Camel-H200

Product Description

Robotphoenix H100/H200 Humanoid Robot Chassis is a next-generation robotic mobility platform designed to accelerate the development and deployment of embodied intelligent robots. Combining advanced motion control technology, high-performance joint modules, intelligent power management, and flexible hardware architecture, the H100/H200 provides a reliable foundation for building future humanoid robot applications.

Designed as a modular humanoid robot platform, the H100/H200 enables researchers, developers, and industry partners to explore intelligent robotic applications including AI perception, autonomous motion, human-robot interaction, intelligent manufacturing, service robotics, and embodied intelligence research.

Powered by Robotphoenix’s expertise in industrial robotics and intelligent automation, the H100/H200 bridges the gap between robotic hardware and artificial intelligence, enabling robots to better understand environments, execute complex movements, and interact naturally with the physical world.

Product Specifications

Technical Specifications 
Overall Dimensions720 × 550 × 335 (±2) mm
Turning Diameter850 mm
Net Weight70 kg
Rated Payload200 kg
Ground Clearance40 mm
Lifting Platform Dimensions
Human-Machine Interface
Lifting Drive
Lifting Height
Rated Operating Speed (Rated Payload / No Load)72 / 90 m/min
Acceleration (Rated Payload / No Load)
Rotational Speed (Full Load / No Load)
Drive ConfigurationFour-Wheel Omnidirectional Drive
NavigationLiDAR SLAM
LiDAR Installation Height
Parking Positioning Accuracy±10 mm
Parking Orientation Accuracy±1°
Battery TypeLiFePO₄ / Ternary Lithium (Optional)
Capacity / Rated Voltage20 / 48 + 40 / 48 Ah/V (Optional)
Charge/Discharge Cycles
Operating Time at Rated Conditions
Charging Time from Full Discharge
Front LiDAR Obstacle Detection (Quantity / Installation Height)310.5 mm
Scanning Angle270°
3D Vision-Based Obstacle AvoidanceOptional — Front / Rear / Left / Right
Rear Ultrasonic Sensors
Emergency Stop Buttons2 (One on Each Side)
Contact Safety Protection: —
Audible & Visual AlarmStandard
Chassis Shock Absorption
Maximum Gradeability
Step-Climbing Capability
Gap-Crossing Capability
Operating Environment 
Operating EnvironmentIndoor
Floor ConditionsHard concrete or conductive plastic flooring recommended. The operating surface must be free of metal debris, oil contamination, corrosive liquids, and other obstructions. Floor joints should be avoided; where unavoidable, joints should not exceed 10 mm. Maximum floor gradient: 8°. At precision positioning points: ≤1°. The floor coefficient of sliding friction should be ≥0.5 to ensure braking safety and positioning accuracy.
Operating Temperature−10°C to 40°C
Charging Temperature0°C to 40°C
Relative Humidity10%–90%, non-condensing
Wireless CommunicationDual-Band Wi-Fi 2.4 GHz / 5 GHz; Signal Strength > −70 dBm

Product Advantages

Embodied Intelligence Ready Platform
High Flexibility for AI Robotics Development
Advanced Motion Control Technology
Reliable Robotic Hardware Foundation
Modular & Expandable Architecture
From Simulation to Real-World Deployment

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