DocumentCode
2732878
Title
Through-package-via formation and metallization of glass interposers
Author
Sukumaran, Vijay ; Chen, Qiao ; Liu, Fuhan ; Kumbhat, Nitesh ; Bandyopadhyay, Tapobrata ; Chan, Hunter ; Min, Sunghwan ; Nopper, Christian ; Sundaram, Venky ; Tummala, Rao
Author_Institution
3D Syst. Packaging Res. Center, Georgia Inst. of Technol., Atlanta, GA, USA
fYear
2010
fDate
1-4 June 2010
Firstpage
557
Lastpage
563
Abstract
Interposer technology has evolved from ceramic to organic materials and most recently to silicon. Organic substrates exhibit poor dimensional stability, thus requiring large capture pads which make them unsuitable for very high I/Os with fine pitch interconnections. Therefore, there has been a trend to develop silicon interposers. Silicon interposers however, suffer in two ways; 1) they are expensive to process due to the need for electrical insulation around via walls, and 2) they are limited in size by the silicon wafer from which they originate. In this paper, glass is proposed as a superior alternative interposer technology to address the limitations of both silicon and organic interposers. The inherent electrical properties of glass, together with large area panel size availability, make it superior compared to organic and silicon-based interposers. Glass however, is not without its challenges. It suffers in two ways: 1) formation of vias at low cost, and 2) its lower thermal conductivity compared to silicon. This research explores glass as an interposer material, and addresses the above key challenges in through package via (TPV) formation and subsequent low cost and large area metallization to achieve very high I/Os at fine pitch.
Keywords
Ceramics; Conducting materials; Costs; Dielectrics and electrical insulation; Glass; Metallization; Organic materials; Silicon on insulator technology; Stability; Thermal conductivity;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Components and Technology Conference (ECTC), 2010 Proceedings 60th
Conference_Location
Las Vegas, NV, USA
ISSN
0569-5503
Print_ISBN
978-1-4244-6410-4
Electronic_ISBN
0569-5503
Type
conf
DOI
10.1109/ECTC.2010.5490913
Filename
5490913
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