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experimental investigation of using thermoelectric cooling puter chips参考文献.pdf

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文档介绍:Journal of King Saud University – Engineering Sciences 32 (2020) 321–329

sults
Thermoelectric cooler
showed that at hotspot heat rate of 10.8 W, using thermoelectric current of 5.5 A has resulted in decreas-
Computer chip
° °
Hotspots ing the hotspot temperature at open circuit condition (111.4 C) by 54.0 C. However, at hotspot heat rate
Seebeck effect of 12.1 W, using thermoelectric current of 6.0 A has resulted in decreasing the hotspot temperature at
Peltier effect open circuit condition (138.8 °C) by 61.1 °C. The test results showed that the optimum electrical current
at high heat rate was always greater than that at low heat rate. The results provided in this paper is a part
of a research project that consists of a number of phases in which the ultimate goal is to develop a simple
tool for designing self-cooling framework to cool down chip hotspot at different operating conditions
wi

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experimental investigation of using thermoelectric cooling puter chips参考文献.pdf

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