Preparation and low-temperature sintering of cu nanoparticles for high-power devices
One of the fundamental requirements for high-temperature electronic packaging is reliable silicon attach with low and stable electrical resistance. This paper presents a study conducted on Cu nanoparticles as an alternative lead-free interconnect material for high-temperature applications. Cu nanopa...
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my.um.eprints.54512018-10-17T00:51:26Z http://eprints.um.edu.my/5451/ Preparation and low-temperature sintering of cu nanoparticles for high-power devices Krishnan, S. Haseeb, A.S. Md. Abdul Johan, M.R. TA Engineering (General). Civil engineering (General) One of the fundamental requirements for high-temperature electronic packaging is reliable silicon attach with low and stable electrical resistance. This paper presents a study conducted on Cu nanoparticles as an alternative lead-free interconnect material for high-temperature applications. Cu nanoparticles were prepared using pulsed wire evaporation technique in water medium. Pure Cu nanoparticles without any organic mixture were used in this paper. An economical approach to extract the nanoparticles from water was established. In situ Cu nanoparticles oxide reduction was successfully done using forming gas (N-2-5 H-2). Cross-section analysis on bonded interface shows onset of Cu nanoparticles sintering at 400 degrees C. We successfully demonstrated the possibilities of using Cu nanoparticles as silicon die attach material for high-temperature electronic devices. 2012 Article PeerReviewed Krishnan, S. and Haseeb, A.S. Md. Abdul and Johan, M.R. (2012) Preparation and low-temperature sintering of cu nanoparticles for high-power devices. IEEE Transactions on Components, Packaging, and Manufacturing Technology, 2 (4). pp. 587-592. ISSN 2156-3950 |
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TA Engineering (General). Civil engineering (General) Krishnan, S. Haseeb, A.S. Md. Abdul Johan, M.R. Preparation and low-temperature sintering of cu nanoparticles for high-power devices |
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One of the fundamental requirements for high-temperature electronic packaging is reliable silicon attach with low and stable electrical resistance. This paper presents a study conducted on Cu nanoparticles as an alternative lead-free interconnect material for high-temperature applications. Cu nanoparticles were prepared using pulsed wire evaporation technique in water medium. Pure Cu nanoparticles without any organic mixture were used in this paper. An economical approach to extract the nanoparticles from water was established. In situ Cu nanoparticles oxide reduction was successfully done using forming gas (N-2-5 H-2). Cross-section analysis on bonded interface shows onset of Cu nanoparticles sintering at 400 degrees C. We successfully demonstrated the possibilities of using Cu nanoparticles as silicon die attach material for high-temperature electronic devices. |
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Article |
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Krishnan, S. Haseeb, A.S. Md. Abdul Johan, M.R. |
author_facet |
Krishnan, S. Haseeb, A.S. Md. Abdul Johan, M.R. |
author_sort |
Krishnan, S. |
title |
Preparation and low-temperature sintering of cu nanoparticles for high-power devices |
title_short |
Preparation and low-temperature sintering of cu nanoparticles for high-power devices |
title_full |
Preparation and low-temperature sintering of cu nanoparticles for high-power devices |
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Preparation and low-temperature sintering of cu nanoparticles for high-power devices |
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Preparation and low-temperature sintering of cu nanoparticles for high-power devices |
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preparation and low-temperature sintering of cu nanoparticles for high-power devices |
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2012 |
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http://eprints.um.edu.my/5451/ |
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1643687579930853376 |
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