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Autonomous Mobile Robot ROS for Education and Logistics

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Regular price 591 784 Kč s DPH
489 078 Kč bez DPH
Regular price Sale price 591 784 Kč

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SKU: 1601496952144

Description

  • ✔ Advanced autonomous navigation with ROS support
  • ✔ Ideal platform for education and robotics research
  • ✔ Efficient solutions for internal logistics and delivery
  • ✔ Robust four-wheel independent suspension for off-road stability
  • ✔ High-precision encoder for reliable positioning
  • ✔ Powerful 100W DC gear motor for smooth movement
  • ✔ Long battery life for extended operation

Discover an autonomous mobile robot designed for cutting-edge education, research, and efficient logistics. This intelligent platform integrates the ROS operating system and offers a robust design for a wide range of applications, from robotics education to automated delivery in industrial environments.

Autonomous mobile robot with ROS

🤖 What can this robot do?

  • Full Robot Operating System (ROS) support for advanced development.
  • Autonomous navigation and obstacle avoidance capabilities.
  • Modular design for easy integration of additional sensors and modules.
  • Suitable as a teaching aid for robotics and AI.
  • Possibility of use for automated transport of light loads.
  • Stable movement thanks to four-wheel drive and independent suspension.

🔍 Explore every detail

This mobile robot is designed for reliability and performance. At the heart of the drive is a 100W DC gear motor and precision digital servos that provide precise steering and sufficient torque. The robot boasts an advanced four-wheel independent suspension system with shock absorption, allowing it to move stably even on uneven terrain. An integrated high-precision 500-wire encoder provides detailed motion feedback for sophisticated navigation algorithms.

With its open architecture, ROS becomes an ideal tool for students, researchers, and engineers who want to experiment with autonomous systems, SLAM, path planning, and robotic manipulation. Its robustness and functionality also make it a perfect choice for automating tasks in internal logistics, such as delivering spare parts or materials in factories and warehouses.

🤔 Are you troubled by inefficient logistics or are you looking for an advanced learning platform?

In the modern world, speed and efficiency are key. Manual material handling is time-consuming and error-prone. For educational institutions, it is a challenge to offer students hands-on experience with the latest technologies, such as ROS and autonomous robotics. Existing solutions often lack the flexibility, robustness, or required level of autonomy.

🚀 Get your time back and take your learning to the next level!

Our autonomous mobile robot ROS is exactly the solution you are looking for. It eliminates the need for manual transportation, optimizes logistics processes and reduces operating costs. For educational and research purposes, it provides a complete, open and easily programmable platform that allows students to immediately apply theoretical knowledge to practice. Invest in the future with technology that adapts to your needs.

Mobile robot with independent suspension

💡 More than just features, real benefits

  • Feature: Integrated Robot Operating System (ROS) -> Benefit: Easy and flexible development of advanced robotic applications.
  • Features: Four-wheel independent suspension and robust construction -> Benefit: Reliable operation and stability even in demanding industrial or outdoor environments.
  • Feature: Long battery life (up to 4.5 hours without load) -> Benefit: Extended operating time minimizes downtime and increases productivity.
  • Features: High-precision encoder and digital servos -> Benefit: Precise positioning and control for repeatable and precise tasks.

🎯 Who is it the ideal choice for?

  • Educational institutions: For teaching robotics, artificial intelligence, and autonomous systems.
  • Research centers: For experiments with new navigation, perception, and interaction algorithms.
  • Industrial companies: For automating internal logistics and material delivery within the operation.
  • Developers: For testing and prototyping your own robotic applications on a flexible platform.

❓ Do you have concerns? We will answer them

  • Concern: Is the robot durable enough for practical use? -> Answer: Yes, with a robust construction and four-wheel independent suspension, it is designed for high durability and stability in various environments.
  • Concern: How complex is the integration and programming for beginners? -> Answer: With full ROS support and open architecture, programming is intuitive and there is an extensive community and documentation available.
  • Concern: What is the real battery life at full load? -> Answer: The robot can operate for up to 3 hours at maximum load, which ensures sufficient autonomy for most daily tasks.

⚙️ Technical specifications

Engine MD60 100W DC Gear Motor
Servo DS5160 digital servo with 60 kg torque
Suspension Four-wheel independent suspension with shock absorption
Encoder 500-wire gigantic magnetoresistive AB high-precision encoder
Battery life (no load) Approximately 4.5 hours
Battery life (maximum load) Approximately 3 hours

❓ Frequently Asked Questions

What is this robot primarily intended for?
It is designed as a universal platform for education, autonomous systems research, and for efficient internal logistics and material delivery.
What engines and controls does it use?
The robot is equipped with a powerful 100W DC gear motor MD60 and digital servos DS5160 with a torque of 60 kg for precise control.
How is inequality mitigation addressed?
It has four-wheel independent suspension with integrated shock absorption, which ensures stable movement even in more challenging terrain.
How accurate are its navigational capabilities?
Precise positioning and motion detection is provided by a 500-wire giant magnetoresistive AB high-precision encoder.
How long can the robot last on a single charge?
It is able to work for approximately 4.5 hours without load, while at maximum load it can last up to 3 hours.