Wandercraft is a French robotics company that builds self-balancing walking exoskeletons and, more recently, industrial humanoid robots. Founded in Paris in 2012 by engineers - some with personal ties to degenerative mobility disease - it created Atalante X, a hands-free clinical exoskeleton now used in more than 100 rehabilitation centers, and Eve, the first self-balancing personal exoskeleton designed for home use without crutches. In 2025 the company extended its gait-control expertise into Calvin, a family of industrial humanoids developed with Renault Group and NVIDIA. Wandercraft's stated aim is to blend frontier AI with high-performance hardware to help people work and walk.
Matthieu Masselin is the CEO and co-founder of Wandercraft, the Paris-based robotics company behind Atalante, the Eve personal exoskeleton, and the Calvin-40 humanoid robot. Trained as an engineer at Ecole Polytechnique, he took over as CEO in 2018 and led the company through FDA clearances, a Renault manufacturing partnership, and a Series D that brought total funding to about $169M.
Todd Roberts is the CEO and co-founder of ATDev (Assistive Technology Development, Inc.), a robotics company building an ecosystem of devices that help people stay independent regardless of physical ability. A mechanical engineer trained at Northeastern and UC Berkeley, where he researched exoskeletons, Roberts met his co-founder Owen Kent through a Craigslist housing ad and discovered they shared both a roof and a biomechanics class. Their company's first product, Reflex, is a sub-five-pound at-home knee rehabilitation robot that pairs guided exercises with remote clinician monitoring. ATDev raised a $3M seed round in October 2025 and is a partner in the $41M ARPA-H RAMMP robotic mobility initiative.
Amaury Ciurana is the co-founder and CEO of REEV, a wearable-robotics company building intelligent motorized orthoses for people with neurological gait disorders. A French aerospace engineer trained at ISAE-SUPAERO and the X-HEC entrepreneurship track, he relocated to Boston in 2023 to lead REEV's US expansion. The company pairs DREEVEN, an AI-powered robotic knee orthosis, with REEV SENSE, a wearable gait-analysis system, and has raised roughly $14M total including a $9.2M round in 2025.
REEV is a medical robotics company building AI-powered wearable robotics to restore everyday mobility for people with neurological gait disorders after stroke, multiple sclerosis or paraplegia. Its flagship DREEVEN is a lightweight (about 3kg) motorized knee orthosis driven by electro-hydraulic actuation and real-time gait sensing, paired with REEV SENSE, an IMU wearable that turns a person's walking pattern into clinical-grade gait reports. Founded in 2021 and split between Boston and Toulouse, REEV raised $9.2M in February 2025 to finalize DREEVEN, run a clinical study at Boston University and prepare for FDA trials.
Roam Robotics builds lightweight, air-powered wearable exoskeletons that augment human strength, endurance and mobility. Founded by Ekso Bionics veteran Dr. Tim Swift, the San Francisco company replaced the heavy metal of traditional exoskeletons with plastic, fabric and pneumatic actuators - making robotic assistance cheap and light enough to wear all day. Its products span consumer skiing (Elevate), medical knee osteoarthritis relief (Ascend), and military performance (Forge), with clinical data showing 46% average knee-pain reduction and up to 2x strength and endurance gains.
Tim Swift is the founder and CEO of Roam Robotics, the San Francisco company building lightweight exoskeletons out of high-strength fabric and compressed air instead of heavy steel and motors. A UC Berkeley mechanical engineering PhD, he was one of the original three-person team that invented the Ekso exoskeleton at Ekso Bionics, then went to Otherlab before starting Roam in 2014. His bet: that wearable robots can weigh five pounds, cost a few thousand dollars, and be something a regular person buys to ski longer, hike farther, or move with less pain - not a tens-of-thousands-of-dollars hospital machine.