• DocumentCode
    2066718
  • Title

    Isothermal aging induced evolution of the material behavior of underfill encapsulants

  • Author

    Lin, Chang ; Suhling, Jeffrey C. ; Lall, Pradeep

  • Author_Institution
    Dept. of Mech. Eng., Auburn Univ., Auburn, AL
  • fYear
    2009
  • fDate
    26-29 May 2009
  • Firstpage
    134
  • Lastpage
    149
  • Abstract
    Microelectronic encapsulants exhibit evolving properties that change significantly with environmental exposures such as isothermal aging and thermal cycling. Such aging effects are exacerbated at higher temperatures typical of thermal cycling qualification tests for harsh environment electronic packaging. In this work, the material behavior changes occurring in flip chip underfill encapsulants (silica filled epoxies) have been characterized for isothermal aging at four different temperatures that are below, near, and above the Tg of the material. A microscale tension-torsion testing machine has been used to evaluate the uniaxial tensile stress-strain and creep behaviors of the underfill material at several temperatures, after various durations of environmental exposure. A novel method has been developed to fabricate underfill uniaxial test specimens so that they accurately reflect the encapsulant layer present in flip chip assemblies. Using the developed specimen preparation procedure, samples were prepared and isothermal aged for up to 10 months at 80, 100, 125, and 150degC. Stress-strain and creep tests were then performed on both non-aged and aged samples at several different temperatures (25, 50, 75, 100, 125, and 150degC). The changes in mechanical behavior were recorded for the various aging temperatures and durations of isothermal exposure. Empirical models have been developed to predict the evolution of the material properties (modulus, strength) and the creep strain rate as a function of temperature, aging time, and aging temperature.
  • Keywords
    ageing; creep; elastic moduli; encapsulation; flip-chip devices; glass transition; microassembling; stress-strain relations; creep; flip chip underfill encapsulants; glass transition temperature; isothermal aging; mechanical strength; microelectronic encapsulants; microscale tension-torsion testing machine; modulus; silica filled epoxy; temperature 100 degC; temperature 125 degC; temperature 150 degC; temperature 25 degC; temperature 50 degC; temperature 75 degC; temperature 80 degC; time 10 month; uniaxial tensile stress-strain behavior; Aging; Creep; Electronic equipment testing; Electronic packaging thermal management; Electronics packaging; Flip chip; Isothermal processes; Microelectronics; Qualifications; Temperature; Aging; Creep; Encapsulant; Evolution; Material Behavior; Stress-Strain Curve; Underfill;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electronic Components and Technology Conference, 2009. ECTC 2009. 59th
  • Conference_Location
    San Diego, CA
  • ISSN
    0569-5503
  • Print_ISBN
    978-1-4244-4475-5
  • Electronic_ISBN
    0569-5503
  • Type

    conf

  • DOI
    10.1109/ECTC.2009.5074007
  • Filename
    5074007