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Reliability Study of Solder Paste Alloy for the Improvement of Solder Joint at Surface Mount Fine-Pitch Components

The significant increase in metal costs has forced the electronics industry to provide new materials and methods to reduce costs, while maintaining customers’ high-quality expectations. This paper considers the problem of most electronic industries in reducing costly materials, by introducing a sold...

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Autores principales: Rahman, Mohd Nizam Ab., Zubir, Noor Suhana Mohd, Leuveano, Raden Achmad Chairdino, Ghani, Jaharah A., Mahmood, Wan Mohd Faizal Wan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5456432/
https://www.ncbi.nlm.nih.gov/pubmed/28788270
http://dx.doi.org/10.3390/ma7127706
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author Rahman, Mohd Nizam Ab.
Zubir, Noor Suhana Mohd
Leuveano, Raden Achmad Chairdino
Ghani, Jaharah A.
Mahmood, Wan Mohd Faizal Wan
author_facet Rahman, Mohd Nizam Ab.
Zubir, Noor Suhana Mohd
Leuveano, Raden Achmad Chairdino
Ghani, Jaharah A.
Mahmood, Wan Mohd Faizal Wan
author_sort Rahman, Mohd Nizam Ab.
collection PubMed
description The significant increase in metal costs has forced the electronics industry to provide new materials and methods to reduce costs, while maintaining customers’ high-quality expectations. This paper considers the problem of most electronic industries in reducing costly materials, by introducing a solder paste with alloy composition tin 98.3%, silver 0.3%, and copper 0.7%, used for the construction of the surface mount fine-pitch component on a Printing Wiring Board (PWB). The reliability of the solder joint between electronic components and PWB is evaluated through the dynamic characteristic test, thermal shock test, and Taguchi method after the printing process. After experimenting with the dynamic characteristic test and thermal shock test with 20 boards, the solder paste was still able to provide a high-quality solder joint. In particular, the Taguchi method is used to determine the optimal control parameters and noise factors of the Solder Printer (SP) machine, that affects solder volume and solder height. The control parameters include table separation distance, squeegee speed, squeegee pressure, and table speed of the SP machine. The result shows that the most significant parameter for the solder volume is squeegee pressure (2.0 mm), and the solder height is the table speed of the SP machine (2.5 mm/s).
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spelling pubmed-54564322017-07-28 Reliability Study of Solder Paste Alloy for the Improvement of Solder Joint at Surface Mount Fine-Pitch Components Rahman, Mohd Nizam Ab. Zubir, Noor Suhana Mohd Leuveano, Raden Achmad Chairdino Ghani, Jaharah A. Mahmood, Wan Mohd Faizal Wan Materials (Basel) Article The significant increase in metal costs has forced the electronics industry to provide new materials and methods to reduce costs, while maintaining customers’ high-quality expectations. This paper considers the problem of most electronic industries in reducing costly materials, by introducing a solder paste with alloy composition tin 98.3%, silver 0.3%, and copper 0.7%, used for the construction of the surface mount fine-pitch component on a Printing Wiring Board (PWB). The reliability of the solder joint between electronic components and PWB is evaluated through the dynamic characteristic test, thermal shock test, and Taguchi method after the printing process. After experimenting with the dynamic characteristic test and thermal shock test with 20 boards, the solder paste was still able to provide a high-quality solder joint. In particular, the Taguchi method is used to determine the optimal control parameters and noise factors of the Solder Printer (SP) machine, that affects solder volume and solder height. The control parameters include table separation distance, squeegee speed, squeegee pressure, and table speed of the SP machine. The result shows that the most significant parameter for the solder volume is squeegee pressure (2.0 mm), and the solder height is the table speed of the SP machine (2.5 mm/s). MDPI 2014-12-02 /pmc/articles/PMC5456432/ /pubmed/28788270 http://dx.doi.org/10.3390/ma7127706 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rahman, Mohd Nizam Ab.
Zubir, Noor Suhana Mohd
Leuveano, Raden Achmad Chairdino
Ghani, Jaharah A.
Mahmood, Wan Mohd Faizal Wan
Reliability Study of Solder Paste Alloy for the Improvement of Solder Joint at Surface Mount Fine-Pitch Components
title Reliability Study of Solder Paste Alloy for the Improvement of Solder Joint at Surface Mount Fine-Pitch Components
title_full Reliability Study of Solder Paste Alloy for the Improvement of Solder Joint at Surface Mount Fine-Pitch Components
title_fullStr Reliability Study of Solder Paste Alloy for the Improvement of Solder Joint at Surface Mount Fine-Pitch Components
title_full_unstemmed Reliability Study of Solder Paste Alloy for the Improvement of Solder Joint at Surface Mount Fine-Pitch Components
title_short Reliability Study of Solder Paste Alloy for the Improvement of Solder Joint at Surface Mount Fine-Pitch Components
title_sort reliability study of solder paste alloy for the improvement of solder joint at surface mount fine-pitch components
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5456432/
https://www.ncbi.nlm.nih.gov/pubmed/28788270
http://dx.doi.org/10.3390/ma7127706
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