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Connecting Infinity with Intelligent Antenna Systems by SmartFusion from OMNIXYS.

SmartFusion intelligent antennas deliver low-latency, always-on Wi-Fi and data services anywhere. They evaluate available links and switch intelligently between frequencies, satellites, cellular and local networks to maintain connection quality and continuity — even in moving vehicles, aircraft, vessels, rail systems and equipment in remote locations.


Electronic beam-forming and onboard control logic manage each transition without interrupting passenger Wi-Fi, operational data, IoT telemetry, or remote system control.


Customers include government organisations, satellite operators, automotive and aviation manufacturers, fleet operators, and industrial buyers, with multiple product generations already in service.

SmartFusion System Architecture with blue glowing chip and OMNAXYS logo.

For satellite networks, SmartFusion uses electronically steered phased-array technology with onboard control logic that acquires, tracks and hands over between satellites autonomously. All pointing, steering and signal processing are managed inside the unit with multi-beam capability supporting stable operation across Ku and Ka bands on both LEO and GEO networks


The same control system manages the links available from cellular and local networks. These inputs feed into the antenna’s decision engine, which evaluates link conditions, routes traffic and moves seamlessly between frequencies, satellites, cellular and local networks without interrupting service.

White rectangular phased-array antenna panel on a dark blue background with the text ‘SmartFusion An

The SmartFusion product family includes ultra-thin antenna panels, compact terminals and embedded AiP modules. Panel formats are thin and lightweight, allowing installation on curved or contoured surfaces where a low-profile fit is required.


All formats are solid-state and electronically steered, designed for stable operation under vibration, motion, temperature variation, weather exposure and remote-area conditions. The hardware is built on a complete chip-to-product design chain, integrating RF chips, beam-forming ICs and AiP modules into finished systems for commercial, industrial and operational environments.

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