LM Eyes Military Exoskeleton Market
Stay informed with our
free newsletters

This news is classified in: Defense Sensors Soldier

Apr 11, 2017

LM Eyes Military Exoskeleton Market

Licensed Dermoskeletic Technology Promises Lightweight Strength and Agility

Eyeing a new generation of industrial and military exoskeletons, Lockheed Martin (NYSE: LMT) has licensed the bionic augmentation technology Dermoskeleton™ from B-Temia, Inc.

Dermoskeleton is the basis for computer-controlled devices that can increase mobility and load-carrying capacity by counteracting overstress on the lower back and legs. Lockheed Martin's technology license permits use of B-Temia technology to products for military, industrial, commercial and first-responder applications.

"This technology offers a pathway to increased loadbearing and greater agility for our FORTIS industrial exoskeleton," said Glenn Kuller, Advanced and Special Programs vice president at Lockheed Martin Missiles and Fire Control. "It can also help to solve existing limitations of powered exoskeletons for our military and first responders. We're excited about the potential we see here."

Military Sensors Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, 2019-2029F

Military Sensors Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, 2019-2029F

By Platform (Ground, Airborne, Naval, Space), By Component (Hardware, Software), By Application (Navigation & Communication, Intelligence & Reconnaissance, Electronic Warfare, Command & Control, Monitoring & Surveillance, Target Recognition), By Region, Competition, 2019-2029F

Download free sample pages

"This agreement confirms our company's technology leadership and value of our work in increasing human mobility in both industrial and defense applications," said B-Temia President and CEO Stéphane Bédard. "Our arrangement with Lockheed Martin provides another avenue for our bionic technology to enhance human performance."

The FORTIS exoskeleton is an unpowered, lightweight exoskeleton that increases an operator's strength and endurance by transferring the weight of heavy loads from the operator's body directly to the ground through a series of joints at the hips, knees and ankles. Originating from Lockheed Martin's exoskeleton research to assist soldiers in carrying heavy equipment over long distances, the same principles were applied to exoskeleton development for use in industrial settings.


Lockheed Martin Corporation (NYSE: LMT)
View original News release

UAV Technology 2024 Conference

UAV Technology 2024 Conference

London, United Kingdom
Sep 30 - Oct 1, 2024

View agenda
Urban Operations Summit

Urban Operations Summit

National Harbor, MD
Jul 10 - 11, 2024

View agenda