Redwire is a significant organization in the space industry. Detailed historical information will be added soon.
This page is under development. Please check back for comprehensive history, mission details, and achievements.
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Redwire is a significant organization in the space industry. Detailed historical information will be added soon.
This page is under development. Please check back for comprehensive history, mission details, and achievements.
Edge Aerospace has entered into a licensing agreement with Redwire to manufacture data processing units and network switches, aiming to accelerate the delivery of space-qualified computing products and support its growing US customer base. This partnership will enable the domestic production of high-performance computing systems for intelligent spacecraft.
Redwire subsidiary SpaceMD has signed an agreement with SpaceX to fly a dedicated microgravity research mission on the Starfall reentry vehicle, marking the largest commercial microgravity research mission to date. The mission, scheduled for late 2028, will carry up to 32 experiment packages and focus on pharmaceutical research in a highly tailorable microgravity environment.
The US Space Force has awarded a contract worth up to $981 million to 15 companies for the development of a space training range, which will be used to simulate threats against US satellites and practice responding to them. This contract will support the creation of the National Space Test and Training Complex, enhancing the Space Force's capabilities in space warfare training.
Redwire has been awarded a $12.8 million contract to deliver Extensible Low-Profile Solar Array (ELSA) wings for Moog"s Meteor satellite bus, providing a significant boost in power generation capabilities. This contract highlights the ongoing demand for efficient and compact solar array technologies in the aerospace industry.
Redwire has unveiled a new solar array product called ELSA, designed to provide high performance while minimizing mass for mass-produced satellites, offering 50% more power per unit of volume than existing arrays. This development has significant implications for the aerospace industry, particularly in the context of increasing demand for efficient and cost-effective satellite technology.