Gremsy VIO Officially Integrated into Velos Rotors UAV Ecosystem, Expanding Global Collaboration in Advanced EO/IR Imaging

– Gremsy, a global leader in stabilized imaging systems, proudly announces the official integration of its VIO EO/IR payload into the Velos Rotors unmanned helicopter ecosystem – one of the top UAV manufactures in the world for over a decade.

This collaboration showcases the field-proven reliability, mission readiness, and seamless integration of Gremsy’s technology while enhancing the imaging performance of Velos Rotors’ unique and well known around the world electric unmanned helicopters.

The integration marks a significant milestone in Gremsy’s strategic expansion into the global market, delivering a high-performance, ultra-stable imaging solution ready to serve both government agencies and commercial enterprises.

A Partnership Built on Performance and Reliability

Velos Rotors is renowned for its Velos V3 - a distinctive single rotor (helicopter) UAV platform engineered for maximum safety, stability, and payload capacity, even under demanding flight conditions.

With the official integration of Gremsy’s VIO EO/IR payload, Velos Rotors now delivers a comprehensive imaging solution that combines thermal and visual precision, significantly expanding capabilities in surveillance, reconnaissance, and industrial inspection.

This partnership reflects the shared commitment of both companies to delivering precise, high-performance aerial solutions that meet the rigorous demands of missions where reliability and accuracy are paramount — from defense and public safety to critical infrastructure inspection.

“The successful integration of VIO into Velos Rotors’ drone ecosystem represents another milestone in our global expansion journey,” shared Mr. Huy Pham, CTO and VIO Project Leader at Gremsy.

“This collaboration highlights Gremsy’s dedication to developing payload systems that not only meet rigorous technical demands but also align with the global market’s growing emphasis on safety, reliability, and performance in aerial operations.”

Delivering Precision and Reliability for Global Drone Operations

Across the world, drone operators are seeking systems that combine endurance, accuracy, and reliability. The official integration of Gremsy’s VIO EO/IR payload into Velos Rotors’ unmanned helicopters delivers exactly that - a fully synchronized imaging platform designed for precision missions in energy inspection, infrastructure monitoring, and complex surveillance operations.

Built for stability and continuous operation, Velos Rotors’ unmanned helicopters now leverage VIO’s dual imaging capabilities, including radiometric thermal and high-resolution visual sensors, to give professionals a powerful all-in-one solution for critical missions.

Together, Gremsy and Velos Rotors are redefining what it means to achieve operational confidence - enabling users to capture, analyze, and act on data faster and more accurately, even in the most demanding environments.

Driving Innovation and Operational Adaptability

The partnership between Gremsy and Velos Rotors reflects a shared commitment to continuous innovation, engineering excellence, and operational adaptability across complex aerial missions.

As the demand for advanced EO/IR payloads continues to accelerate across both defense and industrial sectors, VIO stands out as a proven solution - combining precision, flexibility, and field-tested reliability to meet the evolving needs of modern drone operations.

VIO is more than a payload; it is a trusted imaging system that empowers professionals to achieve mission success with greater accuracy, stability, and confidence.


About Gremsy

Gremsy is a world-renowned provider of advanced gimbal and camera systems for drones. Their high-quality solutions are designed to meet the demanding needs of professionals in industries such as filmmaking, surveying, and public safety. Gremsy’s commitment to precision, innovation, and ease of use makes them a trusted partner for UAV manufacturers, system integrators across the globe.