UBTECH Walker C Revolutionizes Service Robots with Advanced AI

Launching a New Era
UBTECH Robotics has officially unveiled the Walker C, a humanoid robot designed to transform service roles in commercial spaces. Debuting in late 2025 with an estimated price of $41,200, Walker C aims to redefine visitor engagement by blending advanced autonomy and fluid human-like interaction. Its launch marks a significant milestone in humanoid robotics, targeting industries such as retail, airports, and exhibitions where personalized assistance and efficient navigation are critical. This release underscores UBTECH’s commitment to pushing robotics beyond novelty into practical, everyday utility.
Distinctive Skill Set
Walker C stands out with a unique combination of capabilities that elevate its performance in dynamic environments. It supports fluid bipedal walking and jogging up to 6 km/h, enabling swift movement through crowded venues. Equipped with multilingual AI-driven dialogue and adaptive body language, the robot excels in natural human-robot interaction. Its proprietary embodied interactive large model enables intuitive responses, while collaborative mode and force limiting ensure safe engagement with people. This blend of speed, communication, and safety features positions Walker C as an exceptional humanoid assistant.
Engineering Breakthroughs
At the heart of Walker C lies cutting-edge technology marrying perception and control. Dual RGB-D and structured-light 3D cameras feed data into an advanced U-SLAM navigation system that delivers precise autonomous positioning and obstacle avoidance. The robot’s 20 degrees of freedom empower human-like motion, while a high-precision inertial measurement unit and gyroscope stabilize its gait. Sophisticated force sensors provide real-time feedback for safe interaction, all seamlessly integrated into UBTECH’s proprietary OS supporting AI-powered joint and communication control. This synergy of sensors and software embodies a leap forward in humanoid robotics engineering.
Practical Deployment
Walker C’s design targets diverse real-world roles where autonomous assistance enhances customer experience and operational efficiency. Its ability to guide tours, manage receptions, and assist visitors in multiple languages makes it ideal for airports, museums, and shopping centers. The robot also handles light delivery tasks and interacts with objects, supporting hands-on engagement in commercial settings. UBTECH’s focus on adaptive narration and multilingual AI curators ensures Walker C can provide personalized, context-aware support, significantly easing human workload while enriching visitor satisfaction.
Detailed Design Insights
Measuring 163 cm tall with an estimated shoulder width of 50 cm and depth around 40 cm, Walker C is a lightweight 43 kg bipedal robot capable of smooth locomotion at speeds up to 6 km/h. Its lithium battery promises a lifespan of 3 to 5 years, with operational runtimes of 2 hours walking and 4 hours standing idle per charge. Sensor arrays include dual RGB-D and structured-light 3D cameras, a high-precision IMU, gyroscope, and force sensors ensuring safe, responsive interaction. Navigation relies on U-SLAM technology, while its payload capacity suits light tools and visitor assistance items. Safety features like collision detection and emergency stop safeguard human cohabitation, all managed through a proprietary AI-driven OS.
Standing Among Peers
When compared to rivals such as Adam-U, Mirokaï, Quanta X2, and AIMY, Walker C asserts its strengths in balanced speed, sensory sophistication, and collaborative safety. Unlike some competitors with heavier builds or slower navigation, Walker C’s lightweight frame and 6 km/h top speed yield agile mobility. Its dual-camera setup and U-SLAM navigation offer robust environmental awareness superior to many peers reliant on simpler vision systems. However, it carries a modest payload compared to some industrial-focused humanoids, and its 20 degrees of freedom, while sufficient for smooth movement, fall short of models with more articulated limbs. Overall, Walker C excels in service-oriented tasks demanding friendly interaction and safe operation rather than heavy-duty manipulation.
A Future Shaped by Walker C
UBTECH’s Walker C signals a pivotal shift toward humanoid robots as integral collaborators in public and commercial sectors. Its introduction is poised to accelerate adoption of intelligent service robots that combine mobility, communication, and safety in one package. As industries increasingly seek automation that interacts naturally with humans, Walker C’s AI-driven embodiment and flexible deployment set a new standard. With continuous software updates and potential ROS2 integration, it paves the way for scalable, adaptable robotics solutions that could reshape workforce dynamics and customer engagement paradigms on a global scale.
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