Sep 23, 2026
Building on development supported by Luxembourg, the new phase with ESA will mature Phoenix’s rendezvous, docking and servicing technologies towards commercial GEO life-extension services.



Luxembourg, 23 September 2026. ClearSpace has signed a contract with the European Space Agency (ESA) for the next phase of Phoenix, its GEO satellite life-extension mission.
Phoenix is being developed to enable a servicing spacecraft to rendezvous with and dock to an operational satellite, providing additional propulsion and attitude-control capability. By taking over functions such as station-keeping and repositioning, Phoenix is designed to help satellite operators extend the useful life and operational value of assets already in orbit, while also supporting responsible end-of-life operations.
The broader Phoenix development programme is currently estimated at approximately €100 million. The newly signed contract supports the next stage of this development, advancing the mission architecture and the core rendezvous, proximity operations, docking and servicing technologies required for future commercial operations. The activity is funded under ESA’s Industrial Competitiveness programme line within the Agency’s Advanced Research in Telecommunications Systems (ARTES) programme.
The agreement marks an important progression for Phoenix, building on the programme’s development done by ClearSpace Luxembourg with the support of the Government of Luxembourg and the Luxembourg Space Agency (LSA).
Luxembourg’s early support enabled ClearSpace and its industrial partners to develop the Phoenix concept, establish its technical foundations and demonstrate the potential of satellite life extension as a future in-orbit service. The new phase under ESA ARTES provides a European framework through which these technologies can be further matured and brought closer to operational and commercial deployment.
At the centre of Phoenix is ClearSpace’s docking system, designed to allow a servicing spacecraft to establish a safe and secure mechanical connection with a satellite already operating in geostationary orbit.
Reliable docking is a critical capability for satellite life extension. Once connected, a servicing spacecraft can provide propulsion and attitude-control support for station-keeping, repositioning and end-of-life operations, opening the possibility of extending the productive lifetime of valuable space assets.
Laurent Jaffart, Director of Resilience, Navigation and Connectivity at ESA said: “ESA is dedicated to helping Europe build the capabilities needed for the next generation of in-orbit services. In cooperation with our Member States and European industry, we’re taking Phoenix to the next level by working to mature the dual-use technologies that will deliver clear benefits for sustainability, resilience, and the competitiveness of Europe’s space industry. Together, we will strengthen our position in this emerging market.”
Luc Piguet, CEO and co-founder of ClearSpace, said: “Phoenix is the result of a shared ambition to make in-orbit servicing a practical and valuable capability for satellite operators. We are deeply grateful to ESA, to Luxembourg and the Luxembourg Space Agency, and to the Member States whose continued commitment to European space capabilities has made this progress possible. Their support has allowed ambitious ideas to be transformed into technologies, missions and increasingly tangible services.
“We are fully committed to the mission: working with ESA, its Member States, our industrial partners and our customers to build a safe, competitive and commercially sustainable European in-orbit servicing capability.”
The next phase of Phoenix will further mature the mission architecture, docking system and associated rendezvous and proximity operations required to deliver GEO life-extension services.
Phoenix forms part of ClearSpace’s growing in-orbit servicing portfolio, spanning inspection, rendezvous and proximity operations, capture, active debris removal and satellite life extension.
About Phoenix
Phoenix is ClearSpace’s programme to develop life-extension services for satellites in geostationary orbit. The mission is designed to rendezvous with and dock to an operational satellite, providing additional propulsion and attitude-control capability to extend its useful life.
Following its initial development with support from Luxembourg, Phoenix is entering its next stage under the European Space Agency’s ARTES programme, advancing the technologies and mission architecture required for commercially viable GEO servicing.
Phoenix is being developed around an adaptable servicing architecture designed to work across different spacecraft platforms and operational scenarios. This flexibility is important to the commercial model: the same core servicing technologies must be capable of addressing a diverse GEO satellite fleet and evolving alongside future spacecraft platforms.
Video: Phoenix approaching and docking its client satellite
About ClearSpace
ClearSpace is an in-orbit services company developing technologies and missions that enable safe, sustainable and economically valuable operations in space.
Its capabilities span inspection, rendezvous and proximity operations, capture, active debris removal and satellite life extension.
ClearSpace was founded in Switzerland and is headquartered in Luxembourg, with teams operating across Europe in Switzerland, the United Kingdom, Luxembourg, Germany and France.
Its missions include ClearSpace-1, ESA's Active Debris Removal mission; PRELUDE, an in-orbit inspection and proximity operations mission; and Phoenix, focused on extending the operational life of satellites in geostationary orbit.
About ESA’s ARTES Industrial Competitiveness programme
The European Space Agency (ESA) is Europe's gateway to space, coordinating the financial and intellectual resources of its Member States to conduct space programmes and activities. The Industrial Competitiveness programme line of ESA's Advanced Research in Telecommunications Systems (ARTES) maintains and improves competitiveness for European and Canadian satellite communications industries. It is designed to support the innovative development of technology, products and systems by reducing costs and time-to-market, as well as the development of sustainable systems from ground to in-orbit validation. Through its two components, ARTES Technology and Growth and ARTES Partnership Projects, this programme enables organisations to transform promising concepts into market-ready solutions, covering the entire development cycle.
Learn more at: resilience.esa.int
ClearSpace Media contact
Hyeonsook Hong Kaiser (She/Her)
media@clearspace.today
+352 28 51 89 28 Luxembourg



