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Electrical & Computer Engineering

Circuits to computers: analog and digital electronics, computer architecture, communication systems, and embedded devices.

16 Topics

A

Analog Electronics

This field focuses on continuous-time electrical signals and the components that process them, such as diodes, transistors, and operational amplifiers. Learners will understand how to analyze, design, and troubleshoot analog circuits and amplifiers.

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12
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3
Levels
C

Circuit Analysis

Circuit analysis covers the fundamental techniques used to determine voltages and currents in electrical networks. Learners will master Ohm's law, Kirchhoff's laws, nodal analysis, and network theorems for both DC and AC circuits.

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11
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3
Levels
C

Communication Systems

This subject covers the transmission, reception, and processing of information over wired and wireless channels. Learners will understand modulation techniques, noise analysis, signal encoding, and the architecture of modern analog and digital communication networks.

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12
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3
Levels
C

Computer Architecture

Computer architecture explores the design and organization of computer systems, focusing on instruction sets, processors, memory hierarchies, and I/O interfaces. Learners will understand how hardware components interact to execute software instructions efficiently.

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22
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3
Levels
D

Digital Electronics

Digital electronics focuses on circuits that process binary signals representing discrete states. Learners will understand logic gates, flip-flops, multiplexers, and memory devices, gaining the skills to analyze and build basic digital processing systems.

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5
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3
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D

Digital Logic Design

This topic covers the principles of digital systems, focusing on binary mathematics, logic gates, combinational circuits, and sequential circuits. Learners will understand how to design, analyze, and optimize digital hardware components like registers and counters.

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9
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3
Levels
E

Electromagnetics

This subject covers the behavior of electric and magnetic fields and their interactions with materials. Learners will understand Maxwell's equations, electromagnetic wave propagation, transmission lines, and the principles behind antennas and waveguides.

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5
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3
Levels
E

Electronics Basics

This introductory topic covers the fundamental components and principles of electronic circuits. Learners will understand how resistors, capacitors, inductors, and diodes function, and how to construct and test simple electronic systems.

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5
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3
Levels
I

Introduction to ECE

This introductory topic provides an overview of electrical and computer engineering principles, including basic circuits, digital systems, and signal processing. Learners will understand foundational concepts and explore various subfields within the discipline.

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9
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3
Levels
M

Microcontrollers & Embedded

This subject covers the integration of microprocessors with peripheral devices to control physical systems. Learners will understand how to program microcontrollers, interface with sensors and actuators, and design real-time embedded systems.

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M

Microcontrollers (Arduino, Raspberry Pi)

This topic covers the practical application of popular single-board computers and microcontrollers. Learners will understand how to write code, connect hardware peripherals, and build interactive projects using Arduino and Raspberry Pi platforms.

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8
Resources
3
Levels
P

PCB Design

PCB design basics covers the process of creating custom printed circuit boards. Learners will understand schematic capture, component placement, routing traces using CAD software, and preparing design files for manufacturing and assembly.

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9
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3
Levels
P

Power Electronics

Power electronics focuses on the conversion and control of electrical energy using solid-state electronics. Learners will understand the operation of rectifiers, inverters, and DC-DC converters used in power supplies and motor drives.

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12
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P

Power Systems

This topic covers the generation, transmission, distribution, and utilization of electrical power. Learners will understand three-phase systems, power flow analysis, grid stability, and the integration of renewable energy sources into the electrical grid.

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8
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3
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S

Signals & Systems

This topic covers the mathematical representation and analysis of continuous and discrete-time signals and systems. Learners will understand Fourier, Laplace, and Z-transforms, enabling them to analyze system behavior, stability, and frequency response.

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9
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3
Levels
V

VLSI & FPGA

This field covers the design and fabrication of integrated circuits and programmable hardware. Learners will understand hardware description languages like VHDL or Verilog, physical layout design, and how to implement digital systems on FPGA chips.

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