• DocumentCode
    3220982
  • Title

    Process optimization of lead-free wafer-level underfill material used in chip scale packaging

  • Author

    Liu, Yanbing ; Dutt, G. ; Xiao, An

  • Author_Institution
    National Starch & Chem. Co., Bridgewater, NJ, USA
  • fYear
    2005
  • fDate
    16-18 March 2005
  • Firstpage
    293
  • Lastpage
    297
  • Abstract
    Wafer-level underfilling is an emerging technology that consists of pre-applying the underfill material on wafer during the wafer fabrication process. The novel underfill material and the process enable the chip manufacturers to perform underfill at the wafer-level, thereby eliminating multiple steps in the packaging process and cutting production cost significantly. However, lead-free solder poses significant challenge to this new technology. Compared to eutectic solder, lead-free solder tends to have a lower yield stress, requires higher reflow temperature and forms brittle joints. With increasing demand of lead-free compatible packaging material, further advancement of wafer level underfill material and process optimization are necessary to ensure compatibility with lead-free solders, better voiding performance and higher interconnection yield. We have developed novel wafer level underfill materials for chip scale packaging that are compatible with lead-free assembly. These materials, when coated on the wafer, form clear, transparent coating after B-stage that can be diced into coated dies without any delaminating and cracking. In this paper we discuss the effect of various heating profiles and different equipment used in the B-stage step on flow of underfill during the reflow, residual solvent after B-stage, solder paste smearing, and interconnection yield. By optimizing the material properties and B-stage conditions, we demonstrated that wafer level underfill material can achieve high interconnect yield without causing smearing and voiding in lead-free assembly.
  • Keywords
    chip scale packaging; filled polymers; heating; integrated circuit interconnections; integrated circuit manufacture; optimisation; reflow soldering; semiconductor technology; solders; chip scale packaging; heating profiles; integrated circuit manufacture; interconnection yield; lead-free assembly; lead-free solders; lead-free wafer-level underfill material; process optimization; reflow soldering; semiconductor technology; solder paste smearing; wafer fabrication process; wafer-level underfilling; Assembly; Chip scale packaging; Costs; Environmentally friendly manufacturing techniques; Fabrication; Lead; Manufacturing processes; Optimized production technology; Stress; Wafer scale integration;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Advanced Packaging Materials: Processes, Properties and Interfaces, 2005. Proceedings. International Symposium on
  • ISSN
    1550-5723
  • Print_ISBN
    0-7803-9085-7
  • Electronic_ISBN
    1550-5723
  • Type

    conf

  • DOI
    10.1109/ISAPM.2005.1432092
  • Filename
    1432092