EE-361: Machines électriques (pour EL)L'objectif de ce cours est d'acquérir les connaissances de base liées aux machines électriques (conversion électromécanique). Le cours porte sur le circuit magnétique, le transformateur, les machines synchrones, asynchrones, à courant continu et les moteur ...
EE-382: Machines électriques (pour GM)L'objectif de ce cours est d'acquérir les connaissances de base liées aux machines électriques (conversion électromécanique). Le cours porte sur le circuit magnétique, le transformateur, les machines synchrones, asynchrones, à courant continu et les moteur ...
MICRO-510: Commande embarquée de moteursL'étudiant sera capable de concevoir, de réaliser et de programmer une électronique complète de commande de moteur ou d'actionneur. Il saura appliquer la théorie de la commande de moteur sur des systèmes réels. ...
EE-365: Power electronicsThe goal of the course is to present fundamentals of power electronics. The key focus is on the operating principles of power electronic converters, their modelling, sizing and design. ...
EE-490(c): Lab in power electronicsThis teaching lab provides the practical experiences related to the operation of power electronics converters and digital control in power electronics, through experimental activities on the Power Electronic Teaching Setups. Work is organised
by means of m ...
EE-565: Industrial electronics IIThe course is dealing with high performance drives and methods to control various electrical machines by means of power electronic converter and advanced control methods. ...
EE-360: Conversion d'énergieL'objectif de ce cours est d'introduire les systèmes et outils liés à la conversion d'énergie, en se référant au contexte particulier de la production d'énergie électrique, qu'elle soit conventionnelle ou bien en lien avec les sources d'énergie renouvelabl ...
EE-519: Bioelectronics and biomedical microelectronicsThe course covers the fundaments of bioelectronics and integrated microelectronics for biomedical and implantable systems. Issues and trade-offs at the circuit and systems levels of invasive microelectronic systems as well as their eluding designs, methods ...
EE-362: Power systems analysisThe course provides the fundamental concepts to model power systems, understand their operation and design/coordinate some of its main components. ...
ENG-612: Power electronics for renewable applicationsIntroduction to key aspects of power-electronics utilization in renewable energy applications, including the basic operation principles, system-level properties, control, and modeling. Practical experiences are gained via the simulation exercises. ...
BIOENG-310: Neuroscience foundations for engineersThis overview course bridges computational expertise with neuroscience fundamentals, aimed at fostering
interdisciplinary communication and collaboration for engineering-based neuroscience programs. ...
EE-333: Semiconductor physics and device principlesThe course introduces the fundamental principles of semiconductor devices used for information processing and storage. It covers the basics of the physics of device operation, material aspects, design, and essential device characteristics, while also highl ...
EE-320: Analog IC designIntroduction to the design of analog CMOS integrated circuits at the transistor level. Understanding and design of basic structures. ...
MICRO-617: Energy Autonomous Wireless Smart SystemsThe course provides in depth knowledge on how to design an energy autonomous microsystem embedding sensors with wireless transmission of information. It covers the energy generation, power management, and data processing and transmission with an emphasis o ...
BIOENG-456: Controlling behavior in animals and robotsStudents will acquire an integrative view on biological and artificial algorithms for controlling autonomous behaviors. Students will synthesize and apply this knowledge in oral presentations and computational exercises. ...