NOETIX BUMI | Humanoïde robot | 21 DOF


Varianten: PRO

Artikelnr.: RBTX-NOET-0002

Noetix Bumi Pro / EDU Pro

De Noetix Bumi is een compact humanoïde robotplatform, ontworpen voor educatie, robotica-ontwikkeling en AI-toepassingen. Met een hoogte van 98 cm, een gewicht van 17 kg en 21 vrijheidsgraden maakt het realistische bewegingen, loopmogelijkheden en interactieve mens-robottoepassingen mogelijk. Het platform is voorzien van een dieptecamera, IMU-sensoren, spraakinteractie en Wi-Fi- en Bluetooth-connectiviteit. De Bumi EDU Pro-versie voegt daar een NVIDIA Jetson Orin Nano Super-module aan toe voor geavanceerde robotica- en AI-ontwikkeling. Grafische programmeertools en open ontwikkelmogelijkheden ondersteunen gebruikers van beginners tot onderzoeks- en ontwikkelingsteams.

Gebruikelijke levertijd: 6-8 weken

max. Payload
6
kg
DOF
21
Weight
17
kg
Height
980
mm
Speed
0,5
ms
Operating time
2
h
Max Joint torque
70
nm

Hoogtepunten

https://a.storyblok.com/f/298593/1203x709/47ae8f9ec5/bumi.png

Difference Between Noetix Bumi Pro and Bumi Edu Pro

Both the Noetix Bumi Pro and the Bumi Edu Pro are based on the same humanoid robot platform, featuring 21 degrees of freedom, a height of 98 cm, a weight of 17 kg, integrated camera systems, voice interaction capabilities, and a graphical programming environment. The key difference lies in their computing power and development capabilities. The Bumi Pro is primarily designed for educational institutions, robotics beginners, and demonstration applications. In contrast, the Bumi Edu Pro enhances the platform with an NVIDIA Jetson Orin Nano Super module and additional features for secondary development, AI applications, and advanced robotics projects. As a result, the Bumi Edu Pro is particularly well suited for universities, research institutions, and developers who want to develop and run their own algorithms, autonomous functions, or AI-based applications directly on the robot platform.

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Technical Highlights of the Bumi Pro

The Noetix Bumi Pro is a compact humanoid robot designed for education, robotics development and human-robot interaction. Standing approximately 98 cm tall and weighing only 17 kg, it combines portability with a humanoid form factor featuring 21 degrees of freedom, including articulated arms, legs and waist movement. The robot incorporates force-controlled joint modules, vision sensors, an intelligent voice system and graphical programming capabilities. A structured-light depth camera, IMU sensors and onboard computing power enable perception and motion control, while Wi-Fi and Bluetooth connectivity support wireless operation and integration into learning and development environments.

https://a.storyblok.com/f/298593/1915x1078/b9567c2b19/bumi.png

What applications is the Bumi Pro suitable for?

The Bumi Pro is designed for educational institutions, robotics training, STEM programmes, research projects and humanoid robot demonstrations. Its humanoid locomotion, programmable motion library and interactive voice functions make it suitable for teaching robotics, AI fundamentals and mechatronics. The platform can be used for human-robot interaction research, motion development, programming education and robotics competitions. With integrated cameras, IMU sensors and a graphical programming environment, users can create custom behaviours, interactive demonstrations and learning projects without requiring extensive robotics experience. The compact size also makes the system suitable for classrooms, laboratories and technology showcases.

https://a.storyblok.com/f/298593/593x362/a1d8b6a6fe/bumi.png

How to Set Up and Program the Bumi Pro

The Bumi Pro is designed for straightforward setup and programming through a graphical drag-and-drop programming environment. Users can create motion sequences, control behaviours and develop applications without extensive coding knowledge. The platform supports mobile app control, wireless communication via Wi-Fi and Bluetooth, motion libraries and voice interaction functions. Secondary development capabilities allow more advanced users to extend functionality and create custom applications. OTA updates simplify software maintenance, while onboard sensors, vision systems and programmable motion control provide a foundation for robotics education, experimentation and application development.

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