FBG Laparoscopic Grasper Force Sensor for Surgical Robotics
Introducing Patent Pending

FBG Laparoscopic Grasper Force Sensor for Surgical Robotics

Surgical grasper FBG force sensor is enabling the next frontier in micro automation for aerospace and surgical robotics.

Surgical Grasper FBG Force Sensor

Femto Envelope

With the ultra-miniature 5mm envelope GS05 Laparoscopic sensor provides 400% overload protection and off-center load cancellation.

High Accuracy

Rated to 2.2KG (5LB) capacity GS05 provides high accuracy measurements with 0.5% R.O. non-linearity across 17mm long loading surface.

Environmental Immunity

Developed for harsh environments, providing complete immunity to EMI, RF, magnetic fields, high voltages including sterilization process for surgical robotics.

Dual FBG Output

Featuring dual FBG output technology, GS05 grasper force sensor enables real time temperature compensation.

Extreme Temperatures

High temperature rating up to 200° C with temp shift zero and temp shift span performance below 0.005% R.O./°C.

No Limit Cable Distance

There are no more limits to cable length vs. their effect on sensor performance. We can support long distances even above 1000m.

FBG Laparoscopic Grasper Force Sensor for High Precision Surgical Robotics

The FBG Laparoscopic Grasper Force Sensor by LILIKOI innovation is an advanced optical tactile sensing solution designed specifically for surgical robotics and minimally invasive instruments. Built on Fiber Bragg Grating technology, it enables precise measurement of grasping and interaction forces within laparoscopic grippers, providing surgeons and robotic systems with real time force feedback during delicate procedures. This improves safety, reduces tissue damage, and enhances surgical accuracy in complex medical environments.

Engineered for extreme reliability, the sensor operates effectively in harsh surgical conditions including sterilization processes, tight spatial constraints, and electromagnetic interference environments. Its compact and lightweight design allows seamless integration into laparoscopic graspers without affecting instrument performance. By delivering accurate force data at the point of interaction, it supports advanced robotic control systems and improves precision in tissue manipulation and surgical decision making.

Advanced FBG Tactile Sensing for Minimally Invasive Surgery

The FBG laparoscopic grasper sensor uses optical strain sensing to detect minute deformations caused by tissue interaction forces. This allows highly sensitive and accurate force measurement even in confined surgical spaces where traditional sensors cannot be used. Its dual FBG configuration ensures temperature compensated readings, maintaining stability and precision throughout surgical procedures.

This sensor is designed for integration into robotic-assisted surgical systems, enabling real time feedback for force controlled manipulation. It is ideal for applications such as minimally invasive surgery, robotic suturing, tissue handling, and biomedical research systems where precision and safety are critical. By providing direct tactile feedback, it helps reduce surgeon uncertainty and improves patient outcomes.

Upgrade your robotic surgery systems with LILIKOI innovation FBG laparoscopic grasper force sensors for accurate tactile feedback and safer procedures.

FBG Laparoscopic Grasper Force Sensor for Surgical Robotics

SPECIFICATION

GS05 OPTICAL GRASPER FORCE SENSOR SPECIFICATION

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