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PuppyPi HiWonder Quadruped Robot with AI Vision – ROS Bionic Dog

PuppyPi is a quadruped robot with AI vision, powered by Raspberry Pi, featuring self-balancing, facial recognition, and obstacle avoidance.

Original price was: ₹79,999.99.Current price is: ₹69,249.98.

Description

Puppypi HiWonder Quadruped Robot with AI Vision: The Ultimate Robotic Companion for Education and Research

Overview: The Puppypi HiWonder Quadruped Robot with AI Vision is a cutting-edge robotic platform designed to mimic the movements and behaviors of a real dog. Powered by Raspberry Pi and built on the Robot Operating System (ROS), this quadruped robot features 12 degrees of freedom (DOF) and advanced AI vision capabilities. Equipped with an HD wide-angle camera, coreless servos, and an IMU sensor, Puppypi offers unparalleled flexibility, precision, and self-balancing capabilities. Ideal for educational purposes, advanced research, and entertainment, this robot provides a hands-on experience in robotics, programming, and artificial intelligence.

Users:
1. Educators and students in STEM fields
2. Robotics enthusiasts and hobbyists
3. Researchers in robotics and AI
4. Developers and engineers
5. Entertainment industry professionals

Goal: The primary goal of the Puppypi HiWonder Quadruped Robot with AI Vision is to provide a comprehensive and interactive platform for learning, experimentation, and innovation in the field of robotics. It aims to bridge the gap between theoretical knowledge and practical application, enabling users to explore the complexities of robotic systems and develop new solutions.

Uses and Features:
1. Educational Tool: Ideal for teaching robotics, programming, and AI concepts in schools, colleges, and universities.
2. Research Platform: Provides a robust and flexible platform for conducting advanced research in robotics, biomechanics, and artificial intelligence.
3. Entertainment: Can be used in entertainment applications such as robotic performances, interactive exhibits, and more.
4. Development and Prototyping: A valuable tool for developers and engineers to prototype and test new robotic algorithms and systems.
5. Interactive Learning: Engages users in hands-on learning experiences, enhancing their understanding of robotic mechanics and control systems.

How it Works:
1. Assembly: Begin by assembling the robot using the provided components and instructions. Ensure all parts are securely connected.
2. Power Supply: Connect the robot to a power source, such as a battery pack or an external power adapter.
3. Programming: Use the provided software or a compatible programming environment to write and upload code to the robot’s control unit.
4. Calibration: Calibrate the robot’s sensors and actuators to ensure accurate and precise movements.
5. Operation: Use a remote control, smartphone app, or computer interface to control the robot’s movements and behaviors. Experiment with different commands and programming scripts to explore the robot’s capabilities.

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