IEEE Transactions on Electronics Packaging Manufacturing · 2000 · 27 citations · 14 references
EngineeringMechanical EngineeringFlip ChipAdvanced Packaging (Semiconductors)Electronic PackagingFailure AnalysesMaterials ScienceElectrical EngineeringHardware ReliabilityChip On BoardComputer EngineeringChip AttachmentSolid MechanicsMicroelectronicsPhysic Of FailureMicrostructureChip-scale PackageSn/pb SolderMechanics Of MaterialsFlip Chip Assemblies
Failure analyses of 63/37 Sn/Pb solder bumped flip chip assemblies with underfill encapsulant are presented in this study, Emphasis is placed on solder flowed-out, nonuniform underfill and voids, and delaminations. The X-ray, scanning acoustic microscope (SAM), and tomographic acoustic micro imaging (TAMI) techniques are used to analyze the failed samples. Also, cross sections are examined for a better understanding of the failure mechanisms. Furthermore, temperature dependent nonlinear finite element analyses together with fracture mechanics are used to determine the effects of underfill void sizes on the flip chip solder joint reliability.
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Elastic Fracture Mechanics Concepts for Interfacial Cracks
J. R. Rice · Journal of Applied Mechanics · 1988 · 1.9K citations
Characterization of a no-flow underfill encapsulant during the solder reflow process
C.P. Wong, D. Baldwin, M.B. Vincent et al. · 2002 · 52 citations