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Virya

Research Platform Built for Real-World Experimentation

Production-grade foundations to experiment, validate, and push autonomous systems further. Everything you need to go from research to reality.

Production-Grade Hardware
Modular and Scalable
Sensor-Fused Architecture

Drive-By-Wire Research Platforms

Industry-standard sensors, controllers, and communication hardware from production autonomous systems. Students work directly with the safety-rated sensing, data acquisition, and industrial protocols the field runs on.

Industry-grade sensors and controllersSafety-certified componentsPrecision data acquisitionIndustrial-grade communication (CAN, Ethernet)Built for autonomous systems
Sensors & Development Kit

A modular educational AMR on open-source ROS 2, built from industry-standard parts. For hands-on learning, system integration, and algorithm development in coursework and research.

Open-source ROS 2 ecosystemModular, upgradeable designIndustry-standard sensor integrationHands-on learning platformBuilt for coursework, projects, and research
Mini Robot Starter Kit

A production-grade AMR on the same architecture Virya deploys in factories. Develop, validate, and demonstrate navigation, perception, and fleet management on hardware that already works for a living.

Industrial-grade AMR platformBuilt for indoor deploymentEnables advanced autonomy developmentCompatible with industry-standard sensorsReady for research, testing, and demos
Industrial AMR Research Platform

A configurable vehicle with electronic control of steering, braking, throttle, and drive. Develop and validate full autonomous driving systems, and integrate new hardware around your research goals.

Complete DBW architectureOpen platform for autonomous stacksModular hardware and softwareCustomizable for diverse researchEnables advanced vehicle control and navigation
Drive-By-Wire Research and Development Platform

A fully autonomous electric buggy for demonstration and advanced research in controlled environments. Open architecture, so institutions build, integrate, and validate driving software on a real self-driving vehicle.

Fully autonomous research vehicleOpen architecture for software developmentReal-world autonomous validationCustomizable hardware and sensorsBuilt for advanced R&D, demos, and innovation
APM for R&D

Autonomous Mobile Robot Laboratory Academia

Industry-Ready Learning and Research Infrastructure

Virya's Autonomous Robotics Laboratory bridges the gap between classroom learning and industrial deployment. Built on the same technology stack as Virya's autonomous fleet, it combines industry-grade hardware, ROS 2, simulation tools, and AI software to enable hands-on learning across the complete autonomous robotics lifecycle.

Engineer working on an autonomous lab platform
Industry-standard autonomous technology infrastructure
Curriculum-integrated, hands-on engineering learning
Real hardware and software skill development
Supports projects, internships, and funded research
Direct academia-industry collaboration

Applications across autonomy and robotics research

Engineering Colleges & Universities
Centers of Excellence (CoE)
Incubation Centers & Startup Hubs
Industry-Academia Collaboration Centers
Innovation & Technology Parks
Automated warehouse floor with autonomous vehicles moving racks and containers

The future of autonomous mobility in industry

A unified platform for developing the next generation of autonomous mobility. Virya empowers innovators to transform research into real-world solutions, advancing the technologies that will define the future of industrial automation.

Results speak it better

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