2008 · 10 citations · 4 references
EngineeringPulse Ir ThermographyMechanical EngineeringNon-destructive Failure AnalysisDamage MechanismFailure AnalysisElectrical ExcitationLaser ExcitationElectronic PackagingInstrumentationMaterials ScienceElectrical EngineeringNondestructive TestingMaterial CharacterizationStructural Health MonitoringEngineering Failure AnalysisDevice ReliabilityMicroelectronicsPhysic Of FailureThermographyMaterials CharacterizationTransient Pulse GenerationMechanics Of MaterialsElectrical Insulation
IR-thermography has become increasingly important for non-destructive testing of microelectronic devices and structures on chip, package and board-level. This paper focuses on the evaluation of best applicability for different pulse excitation modes to detect flaws and damages as well as to determine material properties. Pulse IR thermography using electrical and laser excitation was chosen as an analytic method to observe and quantify crack growths in vias under thermal cycling load. We found that cracks are detectable unambiguously and its advantage over the ohmic test. The laser excitation in contrast to the electrical excitation has a good potential for large-scale screening as the board can be stepwise thermally excited and screened in one go without having any additional measuring lines. A new concept detecting crack tips was demonstrated.
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William Thomson · Transactions of the Royal Society of Edinburgh · 1853 · 305 citations
On the Dynamical Theory of Heat
William Thomson · Medical Entomology and Zoology · 1853 · 118 citations
Lock-in thermography with mechanical loss angle heating at ultrasonic frequencies
Jukka Rantala, D. Wu, A. Salerno et al. · 1996 · 28 citations · Full text
Lockin vibrothermal inspection of polymer composites
G. Busse, Monika Bauer, Wally E. Rippel et al. · 1992 · 21 citations · Full text