Industrial manufacturers that integrate a wide number of parts in their systems commonly require to model it in a unique environment. One typical and most used simulation environment is SaberRD, since it offers a possibility to simulate an entire complex system involving multiple engineering fields in the same model.
Therefore, to work with them, suppliers must provide models of their parts in SaberRD environment.
Each semiconductor has specific characteristics (on-load loss, transient current, capacitances…). Fortunately, semiconductors manufacturers provide information about their products in a standardized way.
Complex systems are tedious and difficult to model. They consist in combinations of many parts and usually concern several engineering fields. These fields often interact with each other. For example, the behavior of electrical part will engender losses and, then, influence the thermal part.
To carry a Robust Design project, it is mandatory that main parameters of those complex systems can be varied. This will allows realize all type of parametric studies: Sensitivity, Monte-Carlo and Optimization.
During design process, it can be decided to change devices shapes. Devices models must then be tunable to remain representative.
Saber integrate an HDL language, the MAST. This language is built on IEEE Standard 1076-2008 and is the de facto Industry standard. This language provides flexibility and depth so that it is possible to represent any component or system behavior.
This modelling work basically consists in tedious tasks and necessitates lots of different steps such as:
- The development of the model itself
- A proper validation using the real test bench measurements,
- A complete documentation on the possibilities and limitations of the model.
In this context, the POWERSYS consulting team can provide the following services:
- Modelling semi-conductor devices
- Modelling tunable complex devices, including a wide number of devices
- Model validation through comparison with test curves
- Writing a code in HDL that represent a specific model