Affiliation:
1. Naval University of Engineering
Abstract
As the operation performances and reliability of semiconductor devices are tightly related to its operating temperature, the research on the heat transfer characteristic and thermal modeling do a significant meaning to extend services lifetime and improve application reliability of the IGBT modules. The physical structure and the conception, RC component network of thermal resistance, test principle and platform of the transient thermal impedance of IGBT module and three modeling methods are briefly introduced. The parameters of Cauer RC thermal network of a certain type IGBT is derived based on transmission line method. The junction-case thermal resistance can be deduced by Finite Element Method in the numerical simulator ANSYS and the transient thermal impedance curve. Thermal compact model can also be deduced from the numerical simulation and experimental results. An excellent agreement is obtained between experimental results derived by the transient thermal impedance curve and numerical simulation results based on FEM. The thermal compact model and experimental results could be helpful for modeling of thermal model and heat sink design for such electronic devices.
Publisher
Trans Tech Publications, Ltd.
Reference15 articles.
1. Hewlett-Packard. A guide to understanding, measuring, and applying power FET thermal resistance coefficients. High-frequency transistor primer part III-A: thermal resistance.
2. Fabis P M, Shun D, Windischmann H. Thermal modeling of diamond-based power electronics package. Northboro, Fifteenth IEEE semi-thermal symposium, (1999).
3. Masana F N. Micro-electronics Reliability, 2001, 41, pp.901-912.
4. J Reichl, D Berning, A Hefner, J Lai. Six Pack IGBT Dynamic Electro-Thermal Model: Parameter Extraction and Validation. Applied Power Electronics Conference and Exposition, 2004. APEC '04. Nineteenth Annual IEEE, Anaheim, CA, 2004, pp.246-251.
5. Infineon. Thermal equivalent circuit models. Application note, V1. 0, (2008).
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献