Walker X
Walker X is a highly advanced AI-powered humanoid robot designed for research, development, and complex human-robot interaction. Standing at 1.45 meters tall with 41 high-performance servo joints, it features a lightweight aerospace-grade frame, self-balancing bipedal locomotion, and agile movement capabilities. Walker X excels in complex terrain navigation, precise object manipulation, and multimodal interaction, including facial recognition, voice, and gesture. Its anthropomorphic design enables natural human-like gestures, facial expressions via a 4.6K HD curved screen, and safe collaborative operation. The robot supports autonomous navigation, hand-eye coordination, and programmable behaviors, making it ideal for research, smart environments, and interactive service applications.
Robot Specifications
- Key FeaturesKey Features
- Top Features
- Other Features
Weight
77 kg
Warranty Info
1 year
Runtime
2 hours
Charging Time
4 hours
Battery Life
3 years
Battery Pack
50000 mAh
Carrying Capacity
3 kg per arm
Available Colours
white, silver
Dimensions
145 x 50 x 40 cm
Connectivity
Wi-Fi, Ethernet, 5G
App Integration
UBTECH app, RobotLAB platform
User Interface
touch panel, voice, gesture, app
Cloud Integration
cloud services, teleoperation servers
Available Countries
USA, China, Europe, Japan, South Korea
Speed
3 km/h, sprint 10 km/h (0.83 m/s, sprint 2.78 m/s)
Compatible Devices
smart home devices, external sensors, mobile devices
Sensors
RGB cameras, stereo cameras, LiDAR, ultrasonic sensors, IMU, gyroscope, force sensors, temperature sensors
Review Videos
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Frequently Asked Questions
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Q1. What are Walker X's primary capabilities?
Walker X features 36-44 degrees of freedom, advanced AI for vision-based navigation, hand-eye coordination, complex terrain adaptability, and natural human-robot interaction with multimodal communication. It can manipulate objects and autonomously navigate dynamic environments.
Q2. How to operate Walker X?
Walker X is fully programmable via developer-friendly interfaces, supporting coding for motion, vision, and interaction. It can be controlled through software commands, with training provided for setup and operation.
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