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Tendeg Unveils NewTEN Steerable Compact Antenna for Proliferated SmallSat Constellations

Tendeg has launched the NewTEN two-axis steerable reflector antenna designed to enhance communications for small spacecraft. Unveiled at the 40th Annual Small Satellite Conference, the system addresses high-volume production needs for proliferated space constellations.

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Tendeg has launched the NewTEN two-axis steerable reflector antenna designed to enhance communications for small spacecraft. Unveiled at the 40th Annual Small Satellite Conference, the system addresses high-volume production needs for proliferated space constellations.

Tendeg Unveils NewTEN Steerable Compact Antenna for Proliferated SmallSat Constellations

In the rapidly evolving landscape of space missions and satellite technology, the demand for high-performance communication systems capable of supporting large-scale deployments has never been higher. Addressing this critical market need, Tendeg has officially introduced the NewTEN antenna at the 40th Annual Small Satellite Conference in Salt Lake City. Engineered specifically for small spacecraft operating within proliferated constellations, this innovative two-axis steerable reflector antenna aims to bridge the gap between advanced communication performance and stringent size, weight, and power (SWaP) constraints.

Innovative Architecture for Proliferated Constellations

Modern proliferated Low Earth Orbit (LEO) constellations require hardware that can be manufactured, integrated, and deployed at an unprecedented scale. Traditional custom-gimbaled antennas often introduce complex integration hurdles and high recurring costs, whereas limited pointing systems sacrifice operational flexibility. The NewTEN system solves this dilemma by pairing a compact offset-fed reflector with a robust two-axis pointing mechanism. This common architecture significantly reduces recurring integration efforts, making it an ideal solution for defense and commercial mission architects demanding repeatability across dozens or hundreds of spacecraft.

Technical Advantages and Frequency Capabilities

A standout feature of the NewTEN design is its radio frequency (RF) integration strategy. The system allows the RF feed to remain fixed directly to the spacecraft bus. This engineering approach effectively simplifies complex RF routing, streamlines overall spacecraft integration, and optimizes thermal dissipation. Operating seamlessly across X through Q/V-bands, the antenna delivers exceptional throughput and pointing access for small satellites where spatial and thermal margins are exceptionally tight. Gregg Freebury, founder and CEO of Tendeg, emphasized that the technology frees mission planners from choosing between limited pointing access and overly complicated custom solutions.

Scaling Manufacturing for National Security and Commercial Needs

Beyond its technical specifications, the introduction of NewTEN aligns with Tendeg's broader strategic investments in high-rate manufacturing capabilities. Operating from its advanced facility in Louisville, Colorado, Tendeg designs and delivers deployable structures and precision flight hardware supporting commercial, civil, and national security missions. By optimizing the NewTEN platform for repeatable, high-volume production, the company is positioning itself to supply critical infrastructure for the next generation of resilient space-based architectures and military communication networks.

Bu haber, Ajans Savunma editoryal standartları çerçevesinde Yapay Zeka destekli algoritmalar tarafından orijinal kaynaktaki teknik verilere sadık kalınarak yeniden derlenmiştir. Orijinal Kaynak: SpaceNews

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Haber Kaynağı: SpaceNews

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