In this paper, the thermal behavior of double sided cooled (DSC) power modules (PMs) is investigated through an in-depth analysis based on finite-element method simulations. Although the innovative DSC technology undoubtedly improves the electrical performance and mechanical ruggedness of power modules, its promising thermal behavior - characterized by peculiar heat pathways - deserves to be further discussed. DSC PMs are analyzed by activating and de-activating each cooling surface in a wide range of boundary conditions. To provide a comprehensive explanation of the thermal phenomena occurring in such assemblies, a steady-state model relying on an equivalent thermal circuit is proposed.

Study of the thermal behavior of double-sided cooled power modules

Codecasa L.;
2021-01-01

Abstract

In this paper, the thermal behavior of double sided cooled (DSC) power modules (PMs) is investigated through an in-depth analysis based on finite-element method simulations. Although the innovative DSC technology undoubtedly improves the electrical performance and mechanical ruggedness of power modules, its promising thermal behavior - characterized by peculiar heat pathways - deserves to be further discussed. DSC PMs are analyzed by activating and de-activating each cooling surface in a wide range of boundary conditions. To provide a comprehensive explanation of the thermal phenomena occurring in such assemblies, a steady-state model relying on an equivalent thermal circuit is proposed.
2021
2021 27th International Workshop on Thermal Investigations of ICs and Systems, THERMINIC 2021
978-1-6654-1896-6
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1204054
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