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Dual-Band Operations On A Single Aperture

Multi-frequency operation on a single aperture for seamless connectivity

We integrate multiple frequency bands into a single aperture, enabling seamless communication and radar sensing functionality in a compact footprint. This expertise allows for high-performance connectivity in the most demanding environments.

ADVANCED RF ARCHITECTURES

One Aperture. Multiple Missions.

Advanced Dual-Band RF Architectures for Space, Defense, and Commercial Systems

Modern RF systems are increasingly expected to perform multiple missions while operating within strict Size, Weight, Power, and Cost (SWaP-C) constraints. Novaa develops advanced dual-band antenna and phased-array architectures that enable multiple frequency bands to operate from a common aperture, reducing hardware complexity while increasing system capability.

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Our engineering approach focuses on maximizing aperture utilization through innovative electromagnetic design, advanced beamforming techniques, and tightly integrated RF architectures. By combining multiple operating bands within a single antenna system, customers can reduce payload mass, simplify mechanical integration, and improve overall platform efficiency without sacrificing performance.

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These technologies are applicable to satellite communications, radar, electronic warfare, Positioning, Navigation and Timing (PNT), Earth observation, and next-generation sensing systems operating from terrestrial, airborne, and space platforms. Whether supporting communications across multiple frequency allocations or enabling simultaneous sensing and communications, Novaa develops solutions that balance bandwidth, gain, efficiency, isolation, and manufacturability.

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Rather than viewing antennas as individual components, we engineer complete RF aperture architectures that integrate seamlessly into larger mission systems. The result is a more capable, flexible, and future-ready RF solution designed for the increasingly complex demands of modern aerospace and defense applications.

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