@RemiCadene: Starting with the fundamentals Prototype Version 0 AI, Software, Hardware A small team, 9 months Designed and assembled…
Summary
A small team spent 9 months designing and assembling Prototype Version 0 of AI, software, and hardware in Paris at UMA_Robots.
View Cached Full Text
Cached at: 07/07/26, 12:18 PM
Starting with the fundamentals
Prototype Version 0 AI, Software, Hardware A small team, 9 months Designed and assembled in Paris at @UMA_Robots https://t.co/BJvtpgHctL
Similar Articles
@RemiCadene: It's incredible to me that 9 months ago we didnt have an office, and now we have a fully functional humanoid and an eff…
Remi Cadene shares excitement about developing a fully functional humanoid robot with efficient AI in just 9 months with a small team in Paris at UMA Robots.
@prometechmedia: Impossible isn't French! In just 9 months, the Parisian startup @UMA_Robots has created its first robot prototype! Foun…
Parisian startup UMA_Robots, founded by former Tesla Optimus, DeepMind, and Hugging Face engineers, has built its first robot prototype in 9 months. The robot uses end-to-end AI to observe, decide, and act with real-time learning, aiming to address labor shortages, reindustrialization, and ecological transitions.
@AractingiMichel: I think every roboticist knows this feeling: watching a design come to life. When I joined in February, the legs weren'…
UMA_Robots' v0 humanoid robot prototype, designed and assembled in Paris in 9 months, has started walking, showcasing progress in AI, software, and hardware integration.
@RemiCadene: AI developed at @UMA_Robots Picking and Scanning items Deformable, Slippery, Thin, Fragile We mess with it at the end :)
AI developed at UMA_Robots demonstrates picking and scanning deformable, slippery, thin, and fragile items.
@RemiCadene: AI developed at @UMA_Robots Single neural network, End to End It operates robustly for hours, with precision, adapting …
Researchers at UMA_Robots developed a single end-to-end neural network that operates robustly for hours with precision and adaptation to visual input.