EE-320: Analog IC designIntroduction to the design of analog CMOS integrated circuits at the transistor level. Understanding and design of basic structures. ...
EE-203(a): Electronique II (pour EL)Ce cours traite des principes de fonctionnement des transistors Bipolaire et MOSFET, leur modélisation et
implémentations dans les circuits élémentaires (miroir de courant, ampli simple, différentiel, à plusieurs étages, de
puissance etc.) et finie avec la ...
EE-203(c): Electronique II (pour MT)Ce cours traite des principes de fonctionnement des transistors Bipolaire et MOSFET, leur modélisation et implémentations dans les circuits élémentaires (miroir de courant, ampli simple, différentiel, à plusieurs étages, de puissance etc.) et finie avec la ...
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-435: Analog circuit design II (for MNIS)The course provides a comprehensive treatment of analog IC design, emphasizing new solutions and paradigms used in today's low-power electronic systems. The analysis and design are first introduced from an intuitive perspective before the rigorous treatmen ...
EE-381: Electronics IIIComparaison entre les systèmes à composants discrets et les systèmes intégrés. Introduction aux systèmes électroniques numériques et analogiques et à leur interfaçage. Analyse sous forme d'un projet d'un cahier des charges d'un système intégré mixte analo ...
EE-203: Electronics IICe cours introduit les composants à semiconducteurs électroniques de base : diodes à jonction PN, transistors bipolaires et MOS. Leurs modes de fonctionnement en DC et AC sont étudiés. Les circuits élémentaires à base de transistors bipolaires sont prése ...
EE-427: Analog IC design (for MNIS)This course deals with the analysis, design, and optimization of CMOS analog circuits, emphasizing low-power solutions required in a broad range of applications (e.g., IoT, wearables, Biosensors ...). Some examples of mixed-signal design are also addressed ...
MICRO-461: Low-power radio design for IoTThe basic function of an IoT node is to collect data and send it through a wireless channel to the cloud. Since the power consumption of an IoT node is largely dominated by the wireless communication, it is therefore key to understand the trade-offs faced ...
MICRO-705: Low-voltage analog CMOS IC designThe course is covering following aspects: MOS Transistor Modeling for Low-Voltage and Low-Power Circuit Design, Noise Performance of Elementary Transistor Stages, Stability of Operational Amplifiers, Important Opamp Configurations and Distortion in Element ...
EE-423: Low power electronics: analog mixed signal designThis course deals with the analyze, design and optimization of CMOS analog circuits, emphasizing low-power solutions required in a broad range of applications (e.g. IoT, wearables, Biosensors ...). Some examples of mixed-signal design are also addressed. ...
EE-520: Low-power analog IC designThis course presents the design of low-power analog CMOS integrated circuits. The techniques are based on the concept of inversion coefficient that can be used as the main design parameter for the optimization of figures-of-merit applied to circuits includ ...
MICRO-211: Analog circuits and systemsThis course introduces the analysis and design of linear analog circuits based on operational amplifiers. A Laplace early approach is chosen to treat important concepts such as time and frequency responses, convolution, and filter design. The course is com ...