Product Introduced: Obstacle Avoiding Robot 4WD
Robo Tech Valley is proud to present the Obstacle Avoiding Robot 4WD, an intelligent and versatile robotic platform designed for seamless navigation and autonomous movement. Equipped with advanced sensors and a sturdy four-wheel-drive system, this robot can efficiently detect and avoid obstacles, making it an ideal choice for robotics enthusiasts, educators, and developers.
Built for precision and adaptability, the Obstacle Avoiding Robot 4WD features a high-performance microcontroller, ultrasonic sensors for real-time obstacle detection, and a durable chassis for smooth movement across various terrains, servo motor for precise movement control. Whether you’re exploring AI-based automation, learning embedded systems, or working on robotics projects, this platform offers hands-on experience with autonomous navigation and intelligent decision-making.
By offering a reliable and customizable robotic solution, Robo Tech Valley empowers you to innovate, experiment, and develop cutting-edge automation projects. Whether you’re a student, hobbyist, or professional, the Obstacle Avoiding Robot 4WD provides an exciting opportunity to explore the world of robotics and intelligent control systems.
PRODUCT DESCRIPTION: Obstacle Avoiding Robot 4WD
The Obstacle Avoiding Robot 4WD is an autonomous robotic system designed to navigate its surroundings while avoiding obstacles in real time. It operates using ultrasonic sensors, which continuously emit sound waves and measure the distance to objects in its path. When an obstacle is detected, the microcontroller processes the data and sends commands to the motor driver, which adjusts the movement of the wheels to change direction and avoid collisions.
The Obstacle Avoiding Robot 4WD operates using ultrasonic sensors, which continuously emit sound waves and measure their reflection time to detect objects. When an obstacle is identified, the microcontroller processes the sensor data and calculates an alternative path. The motor driver module then adjusts the movement of the 4WD motor system, allowing the robot to smoothly change direction and continue moving without collisions. This real-time adaptability makes it highly efficient for autonomous navigation.
Built with essential components such as ultrasonic sensors, servo motor, a microcontroller (Arduino), a motor driver (L298N), and a sturdy 4WD chassis, the robot ensures stability and precision across different terrains. It is powered by a rechargeable battery, providing extended operation for continuous autonomous movement.
The Obstacle Avoiding Robot 4WD has several real-life applications across various industries. It is used for autonomous delivery and material transport in warehouses, enhancing efficiency. In agriculture, it helps automate tasks like field monitoring and crop care. For search and rescue missions, it navigates hazardous areas to locate survivors. In security, it patrols spaces, detecting obstacles and intruders. The robot is also used in healthcare to deliver supplies in hospitals and can be integrated into smart homes to assist with automation tasks.
list of equipment used for an Obstacle Avoiding Robot 4WD:
- Ultrasonic Sensors (HC-SR04) – For detecting obstacles.
- Servo Motor – for precise movement control
- Microcontroller (Arduino) – For processing sensor data and controlling movement.
- Motor Driver Module (L298N) – For controlling the robot’s motors.
- DC Motors – To drive the wheels of the robot.
- 4WD Chassis – The frame and wheels that enable the robot’s movement.
- Battery (Li-ion or Rechargeable Batteries) – To power the robot.
- Wires and Connectors – For connecting components together.
- Power Supply – For charging and providing consistent power to the robot.
- Switches – For turning the robot on and off.
Key Features: Obstacle Avoiding Robot 4WD
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Autonomous Navigation – The robot can navigate its environment on its own by detecting and avoiding obstacles in real time.
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4-Wheel Drive (4WD) – Provides better stability and traction, allowing the robot to move smoothly over various surfaces and terrains.
- Servo Motor – for precise movement control
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Ultrasonic Sensors – These sensors detect obstacles by measuring the distance between the robot and nearby objects, enabling it to make decisions to avoid collisions.
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Microcontroller-Based Control – The robot uses a microcontroller (like Arduino or Raspberry Pi) to process sensor data and control movement.
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Motor Driver Module – Controls the speed and direction of the wheels, enabling smooth turns and adjustments in movement.
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Real-Time Obstacle Avoidance – The robot adjusts its path instantly when obstacles are detected, ensuring continuous movement without manual control.
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Compact and Durable Design – The robot is built with a strong 4WD chassis, making it suitable for both indoor and outdoor use.
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Battery-Powered – Runs on rechargeable batteries, allowing for portable and continuous operation.
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Customizable – Can be modified and integrated with additional sensors or components for more complex tasks or applications.
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Educational Tool – Ideal for teaching robotics, programming, and autonomous navigation concepts to students and hobbyists.
Specifications: Obstacle Avoiding Robot 4WD
- Chassis Type: 4-Wheel Drive (4WD) with durable, lightweight construction suitable for various terrains.
- Microcontroller: Arduino Uno for processing data and controlling movement.
- Motors: 4 DC motors for driving the wheels, offering robust movement and control.
- Motor Driver: L298N Motor Driver or similar to control motor speed and direction.
- Sensors: Ultrasonic Sensors (HC-SR04) for obstacle detection and distance measurement.
- Power Supply:
- Rechargeable 7.4V Li-ion battery or 6V-12V DC rechargeable battery.
- Charging voltage: 5V (for microcontroller) and 9V-12V (for motors).
- Servo Motor: for precise movement control
- Operating Range:
- Ultrasonic sensor range: Typically 2 cm to 400 cm.
- Obstacle detection: Works in a 45° to 60° field of view (depending on sensor model).
- Dimensions: Typically 15 cm x 20 cm x 10 cm (may vary depending on model).
- Weight: Approx. 500-700 grams, depending on the materials used.
- Speed: 10-20 cm/s, depending on the motor and battery specifications.
- Programming Platform: Arduino IDE.
Robo Tech Valley is proud to present the Obstacle Avoiding Robot 4WD, a versatile and intelligent robotic system designed for autonomous navigation and obstacle detection. Equipped with advanced ultrasonic sensors, this robot is capable of detecting obstacles and adjusting its path in real time, ensuring smooth and efficient movement without human intervention. The 4WD system provides enhanced stability and traction, making it ideal for various terrains and environments.
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