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Robotics Track

Robotics:
Beginner

4.8 (1,230 reviews)

Introduction to Robotics Beginner. Learn the foundations of robotics, including sensors, actuators, microcontrollers, programming, and control systems with hands-on practice.

Created by Avanteia
12,580 Total Enrolled
25 August 2025 Last Updated
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Robotics Beginner Course
1 Month Duration
Certificate On Completion
Beginner Level
4 Modules Syllabus
1 Month Duration
English Language
Certificate Included

Overview

Learn the foundations of robotics, including sensors, actuators, microcontrollers, programming, and control systems with hands-on practice.

Robotics Microcontrollers Sensors Actuators Python Control Systems

Learning Outcome

Gain practical knowledge of building and programming basic robots, using sensors and actuators, implementing control systems, and understanding robotics fundamentals for real-world applications.

Syllabus

Click any module to expand and view topics and hands-on labs included.

  • What is Robotics? Applications in industry & research
  • Types of Robots (wheeled, legged, industrial, drones, humanoids)
  • Basics of Electricity (Voltage, Current, Resistance, Ohm's Law)
  • Introduction to Microcontrollers (Arduino, ESP32, Raspberry Pi Pico)
  • Programming Basics (Python + C/C++)
Hands-on Lab
Blink LED on Arduino (Hello World of Robotics) Simulate Arduino circuits on Tinkercad Circuits Control motor speed with Arduino + PWM Free Course: Arduino Fundamentals (FreeCodeCamp)
  • Types of Sensors (IR, Ultrasonic, Temperature, IMU, Camera basics)
  • Types of Actuators (DC, Servo, Stepper Motors, Linear Actuators)
  • Interfacing Sensors with Microcontrollers
  • Signal Conditioning & Noise Reduction
Hands-on Lab
Measure distance with Ultrasonic Sensor Control servo with Arduino Read IMU sensor data (Accelerometer + Gyroscope)
  • Types of Robot Locomotion (Wheeled, Tracked, Legged, Hybrid)
  • Basics of Differential Drive Robots
  • Motor Drivers (L293D, H-Bridge, ESCs)
  • Kinematics of Mobile Robots
Hands-on Lab
Build a basic wheeled robot (Arduino + Motor Driver) Simulate robot movement in Webots
  • Open-loop vs Closed-loop Control
  • Feedback Systems & Sensors for Control
  • PID Control (Tuning & Applications)
  • Stability & Error Analysis
Hands-on Lab
Implement PID control for motor speed Line-following robot with PID (Arduino + IR sensors)

What You Will Learn

Robotics Foundations

Understand robotics applications, types of robots, electricity basics, and microcontroller programming with Arduino.

Sensors & Actuators

Interface IR, ultrasonic, IMU, and camera sensors with DC, servo, and stepper motors for robotic systems.

Robot Locomotion

Build wheeled, tracked, and legged robots using differential drive, motor drivers, and kinematics principles.

Control Systems

Implement open-loop and closed-loop control, PID tuning, and stability analysis for precise robot behavior.

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