
Chez NXP, la conformité aux exigences CEM constitue un élément clé du développement des circuits intégrés destinés aux marchés automobile, industriel et IoT. Les émissions conduites et rayonnées sont évaluées conformément à la norme CISPR 25 afin de garantir l'intégration des composants dans des systèmes électroniques de plus en plus complexes.
Aujourd’hui, les performances CEM sont principalement évaluées à partir de mesures réalisées sur silicium et cartes d’évaluation. Cependant, la possibilité de prédire ces performances dès les phases de conception grâce à la simulation représente un enjeu majeur pour réduire les cycles de développement, limiter les itérations de validation et améliorer le taux de réussite « first pass ».
Dans ce contexte, l’équipe EMC/ESD souhaite développer une méthodologie de simulation des émissions CISPR 25 corrélée aux résultats expérimentaux. L'objectif est de construire un flot de simulation robuste permettant d'anticiper les risques CEM dès les premières phases de conception des circuits intégrés.
Au sein de l'équipe EMC/ESD de Toulouse, vous participerez au développement d'une méthodologie innovante de prédiction des émissions CISPR 25.
Vos principales missions seront :
Élève ingénieur ou étudiant en Master 2 (Bac+5) avec une spécialisation en :
NXP develops advanced automotive and industrial semiconductor solutions where EMC compliance is a key product requirement. Conducted and radiated emissions according to CISPR 25 are routinely evaluated during product development and qualification.
Today, several simulation approaches exist to estimate emission levels at IC and board level. However, achieving accurate correlation between simulation results and laboratory measurements remains a significant challenge. A robust and validated methodology would enable earlier EMC risk detection, reduced laboratory iterations, and improved first-pass success.
In this context, the intern will join the EMC/ESD team to develop a correlation methodology between CISPR 25 emission simulations and laboratory measurements. The objective is to establish a reliable signoff flow applicable during the design phase of automotive and industrial integrated circuits and evaluation boards.
The internship will be located at NXP in Toulouse.
During this internship, you will participate in the development of a fast and accurate EMC prediction methodology for CISPR 25 emissions.
The intern will develop:
Education level: Final year engineering student or Master's degree (Bac+5)
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