Image:
Noetix Robotics
Hobbs W1 is a hyper-realistic service robot designed to avoid the uncanny valley and provide emotional interaction.
Noetix high-frequency force control.
Height
165
cm
Weight
60
kg
Speed
N/A
m/s
Payload
5
kg
Actuators
Robust modular actuators utilizing high-frequency force control for industrial assistance.
DoF (Domains of freedom)
34
°
Real-time sensing of human pressure for safe "hand-in-hand" work.
1kHz control loops for ultra-responsive collision avoidance.


Operates alongside humans without requiring safety cages.
Versatile build designed to adapt to diverse industrial roles.
Hobbs W1 is a hyper-realistic service robot designed to avoid the uncanny valley and provide emotional interaction.
Standing 165 cm and weighing 60 kg, Hobbs features 34 degrees of freedom and high-frequency force control loops for safe human-robot collaboration.
Image:
Noetix Robotics
Designed to work "hand-in-hand" with human partners without safety cages. Top features include task-agnostic utility, high-fidelity tactile feedback, and predictable industrial movement patterns.
Hobbs by Noetix Robotics
Actuators
Robust modular actuators utilizing high-frequency force control for industrial assistance.
DoF (Domains of freedom)
34
°
Height
165
cm
Speed
N/A
m/s
Weight
60
kg
Payload
5
kg
Runtime
N/A
h
OS / AI System
Noetix high-frequency force control.
Uses proprietary high-frequency force control technology that allows the robot to sense and react to external human pressure instantly, ensuring safer physical collaborative work.
Image:
Noetix Robotics
Used by assembly plants where robots and humans share a workspace without cages. It is a key tool for organizations implementing "Human-in-the-loop" production workflows.
Improves on the Dora platform by using 1kHz force-control loops and higher-bandwidth communication, ensuring safe, lag-free collaborative work even during complex multi-arm operations.
Designed with high-frequency force control loops that allow it to work "hand-in-hand" with human partners on assembly tasks without safety barriers.
Focuses on transparent and predictable movement patterns, which is critical for maintaining human comfort and safety in high-productivity environments.
Built to be a general-purpose helper, its behavior is designed to adapt to the "human" way of doing things rather than forcing humans to adapt to a machine.

