EP1599081A2

Thermal management system and method for electronic equipment mounted on coldplates

Abstract

According to an embodiment of the present invention, a thermal management system for electronic components (102) includes a plastic coldplate (100) having a mounting surface for mounting one or more electronic components (102), one or more passageways configured to have a fluid flow therethrough disposed within the plastic coldplate (100), and a highly conductive material disposed within the plastic coldplate and thermally coupled to the mounting surface (102). The highly conductive material is operable to transfer heat from the mounting surface (102) to the fluid flow.

EP1599081A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 17 May 2025, 1.4 years ago.

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  5. Today

26 claims: 9 independent, 17 dependent

  1. 1
    A thermal management system for electronic components (102), comprising:a plastic coldplate (100;200;210;220;230;240;300;310;320) having a mounting surface (201;217;227;231;243;303;313;323) for mounting one or more electronic components (102);one or more passageways disposed within the plastic coldplate, the passageways configured to have a fluid flow therethrough;and a highly conductive material disposed within the plastic coldplate and thermally coupled to the mounting surface, the highly conductive material operable to transfer heat from the mounting surface to the fluid flow.
  2. 4
    The system of any preceding claim, wherein the highly conductive material comprises a waffle panel (222;232).
  3. 6
    The system of any one of claims 1 to 5, wherein the plastic coldplate (240) is formed from two separate pieces (247, 248) and the passageways (246) are separated from one another.
  4. 8
    The system of any one of claims 1 to 7, or the method of any one of claims 17 to 19, wherein the one or more passageways comprises a tube (214) disposed within the plastic coldplate (210) in a boustrophedonic manner and wherein the highly conductive material comprises a plurality of fins (212) coupled to the tube (214).
  5. 9
    The system of any preceding claim, wherein the one or more passageways comprise one or more tubes (202) disposed within the plastic coldplate (200) and wherein the highly conductive material comprises one or more enclosures (204) coupled to the tubes (202) in series.
  6. 10
    The system of any preceding claim, wherein the plastic coldplate (100;200;210;220;230;240;300;310;320) is housed within a highly conductive housing, the mounting surface (201;217;227;231;243;303;313;323) associated with the housing.
  7. 11
    A thermal management system for electronic components (102), comprising:a highly conductive housing having a mounting surface (201;217;227;231;243;303;313;323) for mounting one or more electronic components (102);a plastic coldplate (100;200;210;220;230;240;300;310;320) disposed within the highly conductive housing;and a highly conductive material disposed within the plastic coldplate and thermally coupled to the mounting surface, the highly conductive material operable to spread the heat throughout a volume of the plastic coldplate.
  8. 17
    A thermal management method for electronic components (102), comprising:mounting one or more electronic components (102) on a mounting surface (201;217;227;231;243;303;313;323) of a plastic coldplate (100;200;210;220;230;240;300;310;230), the plastic coldplate having one or more passageways disposed therein that are configured to have a fluid flow therethrough;disposing a highly conductive material within the plastic coldplate;and thermally coupling the highly conductive material to the mounting surface to transfer heat from the mounting surface to the fluid flow during operation of the electronic components.
  9. 22
    A thermal management method for electronic components (102), comprising:mounting one or more electronic components (102) on a mounting surface (201;217;227;231;243;303;313;323) of a highly conductive housing;disposing a plastic coldplate (100;200;210;220;230;240;300;310;320) within the highly conductive housing;disposing a highly conductive material within the plastic coldplate;and thermally coupling the highly conductive material to the mounting surface to spread the heat throughout a volume of the plastic coldplate.