DocumentCode
2171485
Title
Flexible micro-spring interconnects for high performance probing
Author
Haemer, Joseph M. ; Sitaraman, Suresh K. ; Fork, David K. ; Chong, F.C. ; Mok, Sammy ; Smith, Donald L. ; Swiatowiec, Frank
Author_Institution
George W. Woodruff Sch. of Mech. Eng., Georgia Inst. of Technol., Atlanta, GA, USA
fYear
2000
fDate
2000
Firstpage
1157
Lastpage
1163
Abstract
Advances in integrated circuit fabrication have given rise to a need for an innovative, inexpensive, yet reliable probing technology with ultra-fine pitch capability. Research teams at Georgia Tech, Xerox PARC, and Nanonexus, Inc. are developing flexible micro-spring structures that can far exceed the packaging and probing needs of the next-generation microelectronic devices. Highly compliant cantilevered springs have been fabricated at pitches as small as 6 μm. These micro-springs are designed to accommodate topological variation in probing surfaces while flexing within the elastic regime. The micro-springs have demonstrated reliable electrical contact and mechanical ruggedness. Non-linear finite element models have been developed to understand the deformation of a micro-spring under mechanical loading. Through the models, the probing force versus displacement relation for a spring as well as the internal stress distribution have been determined. Design guidelines have been established to maximize probing force
Keywords
fine-pitch technology; finite element analysis; integrated circuit interconnections; integrated circuit packaging; probes; flexible micro-spring interconnects; high performance probing; highly compliant cantilevered springs; internal stress distribution; mechanical loading; mechanical ruggedness; nonlinear finite element models; packaging; probing force; probing surfaces; probing technology; reliable electrical contact; topological variation; ultra-fine pitch capability; Contacts; Fabrication; Finite element methods; Integrated circuit interconnections; Integrated circuit packaging; Integrated circuit reliability; Integrated circuit technology; Microelectronics; Nanoscale devices; Springs;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Components & Technology Conference, 2000. 2000 Proceedings. 50th
Conference_Location
Las Vegas, NV
Print_ISBN
0-7803-5908-9
Type
conf
DOI
10.1109/ECTC.2000.853319
Filename
853319
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