NAVIAI Navigator 2 is a humanoid robot with 41 degrees of freedom and 275 TOPS AI computing power, designed for complex tasks and interactive applications in various sectors.
NAVIAI Navigator 2 is a humanoid robot developed by the Zhejiang Humanoid Robot Innovation Center. Standing 1.65 meters tall and weighing approximately 60 kg, it boasts 41 degrees of freedom, enabling it to perform complex tasks such as delivering speeches, making tea, and playing chess. With an AI computing power capable of 275 trillion operations per second, it can rapidly learn new movements and demonstrate precision in various scenarios. Its embodied intelligent navigation technology allows for semantic interaction and precise object grasping in complex environments, making it suitable for applications in home services, education, training, exhibitions, and customer service.
Key Features:
Height & Weight: 1.65 m / 60 kg
Degrees of Freedom: 41
AI Computing Power: 275 TOPS (trillion operations per second)
Capabilities: Speech delivery, tea making, chess playing
Navigation: Embodied intelligent navigation with semantic interaction
Applications: Home services, education, training, exhibitions, customer service
Mobility & Structure
Attribute
Value
Description
Why It Matters
Locomotion Type
Bipedal, wheeled-hybrid, etc.
Defines interaction envelope
Degrees of Freedom (DOF)
# of controllable joints
Directly tied to dexterity & versatility
Max Walk Speed
m/s
Static, dynamic balancing
Upper Body & Manipulation
Attribute
Value
Description
Why It Matters
Arm DOF
Each arm's axis count
Higher = more natural movement
Hand Dexterity
Pinch / 3-finger / 5-finger
Newtons
Grip Feedback
Force, pressure, tactile sensors
Enables delicate handling and learning
Perception
Attribute
Value
Description
Why It Matters
Visual Sensors (Eyes)
RGB / Depth / IR / LiDAR
Navigation, facial recognition, object tracking
Eye DOF / Movement
Can they move? (Y/N, axis count)
Naturalistic interaction & gaze tracking
Audio Sensors (Ears)
# of mics + array type
Needed for voice commands, sound source localization
Face Display / Actuators
LED screen / moving eyebrows / static
Social communication, emotional response
Face Expressiveness
None / Basic / Realistic
Higher = better interaction in social spaces
Interfaces
Attribute
Value
Description
Why It Matters
Voice Recognition
NLP model + languages supported
Enables natural user interaction
Speech Output
TTS engine used + quality level
Critical for public/commercial use
Touch UI / Screen
Present or not
Optional fallback interaction
Remote Control
N/A
Web / App / Joystick
Needed for manual override or remote training
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