Orano And Capgemini
Orano (global nuclear fuel materials leader) and Capgemini Engineering (digital transformation and engineering pioneer) co-developed Hoxo, the world's first intelligent humanoid robot deployed for nuclear energy operations. Operating in high-risk, radiation-controlled facilities, Hoxo features a radiation-tolerant humanoid upper body with dual dexterous manipulators, stereo computer vision, and physical AI trained on the open NVIDIA Isaac platform, replicating complex glovebox maintenance safely.
💡Notable Achievement: Orano and Capgemini successfully deployed Hoxo at the Melox nuclear fuel manufacturing facility in France in November 2025, marking the world's first deployment of an intelligent AI humanoid in an active nuclear operations environment.
What Does Orano And Capgemini Do?
The Orano and Capgemini Engineering partnership represents a watershed moment for physical AI in hazardous industries. Nuclear fuel manufacturing and decommissioning present extreme risks to human health due to radiation and toxic materials. By deploying Hoxo, an AI-powered humanoid robot built on the NVIDIA Isaac platform, Orano and Capgemini remove human workers from the direct line of exposure while maintaining human-like dexterity and problem-solving inside critical nuclear containment gloveboxes.
“Orano and Capgemini deploy the world's first AI humanoid robot in the nuclear energy sector to perform hazardous maintenance safely.”
Zero Radiation Exposure for Workers
Replaces human operators in hazardous gloveboxes to perform maintenance without accumulating radiation dose.
NVIDIA Isaac Sim Digital Twin
Trains robot perception and manipulation in ultra-realistic physics simulations before zero-shot deployment in nuclear cells.
Radiation-Hardened Engineering
Custom sealed actuators and specialized sensors built to withstand ionizing radiation and aggressive decontamination chemicals.
What Can Orano And Capgemini Robots Actually Do?
Cross-portfolio operational capabilities, manipulation tasks, and environmental competencies
Orano and Capgemini provide hazardous-environment humanoid robotics, digital twin simulators, and remote tele-presence suites.
Glovebox Hazardous Maintenance
Executes complex tool manipulation, valve adjustments, and cleaning inside airtight nuclear enclosures.
Tele-Immersive Digital Twin Control
Operators guide Hoxo remotely via VR headsets with real-time haptic force feedback and digital twin overlays.
Radiological Inspection
Automated vision inspection of fuel pellets, welds, and containment seals in high-radiation zones.
Orano And Capgemini Robots
Showing 1 Humanoid Robots of 1 total model
Hoxo Robot
Manufactured by Orano And Capgemini
Hoxo is an intelligent humanoid robot designed specifically for the nuclear industry, combining advanced AI, real-time perception, and autonomous navigation to operate safely alongside human teams in hazardous environments. It replicates human movements and performs technical gestures with precision, enhancing safety by reducing human exposure to risky zones. Hoxo integrates robotics, computer vision, digital twins, and AI to deliver scalable robotic assistance, redefining human-machine collaboration in sensitive industrial settings. Its deployment at Orano’s Melox site marks a pioneering step in using humanoid robots as “Non-Human Workers” in high-stakes sectors.
Orano And CapgeminiSoftware & AI Ecosystem
Developer platforms, fleet management portals, autonomy intelligence, and enterprise integrations
Software Feature
What Makes Orano And Capgemini Different?
Editorial AnalysisOrigin of Bots objective strategic assessment, engineering moats, and commercial hurdles
Key Strengths & Moats
- ✓World-first deployment of an AI humanoid in an active nuclear fuel facility
- ✓Backed by global nuclear leader Orano and Tier-1 engineering giant Capgemini
- ✓Deep integration with NVIDIA Isaac platform and digital twins
Core Strategic Focus
Expanding operational scope from the Melox training mockup to full-scale hot cell automation across European nuclear plants.
Road Ahead & Challenges
- •Severe regulatory validation and nuclear safety certifications required for hot cells
- •Extreme radiation tolerance limits lifecycle of unshielded electronics
Orano And Capgemini vs Key Competitors
Strategic capability matrix across platform categories, commercial readiness, and target markets
| Strategic Dimension | Hoxo (Orano/Capgemini) | Spot (Boston Dynamics) | Veolia Nuclear Arms | Sanctuary Phoenix |
|---|---|---|---|---|
| Primary Environment | Nuclear Fuel & Gloveboxes | Radiation Inspection Corridors | Heavy Nuclear Hot Cells | General Industrial Shop Floors |
| Form Factor | Humanoid Torso & Arms | Quadruped Robot | Heavy Fixed Manipulator | Full-Size Humanoid |
| Dexterity Level | High (Bi-Manual Dexterous) | Single Low-DoF Arm | Heavy Industrial Jaws | High (20-DoF Hands) |
| Digital Twin AI | NVIDIA Isaac Platform | Autonomous Waypoint Navigation | Traditional Master-Slave | Proprietary Carbon AI |
Corporate Ecosystem & Ownership Structure
Parent company relationships, historical acquisitions, and global operating facilities
Articles & Industry News
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Robot Comparisons
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Frequently Asked Questions
10 AnswersVerified answers, company specifications, and deployment details about Orano And Capgemini
What is the capital investment and development cost for the Hoxo nuclear humanoid program?
Hoxo is a multi-million-euro joint strategic co-investment between Orano and Capgemini Engineering under France's nuclear innovation fund, with enterprise replication packages for nuclear facilities estimated between €250,000 and €400,000 per radiation-hardened unit.
What is the deployment timeline and current operational status of Hoxo?
Announced in November 2025, Hoxo completed an initial four-month live pilot at the Orano Melox Ecole des Métiers in early 2026, transitioning to active operational trials inside nuclear fuel manufacturing cells in mid-2026.
Where is the Hoxo humanoid actively deployed in real-world nuclear facilities?
Hoxo is deployed at the Orano Melox facility in the Gard region of southern France, specifically operating within MOX (mixed oxide) nuclear fuel manufacturing glovebox mockups and active maintenance zones.
What target hazardous workflows does Hoxo perform?
Hoxo executes high-risk glovebox cleaning, radioactive component inspection, manual valve turning, filter replacement, and hazardous radiological powder handling, eliminating radiation exposure for human operators.
What mechanical drivetrain and actuator architecture powers Hoxo?
Hoxo features dual 7-DoF robotic arms with radiation-shielded harmonic drives, sealed brushless DC motors, and a telescoping mobile column designed to prevent particulate ingress (IP65/IP67 rated).
What end-effector dexterity and tactile sensing does Hoxo utilize in gloveboxes?
Hoxo utilizes specialized radiation-resistant dual-finger and multi-finger grippers with sensitive force-torque load cells capable of gripping tools, opening airtight latch doors, and handling delicate fuel rods.
What is Hoxo's continuous runtime and power delivery mechanism?
Hoxo operates on direct umbilical tethered industrial power for unlimited continuous operation in containment rooms, supplemented by a fail-safe internal UPS battery providing 45 minutes of emergency egress power.
What is Hoxo's operational autonomy level versus remote teleoperation dependency?
Functions as a hybrid system: routine navigation, visual inspection, and tool alignment are executed autonomously via NVIDIA Isaac AI models, while high-consequence manipulation leverages ultra-low-latency VR teleoperation.
What sensory perception suite and foundation AI models govern Hoxo?
Equipped with radiation-tolerant stereo cameras, digital twin synchronization via the NVIDIA Isaac platform, and Capgemini's proprietary computer vision models trained in photorealistic simulations.
What worker safety mechanisms and radiological containment protocols are in place?
Features decontamination-washable smooth exterior surfaces, fail-safe magnetic brakes, redundant emergency shutoffs, and zero operator dose exposure through remote operations.
Verified Data & Editorial Assurance
Compiled from verified corporate filings, official Orano And Capgemini datasheets, and robotics engineering registries. Information has been verified against official manufacturer documentation. For commercial procurement or proprietary integrations, contact the manufacturer directly.


