DocumentCode
1334017
Title
Polypyrrole as an interlayer for bonding conductive adhesives to activated aluminum bond pads
Author
Kuechenmeister, Frank ; Meusel, Ekkehard
Author_Institution
Semicond. & Microsyst. Technol. Lab., Tech. Univ. Dresden, Germany
Volume
20
Issue
1
fYear
1997
fDate
3/1/1997 12:00:00 AM
Firstpage
9
Lastpage
14
Abstract
Polymeric electronic packaging using conductive adhesives has been identified as a key technology for future assembly and manufacturing. This paper presents a study on process development for conductive adhesives as solder replacement. The main objective investigated is the use of intrinsic conductive polymers directly bonded to bond pads as a low cost effective procedure. The process consists of a technology for the chemical deposition of polypyrrole as an interlayer on aluminum bond pads including the activation of the aluminum surface and the deposition of an isotropic conductive adhesive. Results regarding the chemical characterization of the conductive interlayer by energy disperse analysis of X-ray Spectroscopy and the physical properties of the bumps consisting of a commercially used isotropic conductive adhesive are presented. The paper emphasizes electrical measurements, i.e., contact resistance and the shear strength of the bumps to the bond pads. The approach and analyses described, as well as the practical conclusions for the optimal fabrication of the conductive interlayer for the deposition of adhesives, are an important step forward in low cost procedures in the field of micro packaging
Keywords
adhesion; aluminium; conducting materials; conducting polymers; packaging; Al; aluminum bond pad; bonding; bump; chemical deposition; contact resistance; electronic packaging; energy disperse X-ray analysis; isotropic conductive adhesive; micropackaging; polypyrrole interlayer; shear strength; surface activation; Aluminum; Assembly; Bonding; Chemical analysis; Chemical technology; Conductive adhesives; Costs; Electronics packaging; Manufacturing; Polymers;
fLanguage
English
Journal_Title
Components, Packaging, and Manufacturing Technology, Part A, IEEE Transactions on
Publisher
ieee
ISSN
1070-9886
Type
jour
DOI
10.1109/95.558538
Filename
558538
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