Description
What you’ll learn
- Line Followers Robot
- What is IR sensor
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Working of IR sensor
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Circuit making of line follower robot
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Coding concepts
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Assembly
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Design and build their own Line Follower Robot from scratch.
Requirements:
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Basic understanding of electronics and programming (recommended but not mandatory).
Description:
- Are you fascinated by robotics and automation?
- Ready to dive into the world of Line Follower Robot and take your skills to the next level?
- Look no further!
- This comprehensive course is designed to guide you through every step of creating your very own Line Follower Robot, from concept to coding to simulation.
- Whether you’re a beginner or an experienced hobbyist.
- This course will equip you with the knowledge and skills to bring your robot to life and watch it follow lines with precision.
Course Overview
- In this hands-on and engaging course, you’ll acquire the skills and knowledge required to create a line-follower robot from scratch.
- Whether you’re a beginner with no prior experience or an intermediate enthusiast.
- Looking to enhance your robotics expertise, this course caters to all skill levels.
- Section 1: Introduction
- Section 2: Project Information
- Section 3: Circuit Making
- Section 4: Coding
- Section 5: Simulation
What You’ll Learn:
- Introduction to Robotics: Understand the fundamentals of robotics.
- Learn about different types of robots, and explore the applications of line-follower robots also.
- Electronics Essentials: Gain insights into electronic components, circuit design also.
- And sensor integration crucial for your functionality also.
- Mechanical Design: Learn how to design and assemble the chassis, wheels, and motor systems, ensuring optimal performance and maneuverability.
- Sensors and Actuators: Explore various types of sensors, with a focus on infrared (IR) sensors for line detection.
- And learn to control actuators for precise movement.
- Programming Logic: Master programming concepts using platforms like Arduino and Python.
- To implement algorithms for line detection, decision-making, and motor control also.
- Algorithm Optimization: Discover techniques to fine-tune your robot’s performance, from tuning PID constants to optimizing line-following algorithms also.
- Advanced Topics: Explore advanced topics such as multi-sensor integration, obstacle avoidance, and wireless communication for remote control also.
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