Seeker Space Sensors

The Seeker space sensor line is manufactured in Latvia at Redwire’s existing factory for high-volume electro-optical products. The Seeker portfolio includes space-rated cameras, star trackers, and sun sensors and represents a regional source for European spacecraft primes needing greater supply chain resiliency. Seeker leverages decades of flight heritage and is engineered to support Low Earth Orbit (LEO), Geostationary Orbit (GEO), and Cislunar missions.

Seeker Space Cameras

Redwire’s Seeker space cameras are manufactured in the EU and deliver high resolution imagery for demanding missions, building on the heritage of the SpectraCAM and Argus product lines. SeekerCAM is optimized for precision measurement, fiducial tracking, and machine-vision applications supporting Space Situational Awareness (SSA), Rendezvous and Proximity Operations, Optical Navigation, and In-Space Assembly and Manufacturing (ISAM). SeekerEYE features 4K video streaming capabilities to enable real time awareness of critical operations.

Seeker Star Trackers

SeekerTRAC star trackers are manufactured in the EU and deliver accurate, reliable attitude determination in demanding environments. SeekerTRAC is software-reconfigurable in-orbit and supports high update rates with rapid lost-in-space recovery. The design incorporates improved SEU mitigation, enhanced built-in test (BIT), and radiation tolerance. SeekerTRAC also supports object-detection modes, providing access to raw imagery and up to 2,000 image centroids — the fundamental building block for unresolved object detection and tracking algorithms — to enable optical navigation and space situational awareness applications. Standard interfaces support both telemetry and high-rate imaging data, simplifying integration. Designed for a 10-year GEO service life.

Seeker Sun Sensors

SeekerSUN is Redwire’s line of sun sensor products produced in the EU and designed to deliver reliable sun acquisition and attitude awareness across a wide range of spacecraft architectures. Its robust performance supports precise orientation and mission stability in even the most demanding environments.