Electrónica Digital Bit a Bit: Aprendiendo fundamentos (Coursera)

Electrónica Digital Bit a Bit: Aprendiendo fundamentos (Coursera)

Es desafiante y hasta atemorizante entender un circuito digital cuando observamos la cantidad de transistores que puede contener, y aún más difícil diseñarlo eficientemente para su implementación en un circuito integrado o una FPGA. Sin embargo, saber diseñar circuitos digitales simples nos abre las puertas para diseñar sistemas digitales más complejos a partir de estos.

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

El curso "Electrónica digital bit a bit: Aprendiendo fundamentos" introduce al mundo de los circuitos digitales, empezando con el sistema de numeración binario y las compuertas lógicas, para luego poder diseñarlos utilizando Verilog. Finalmente, se entregarán herramientas para optimizar los circuitos digitales eficientemente y se presentarán los circuitos aritméticos fundamentales del mundo digital.
La metodología del curso trabaja con videolecciones acompañadas de pequeños cuestionarios te ayudarán a reforzar tu aprendizaje en cuanto a la comprensión del funcionamiento de los circuitos digitales, su implementación con compuertas lógicas, y las herramientas de optimización y diseño más utilizadas.

Syllabus

WEEK 1
Introducción a los circuitos lógicos
Las láminas y figuras presentadas en este módulo han sido elaboradas basándose en el libro "Fundamentals of Digital Logic with Verilog Design" de los autores Stephen Brown y Zvonko Vranesic.

WEEK 2
Introducción a Verilog
Las láminas y figuras presentadas en este módulo han sido elaboradas basándose en el libro "Fundamentals of Digital Logic with Verilog Design" de los autores Stephen Brown y Zvonko Vranesic.

WEEK 3
Tecnología
Las láminas y figuras presentadas en este módulo han sido elaboradas basándose en el libro "Fundamentals of Digital Logic with Verilog Design", de los autores Stephen Brown y Zvonko Vranesic, y el libro "CMOS VLSI Design A Circuits and Systems Perspective", de los autores Neil H. E. Weste y David Money Harris.

WEEK 4
Implementación optimizada de funciones lógicas
Las láminas y figuras presentadas en este módulo han sido elaboradas basándose en el libro "Fundamentals of Digital Logic with Verilog Design" de los autores Stephen Brown y Zvonko Vranesic.

WEEK 5
Representación numérica y circuitos de aritmética
Las láminas y figuras presentadas en este módulo han sido elaboradas basándose en el libro "Fundamentals of Digital Logic with Verilog Design" de los autores Stephen Brown y Zvonko Vranesic.

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Hardware Description Languages for FPGA Design (Coursera) Coursera
University of Colorado Boulder

Hardware Description Languages for FPGA Design (Coursera)

Hardware Description Languages for Logic Design enables students to design circuits using VHDL and Verilog, the most widespread design methods for FPGA Design. It uses natural learning processes to make learning the languages easy. Simple first examples are presented, then language rules and syntax, followed by more complex examples, and then finally use of test bench simulations to verify correctness of the designs.

Jun 1st 2026
4 Weeks
Introduction to Semiconductor Devices 2 (Coursera) Coursera
Korea Advanced Institute of Science and Technology - KAIST

Introduction to Semiconductor Devices 2 (Coursera)

This course aims to provide a general understanding of semiconductor devices. This coures covers the Metal-Semiconductor Contact, Metal-Oxide-Semiconductor (MOS) capapcitor, Metal-Oxide-Semiconductor Field Effect Transistors(MOSFETs), CMOS, Metal-Semiconductor Field Effect Transistors(MESFETs), Memory and Bipolar Junction Transistor (BJT) to improve the overall knowledge of semiconductor industry.

Jun 1st 2026
5-12 Weeks
Interfacing with the Arduino (Coursera) Coursera
University of California, Irvine

Interfacing with the Arduino (Coursera)

Arduino senses the environment by receiving inputs from add-on devices such as sensors, and can control the world around it by adjusting lights, motors, and other actuators. In this class you will learn how and when to use the different types of sensors and how to connect them to the Arduino. Since the external world uses continuous or analog signals and the hardware is digital you will learn how these signals are converted back-and-forth and how this must be considered as you program your device. You'll also learn about the use of Arduino-specific shields and the shields software libraries to interface with the real world.

Jun 8th 2026
4 Weeks
Real-Time Mission-Critical Systems Design (Coursera) Coursera
University of Colorado Boulder

Real-Time Mission-Critical Systems Design (Coursera)

Upon completion of this course the learner will know the difference between systems you can bet your life on (mission critical) and those which provide predictable response and quality of service (reliable). This will be achieved not only by study of design methods and patterns for mission critical systems, but also through implementation of soft real-time systems and comparison to hard real-time. Methods of verification to determine ability to meet mission critical as well as soft real-time requirements will be learned so that the learner can properly assess risk, reliability and impact of failure in real-time systems.

Jun 1st 2026
4 Weeks
Physics 102 - Electric Charges and Fields (Coursera) Coursera
Rice University

Physics 102 - Electric Charges and Fields (Coursera)

This course serves as an introduction to the physics of electricity and magnetism. Upon completion, learners will have an understanding of how the forces between electric charges are described by fields, and how these fields are related to electrical circuits. They will gain experience in solving physics problems with tools such as graphical analysis, algebra, vector analysis, and calculus. The course follows the typical progression of topics of a first-semester university physics course: charges, electric forces, electric fields potential, magnetic fields, currents, magnetic moments, electromagnetic induction, and circuits.

Jun 8th 2026
4 Weeks
Design of High-Performance Optical Systems (Coursera) Coursera
University of Colorado Boulder

Design of High-Performance Optical Systems (Coursera)

This course can also be taken for academic credit as ECEA 5602, part of CU Boulder’s Master of Science in Electrical Engineering degree.Optical instruments are how we see the world, from corrective eyewear to medical endoscopes to cell phone cameras to orbiting telescopes. This course extends what you have learned about first-order, paraxial system design and optical resolution and efficiency with the introduction to real lenses and their imperfections.

Jun 8th 2026
5-12 Weeks
Developing FPGA-accelerated cloud applications with SDAccel: Theory (Coursera) Coursera
Politecnico di Milano

Developing FPGA-accelerated cloud applications with SDAccel: Theory (Coursera)

This course is for anyone passionate in learning how to develop FPGA-accelerated applications with SDAccel! We are entering in an era in which technology progress induces paradigm shifts in computing! As a tradeoff between the two extreme characteristics of GPP and ASIC, we can find a new concept, a new idea of computing... the reconfigurable computing, which has combined the advantages of both the previous worlds.

Jun 1st 2026
4 Weeks
Aplicaciones musicales con Arduino (Coursera) Coursera
Universidad Nacional Autónoma de México

Aplicaciones musicales con Arduino (Coursera)

En este curso nos adentraremos en el terreno del hardware. Concretamente, aprenderemos a utilizar la placa de desarrollo de hardware de código abierto, llamada Arduino, enfocándonos en las aplicaciones que esta ofrece para la experimentación musical. De manera más específica, aprenderemos en este curso a construir nuestros propios generadores de sonido, y a partir de ello haremos instalaciones sonoras que nos permitirán expandir nuestra creatividad hacia el terreno de las cosas materiales, y ya no solo de los datos informáticos.

Jun 8th 2026
4 Weeks
Plastic electronics (Coursera) Coursera
École Polytechnique

Plastic electronics (Coursera)

Plastic electronics is a concept that emerged forty years ago, with the discovery of electrically conductive polymers. Ten years later, the first electronic devices using organic solids in place of the ubiquitous inorganic semiconductors were realised. The best achievement of plastic electronics is constituted by Organic Light-Emitting Diodes (OLEDs) that equip the display of many smartphones, and even TV sets.

Jun 8th 2026
5-12 Weeks
Designing Hardware for Raspberry Pi Projects (Coursera) Coursera
Johns Hopkins University

Designing Hardware for Raspberry Pi Projects (Coursera)

This is course 4 of this specialization (although it can be taken out of order) and focuses on applying experience and knowledge gained in the first three courses to build physical electronics hardware. Specifically, this course focuses on four areas: circuit simulation, schematic entry, PCB layout, and 3D CAD modeling. There are many excellent commercial applications available in these areas, however to give everyone access we'll be using all free and open-source software.

Jun 8th 2026
4 Weeks