Context · UKDI · UK
From Startup to Space: Oxford Space Systems' Journey to Oberon
UK Defence Innovation (incl. former DASA) · published 27 Jan 2026 · auto-extracted, not yet reviewed · Source ↗
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Summary
How DASA funding and Dstl support helped transform a deployable antenna concept into critical UK defence space capability. DASA funding and Dstl support enabled Oxford Space Systems to develop from concept to a flight-ready deployable wrapped rib antenna technology demonstrator DASA’s Defence Innovation Loans helped fund the essential development step of a first in-orbit demonstration Team expansi
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How DASA funding and Dstl support helped transform a deployable antenna concept into critical UK defence space capability. DASA funding and Dstl support enabled Oxford Space Systems to develop from concept to a flight-ready deployable wrapped rib antenna technology demonstrator DASA’s Defence Innovation Loans helped fund the essential development step of a first in-orbit demonstration Team expansion from 50 to more than 100 engineers and technologists has enabled major contract wins including the Oberon mission and international export deals Reached a major milestone in 2025 with their selection for the Oberon project Mission Critical Innovation In the vastness of space, a miniaturised satellite about the size of a domestic washing machine unfurls a dish antenna with millimetre precision while delivering a 16-fold increase in area. Within seconds, this compact satellite package transforms into a sophisticated synthetic aperture radar (SAR) that can take detailed, high-resolution pictures of Earth from space. This breakthrough represents Oxford Space Systems’ revolutionary approach to space technology. Enabled by the Defence and Security Accelerator’s (DASA) strategic investment and technical expertise from the Defence Science and Technology Laboratory (Dstl), the innovative technology offers not just technical advancement, but also significant economic and strategic value. Traditional SAR missions often need platforms that are around the size of a double-decker bus and can cost tens or even hundreds of millions of pounds to launch. In contrast, Oxford Space Systems’ deployable antenna technology enables the same capability on smaller platforms that cost just a fraction of that, potentially allowing multiple satellites to work together to provide better coverage and more regular updates to boost space capabilities. Oxford Space Systems Founded in 2013 at Harwell Campus, Oxford Space Systems began with a unique challenge to the market: why launch massive, expensive spacecraft when you could pack large antenna capabilities into small, affordable platforms? “We specialise in taking antenna technology that would normally only fly on car-sized spacecraft and putting it onto something the size of a domestic appliance,” explains Chris Bee, Business Development Director at Oxford Space Systems. “By bringing down launch costs and enabling constellation approaches, we’re completely changing how defence organisations think about space capabilities.” The company’s unique approach combines traditional space engineering while also drawing on expertise from unexpected sectors such as Formula One engineering and textiles, to create antennas that deploy using stored spring energy rather than complex mechanical systems. Wrapped Rib Antenna Demonstrator From Concept to Reality Through DASA Funding DASA’s investment in Oxford Space Systems developed through multiple phases, with each stage building upon previous achievements to evolve the concept into operational capability, supported throughout by Dstl technical partners. Oxford Space Systems first secured DASA funding to develop the parabolic antenna technology in 2019, providing crucial early-stage funding when the company was still refining the core concept. This initial investment enabled the team to develop their signature wrapped rib antenna manufacturing processes and establish in-house mesh knitting capabilities, while further investment in 2022 and 2023 secured the flight jointly with Surrey Satellite Technology Ltd (SSTL), based in Guildford. A parallel DASA funded project that same year focused on enabling reductions in satellite size, mass, power and cost through a different technology to deploy pillar-like helical antennas designed to generate narrow communication beams, demonstrating DASA’s comprehensive approach to supporting the company’s technological development across multiple space technology solutions. A lot of the early stage of the company was about taking this concept for the wrapped rib antenna, derisking the technology and developing it into real hardware,” notes Chris Bee. “DASA funding really enabled us to refine the design and build processes critical to this antenna’s viability as a product. Using experience gained in subsystem testing, including thermal vacuum to simulate space, at the company’s own facilities, these initial projects culminated in an engineering model that demonstrated the feasibility of large deployable antennas for defence applications, at the full antenna level with sophisticated RF tests to confirm performance. Wrapped Rib Antenna Demonstrator Proving the Technology: Defence Innovation Loans Building on this solid foundation, subsequent DASA funding in 2022 & 2023 through the DASA Defence Innovation Loans scheme supported the crucial next step: getting the antenna hardware into space. The loan enabled Oxford Space Systems to develop and launch their first in-orbit demonstration – a critical milestone in an industry where credibility depends on space launch experience. The flight unit has passed its rigorous test programme, including vibration testing to simulate launch conditions, and been delivered to SSTL who will shortly ship to SpaceX in the United States for launch. The achievement provided the foundation for follow-on projects, including funding for terrestrial applications in dismounted soldier satellite communications which was secured through the Defence Technology Exploitation Programme (DTEP). This project aims to address the operational need to reduce the Satellite Communications (SatCom) equipment weight burden on the war fighter and demonstrate that commercial SatCom can be used effectively to communicate securely, with significantly higher data rates and capacity than is currently possible. The Oberon Success Story Oxford Space Systems’ journey reached a huge milestone in 2025 with their selection for the Oberon project, which aims to launch a demonstrator for an operational high-resoluti
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Source: https://www.gov.uk/government/case-studies/from-startup-to-space-oxford-space-systems-journey-to-oberon — summarised by Rearm Radar; verify details at source before bidding. Enrichment: heuristic (confidence 40%).