EdX

Electronique II (edX)

Electronique II (edX)

Introduction à l’électronique analogique- seconde partie. Fonctions linéaires de base réalisée à l’aide de transistor bipolaire. Ce cours est un cours d’introduction à la réalisation des fonctions linéaires à l’aide de transistors.

Class Deals by MOOC List - Click here and see EdX's Active Discounts, Deals, and Promo Codes.

Les étudiants appliquent la théorie des circuits, Ils apprennent à manipuler les modèles petits et grands signaux du transistor bipolaire afin de réaliser les fonctions d’amplifications et filtrage. Les explications sont illustrées par des exercices avec des démonstrations de circuits simulés à l’aide d’un simulateur de type Spice qui peuvent être reproduite par les élèves.

What you'll learn
A la fin de ce cours l'étudiant doit être capable de:

  • Comprendre la structure du transistor bipolaire.
  • D’utiliser les configurations petits-signaux du transistor.
  • De concevoir des circuits de polarisation des et sources de courant.
  • De concevoir des amplificateurs élémentaires à transistors.
  • D’analyser la réponse en fréquence des amplificateurs.
  • De comprendre la mise-en-cascade des structures analogiques pour réaliser un amplificateur opérationnel ou un amplificateur de puissance.
Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Introduction to Semiconductors, PN Junctions and Bipolar Junction Transistors (edX) EdX
The Hong Kong University of Science and Technology - HKUST,HKUSTx

Introduction to Semiconductors, PN Junctions and Bipolar Junction Transistors (edX)

An intuitive approach to operational principles of semiconductor devices. The course covers PN junction diodes, optical sensors, solar cells, LEDs, and Bipolar Junction Transistors. As a topic of study, semiconductor devices offer a unique challenge due to the complex mathematics involved. In this course, we take a more intuitive approach to explore the underlying concepts. Eschewing mathematics, we use engaging animations to help you visualize the working principles of many common semiconductor devices.

Self Paced
Self-Paced
Introduction to the Internet of Things (edX) EdX
Universitat Politècnica de València,UPValenciaX

Introduction to the Internet of Things (edX)

This is a preliminary course in which we deal with the basics of electronics and programming using Arduino and ESP boards. Internet of Things (IoT) is the present and the future of technology. Either, if you have none, few or some experience with electronics and you want to develop it projects this course will give you the necessary kick start to start creating amazing devices capable of sensing, controlling physical signals.

Self Paced
Self-Paced
Fundamentals of Audio and Music Engineering: Part 1 Musical Sound & Electronics (Coursera) Coursera
University of Rochester

Fundamentals of Audio and Music Engineering: Part 1 Musical Sound & Electronics (Coursera)

In this course students learn the basic concepts of acoustics and electronics and how they can applied to understand musical sound and make music with electronic instruments. Topics include: sound waves, musical sound, basic electronics, and applications of these basic principles in amplifiers and speaker design.

Sep 28th 2026
5-12 Weeks
AC and Switching Circuits (edX) EdX
National University of Singapore,NUS

AC and Switching Circuits (edX)

In this course, you will learn all about circuits with alternating current (AC). The course shows how to design and analyse AC circuits, and concepts like phasors and power factor are explained. We also cover transformers, fuses, relays, and the use of transistors as switches. The course is the second in our series on electronics and a working knowledge of DC circuits is assumed.

Self Paced
Self-Paced
Nanotechnology: Fundamentals of Nanotransistors (edX) EdX
Purdue University

Nanotechnology: Fundamentals of Nanotransistors (edX)

Explore nantechnology and gain an understanding of the essential physics and technology of nanotransistors. The transistor has been called the greatest invention of the 20th century – it enables the electronics systems that have shaped the world we live in. Today’s nanotransistors are a high volume, high impact success of the nanotechnology revolution. If you are interested in understanding how this scientifically interesting and technologically important nano-device operates, this course is for you!

No sessions available
5-12 Weeks
Introducción al Internet de las Cosas (IoT) (edX) EdX
Universitat Politècnica de València,UPValenciaX

Introducción al Internet de las Cosas (IoT) (edX)

Este es un curso en línea preliminar en el que tratamos los conceptos básicos de electronica y programación utilizando placas Arduino y ESP. El internet de las cosas (Internet of things o IoT) es el presente y el futuro de la tecnología. Tanto si tienes algo de experiencia con la electrónica y deseas desarrollar proyectos como si no tienes ninguna, este curso online te dara los conocimientos iniciales necesarios para comenzar a crear dispositivos increibles capaces de medir y controlar señales físicas.

Self Paced
Self-Paced
The Mechatronics Revolution: Fundamentals and Core Concepts (edX) EdX
Georgia Institute of Technology,GTx

The Mechatronics Revolution: Fundamentals and Core Concepts (edX)

In this course, students will learn to harness the power of microcontrollers, sensors, and actuators to build useful and interesting robotic devices. The Mechatronics Revolution is upon us. Never before has it been easier to build robotic devices and computer-controlled machines. The confluence of low-cost embedded computers, sensors, and actuators has made experimentation and prototyping easier than ever.

Self Paced
Self-Paced
Introducción a Matemáticas para Finanzas y Negocios (edX) EdX
Tecnológico de Monterrey,TecdeMonterreyX

Introducción a Matemáticas para Finanzas y Negocios (edX)

El objetivo del curso es entender como ciertos conceptos matemáticos se utilizan de forma recurrente para analizar problemas financieros y de negocios. En la primera parte del curso se analiza el caso de las funciones lineales donde se introduce el concepto de pendiente para cuantificar la dependencia entre las variables.

Self Paced
Self-Paced