Explore Our Robotics Projects: Perfect for Engineering & Science Enthusiasts
School Science Projects | Mechanical | Electrical | Electronic Engineering Projects
Automatic Railway Crossing System
Price: 5,000.00₹ 3,999.00₹
Description | Automatic Railway Crossing System using ultrasonic sensors and servo motors to safely control level crossings. |
Components Used | Ultrasonic Sensors, Arduino NANO, Servo Motors, Train Model, Rechargeable Battery, LM7805 Voltage Regulator, Electrolytic Capacitor, DC Connectors |
Features |
- Ultrasonic sensors detect approaching trains - Arduino NANO processes data and controls barrier actions - Servo motors automate barrier closure and opening - Train model for testing and demonstration - Rechargeable battery for portable power - LM7805 voltage regulator stabilizes power supply |
Brief Overview | This system enhances railway safety by automatically closing and opening barriers as trains approach and pass. It serves as an educational tool for understanding automation and sensor-based systems in railway engineering. |
100% working, Tested by Robo AI STEM team, no branding &FREE Report + Ppt + Synopsis.
Automatic Street Light Project
Price: Price: 1,199.00₹ 999.00₹
Description | The Automatic Street Light Project provides efficient outdoor lighting by automatically switching on in darkness and off in daylight. The system features adjustable sensitivity to optimize performance based on ambient light conditions, making it both practical and energy-efficient. |
Components Used | Battery, LDR module, LED lights, House model for demonstration |
Features |
- Automatic switching: Activates in darkness, deactivates in daylight - Adjustable sensitivity: Fine-tunes response to light levels - Energy-efficient: Lights only when needed - Realistic setup: Includes house model and LEDs to simulate street lights for visual demonstration |
Brief Overview | This project serves as an educational tool, demonstrating automated lighting for energy savings. The system automatically activates street lights in low-light conditions, conserving energy by deactivating them in daylight. |
100% working | Tested by Robo AI STEM Team | No Branding | FREE Report | Ppt | Synopsis.
Bluetooth Control Robot using Mobile App
Price: 6,999.00₹ 3,499.00₹
Description | The Bluetooth Control Robot is a mobile-controlled robot designed for operation via a touch-based mobile app. Equipped with an Arduino UNO, HC 05 Bluetooth Module, and DC gear motors, it provides a versatile platform for learning robotics and mobile integration. |
Components Used | Arduino UNO, HC 05 Bluetooth Module, L298N Motor Driver, DC Gear Motor, 7805 Voltage Regulator, Soldering Iron, 9V Battery, DC Jack, Wooden Chassis |
Features |
- Mobile Control: Wireless operation via a mobile app with touch-based control - Versatile Compatibility: Works with multiple smartphones and tablets - Robust Construction: Durable wooden chassis for stable performance - Easy Assembly: Simple wiring and soldering, suitable for beginners - Expandable Design: Customizable with additional sensors and modules |
Brief Overview | This project is ideal for STEM education, offering an engaging way to explore robotics and Bluetooth technology. It’s a mobile-controlled robot that allows students and hobbyists to operate it via a smartphone app with touch-based commands. |
100% working | Tested by Robo AI STEM Team | No Branding | FREE Report | Ppt | Synopsis.
IoT Based Mining Worker Safety Helmet
Price: 7,999.00₹ 3,999.00₹
Description | The IoT Based Mining Worker Safety Helmet is a safety solution for mining environments, integrating IoT technology and advanced sensors like MQ-2/MQ-135 for gas detection and DHT11 for temperature and humidity monitoring. The helmet provides real-time alerts and data visualization for enhanced safety. |
Components Used | NodeMCU ESP8266, MQ-2/MQ-135 Gas Sensor, DHT11 Temperature & Humidity Sensor, Buzzer, LED Light, DC Jack, LM7805 Voltage Regulator, LCD Display (16×2), 18650 Li-ion Batteries, Li-ion Battery Charger |
Features |
- Wireless Monitoring: NodeMCU ESP8266 enables real-time data transmission for remote monitoring - Gas Detection: MQ-2/MQ-135 sensors detect harmful gases, providing timely alerts - Environmental Monitoring: DHT11 sensor tracks temperature and humidity - Immediate Alerts: Buzzer and LED light signal hazards in real-time - Easy Charging: DC jack and Li-ion batteries ensure consistent operation - Stable Power: LM7805 regulator prevents voltage fluctuations - Real-time Display: LCD shows sensor data and system status |
Brief Overview | This helmet ensures safety in mining and industrial settings by monitoring gas levels, temperature, and humidity. With immediate alert mechanisms and continuous data transmission, it provides a reliable solution for worker health and safety. |
100% working | Tested by Robo AI STEM Team | No Branding | FREE Report | Ppt | Synopsis.
IoT Based Wireless Electric Vehicle Charging System
Price: 8,999.00₹ 4,999.00₹
Description | The IoT Based Wireless Electric Vehicle Charging System offers a revolutionary solution for electric vehicle charging, using IoT technology and copper coil wireless charging, with remote monitoring and safety features to enhance user convenience and promote sustainable transportation. |
Components Used | NodeMCU, IR Sensors, Copper Coil, MOSFET, 16×2 LCD Display, Potentiometer, Switch, 7805 Voltage Regulator, Relay, LED Light, Buzzer, Rechargeable Battery, Transformer, Diodes, Capacitor |
Features |
- Wireless Charging: Enables cable-free charging for electric vehicles - IoT Integration: NodeMCU and IR sensors provide remote monitoring and control - Copper Coil Technology: Uses copper coils for wireless power transmission - User Interface: LCD display, potentiometer, and switch for easy monitoring - Safety Features: Includes MOSFET, relay, and voltage regulator for secure operation - Backup Power: Rechargeable battery ensures continuous charging - Compact Design: Zero PCB and no soldering components, making installation and maintenance simple |
Brief Overview | A pioneering wireless EV charging system that combines IoT for remote access, efficient copper coil transmission, and reliable safety features. Ideal for the future of electric vehicle infrastructure. |
100% working | Tested by Robo AI STEM Team | No Branding | FREE Report | Ppt | Synopsis.
Obstacle Avoiding Robot
Price: 3,000.00₹ 2,721.00₹
Description | The Obstacle Avoiding Robot is designed to autonomously navigate its environment by detecting and avoiding obstacles using ultrasonic sensors and motor control circuitry. Ideal for educational, research, and industrial applications. |
Components Used | Ultrasonic Sensor, PCB with ATMega328p IC, L293D Motor Driver, Four BO Motors, Servo 9g Motor |
Features |
- Ultrasonic Sensor: Detects obstacles and measures distance - Precise Motor Control: Enabled by the ATMega328p IC and L293D Motor Driver - Four BO Motors: Provides powerful and efficient movement - Servo 9g Motor: Facilitates obstacle avoidance and precise steering - Compact Design: Easy to maneuver and transport - Autonomous Navigation: Continuously adjusts path to avoid obstacles |
Brief Overview | An autonomous robot designed for detecting and avoiding obstacles. It provides an excellent demonstration of sensor-based navigation and is ideal for use in educational and research environments. |
100% working | Tested by Robo AI STEM Team | No Branding | FREE Report | Ppt | Synopsis.
Automatic Parking System
Price: ₹8,999.00 ₹3,999.00
Description | The Automatic Parking System offers an integrated solution for automated access control using IR sensors, a servo motor-equipped entrance, and an Arduino UNO for smooth and efficient parking management. Ideal for computer science, electronics, and IT students. |
Key Features |
- **Automated Operation**: Hassle-free parking with minimal human intervention - **Real-Time Status**: LCD display shows parking availability instantly - **Precision Control**: Servo motor ensures accurate barrier movement - **Enhanced Detection**: Reliable vehicle presence detection with IR sensors - **Versatile Power Supply**: Operates on a standard DC adapter - **Compact Design**: Easily fits various parking environments |
Components Used |
- **Arduino UNO**: Controls the entire system - **IR Sensors**: Detects vehicle presence and position - **Car Model**: Simulates vehicle interaction - **LCD Display**: Shows parking status in real-time - **Servo Motor**: Manages the movement of the barrier - **DC Adapter**: Provides a stable power source |
Working |
1. IR sensors detect the presence of a vehicle. 2. The Arduino UNO processes the data and activates the servo motor. 3. The servo motor adjusts the barrier for vehicle entry or exit. 4. The LCD display shows current parking status and availability. |
100% working | Tested by Robo AI STEM Team | No Branding | FREE Report | Ppt | Synopsis.