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Electronics courses

Learn Electronics online: university courses, full YouTube courses, and courses with free certificates, from the IITs, MIT, Harvard, Google, Microsoft and more.

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MIT OpenCourseWare

Matrix Methods in Data Analysis, Signal Processing, and Machine Learning

Linear algebra concepts are key for understanding and creating machine learning algorithms, especially as applied to deep learning and neural networks. This course reviews linear algebra with applications to probability and statistics and optimization–and above all a full explanation of deep learni…

  • MIT
  • Self-paced
  • Free course
  • Advanced

Johns Hopkins University

Designing Hardware for Raspberry Pi Projects

5.035 ratings

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…

  • Coursera
  • 10 hours
  • Self-paced
  • Paid certificate

Delft University of Technology

Solar Energy: Photovoltaic (PV) Energy Conversion

4.514 ratings

Learn how solar cells generate electricity, and about the semiconductor physics and optics required to design and manufacture solar cells.

  • edX
  • 12 weeks, 9 - 10 hours per week
  • Self-paced
  • Free to audit
  • Paid certificate
  • Advanced

University of California, Irvine

Introduction to the Internet of Things and Embedded Systems

4.713,435 ratings

This course introduces the rapidly expanding world of the Internet of Things (IoT) and embedded systems, exploring how technological trends are enabling new innovations. You'll learn about the societal impact of IoT, key design considerations, and the critical interplay between hardware and softwar…

  • Coursera
  • 4 weeks, 1-3 hours/week
  • Self-paced
  • Paid certificate

MIT OpenCourseWare

Introduction to Communication, Control, and Signal Processing

This course examines signals, systems and inference as unifying themes in communication, control and signal processing. Topics include input-output and state-space models of linear systems driven by deterministic and random signals; time- and transform-domain representations in discrete and continu…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Stochastic Processes, Detection, and Estimation

This course examines the fundamentals of detection and estimation for signal processing, communications, and control. Topics covered include: vector spaces of random variables; Bayesian and Neyman-Pearson hypothesis testing; Bayesian and nonrandom parameter estimation; minimum-variance unbiased est…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Power Electronics

6.334 examines the application of electronics to energy conversion and control. Topics covered include: modeling, analysis, and control techniques; design of power circuits including inverters, rectifiers, and DC-DC converters; analysis and design of magnetic components and filters; and characteris…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Digital Signal Processing

This course was developed in 1987 by the MIT Center for Advanced Engineering Studies. It was designed as a distance-education course for engineers and scientists in the workplace. Advances in integrated circuit technology have had a major impact on the technical areas to which digital signal proces…

  • MIT
  • Self-paced
  • Free course
  • Advanced

École Polytechnique Fédérale de Lausanne

Digital Signal Processing 3: Analog vs Digital

4.897 ratings

Digital Signal Processing is the branch of engineering that, in the space of just a few decades, has enabled unprecedented levels of interpersonal communication and of on-demand entertainment. By reworking the principles of electronics, telecommunication and computer science into a unifying paradig…

  • Coursera
  • 8-10 hours/week
  • Self-paced
  • Paid certificate

MIT OpenCourseWare

Semiconductor Manufacturing

6.780 covers statistical modeling and the control of semiconductor fabrication processes and plants. Topics covered include: design of experiments, response surface modeling, and process optimization; defect and parametric yield modeling; process/device/circuit yield optimization; monitoring, diagn…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Circuits and Electronics

6.002 is designed to serve as a first course in an undergraduate electrical engineering (EE), or electrical engineering and computer science (EECS) curriculum. At MIT, 6.002 is in the core of department subjects required for all undergraduates in EECS. The course introduces the fundamentals of the…

  • MIT
  • Self-paced
  • Free course
  • Advanced

University of Illinois Urbana-Champaign

VLSI CAD Part I: Logic

4.6557 ratings

A modern VLSI chip has a zillion parts -- logic, control, memory, interconnect, etc. How do we design these complex chips? Answer: CAD software tools. Learn how to build thesA modern VLSI chip is a remarkably complex beast: billions of transistors, millions of logic gates deployed for computation a…

  • Coursera
  • 23 hours
  • Self-paced
  • Paid certificate

The Linux Foundation

Computer Architecture with an Industrial RISC-V Core [RVfpga]

4.37 ratings

Get a practical introduction to using RISC-V computer architecture based on a RISC-V system-on-chip (SoC) targeted to a field-programmable gate array (FPGA) and to different simulation tools.

  • edX
  • Self-paced
  • Free to audit
  • Paid certificate
  • Intermediate

Arm Education

Embedded Systems Essentials with Arm: Get Practical with Hardware

4.440 ratings

Spark your creativity with Arm. Level up your Embedded Systems skills by developing working embedded prototypes using the CMSIS API and an Arm-based development board, and unlock the boundless opportunities of the Internet of Things.

  • edX
  • 10 weeks, 3 - 6 hours per week
  • Self-paced
  • Free to audit
  • Paid certificate
  • Intermediate

MIT OpenCourseWare

Introductory Analog Electronics Laboratory

6.101 is an introductory experimental laboratory that explores the design, construction, and debugging of analog electronic circuits. Lectures and six laboratory projects investigate the performance characteristics of diodes, transistors, JFETs, and op-amps, including the construction of a small au…

  • MIT
  • Self-paced
  • Free course
  • Advanced

IIT Hyderabad

Introduction to Semiconductor Devices

Electrical Engineering course by Prof. Naresh Kumar Emani.

  • NPTEL
  • 12 weeks, 78 lectures
  • Self-paced
  • Free course
  • Paid certificate
  • Intermediate

Stanford University

Stanford Webinar - Game-Changer for Solar Energy: Perovskite Semiconductors

In the last five years, advances in perovskite semiconductor technology have improved power conversion efficiency of solar cells at an impressive rate. Are these semiconductors poised to revolutionize the solar industry? Join Professor Michael McGehee as he explores the potential and the challenges…

Free video
  • YouTube
  • 50 minutes
  • Self-paced
  • Free video

The Hong Kong University of Science and Technology

Introduction to Semiconductors, PN Junctions and Bipolar Junction Transistors

4.611 ratings

This online course uses engaging animations to help you visualize the operating principles of many common semiconductor devices. The course covers PN junctions, photodiodes, solar cells, light-emitting diodes, metal-semiconductor contact, and Bipolar Junction Transistors.

  • edX
  • 8 weeks, 3 - 4 hours per week
  • Self-paced
  • Free to audit
  • Paid certificate
  • Intermediate

MIT OpenCourseWare

Practical Electronics

You can build a wide range of practical electronic devices if you understand a few basic electronics concepts and follow some simple rules. These devices include light-activated and sound-activated toys and appliances, remote controls, timers and clocks, and motorized devices. The subject begins wi…

  • MIT
  • Self-paced
  • Free course
  • Advanced