
Educational Engineering Team
Team of skilled Engineers Sharing Knowledge with the World
Educational Engineering Team is a Leading Team in Microcontroller Industry, with over 13 Years of Experience in Teaching and Doing Practical Projects.
We strive to put all our hands-on experience in these courses. Instead of superficial knowledge - we go into the depth of the topic and give you the exact - step by step blueprint on how to tame simple as well as complex topics in easy and digestible bite-sized videos.
This real-world knowledge enables you to grasp knowledge easily, and you can apply this learning immediately to your life and projects.
Educational Engineering Team has been in the Programming and Microcontroller business since 2007. We have been part of many projects. Over the course of these years - we have gained a good insight into students’ and educators’ needs. We are passionate about sharing all our collective knowledge with you. As of 2018, we have already taught over 250k-THOUSAND students and counting.
Currently, we have more than 100+ Courses on Udemy
Educator and Author of "Educational Engineering".
Ashraf is an educator, Mechatronics engineer, electronics and programming hobbyist, and Maker. He creates online video courses on the EduEng YouTube Channel (More Than 4 Million View, 20k + Subscriber) and author of four Microcontroller books.
As a Chief Educational Engineer since 2007 at Educational Engineering Team, the company he founded, Ashraf’s mission is to explore new trends and technology and help educate the world and make it a better place.
Educational Engineering offers educational courses and Bootcamps, articles, lessons, and online support for electronics hobbyists, Programming hobbyists, Microcontroller hobbyists, STEM students, and STEM teachers.
That team also work as freelancer engineers, helping many students in their graduation projects, and provide guidance and consulting for many students over the years to help them kick-start their career.
Ashraf’s core skill is explaining difficult concepts through in a step by step easy to understand matter using video and text. With over 11 years of tertiary teaching experience, Ashraf has developed a simple yet comprehensive and informative style in teaching that students from all around the world appreciate.
His passion for Microcontrollers and Programming and in particular for the world of Arduino, PIC Microcontroller, Rasberry Pi has guided his personal development and his work through Educational Engineering.
Ashraf’s online courses have helped over 250,000 people from around the world to be better and to make a great career in the industry.
Educational Engineering Team offer Course on
Circuit Design, Simulation, and PCB Fabrication
Arduino, PIC Microcontroller, and Raspberry Pi
Programming in C, Python, and other programming languages
PLC Industrial Programming and Automation
3D Design and Simulation
ESP and IoT World
For more information use the links in the profile page to follow Educational Engineering Team and Ashraf’s latest innovations.
Explore Arduino UNO simulation: connect components to pin 13 and a push button on pin 3, write setup and loop code, and debug with serial monitor and waveform visualization.
Download and install a visual programming environment for Arduino boards with drag-and-drop design, supporting official and clone boards, and offering a free version.
Download the Arduino library for Proteus from the provided link, extract it to a new folder, and install the two key files to add the libraries for this lesson.
Search for Proteus professional, download the evaluation or demo version, and install it. Learn about license prompts, activation, and preparing Arduino libraries for simulation.
Add the Arduino library to Proteus by copying files into the library folder, then create a project and select an Arduino board to run a LED circuit simulation.
Create your first Arduino program using setup and loop, with a digital pin as output to blink an led. Verify and upload to generate a hex file for simulation.
Edit the Arduino code to set pin 13 as an output and blink it with high and low signals, then verify, compile, and locate the hex file for simulation.
Sign up on the website to access Arduino simulation and block coding tools, enabling hands-on practice with circuit design and programming concepts.
Learn to start a circuit simulation, explore the interface, test circuits with the simulator, and use starter designs, premade circuits, and a code editor to share and export.
Edit Arduino circuit components in a traffic light project by adjusting resistors, LEDs, and wiring, switch between block and text code, and simulate behavior to test outcomes.
Learn to wire components in an Arduino simulation, connecting a nine-volt battery, LEDs, resistors, and switches, troubleshoot circuits, and understand anode and cathode orientation.
Add a DC motor, batteries, and a photo resistor to create an interactive circuit and test how battery count and light levels affect motor RPM.
Learn breadboard prototyping by wiring power rails, rgb leds, resistors, and push buttons in a simulated circuit. Build and test a basic rgb led project to understand connections and grounding.
Explore series and parallel circuits to power multiple leds, measure voltage and current with a multimeter, and learn how current splits and voltage distributes across leds.
Learn to control an LED with an Arduino using digital output on pin 13, wiring ground and a resistor, and using block-based or text coding in the simulation.
learn to control multiple LEDs on a breadboard with an Arduino, using digital outputs, resistors, and coding with text or blocks.
Learn to fade a led with analog output on an Arduino Uno using pwm and analogWrite to smoothly brighten and dim, with block-based coding options and adjustable timing.
Learn to read a digital input with Arduino by wiring a push button, using pull-down and pull-up resistors, and turning an LED on pin 13 via block-based code.
read analog value from a potentiometer using the analog input on pin a0 with Arduino, store it as sensor value, and blink an led faster or slower based on value.
Explore how to control multicolor rgb leds with potentiometers using arduino uno, wiring three 220-ohm resistors, and coding with analog outputs for red, green, and blue.
Gain a structured, project-based path to becoming an embedded systems professional through guided Arduino projects, hands-on practice, and thinking before coding.
>>> The Arduino is an open-source electronics platform based on easy-to-use hardware and software. Sensing the environment by receiving inputs from many sensors, Arduino affects its surroundings by controlling lights, motors, and a number of other accessories. It's intended for anyone making interactive hardware projects and in this course, we will make it easy for you to Design and Simulate Arduino Boards and Start Testing Your Codes Freely. <<<
Why you should take this course?
Learn Arduino without buying expensive hardware
Use Arduino simulation to see how code works
Learn the basics of the most popular programming languages for robotics
No need for a specific hardware, learn on your computer with simulation
Improve your cognitive skills at work and at home
Gain knowledge to design your own creations
Welcome to Design and Simulate Arduino Boards and Test Your Code course.
In this course, you will learn how to Simulate different Arduino Boards in A Professional Simulation Environment. It will help you unleash your full coding potential without buying any of the Arduino boards.
This course will help you test your codes and schematics for Arduino without the risk of burning your board. No More bad connections or wrong codes.
Contents and Overview This course is designed for anyone interested in learning electronic design. You don't need to have any previous experience, and all you need is a computer.
Boards that can be Simulated: Arduino Uno, Mega, Nano, zero, and others