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ROBAN

ROBAN

ROBAN by Leju Robotics is a humanoid educational robot with 22 DoF, advanced gait algorithms, Python programming, and Bluetooth connectivity for learning robotics and AI.
Software Type
Closed Source
Software Package
Dedicated mobile app for programming and control. Python programming support. Interactive voice function modules.
Actuators
ROBAN uses precise electric actuators distributed across its 22 degrees of freedom to enable smooth, human-like joint movements and stable locomotion.
Compiute
Onboard microcontrollers process sensor data and execute programmed movement sequences, supporting real-time control and interaction. Linux Ubuntu 16.04LTS 64bit. ROS Kinetic
Sensors
Equipped with advanced sensors for balance and environmental interaction, ensuring stable walking and responsive behavior.
Max Op. time
120
mins

Robot Brief

ROBAN is an advanced humanoid educational robot developed by Leju Robotics, designed to facilitate learning in programming, robotics, and artificial intelligence. Standing approximately 70 cm tall and weighing about 6.6 kg, ROBAN features 22 degrees of freedom, enabling smooth and realistic movements such as walking, dancing, and gesturing. Its advanced gait algorithms mimic human heel-to-toe walking, enhancing the naturalness of its locomotion. Equipped with sensors for stability and environmental interaction, ROBAN ensures balanced and safe operation. The robot supports programming through a dedicated mobile app and is compatible with Python, allowing users to create custom movement sequences and tasks. With Bluetooth connectivity and a built-in lithium-ion battery providing up to 2 hours of operation, ROBAN is ideal for educational environments including schools, universities, and technology enthusiasts.

Use Cases

ROBAN autonomously performs human-like movements with stability and precision, such as walking, dancing, and gesturing. It interacts with its environment through sensors that maintain balance and enable responsive behavior. The robot serves as an educational tool that supports programming in Python and app-based control, allowing users to design and execute custom movement sequences and explore robotics and AI concepts practically.

Industries

  • Education: Provides hands-on learning in programming, robotics, and AI for students and enthusiasts.
  • Research & Development: Acts as a platform for developing and testing humanoid robotics algorithms.
  • Entertainment: Engages users through dancing, gesturing, and interactive voice functions.
  • STEM Outreach: Encourages interest in science and technology through interactive robotics.
  • Robotics Training: Facilitates skill development in robot control and programming.

Specifications

Length
186
mm
Width
313
mm
Height (ResT)
mm
Height (Stand)
687
mm
Height (Min)
mm
Height (Max)
mm
Weight (With Batt.)
kg
Weight (NO Batt.)
6.5
kg
Max Step Height
mm
Max Slope
+/-
°
Op. Temp (min)
°C
Op. Temp (Max)
°C
Ingress Rating
No items found.

Intro

ROBAN measures about 70 cm in height and weighs approximately 6.6 kg, constructed with high-quality plastic casings and a 6-series aluminum alloy frame for durability. It features 22 degrees of freedom, allowing complex and fluid movements. The robot is equipped with advanced sensors to maintain balance and interact safely with its environment. Communication is enabled via Bluetooth, and programming is supported through a dedicated mobile app and Python language compatibility. ROBAN’s built-in lithium-ion battery offers up to 2 hours of operation, rechargeable via USB port. It includes interactive voice functions and the ability to program custom movement sequences, making it a versatile tool for education and robotics exploration.

Connectivity

  • Bluetooth
  • USB port for charging and data transfer.

Capabilities

  • Realistic human-like movements including walking, dancing, and gesturing
  • Advanced gait algorithms mimicking heel-to-toe human walking
  • Stability maintenance through integrated sensors
  • Programmable via dedicated mobile app and Python language
  • Bluetooth connectivity for wireless control
  • Interactive voice functions for engaging user interaction
  • Customizable movement sequences for educational tasks.