• DocumentCode
    1873142
  • Title

    Compression flow modeling of underfill encapsulants for low cost flip chip assembly

  • Author

    Pascarella, Nathan W. ; Baldwin, Daniel F.

  • Author_Institution
    Packaging Res. Center, George W. Woodruff Sch. of Mech. Eng., Atlanta, GA, USA
  • fYear
    1998
  • fDate
    15-18 Mar 1998
  • Firstpage
    33
  • Lastpage
    40
  • Abstract
    Currently, underfill dispense processing is achieved through capillary action, making it a costly and time consuming process particularly as device size increases and standoff gaps decrease. As part of the Low Cost Next Generation Flip Chip Processing Program at Georgia Tech, an advanced flip chip assembly process is being developed. This process eliminates the need for time consuming capillary flow processing, and integrates the simultaneous reflow and cure of the solder interconnect and polymer underfill. The advanced process results in a significantly lower assembly cost combined with reduced throughput time. Reduced throughput time and cost are achieved through the compression flow of the underfill material. Since the flow of the material governs assembly yield and reliability, this work focused on flow simulation studies of the placement process. Here a simulation methodology and simulation studies were conducted to characterize the compression flow of the underfill and predict void formation. Results yielded design guidelines that gave insight into process parameters such as the limits on underfill deposition geometry and underfill viscosity. The results indicated the initial limits of an overall process window for compression flow chip placement
  • Keywords
    encapsulation; flip-chip devices; integrated circuit packaging; integrated circuit reliability; reflow soldering; viscosity; assembly cost; assembly yield; compression flow modeling; deposition geometry; dispense processing; flip chip assembly; placement process; polymer underfill; process parameters; reliability; solder reflow; throughput time; underfill encapsulants; viscosity; void formation; Assembly; Conducting materials; Costs; Flip chip; Geometry; Guidelines; Materials reliability; Polymers; Predictive models; Throughput;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Advanced Packaging Materials, 1998. Proceedings. 1998 4th International Symposium on
  • Conference_Location
    Braselton, GA
  • Print_ISBN
    0-7803-4795-1
  • Type

    conf

  • DOI
    10.1109/ISAPM.1998.664430
  • Filename
    664430