The Ichibot Line Follower is a compact, autonomous robot designed to follow a designated path, typically a black line on a white surface. It uses infrared sensors to detect the contrast between the line and the floor, enabling it to navigate accurately. The microcontroller processes sensor data to adjust the robot’s speed and direction, ensuring it stays on course. Designed for educational and hobbyist use, the Ichibot demonstrates fundamental robotics concepts. It is often used in classrooms and competitions to teach programming, electronics, and problem-solving skills through hands-on experience.
The Ichibot Line Follower is a compact, autonomous robot designed to follow a designated path, typically a black line on a white surface. It uses infrared sensors to detect the contrast between the line and the floor, enabling it to navigate accurately. The microcontroller processes sensor data to adjust the robot’s speed and direction, ensuring it stays on course. Designed for educational and hobbyist use, the Ichibot demonstrates fundamental robotics concepts. It is often used in classrooms and competitions to teach programming, electronics, and problem-solving skills through hands-on experience.
The Micro temperature sensor allows you to measure the ambient temperature around the device. It uses the onboard processor to detect temperature changes and outputs the readings in degrees Celsius. This feature is great for building simple weather stations or temperature-sensitive projects. You can program it to display the temperature on the LED screen or send it to another device. It’s a useful tool for learning about basic electronics and coding through hands-on projects.
The Micro temperature sensor allows you to measure the ambient temperature around the device. It uses the onboard processor to detect temperature changes and outputs the readings in degrees Celsius. This feature is great for building simple weather stations or temperature-sensitive projects. You can program it to display the temperature on the LED screen or send it to another device. It’s a useful tool for learning about basic electronics and coding through hands-on projects.
This project focuses on designing and building an autonomous sumo robot for competitive battles. The robot is compact (20×20 cm) and equipped with advanced sensors to detect opponents and arena boundaries. High-torque motors and grippy wheels ensure strong pushing power and stability. A low-profile design enhances balance, making it hard to be pushed out. Controlled by a microcontroller, the robot uses real-time decision-making for optimal performance. This project combines innovation in robotics and programming to create a powerful sumo competitor.
Smart Water Plant is an automated system designed to efficiently manage plant watering, ensuring optimal hydration while preventing overwatering. Using sensors and smart technology, it monitors soil moisture and delivers the right amount of water, making plant care easier and more reliable. Perfect for gardens, hydroponics, and aquatic plants, this system enhances plant health with minimal human intervention.
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Hey There, Welcome To My Embedded System Project, So In Here I Would Like To Introduce My Fifth Embedded System Project That Is Robotic Competition IDN 2025
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