Image:
Clone Robotics
An android torso with a highly detailed, biomimetic musculoskeletal hand and arm system.
Low-latency edge GPU stack.
Height
170
cm
Weight
75
kg
Speed
N/A
m/s
Payload
20
kg
Actuators
Synthetic musculoskeletal system, hydraulic muscles
DoF (Domains of freedom)
57
°
164-DOF upper body mimicking human musculoskeletal structures.
Proprietary hands capable of complex biological-grade grasping.


Water-powered artificial muscles for fluid, high-strength motion.
Low-power hydraulic control valves consuming less than 1 watt.
An android torso with a highly detailed, biomimetic musculoskeletal hand and arm system.
The upper body features 164 muscle-actuator degrees of freedom, mirroring human anatomy with 206 "bones." Conventional joint DoF is 57. Powered by a 500W hydraulic pump and four depth cameras.
Image:
Clone Robotics
Features 27-DoF hands capable of complex grasping. The system is water-based and uses artificial "muscles" (Myofibers) to achieve a level of fluidity and strength unmatched by electric motors.
Clone Alpha by Clone Robotics
Actuators
Synthetic musculoskeletal system, hydraulic muscles
DoF (Domains of freedom)
57
°
Height
170
cm
Speed
N/A
m/s
Weight
75
kg
Payload
20
kg
Runtime
N/A
h
OS / AI System
Low-latency edge GPU stack.
Uses proprietary Myofiber technology for synthetic muscle contraction. Aquajet valve technology manages high-pressure fluid flow with extremely low power consumption (less than 1 watt per valve).
Image:
Clone Robotics
Targeted at medical training facilities and advanced robotics labs exploring soft robotics. Its human-like musculoskeletal structure makes it a unique tool for studying upper-body rehabilitation and fine motor skills.
A major leap from the Clone Hand prototype, the Alpha model integrates a full upper-body hydraulic system powered by a 500W "heart" pump, achieving lifelike strength-to-weight ratios in a water-based system.
Utilizes synthetic muscles and a skeletal structure that mimics human anatomy, providing a visual and physical presence that is strikingly similar to a biological arm.
The water-based hydraulic system provides smooth, continuous motion profiles that lack the "jerky" transitions typical of standard electric motor robots.
Features a hand design with 27 degrees of freedom, allowing for delicate manipulation and gripping styles that mirror the versatility of the human hand.

