EP1576320A2

Electroosmotic microchannel cooling system

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 16 September 2022, 4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

42 claims: 14 independent, 28 dependent

  1. 1
    Claims of equivalent WO 03029731 A2 S01-175 S243 1020.PCT What is claimed is:1. A cooling system for a heat emitting device, the cooling system operating using a fluid having a liquid phase, the cooling system comprising: a substrate including at least a portion of a microchannel disposed therein, the substrate adapted to physically connect to the heat emitting device, thereby providing for the transfer of thermal energy from the heat emitting device to the subsfrate, and the further transfer of thermal energy from the substrate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough;a heat exchanger configured to provide flow of the fluid therethrough and the transfer of thermal energy from the heat exchanger;an electroosmotic pump, the electroosmotic pump creating the flow of the fluid ;and wherein the substrate, the heat exchanger, and the electroosmotic pump are configured to operate together using an open loop fluid flow.
  2. 2
    A method for providing heat fransfer away from a heat emitting device comprising:using an electroosmotic pump to create a flow of a fluid having a liquid phase;96 ATLANTA 319149 vl S01-175 S243 1020.PCT directing the fluid flow to pass through a microchannel in a substrate with the substrate physically connected to the heat emitting device to thereby create a heated fluid, wherein the step of directing directs the flow of fluid from the elecfroosmotic pump into the heat exchanger;further directing the heated fluid to pass through a heat exchanger to thereby create a cooled fluid;and causing the steps of using, directing and further directing to operate to create a closed loop fluid flow.
  3. 3
    An apparatus for use with a cooling system operating using a fluid having a liquid phase, the apparatus comprising:a heat emitting device, the heat emitting device including a heat emitting element;and a substrate physically connected to the heat emitting device, with the heat emitting device and the substrate each containing at least a portion of a microchannel, thereby providing for the transfer of thermal energy from the heat emitting device to the substrate, and the further fransfer of thermal energy to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough.
  4. 10
    A method of placing a microchannel in a subsfrate so that the microchannel can fransfer fluid having a liquid phase therethrough and dissipate thermal energy in a particular integrated circuit chip comprising the steps of:selecting the particular integrated circuit chip: using a computer, predicting locations and cross sectional shapes of the microchannel in the substrate that will sufficiently dissipate thermal energy with the fluid flowing therethrough, the step of predicting locations and cross sectional shapes of the microchannel including the step of iteratively computing fluid and solid temperature and pressure distributions for iteratively determined potential locations and potential cross sectional shapes ofthe microchannel in the substrate;and creating the microchannel at the predicted microchannel locations with the predicted cross sectional shapes in the substrate. 99 ATLANTA 319149 vl S01-175 S243 1020.PCT
  5. 11
    An electroosmotic pump apparatus that pumps a fluid having a liquid phase upon application of a voltage comprising:a fluid chamber having a fluid inlet and a fluid outlet;an anode disposed within an anode chamber portion;a cathode disposed within a cathode chamber portion;a porous structure that provides elecfroosmotic pumping upon application of the voltage between the anode and the cathode, the porous structure creating a partition in the fluid chamber between the anode chamber portion and the cathode chamber portion;and a catalytic recombiner integrated with the fluid chamber.
  6. 17
    A thermal transfer apparatus connected to a semiconductor heat emitting device, the thermal transfer apparatus operating using a fluid having a liquid phase comprising:a substrate adapted to physically connect to the semiconductor heat emitting device;first and second microchannel fluid inlets disposed in the subsfrate;first and second microchannel fluid outlets disposed in the subsfrate;and first and second microchannels connected between the respective first and second fluid inlets and the first and second fluid outlets, the first and second microchannels thereby providing independent fluid flow paths. 101 ATLANTA 319149 vl S01-175 S243 1020.PCT
  7. 25
    A cooling system for a heat emitting device, the cooling system operating using a fluid having a liquid phase, the cooling system comprising:a substrate including at least a portion of a microchannel disposed therein, wherein the microchannel includes a portion containing a partial blocking structure to increase surface area contacting the fluid;103 ATLANTA 31914 vl S01-175 S243 1020.PCT the subsfrate adapted to physically connect to the heat emitting device, thereby providing for the transfer of thermal energy from the heat emitting device to the subsfrate, and the further transfer of thermal energy from the subsfrate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough;a heat exchanger configured to provide flow of the fluid therethrough and the transfer of thermal energy out ofthe fluid;an electroosmotic pump, the electroosmotic pump creating the flow of the fluid;and wherein the substrate, the heat exchanger, and the electroosmotic pump are configured to operate together to create a closed loop fluid flow.
  8. 28
    A cooling system for a heat emitting device, the cooling system operating using a fluid having a liquid phase, the cooling system comprising:104 ATLANTA 319149 vl S01-175 S243 1020.PCT a substrate including at least a portion of a microchannel disposed therein, the substrate adapted to physically connect to the heat emitting device, thereby providing for the transfer of thermal energy from the heat emitting device to the substrate, and the further transfer of thermal energy from the substrate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough, wherein a portion of the microchannel includes an upper chamber, a lower chamber, and a plurality of subchannels disposed between the upper chamber and the lower chamber;a heat exchanger configured to provide flow of the fluid therethrough and the transfer of thermal energy out of the fluid;and an electroosmotic pump, the elecfroosmotic pump creating the flow of the fluid;and wherein the substrate, the heat exchanger, and the electroosmotic pump are configured to operate together to create a closed loop fluid flow.
  9. 29
    A cooling system for a heat emitting device, the cooling system operating using a fluid having a liquid phase, the cooling system comprising:a pressure sensor;a substrate including at least a portion of a microchannel disposed therein, the substrate adapted to physically connect to the heat emitting device, thereby providing for the transfer of thermal energy from the heat emitting device to the substrate, and 105 ATLANTA 319149vl S01-175 S243 1020.PCT the further transfer of thermal energy from the substrate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough;a heat exchanger configured to provide flow ofthe fluid therethrough and the fransfer of thermal energy out of the fluid;an electroosmotic pump, the electroosmotic pump creating the flow of the fluid;and wherein the substrate, the heat exchanger, and the electroosmotic pump are configured to operate together to create a closed loop fluid flow.
  10. 36
    A cooling system for a heat emitting device, the cooling system operating using a fluid having a liquid phase, the cooling system comprising:a substrate including at least a portion of a microchannel disposed therein, the substrate adapted to physically connect to the heat emitting device, thereby providing for the transfer of thermal energy from the heat emitting device to the substrate, and the further transfer of thermal energy from the substrate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough;a temperature control circuit that receives as inputs signals from a temperature sensor disposed in proximity to the microchannel;a heat exchanger configured to provide flow of the fluid therethrough and the transfer of thermal energy out of the fluid;107 ATLANTA 319149 vl S01-175 S243 1020.PCT an electroosmotic pump, the elecfroosmotic pump creating the flow of the fluid;and wherein the substrate, the heat exchanger, and the elecfroosmotic pump are configured to operate together to create a closed loop fluid flow.
  11. 37
    A cooling system for a heat emitting device, the cooling system operating using a fluid having a liquid phase, the cooling system comprising:a substrate including at least a portion of a microchannel disposed therein, wherein the subsfrate is comprised of first and second layers, and wherein at least a portion ofthe microchannel is formed within both the first and second layers;the subsfrate adapted to physically connect to the heat emitting device, thereby providing for the transfer of thermal energy from the heat emitting device to the subsfrate, and the further transfer of thermal energy from the subsfrate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough;a heat exchanger configured to provide flow of the fluid therethrough and the transfer of thermal energy out of the fluid;an electroosmotic pump, the electroosmotic pump creating the flow of the fluid;and wherein the substrate, the heat exchanger, and the elecfroosmotic pump are configured to operate together to create a closed loop fluid flow. 108 ATLANTA 319149 vl S01-175 S243 1020.PCT
  12. 38
    A cooling system for a heat emitting device comprised of a plurality of integrated circuits, the cooling system operating using a fluid having a liquid phase, the cooling system comprising:a substrate disposed between the plurality of integrated circuits and including at least a portion of a microchannel disposed therein, the subsfrate adapted to physically connect to the heat emitting device, thereby providing for the tiansfer of thermal energy from the heat emitting device to the substrate, and the further fransfer of thermal energy from the subsfrate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough;a heat exchanger configured to provide flow of the fluid therethrough and the transfer of thermal energy out of the fluid;and an elecfroosmotic pump, the electroosmotic pump creating the flow of the fluid;and wherein the substrate, the heat exchanger, and the elecfroosmotic pump are configured to operate together to create a closed loop fluid flow.
  13. 39
    A cooling system for a heat emitting device, the cooling system operating using a fluid having a liquid phase, the cooling system comprising:a subsfrate including at least a portion of a microchannel disposed therein, the substrate adapted to physically connect to the heat emitting device, thereby providing 109 ATLANTA 319149 vl S01-175 S243 1020.PCT for the transfer of thermal energy from the heat emitting device to the substrate, and the further transfer of thermal energy from the subsfrate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough, and wherein the subsfrate further includes a plurality of vertical electrical interconnects;a heat exchanger configured to provide flow of the fluid therethrough and the transfer of thermal energy out of the fluid;and an elecfroosmotic pump, the electroosmotic pump creating the flow of the fluid;and wherein the subsfrate, the heat exchanger, and the elecfroosmotic pump are configured to operate together to create a closed loop fluid flow.
  14. 42
    A cooling system for a heat emitting device, the cooling system operating using a fluid having a liquid phase, the cooling system comprising:110 ATLANTA 319149 vl S01-175 S243 1020.PCT a substrate including at least a portion of a microchannel disposed therein, wherein the substrate includes an opening through which another interaction is capable of impinging upon a portion of the heat emitting device;the substrate adapted to physically connect to the heat emitting device, thereby providing for the fransfer of thermal energy from the heat emitting device to the substrate, and the further transfer of thermal energy from the substiate to the fluid disposed within the microchannel, the microchannel configured to provide flow of the fluid therethrough;a heat exchanger configured to provide flow of the fluid therethrough and the transfer of thermal energy out of the fluid;an electroosmotic pump, the electroosmotic pump creating the flow of the fluid;and wherein the substrate, the heat exchanger, and the electroosmotic pump are configured to operate together to create a closed loop fluid flow. I l l ATLANTA 319149 vl