top of page

Ultrawideband Antennas

Multifunctional arrays achieving 10:1 bandwidth

We solve difficult problems, delivering mmW scalable, low SWaP-C electronic scanning arrays and ultra-wideband antenna systems for demanding applications. These placeholders will be expanded with specific details regarding our unique approaches to UWB performance.

ULTRA-LOW SWAP-C PERFORMANCE

Ultra-Wideband Performance Without Compromise

Engineered for Maximum Bandwidth, Agility, and Mission Flexibility

Future communications, sensing, and radar systems require RF apertures capable of operating across increasingly wide frequency ranges while maintaining high efficiency, stable radiation patterns, and precise beam steering. Novaa specializes in the design of ultra-wideband fixed-beam antennas, and electronically steered arrays that provide exceptional frequency agility without the complexity traditionally associated with wideband architectures.

​

Our designs emphasize advanced electromagnetic performance, innovative array topologies, and scalable architectures that support multiple missions from a common RF aperture. Wide instantaneous bandwidth enables greater operational flexibility, allowing systems to adapt to changing mission requirements, support multiple waveforms, and accommodate evolving communications standards throughout a platform's lifecycle.

​

Ultra-wideband arrays also provide significant advantages for radar, electronic warfare, spectrum monitoring, satellite communications, and scientific remote sensing. By reducing the need for multiple dedicated antenna systems, our architectures improve SWaP-C while increasing operational capability and simplifying overall platform integration.

​

Novaa approaches every wideband design as a complete system challenge, considering electromagnetic performance, thermal management, calibration, manufacturability, mechanical integration, and long-term reliability from the earliest stages of development. This engineering philosophy produces RF aperture solutions that deliver superior performance across demanding defense, commercial, and space applications while remaining adaptable to future mission requirements.

bottom of page