Robot Skin

Robotics

Structure deformation

Customer :

As robotic systems evolve, robots must manipulate a wider range of objects with greater precision, adaptability and safety.

Conventional force sensors often have limited sensing ranges and can become saturated under heavy loads, reducing their ability to detect lighter or more delicate interactions.

Nanomade technology enables continuous, highly sensitive force and deformation sensing across a wider operating range, allowing robotic fingers to combine strength, precision and responsiveness in real time

Product development

Prototype

Final use

Nanomade solution

High sensitivity and resolution

Nanomade sensors detect a wide range of deformation forces, from 1 N to dozens of N, while maintaining high sensitivity and resolution for both fragile components and heavier objects.

Easy integration into robotic structures

Nanomade’s ultra-thin, flexible sensors are custom-designed to perfectly fit complex geometries, ensuring seamless integration without compromising the mechanical design.

Real-time adaptive control

By continuously monitoring contact forces and physical interactions, Nanomade enables robots to adjust their behavior instantly for safer, smarter and more versatile manipulation.