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CYBER MONDAY GIFT 🎁 - Save 30% with discount code CYBM20 on Pro Membership Plan and all courses at EEP Academy!
Learn everything about AC electric circuits and electronics, from the basics such as what sinusoids are, all the way to key characteristics of AC circuits such as impedance, admittance, power factor, complex power, and power calculations.
Learn how to simulate any analog or digital electronics device in MATLAB/Simulink, including active low-pass & high-pass filters, audio equalizers, inverting & non-inverting amplifiers, analog-to-digital converters (ADCs), and digital-to-analog converters (DACs). 5 sections, 34 lectures in 6h 18m total length.
This course provides a complete overview of one of the main areas of electrical engineering and power engineering: rectifiers, DC-to-DC converters, and inverters. 25 lectures and 1 exam in 3h 43m total course length.
Learn how to simulate any power electronics device in MATLAB/Simulink, including rectifiers, DC-to-DC converters, and inverters (single-phase and three-phase). It consists of 4 sections, 30 lectures in 6h 22m total course length.
Learn about power flow analysis and short circuit analysis of balanced and unbalanced faults to further your career in electrical and power engineering. Examples are solved to illustrate how to analyze real-world power systems. 4 sections, 37 lectures in 5h 48m total course length.
Learn about steady-state and transient stability of power systems and their importance in the safe and reliable operation of power systems.
Learn how to simulate power systems in MATLAB/Simulink by building several Simulink power system models for load flow, short circuit, and power stability studies) and analyze the behavior of the system under several conditions.
Learn the essentials of generators, transformers, and transmission lines and their use in power system analysis to further your career in electrical and power engineering. The course consists of 35 lectures in 4h 36m total length.
Learn the fundamentals of power system analysis: power analysis of single- and three-phase AC circuits, power triangle, complex power, and power flow, delta or wye connected loads and per-phase analysis of balanced loads. The course consists of 20 lectures in 2h 51m total length.
Learn fundamentals of electric circuits and electronics, starting from the basics such as what an electric circuit is, electrical quantities like voltage, current & power, all the way to analyzing electric circuits.
Learn how to perform various electrical calculations and to use AutoCAD from scratch to professional level (real project included in DWG) in your residential and commercial projects. This course has 7 lessons, 87 topics in 6h 55m total course length.
Learn from scratch to design residential and commercial projects with electrical transformers, diesel gensets, UPSs, batteries, etc. (electrical theory included). 33 lectures in 6h 56m total length.
This course tackles the most important aspects of a power substation (basic theory, electrical equipment, earthing, and design guidelines). It consists of 3 lessons, 29 topics in 5h 01m total course duration.
Learn power system protection and control concepts, protection schemes and relays, primary & secondary equipment, and electrical wiring with practical examples. 85 lectures in 9h 11m total course length.
This course covers basic to intermediate level and will teach you to properly understand relay circuitry and read and analyze control and protection schematics. 50 lectures in 8h 22m total course length.
Learn to design low voltage distribution systems using AutoCAD and Dialux (power distribution, lighting, voltage drop, earthing and other calculations). 62 lectures in 10h total course length.
Learn about solar energy from A to Z for electrical engineers, solar designers, and others interested in working in the solar energy field. 11 sections, 58 lectures in 11h 43m total course length.
Transmission and Distribution Line Infrastructure Fundamentals is a comprehensive video course where you can learn industry-specific knowledge pertaining to the T&D infrastructure as well as how it is designed.