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In this paper it is shown how Finite Element Analysis can be exploited for the calibration of detailed compact thermal models of the components in the power converter topology. Parameters extracted from Finite Element transient thermal response are used to build the thermal network in conjunction with an electrical model of the converter for the prediction ofpower losses in the components. Results...
Temperature is one of the most important factors that affect the performance of power electronics systems. It is important that thermal management is considered initially at the design stage of the systems. Because of its advantages of being low cost, high accuracy, and adaptable, computer simulation based analysis and design techniques have become important tools for power electronics designers....
In the field of IGBT modules, there is currently a plethora of new packaging materials being developed with a view to increased “reliability”. Whilst this approach is often essential to meet the needs for the ever increased demand in harsher environments, the result can often be seen as an over-engineered solution with resultant excessive cost. This paper will present a case study addressing how process...
Power electronic modules (PEMs) are widely used in aerospace and automotive applications where high reliability is essential. Solder joint fatigue is one of the major failure mechanisms in PEMs, a reliability assessment method for this failure mechanism is presented in this paper. Differing from the traditional reliability prediction methods, this approach allows the reliability performance of PEMs...
The use of an innovative jet impingement cooling system in a power electronics application is investigated using numerical analysis. The jet impingement system, outlined by Skuriat et al, consists of a series of cells each containing an array of holes. Cooling fluid is forced through the device, forming an array of impingement jets. The jets are arranged in a manner, which induces a high degree of...
This paper describes a physics of failure (PoF) based prognostic method for power electronic modules. This method allows the reliability performance of power modules to be assessed in real time. A compact thermal model was firstly constructed to investigate the relationship between the power dissipation and the temperature in the power module. Such relationship can be used for fast calculation of...
This paper describes a prognostic method which combines the physics of failure models with probability reasoning algorithm. The measured real time data (temperature vs. time) was used as the loading profile for the PoF simulations. The response surface equation of the accumulated plastic strain in the solder interconnect in terms of two variables (average temperature, and temperature amplitude) was...
The article consists of a Powerpoint presentation on integrated reliability and prognostics prediction methodology for power electronic modules. The areas discussed include: power electronics flagship; design for reliability; IGBT module; design for manufacture; power module components; reliability prediction techniques; failure based reliability; etc.
This paper discusses the reliability of an IGBT power electronics module. This work is part of a major UK funded initiative into the design, packaging and reliability of power electronic modules. The predictive methodology combines numerical modeling techniques with experimentation and accelerated testing to identify failure modes and mechanisms for these type of power electronic module structures...
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