Unitree Robotics

Unitree R1 EDU U6

Ref: ECURR1000893

The Unitree R1 EDU U6 is a lightweight and agile humanoid robot designed for advanced research and robotics development. It features multiple degrees of freedom, open interfaces for joints and sensors, and support for simulation platforms, enabling seamless deployment of algorithms into real-world environments. Its lightweight structure and modular design allow for fast implementation in R&D scenarios.
  • Up to 26–40 DOF for complex mobility and interaction

  • Open interfaces for sensors, joints, and simulation platforms

  • Lightweight humanoid design (~29 kg) for agile deployment

33.210,00€ VAT included

.
Promotional code:

NO APPLICABLE

{{deliveryPrepTimeInfo.exp}}

{{deliveryPrepTimeInfo.exp}}

Unavailable
Unavailable
Available
Limited Availability
Notify me when available
  • Specifications Sheet

    Dimensions

    1230 × 357 × 190 mm

    Weight

    29 kg

    PayLoad

    Maximum arm load: 2 kg

    AI Mode

    Onboard computing with an expansion dock of up to 100 TOPS (depending on configuration), supporting AI processing and secondary development.Perception system based on a binocular stereo vision camera for depth reconstruction and human–robot interaction.

    Autonomy

    ~1 hora

    Intelligent System

    Supports secondary development (high- and low-level) with open interfaces for sensors and joints. Enables integration with simulation environments and provides tools for robotics algorithm development and validation.
  • Transportation Details

    In mainland Portugal, items in stock shipped via Intercourier will be dispatched within 2 to 4 days. The maximum delivery time after shipment confirmation is 48 hours.

  • Exchanges and Returns

    You have 15 days from the date of receipt to request an exchange or return by emailing info@hpdrones.pro. The item must be returned in its original packaging, showing no signs of use, with tags and labels intact, and accompanied by the sales receipt. Once the product has been inspected, the refund will be processed within 7 days via the original payment method or bank transfer.

  • Payment Method

    We offer the following payment methods: Credit Card (Visa and Mastercard), Bank Transfer, and PayPal. For credit card payments, the charge will be processed after order confirmation; if any service or product cannot be provided, the corresponding amount will be credited to your card after the order is finalized.

  • Guarantee

    All equipment has a 3-year warranty, in accordance with Decree-Law No. 84/2021, with the exception of batteries, whose warranty is 12 months or limited to the maximum number of charge cycles, whichever comes first. In case of manufacturing defect or malfunction, please contact us with the order number and a description of the problem. The shipping costs for technical analysis are borne by the customer; if the non-conformity is confirmed by the brand, we will proceed with the replacement and resh

The Unitree R1 EDU U6 is a lightweight and agile humanoid robot designed for advanced research and robotics development. It features multiple degrees of freedom, open interfaces for joints and sensors, and support for simulation platforms, enabling seamless deployment of algorithms into real-world environments. Its lightweight structure and modular design allow for fast implementation in R&D scenarios.
  • Up to 26–40 DOF for complex mobility and interaction

  • Open interfaces for sensors, joints, and simulation platforms

  • Lightweight humanoid design (~29 kg) for agile deployment

Technical Details

Specifications Sheet

Dimensions

1230 × 357 × 190 mm

Weight

29 kg

PayLoad

Maximum arm load: 2 kg

AI Mode

Onboard computing with an expansion dock of up to 100 TOPS (depending on configuration), supporting AI processing and secondary development.Perception system based on a binocular stereo vision camera for depth reconstruction and human–robot interaction.

Autonomy

~1 hora

Intelligent System

Supports secondary development (high- and low-level) with open interfaces for sensors and joints. Enables integration with simulation environments and provides tools for robotics algorithm development and validation.