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UBTECH Walker Tienkung – High-end Humanoid Robot with Advanced AI and Dual NVIDIA Orin AGX 550

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Regular price 14 495 369 Kč s DPH
11 979 644 Kč bez DPH
Regular price Sale price 14 495 369 Kč

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SKU: 1601557617067

Description

  • ✔ Advanced AI with dual processor
  • ✔ Robust and durable metal construction
  • ✔ WiFi connectivity for flexible control
  • ✔ Humanoid design for natural interaction
  • ✔ Versatile use in research and development
  • ✔ Top stability and mobility in challenging terrain

Introducing the UBTECH Walker Tienkung, a pinnacle of engineering and artificial intelligence that pushes the boundaries of humanoid robotics. This robot is the embodiment of strength, intelligence and versatility, designed for the most demanding applications in research, development and innovation projects.

🚀 What can this robot do?

  • Advanced Artificial Intelligence: Powered by the NVIDIA Orin AGX 550 dual-core processor, it enables complex data processing, autonomous decision-making, and sophisticated interactions.
  • Robust metal construction: Guarantees high durability and long service life even in demanding operating conditions.
  • WiFi connectivity: Seamless wireless connection for remote control and data transfer.
  • Humanoid form: Opens up new possibilities for interacting with people and working in environments designed for humans.
  • Modular and adaptable design: Allows for easy customization and integration of additional sensors or tools for specific tasks.

🔍 Explore every detail

UBTECH Walker Tienkung is not just a robot; it is a platform for innovation. Its design combines elegance with functionality. Every component is engineered with maximum performance and reliability in mind. From its bionic joints to its advanced sensory systems, everything is optimized to deliver exceptional results.

With integrated intelligence, the robot is able to learn, adapt and perform complex tasks with precision. Its metal body not only adds a futuristic look, but above all provides the foundation for exceptional durability and stability, which is key for real-world applications.

😟 Are you bothered by complex research tasks?

Are you looking for a solution to automate complex operations, simulate human movement, or enable advanced interaction with autonomous systems? Standard robots often lack the flexibility and intelligence needed for truly disruptive projects.

✨ Get your time back and innovate with ease!

UBTECH Walker Tienkung is revolutionizing the world of robotics research and development. With its unmatched computing power and adaptable platform, you can focus on real innovation while the robot takes care of the precise and reliable execution of even the most complex tasks.

🌟 More than just features, real benefits

  • Features: Dual NVIDIA Orin AGX 550 processor -> Benefit: Unprecedented computing power for AI and complex simulations.
  • Feature: Metal construction -> Benefit: Extreme durability and long service life even in harsh environments.
  • Function: Humanoid design -> Benefit: Natural interaction and ability to operate in a human environment.
  • Feature: WiFi connectivity -> Benefit: Flexible and reliable remote control without the constraints of cables.

🎯 Who is it the ideal choice for?

  • Research institutions and universities looking for a cutting-edge platform for AI and robotics.
  • Developers and engineers working on advanced robotic automation applications.
  • Innovation centers and technology startups focused on the future of humanoid robots.

🤔 Do you have any concerns? We'll answer them

  • Concern: Is controlling such an advanced robot too complicated? -> Answer: The robot is designed with developers in mind, offering an open platform and documentation for easy integration and programming.
  • Concern: What is the return on investment for such a cutting-edge robot? -> Answer: With unmatched performance and flexibility, it will accelerate your research and development projects, leading to faster innovation and competitive advantage.
  • Concern: Can the robot be expanded with additional sensors or tools? -> Answer: Yes, the modular design allows for easy expansion and customization of the robot for the specific needs of your projects.

⚙️ Technical specifications

Model: UBTECH Walker Tienkung
Robot type: Humanoid
Processor: Dual NVIDIA Orin AGX 550
Connectivity: WiFi
Construction material: Metal alloy
Integrated intelligence: Yes, advanced AI algorithms
Recommended use: Research, development, advanced automation, simulation

❓ Frequently Asked Questions (FAQ)

What is the UBTECH Walker Tienkung primarily intended for?
It is ideal for advanced research and development in the fields of artificial intelligence, robotics, automation and human-robot interaction.
What processor does the robot use and what is its performance?
The robot is powered by a dual NVIDIA Orin AGX 550 processor, which provides extraordinary computing power for complex AI tasks and real-time simulations.
What materials is the robot made of?
The robot's construction is made of a robust metal alloy, which ensures high durability and long service life.
How does the robot connect to the network and what options does it offer?
The robot has WiFi connectivity, which allows flexible wireless control, monitoring and remote data transfer.
Is it possible to program a robot for its own tasks?
Yes, UBTECH Walker Tienkung is an open platform that allows developers to program and customize the robot for specific applications.
What are the main advantages of humanoid design?
Humanoid design allows a robot to interact more naturally with its environment and people, and to work in environments designed for humans.
Is UBTECH Walker Tienkung suitable for educational purposes?
Thanks to its advanced nature, it is an excellent tool for undergraduate and graduate studies in robotics and AI, as well as for advanced research projects.
What level of autonomy does the robot offer?
Thanks to integrated artificial intelligence and powerful processors, the robot is capable of a high level of autonomy, including navigation, object recognition, and complex decision-making.