DocumentCode
3309586
Title
Critical appraisal of thermo-mechanical reliability of medium-power heterojunction bipolar transistors for base station and military applications mounted in SOIC-8 leadframe based plastic overmold packages with conductive silver epoxy
Author
Madra, Satbir
Author_Institution
WJ Commun. Inc., San Jose, CA, USA
fYear
2005
fDate
11-14 Dec. 2005
Firstpage
288
Lastpage
291
Abstract
Medium power GaInP/GaAs heterojunction bipolar transistors (HBTs) operating up to 2.5 Watts of dc dissipation have been evaluated vis-a-vis thermo-mechanical reliability when packaged into SOIC-8 leadframe packages with conductive silver-based epoxy. Thermo-mechanical analyses (TMA) was used to characterize the glass transition temperature (TG) of the molding compound, and detailed finite difference analysis (FDA) based thermal models were generated to characterize the thermal profiles across the package. The thermal model results show that the molding compound layer has a much lower temperature distribution than the high device junction temperatures, and also lower than the measured glass transition temperature, hence minimizing the risk of delamination due to thermo-mechanical residual stresses.
Keywords
III-V semiconductors; conducting polymers; finite difference methods; gallium arsenide; gallium compounds; glass transition; heterojunction bipolar transistors; indium compounds; internal stresses; moulding; semiconductor device models; semiconductor device packaging; semiconductor device reliability; temperature distribution; GaInP-GaAs; SOIC-8 leadframe packages; base stations; conductive silver epoxy; finite difference analysis; glass transition temperature; high device junction temperatures; medium-power heterojunction bipolar transistors; molding compound layer; plastic overmold packages; temperature distribution; thermal models; thermal profiles; thermo-mechanical analyses; thermo-mechanical reliability; thermo-mechanical residual stresses; Appraisal; Base stations; Gallium arsenide; Glass; Heterojunction bipolar transistors; Packaging; Plastics; Temperature distribution; Temperature measurement; Thermomechanical processes;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronics Materials and Packaging, 2005. EMAP 2005. International Symposium on
Print_ISBN
1-4244-0107-0
Type
conf
DOI
10.1109/EMAP.2005.1598277
Filename
1598277
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