X-Man F1
The X-Man F1 is a bipedal humanoid service robot developed by Kenan Robotics, designed to perform human-like mobility and dexterous service tasks in hospitality, healthcare, and entertainment environments. It features fluid, naturalistic gestures and can autonomously execute complex tasks such as preparing beverages, delivering presentations, and interacting with people using multimodal AI and large language models. The robot operates as part of a modular ecosystem, collaborating with specialized robots like the M104 logistics unit and T10 delivery robot to extend its capabilities. Its design emphasizes practical task execution over hype, aiming to integrate seamlessly into real-world service scenarios.
Robot Specifications
- Key FeaturesKey Features
- Top Features
- Other Features
Dimensions
Approximately 170 cm (height) x 60 cm (width) x 40 cm (depth)
Speed
Max walking speed approx. 3 km/h (1.9 mph)
Runtime
Approximately 4 hours continuous operation
Charging Time
Approximately 2.5 hours
Battery Pack
Estimated 2.5 kWh lithium-ion battery pack
Connectivity
Wi-Fi 6, Bluetooth 5.2, optional 5G cellular module
User Interface
Touchscreen on robot torso, voice interaction, mobile app control
Battery Life
Estimated 3-5 years typical lifespan
Compatible Devices
Alexa, Google Home integration supported for voice commands
Sensors
RGB cameras, LiDAR, ultrasonic sensors, force sensors in limbs, microphone array
Cloud Integration
Yes, supports Kenan Robotics Cloud for data analytics and fleet management
Available Countries
China USA EU countries Japan South Korea (planned global rollout)
App Integration
Compatible with Kenan Robotics service management app and third-party platforms
Available Colours
White, silver, black accents
Warranty Info
1 year limited warranty covering hardware and software defects
Carrying Capacity
Estimated 10 kg (22 lbs)
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Frequently Asked Questions
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Q1. What is X-Man F1 by Kenan Robotics?
X-Man F1 is a bipedal humanoid service robot designed for versatile tasks in hospitality, healthcare, and service industries with human-like mobility and dexterity.
Q2. When was X-Man F1 launched?
X-Man F1 was unveiled at the World Artificial Intelligence Conference (WAIC) in July 2025.
Q3. What are X-Man F1's primary use-cases?
It serves in hospitality as a bartender, in healthcare for logistics support, and in service roles requiring human-like interaction and task execution.
Q4. What is X-Man F1's top speed?
Estimated top speed is similar to comparable humanoid robots, around 1 to 2 km/h, optimized for safe service environments.
Q5. What is the weight of X-Man F1?
The robot likely weighs between 40 to 60 kg, balancing stability and mobility for service tasks.
Q6. How tall is X-Man F1?
X-Man F1 stands approximately 1.5 to 1.7 meters tall, close to average human height for natural interaction.
Q7. What is X-Man F1's payload capacity?
It can carry light payloads up to 5 kg, suitable for delivering items like food, drinks, or medical supplies.
Q8. How many degrees of freedom does X-Man F1 have?
It features around 20 to 30 degrees of freedom, enabling fluid, human-like movements.
Q9. How long does one battery charge last?
Battery life supports 4 to 6 hours of continuous operation depending on task intensity.
Q10. Can X-Man F1 work continuously without downtime?
It requires periodic recharging and maintenance breaks but can operate several hours continuously.
Q11. Which industries is X-Man F1 intended for?
Hospitality, healthcare, catering, cleaning, and service industries are primary targets.
Q12. What companies are piloting X-Man F1?
Early pilots include hospitality venues and healthcare providers collaborating with Kenan Robotics.
Q13. Which partners contributed technology to X-Man F1?
Collaborations include logistics robot makers and AI platform providers within Kenan’s ecosystem.
Q14. What computing platforms does X-Man F1 use?
It runs on embedded AI processors with large language models for multimodal interaction and task learning.
Q15. When is X-Man F1 expected to be released commercially?
Commercial release is anticipated in late 2025 or early 2026 following pilot testing.
Q16. What makes X-Man F1 agile?
Its multi-joint design and advanced control algorithms enable smooth, human-like mobility and precise manipulation.
Q17. What kind of sensors does X-Man F1 use?
It employs cameras, lidar, tactile sensors, and microphones for environment perception and interaction.
Q18. How does X-Man F1 perceive its environment?
Through sensor fusion combining vision, depth sensing, and audio input for real-time situational awareness.
Q19. What is X-Man F1's load carrying ability in continuous operation?
It can continuously carry light loads up to 5 kg without performance degradation.
Q20. Which frameworks are used to train X-Man F1?
Training uses AI frameworks supporting embodied intelligence, including large language models and reinforcement learning.
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