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Featured researches published by David H. Pullen.


intersociety conference on thermal and thermomechanical phenomena in electronic systems | 2000

Flow network modeling for improving flow distribution of microelectronics burn-in oven

Bin Lian; Terrance J. Dishongh; David H. Pullen; Hongfei Yan; Jing Chen

Modern microelectronics, especially high performance microprocessors need to go through rigorous test and stressing to identify infant mortality failure. One of the stressing procedures is performed by running the devices at elevated temperature for prolonged period of time. With the ever faster microprocessor speed and device power, current burn-in solutions will not be enough to accommodate future generation of products. This study investigated the enhancement of local heat transfer by restricting open flow paths and redirection of cooling flow to the burn-in devices, through flow analysis with Flow Network Modeling software. A hierarchical modeling approach was used in which the flow characteristics of burn-in socket were derived, from which the burn-in board model was built, and a system level model was eventually assembled. Case study for a 3/spl times/5 burn-in board was conducted using Flow Network Modeling software and numerical results are presented.


Archive | 2000

Method and apparatus for early detection of reliability degradation of electronic devices

Terrance J. Dishongh; David H. Pullen; Gregory F. Taylor


Archive | 2001

Apparatus and method for passive phase change thermal management

Damion Searls; Terrance J. Dishongh; David H. Pullen


Archive | 2000

Method and apparatus for detection of electrical overstress

Terrance J. Dishongh; David H. Pullen


Archive | 2003

Method for passive phase change thermal management

Damion Searls; Terrance J. Dishongh; David H. Pullen


Archive | 1999

Method of constructing an electronic assembly having an indium thermal couple and an electronic assembly having an indium thermal couple

Terrance J. Dishongh; Paul W. Churilla; David H. Pullen


Archive | 2005

Integrated circuit burn-in methods and apparatus

David H. Pullen; Richard Kacprowicz


Archive | 2002

Electronic assembly having an indium thermal couple

Terrance J. Dishongh; Paul W. Churilla; David H. Pullen


Archive | 2001

Integrated circuit burn-in systems

David H. Pullen; Richard Kacprowicz


Archive | 2002

Improved integrated circuit burn-in methods and apparatus

David H. Pullen; Richard Kacprowicz

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