Learn Verilog Hdl From Scratch With Hands-On Simulation
Created by Learning Microcontrollers
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 18 Lectures ( 4h 55m ) | Size: 5.2 GB
Learn Verilog by writing and simulating digital circuits on EDA Playground — no hardware required
Created by Learning Microcontrollers
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 18 Lectures ( 4h 55m ) | Size: 5.2 GB
Learn Verilog by writing and simulating digital circuits on EDA Playground — no hardware required
What you'll learn
Understand Verilog HDL fundamentals from scratch and learn how digital systems are modeled using hardware description language concepts.
Write, run, and test Verilog code directly on EDA Playground without installing any software or requiring hardware setup.
Create and simulate digital logic designs including combinational logic, sequential logic, conditional statements, modules, counters, testbenches, and finite st
Analyze simulation outputs and debug Verilog designs confidently through hands-on coding examples provided in every lecture.
Requirements
No prior knowledge of Verilog is required — this course is designed completely for beginners.
Basic understanding of digital logic concepts such as logic gates and binary numbers is helpful but not mandatory.
A computer with internet access to use EDA Playground for running Verilog code examples.
Willingness to practice by writing and simulating Verilog code alongside the lectures.
Description
Learn Verilog HDL From Scratch with Hands-On SimulationWant to learn Verilog in a practical and beginner-friendly way?This course is designed for students, electronics enthusiasts, and aspiring digital design engineers who want to master Verilog Hardware Description Language (HDL) from the ground up using EDA Playground.Unlike theory-heavy courses, this course focuses on hands-on learning through live coding demonstrations and simulations in every lecture. You will write, test, debug, and simulate Verilog code directly in your browser — no hardware, FPGA board, or software installation required.You will start by understanding why HDL matters and how Verilog is used in modern digital systems, then gradually move toward practical circuit design and simulation.What You’ll LearnVerilog HDL fundamentals from scratchWriting and simulating Verilog codeUnderstanding delays and arithmetic operationsUsing system tasks like $display and $monitorBlocking vs non-blocking assignmentsDesigning combinational and sequential logicBuilding digital circuits like adders and multiplexersWriting conditional statements in VerilogUsing testbenches and waveform analysis in simulationWhy Take This Course? Beginner-friendly explanations Practical coding in every lecture Learn directly on EDA Playground No FPGA hardware required Step-by-step hands-on simulations Ideal for university students and self-learnersCourse ContentIntroductionLecture 1: Why HDL Matters?Lecture 2: Getting Started with Verilog: From Microcontrollers to FPGA VerilogSetting Up ToolsLecture 3: Getting Started with EDA PlaygroundLearning VerilogLecture 4: Delay in VerilogLecture 5: Arithmetic in VerilogLecture 6: $display Command in VerilogLecture 7: $monitor Command in VerilogLecture 8: $display vs $monitor in VerilogLecture 9: Blocking vs Non-Blocking Assignment in VerilogLecture 10: Combinational Logic in VerilogLecture 11: Sequential Logic in VerilogLecture 12: 4-Bit Adder Using VerilogLecture 13: Design and Simulate 2:1 MUX in VerilogLecture 14: Design and Simulate Half Adder in VerilogLecture 15: If-Else Conditional Statements in VerilogLecture 16: If-Else-If Statements in VerilogLecture 17: Case Statement in VerilogLecture 18: Opening Waveforms in EDA Playground Testbench SimulationBy the end of this course, you will have the confidence to write, simulate, and debug Verilog code and build a strong foundation for digital design, FPGA development, and advanced hardware design concepts.Moreover, I keep on updating this course. More lectures will be added on the way. Stay tuned.
Beginners who want to learn Verilog HDL from scratch with no prior coding experience.,Electronics, electrical, and computer engineering students learning digital design and hardware description languages.,Students preparing for FPGA, digital design, or VLSI-related coursework and projects.,Anyone who wants to learn Verilog through hands-on simulation using EDA Playground without installing complex software tools.





