Image:
Daimon Robotics
A 44-DoF bipedal humanoid with multimodal AI for industrial interaction and autonomous task generalization.
Multimodal VTLA Manipulation Model.
Height
172
cm
Weight
68
kg
Speed
N/A
m/s
Payload
8
kg
Actuators
Custom high-torque electric joints
DoF (Domains of freedom)
44
°
Vision-Touch-Language-Action model for physical generalization.
Cognitive AI designed for educational and healthcare assistance.


Natural speech synthesis for engaging customer service roles.
Machine learning core that evolves based on user preferences.
A 44-DoF bipedal humanoid with multimodal AI for industrial interaction and autonomous task generalization.
Standing 172 cm and weighing 68 kg, Daimon One features 44 degrees of freedom. It integrates proprioception, tactile, and vision sensors for comprehensive environmental awareness.
Image:
Daimon Robotics
Optimized for industrial tasks requiring delicate touch. It features end-to-end multimodal perception that maps vision and touch directly to robotic control for autonomous task execution.
Daimon One by Daimon Robotics
Actuators
Custom high-torque electric joints
DoF (Domains of freedom)
44
°
Height
172
cm
Speed
N/A
m/s
Weight
68
kg
Payload
8
kg
Runtime
2.0
h
OS / AI System
Multimodal VTLA Manipulation Model.
Driven by the proprietary VTLA (Vision-Touch-Language-Action) model. This technology enables the robot to understand the laws of physics and generalize tasks in unstructured environments.
Image:
Daimon Robotics
Customers include manufacturing groups looking for tactile-sensitive assembly bots and educational institutions utilizing its multimodal VTLA model for AI training and tutoring research.
The Daimon One represents a transition from purely vision-based bots to a multimodal system that treats vision, touch, and language as a unified input for predicting physical actions in real-time.
Exhibits a steady and reliable physical presence in demanding environments, building human trust through consistent performance of difficult physical labor.
Positions itself as a high-utility assistant, designed to reduce the mental and physical burden on human supervisors in complex industrial zones.
Utilizes intelligent torque control to adjust its grip and lift force, mimicking the "gentle but firm" approach a human uses when handling heavy or fragile loads.

