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        Diffusion Soldering for the High-temperature Packaging of Power Electronics

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        Author(s)
        Syed-Khaja, Aarief
        Language
        English
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        Abstract
        With advances in the new generation semiconductor materials and ever-increasing requirements for reliable power electronic modules at elevated temperatures, a major limitation is the lack of qualified high-temperature device-level packaging. This work gives an overview of optimization and evaluation of Cu-Sn based Transient Liquid Phase Soldering (TLPS), a variant of diffusion soldering to implement as a high-temperature die-attach technique for power electronics production with high level of flexibility and customization. The TLPS interconnects with enriched ƞ-Cu6Sn5 Intermetallic phase bondline were realized successfully with optimized temperature profiles. A comprehensive analysis was performed on the process-related issues of voids for the selected soldering technique and warpage for components of varying dimensions and metallizations. Further the quality of the produced joints was evaluated by thermo-mechanical loading followed by the characterization of thermal and mechanical stability. The applicability is checked with product and technology case studies and an outlook is given with comparison of the investigated production concepts.
        URI
        https://library.oapen.org/handle/20.500.12657/108181
        Keywords
        Prozessoptimierung; Hochtemperatur; Diffusionslöten; Intermetallische Verbindungen; Verbindungstechnik; Leistungselektronik
        DOI
        10.25593/978-3-96147-163-8
        ISBN
        9783961471638, 9783961471638, 9783961471621
        Publisher
        FAU University Press
        Publisher website
        https://www.university-press.fau.de/
        Publication date and place
        Erlangen, 2019
        Series
        FAU Studien aus dem Maschinenbau, 315
        Classification
        Mechanical engineering and materials
        Pages
        202
        Rights
        https://creativecommons.org/licenses/by-nc/4.0/
        • Imported or submitted locally

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        License

        • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

        Credits

        • logo EU
        • This project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 683680, 810640, 871069 and 964352.

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