Naïo begins in the Toulouse region
Naïo's company material places its foundation in 2011 and frames the original problem around labor-intensive agricultural work.
COMPANY PROFILE / AGRICULTURE
A French agricultural-robotics company developing electric autonomous machines for specialty crops, vineyards, nurseries, and mechanical field work.
5 unique sources · 5 links
Open layer ↓02 / History4context records4 unique sources · 7 links
Open layer ↓03 / Brands1context records5 unique sources · 10 links
Open layer ↓04 / Product series2context records5 unique sources · 6 links
Open layer ↓05 / Technology3context records6 unique sources · 7 links
Open layer ↓manufacturer6
official organization4
research2
Naïo organizes agricultural robots around crop environment and work role rather than one universal machine. The useful orientation boundary is the combination of robot, mapped field, positioning, compatible tool, safety process, operator training, and local support.
Public portfolio pages can lag commercial changes. This profile publishes TED because its current page remains active; it does not present JO or ORIO as currently purchasable after their individual product pages began carrying a June 2026 not-for-sale and no-support notice.
Brand records sit between the parent company and individual product series. They preserve ownership context while allowing regional portfolios to be documented separately.
Naïo's company material places its foundation in 2011 and frames the original problem around labor-intensive agricultural work.
The portfolio developed distinct machine concepts for market gardening, vineyards, nurseries, and broader specialty-crop work.
Naïo documented a new generation of its autonomous vineyard straddler in 2020, creating an important boundary from earlier TED machines.
TED remains presented as a current solution, while other robot pages may carry explicit sales and support end dates; portfolio labels alone are therefore not sufficient evidence of current availability.
Autonomous field platforms designed around narrow, permanent, or high-value crop systems and compatible mechanical tools.
Compact robot concepts for supported soil preparation, seeding, transport, and weeding tasks in market-garden and specialty-crop contexts.
The positioning, mapping, mission, safety, training, distribution, and service layers required to put a robot into repeatable field use.
These links explain independent technology concepts. They do not assert that every brand, model, or market offering implements every feature.
Learn how mission planning, supervision, safety state, actuation, and field conditions interact.
Agricultural Robotics and Autonomy →PositioningUnderstand correction delivery, localization quality, field reference, and fallback behavior before relying on a mapped path.
Real-Time Kinematic →Machine guidanceSeparate a planned route from the sensing, controls, clearances, and verification needed to execute it safely.
Agricultural Auto-Guidance →Company history, brand structure, and portfolio descriptions are original World Farm Tech summaries based on the linked official pages. Manufacturer statements are not treated as independent performance verification.