• DocumentCode
    3522052
  • Title

    Shock resistant and thermally reliable low Ag SAC solders doped with Mn Or Ce

  • Author

    Liu, Weiping ; Lee, Ning-Cheng ; Porras, Adriana ; Ding, Min ; Gallagher, Anthony ; Huang, Austin ; Chen, Scott ; Lee, Jeffrey ChangBing

  • fYear
    2009
  • fDate
    9-11 Dec. 2009
  • Firstpage
    49
  • Lastpage
    63
  • Abstract
    In this study, the reliabilities of low Ag SAC alloys doped with Mn or Ce (SACM or SACC) were evaluated under JEDEC drop, dynamic bending, thermal cycling, and cyclic bending test conditions against eutectic SnPb, SAC105, and SAC305 alloys. The Mn or Ce doped low cost SAC105 alloys achieved a higher drop test and dynamic bending test reliability than SAC105 and SAC305, and exceeded SnPb for some test conditions. More significantly, being a slightly doped SAC105, both SACM and SACC matched SAC305 in thermal cycling performance. In other words, the low cost SACM and SACC achieved a better drop test performance than the low Ag SAC alloys plus the desired thermal cycling reliability of high Ag SAC alloys. The mechanism for high drop performance and high thermal cycling reliability can be attributed to a stabilized microstructure, with uniform distribution of fine IMC particles, presumably through the inclusion of Mn or Ce in the IMC. The cyclic bending results showed SAC305 being the best, and all lead-free alloys are equal or superior to SnPb. The reliability test results also showed that NiAu is a preferred surface finish for BGA packages over OSP.
  • Keywords
    ageing; ball grid arrays; bending; cerium alloys; copper alloys; crystal microstructure; dynamic testing; eutectic alloys; impact testing; manganese alloys; reliability; silver alloys; solders; tin alloys; BGA packages; IMC particle distribution; JEDEC drop test; NiAu surface finish; SAC solders; SAC105 alloy; SAC305 alloy; SACC matched solder; SACM matched solder; SnAgCuCe; SnAgCuMn; cyclic bending test; dynamic bending; eutectic alloy; intermetallic compound particles; shock resistance; stabilized microstructure; thermal aging; thermal cycling reliability; Costs; Electric shock; Environmentally friendly manufacturing techniques; Lead; Manganese alloys; Microstructure; Packaging; Surface finishing; Testing; Thermal resistance; Ce; Lead-free; Mn; SAC; SnAgCu; bending; drop; reliability; solder; thermal cycling;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electronics Packaging Technology Conference, 2009. EPTC '09. 11th
  • Conference_Location
    Singapore
  • Print_ISBN
    978-1-4244-5099-2
  • Electronic_ISBN
    978-1-4244-5100-5
  • Type

    conf

  • DOI
    10.1109/EPTC.2009.5416572
  • Filename
    5416572