Bluetooth Controlled Car Using Arduino Uno Engineering Final Year Arduino Project

The Arduino-based Mobile Control Bluetooth Robotic Car is an innovative project designed to demonstrate how Bluetooth can be used for smart navigation. This car can be seamlessly driven, left, right, forward, and backward using your mobile phone.
₹3,999.00 Original price was: ₹3,999.00.₹3,000.00Current price is: ₹3,000.00.
The Arduino-Based Mobile Controlled Bluetooth Robotic Car is an innovative and educational robotics project designed for students, hobbyists, and tech enthusiasts. This project demonstrates how wireless communication can be integrated with embedded systems to create a smart and efficient robotic vehicle.
The car is powered by an Arduino Uno microcontroller, which acts as the brain of the system. It receives real-time commands via Bluetooth technology from a smartphone, allowing the user to control the movement of the car — forward, backward, left, right, and stop — with just a few taps on a mobile app (such as the Bluetooth Controller app).
This project showcases the seamless integration of Bluetooth HC-05 module, L293D motor driver, DC motors, and Arduino Uno, offering a clear understanding of wireless control, motor interfacing, and automation principles.
It is ideal for engineering students, DIY enthusiasts, and beginners in robotics who want to explore IoT and Bluetooth communication in embedded systems. The project can also be upgraded with ultrasonic sensors, line-following capabilities, or voice command control for advanced functionality.
By building this project, learners gain valuable hands-on experience in circuit design, Arduino programming, and real-time Bluetooth interfacing, making it a perfect project for academic exhibitions, robotics competitions, and final-year engineering submissions.
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Sustainable Future: The project aims to create a more sustainable and eco-friendly future, where waste is properly utilized and environmental harm is minimized.
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Working Principle: When a vehicle enters the range of the IR sensor, the sensor detects its presence. The IR sensor sends a signal to the relay module. The relay module then activates the LED bulb and alarm on the opposite side. The alarm and LED bulb warn the drivers that a vehicle is approaching.
Objectives: Enhance road safety by alerting drivers about vehicles approaching from the opposite side. Prevent traffic accidents, especially in areas with limited visibility. Create a simple and cost-effective vehicle detection system for traffic monitoring.
Expected Outcomes: Early warning system for approaching vehicles, giving drivers more time to react. Improved awareness and timely responses from drivers to avoid accidents. Efficient use of sensors and alarms to ensure smooth traffic flow and safety.
Applications: Safety alert system on narrow roads or blind spots. Traffic control at signal points or crossing areas. Monitoring vehicles in industrial areas or warehouses where safety is critical.
Future Improvements: Use of advanced sensors (e.g., ultrasonic) for better accuracy. Integration with traffic signal systems for automated control. Solar-powered systems for cost-effective outdoor applications.
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