• DocumentCode
    2429046
  • Title

    Evaluation of a Liquid Cooling Concept for High Power Processors

  • Author

    Xu, Guoping

  • Author_Institution
    Sun Microsystems, Inc., San Diego, CA
  • fYear
    2007
  • fDate
    18-22 March 2007
  • Firstpage
    190
  • Lastpage
    195
  • Abstract
    A high performance liquid cooling architecture for high power processors in less than 45 mm height electronics chassis (1U rack space) was proposed and investigated experimentally. A review of several system cooling approaches from CPU to data center was also provided. The present proposed method employs conventional heat pipes to transport local CPU heat to the edge of an electronics module coupled with system liquid cold plates. As coolant from external cooling distribution unit in data center flows through the system cold plates in the rack, CPU heat load is rejected to data center cooling facility. Capable of removing the processor power as high as 450W is demonstrated from a prototype built. Experiments were conducted to characterize the prototype thermal performance between liquid inlet and heat pipe evaporator base. A 25 mm times 25 mm heat block was used to simulate CPU and provide heat source to the heat pipe evaporator base. The impacts of heat transfer rate, flow rate, and liquid inlet temperature were evaluated. The total thermal resistance of below 0.090degC/W was achieved at water flow rate of 1 l/min and heat transfer rate of 450W.
  • Keywords
    cooling; coprocessors; heat pipes; thermal management (packaging); cold plate; conventional heat pipes; data center cooling facility; electronics chassis; electronics cooling; high power processors; liquid cooling concept; Cold plates; Coolants; Electronics cooling; Fluid flow; Heat transfer; Liquid cooling; Prototypes; Space cooling; Thermal conductivity; Thermal resistance; Liquid cooling; cold plate; electronics cooling; heat pipe;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Semiconductor Thermal Measurement and Management Symposium, 2007. SEMI-THERM 2007. Twenty Third Annual IEEE
  • Conference_Location
    San Jose, CA
  • ISSN
    1065-2221
  • Print_ISBN
    1-4244-09589-4
  • Electronic_ISBN
    1065-2221
  • Type

    conf

  • DOI
    10.1109/STHERM.2007.352422
  • Filename
    4160910