, Kenneth Kenny, Thomas W Shook, James Gill Upadhya, Girish Zhou, Peng Lovette, James |
Author_xml | – sequence: 1 givenname: Thomas W surname: Kenny fullname: Kenny, Thomas W – sequence: 2 givenname: Mark surname: Munch fullname: Munch, Mark – sequence: 3 givenname: Peng surname: Zhou fullname: Zhou, Peng – sequence: 4 givenname: James Gill surname: Shook fullname: Shook, James Gill – sequence: 5 givenname: Girish surname: Upadhya fullname: Upadhya, Girish – sequence: 6 givenname: Kenneth surname: Goodson fullname: Goodson, Kenneth – sequence: 7 givenname: Dave surname: Corbin fullname: Corbin, Dave – sequence: 8 givenname: Mark surname: McMaster fullname: McMaster, Mark – sequence: 9 givenname: James surname: Lovette fullname: Lovette, James |
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ContentType | Patent |
CorporateAuthor | Cooligy, Inc |
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Score | 2.6387484 |
Snippet | A heat exchanger and method of manufacturing thereof comprises an interface layer for cooling a heat source. The interface layer is coupled to the heat source... |
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Title | Method and apparatus for efficient vertical fluid delivery for cooling a heat producing device |
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