Image:
Dobot
A full-size humanoid robot with 28 DoF and an energy-efficient straight-knee walking system, powered by ROM-1 embodied AI.
Robot Operator Model-1 (ROM-1).
Height
165
cm
Weight
62
kg
Speed
1.0
m/s
Payload
5
kg
Actuators
High-torque density electric motors with integrated harmonic drives for precision manipulation.
DoF (Domains of freedom)
28
°
Innovative AWS mechanism reduces energy consumption by 42%.
Repeatability of ±0.05mm for delicate electronics assembly tasks.


Proprietary model for high-level task decomposition and reasoning.
Onboard system with 1500 TOPS for real-time unstructured adaptation.
A full-size humanoid robot with 28 DoF and an energy-efficient straight-knee walking system, powered by ROM-1 embodied AI.
Standing 165 cm and weighing 62 kg, Atom features 28 degrees of freedom. Powered by edge computing for real-time AI processing and 360-degree LiDAR sensing. Its straight-knee walking system reduces energy consumption by 42%.
Image:
Dobot
Features an Anthropomorphic Walking System (AWS) for energy-efficient straight-knee locomotion. Top features include sub-millimeter precision for assembly and 6-DoF dexterous hands.
Atom by Dobot
Actuators
High-torque density electric motors with integrated harmonic drives for precision manipulation.
DoF (Domains of freedom)
28
°
Height
165
cm
Speed
1.0
m/s
Weight
62
kg
Payload
5
kg
Runtime
2.0
h
OS / AI System
Robot Operator Model-1 (ROM-1).
Utilizes the proprietary ROM-1 embodied AI model for task decomposition. Its Neuro-Driven Dexterity System (NDS) uses a Transformer-based architecture for human-like fine motor skills.
Image:
Dobot
Targeted at automotive manufacturers for assembly line material handling, as well as commercial sectors like coffee shops and pharmacies for automated beverage preparation and nighttime dispensing.
Introduces the Anthropomorphic Walking System (AWS), which enables more natural straight-knee walking, reducing energy consumption by 42% compared to the previous generation's crouched-gait prototypes.
Modeled with human-scale dimensions to ensure its movements and reach are predictable and familiar to workers in shared industrial environments.
Uses synchronized head and arm gestures to signal intent and status, facilitating clearer communication with human operators on the factory floor.
Equipped with high-sensitivity force sensors that allow the robot to stop or adapt its movement immediately upon contact with a human colleague.

