DocumentCode :
1846310
Title :
The thermal performance of a chip scale package array with simple block and plate heat sinks
Author :
Watson, Sean P. ; Sammakia, Bahgat G.
Author_Institution :
Dept. of Mech. Eng., State Univ. of New York, Binghamton, NY, USA
fYear :
2002
fDate :
2002
Firstpage :
276
Lastpage :
284
Abstract :
This paper describes the results of a computational investigation of the thermal performance of chip scale package arrays with various low profile heat sinks. The arrays considered were fully populated with both modules and heat sinks. The heat sinks used in any single array were identical. The parameters evaluated included module spacing, cooling air inlet velocity, per module power dissipation, and heat sink design. The heat sinks fell into two categories: the plate and the block. A plate was defined as a single continuous piece of material covering all of the modules in the array. The block heat sinks were individual pieces of material that were affixed to each module and were not physically connected to the other heat sinks in the array. The results of this study are presented as thermal resistances for each module in the array. Also considered, for some specific cases, are the heat transfer coefficients for each heat sink as a function of its position within the array. Interesting results included the changing of the shape of the resistance curve with changes in heat sink design. Also noted was the relationship between the thermal resistance of a module and the heat transfer coefficient for the top surface of that heat sink. Related to this were the changes in thermal resistance due to changes in the material properties used in the modules and how this affected the heat flow within the array.
Keywords :
arrays; chip scale packaging; computational fluid dynamics; heat sinks; heat transfer; modules; temperature distribution; thermal resistance; block heat sinks; chip scale package array; cooling air inlet velocity; fully populated arrays; heat sink design; heat transfer coefficients; low profile heat sinks; module spacing; plate heat sinks; power dissipation; thermal performance; thermal resistance curve shape; thermal resistances; Chip scale packaging; Cooling; Heat sinks; Heat transfer; Material properties; Power dissipation; Resistance heating; Shape; Surface resistance; Thermal resistance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermal and Thermomechanical Phenomena in Electronic Systems, 2002. ITHERM 2002. The Eighth Intersociety Conference on
ISSN :
1089-9870
Print_ISBN :
0-7803-7152-6
Type :
conf
DOI :
10.1109/ITHERM.2002.1012468
Filename :
1012468
Link To Document :
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