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Failure rate prediction models used for reliability monitoring of electronic systems
Held, M., & Sennhauser, U. (2004). Failure rate prediction models used for reliability monitoring of electronic systems (pp. 939-944). Presented at the International congress electronics goes green 2004, driving forces for future electronics. .
Long-term monitoring of polarization-mode dispersion of aerial optical cables with respect to line availability
Nellen, P. M., Brönnimann, R., Held, M., & Sennhauser, U. (2004). Long-term monitoring of polarization-mode dispersion of aerial optical cables with respect to line availability. Journal of Lightwave Technology, 22(8), 1848-1855. https://doi.org/10.1109/Jlt.2004.832423
Availability optimization by sensitivity analysis of fiber optical network systems
Held, M., Nellen, P. M., & Wosinska, L. (2003). Availability optimization by sensitivity analysis of fiber optical network systems. In T. Bedford (Ed.), Safety and reliability. ESREL 2003. Improvement of risk-based methodologies through the combination of technical, project, financial and environmental approaches to risk (pp. 791-799). Swets & Zeitlinger.
Long term stability of aerial optical cables with respect to gigabit/s data rates
Held, M., Brönnimann, R., & Nellen, P. M. (2003). Long term stability of aerial optical cables with respect to gigabit/s data rates. In H. G. Limberger & M. J. Matthewson (Eds.), Proceedings of SPIE: Vol. 4940. Reliability of optical fiber components, devices, systems, and networks (pp. 47-58). https://doi.org/10.1117/12.468277
Reliability and failure analysis of fiber optical network components
Nellen, P. M., & Held, M. (2003). Reliability and failure analysis of fiber optical network components. In H. G. Limberger & M. J. Matthewson (Eds.), Proceedings of SPIE: Vol. 4940. Reliability of optical fiber components, devices, systems, and networks (pp. 195-206). https://doi.org/10.1117/12.468276
Reliability in fiber optical sensor applications
Nellen, P. M., Brönnimann, R., Held, M., & Sennhauser, U. (2003). Reliability in fiber optical sensor applications. In H. G. Limberger & M. J. Matthewson (Eds.), Proceedings of SPIE: Vol. 4940. Reliability of optical fiber components, devices, systems and networks (pp. 174-185). https://doi.org/10.1117/12.477403
Reliability of nanostructured materials and devices. First Report.
Sennhauser, U., Held, M., & Nellen, P. (2001). Reliability of nanostructured materials and devices. First Report. In Top NANO 21. Second annual report 2001 (p. (2 pp.). ETH board for implementation by the commission for technology and innovation (CTI).
Fahrprofil-Tests für IGBTs in Elektrofahrzeugen
Held, M., Nicoletti, G., Jacob, P., Chave, J., Kayal, A. H., Lisowski, L., & Theurillat, P. (1999). Fahrprofil-Tests für IGBTs in Elektrofahrzeugen (p. (12 pp.). Presented at the 28. Kolloquium Halbleiter-Leistungsbauelemente und Materialgüte von Silizium. .
Fast power cycling test for insulated gate bipolar transistor modules in traction application
Held, M., Jacob, P., Nicoletti, G., Scacco, P., & Poech, M. H. (1999). Fast power cycling test for insulated gate bipolar transistor modules in traction application. International Journal of Electronics, 86(10), 1193-1204. https://doi.org/10.1080/002072199132743