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INNOVATION
Use of High temperature superconductor inside the AF_MPD thruster
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Market Maturity: Exploring
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Market Creation Potential
This innovation was assessed by the JRC’s Market Creation Potential indicator framework as having a Very high” level of Market Creation Potential. Only innovations that are showing multiple signals of market creation potential are assigned a value under this indicator system. Learn more
Go to Market needs
Needs that, if addressed, can increase the chances this innovation gets to (or closer to) the market incude:
  • Prepare for Market entry
  • Scale-up market opportunities
Location of Key Innovators developing this innovation
Key Innovators
UN Sustainable Development Goals(SDG)
This innovation contributes to the following SDG(s)
SUSTAINABLE DEVELOPMENT GOAL 7
Ensure access to affordable, reliable, sustainable and modern energy for all

The UN explains: "Energy is central to nearly every major challenge and opportunity the world faces today. Be it for jobs, security, climate change, food production or increasing incomes, access to energy for all is essential.

Transitioning the global economy towards clean and sustainable sources of energy is one of our greatest challenges in the coming decades. Sustainable energy is an opportunity – it transforms lives, economies and the planet."

The EU-funded Research Project
This innovation was developed under the Horizon Europe project SUPREME with an end date of 30/11/2025
  • Read more about this project on CORDIS
Description of Project SUPREME
High-power electric propulsion technology is needed to enable the sustainable realisation of emerging market applications such as On-Orbit Servicing, in-space cloud computing, debris removal and cis-lunar infrastructure. However, relevant technologies, in terms of cost-effectiveness, sustainability, and performance, are not yet available. The commercialisation of new markets requires more scalable and flexible propulsion solutions. Applied-Field Magnetoplasmadynamic (AF-MPD) thrusters are a robust, efficient, and scalable Electric Propulsion technology, especially suited for high-power operations thanks to their high thrust levels and power densities. These benefits have motivated their widespread research since the 1960s. The main development limitations have been the thruster lifetime and flight readiness imposed by the use of conventional copper magnets for generating the applied field. These problems can be overcome with the use of High-Temperature Superconductors (HTS), which can provide the required magnetic field for AF-MPD operation in a compact and lightweight system. Under the leadership of NSS, a start-up commercialising HTS applications in space, SUPREME aims at increasing the flight proficiency of AFMPD by demonstrating the integration of HTS coils and all necessary supporting subsystems in a relevant environment, and the corresponding increase in thruster performance and lifetime. SUPREME also aims to validate the commercialisation potential of the technology by generating a well-defined business model for achieving sustainable revenues and upscaling of production. The consortium is completed by 2 RIs, an innovative SME, and an OEM. On the academic side, both USTUTT and UT are institutes working at the forefront of disruptive R&D in the key areas of EP, space cryogenics, and HTS systems. PEAK represent a key part of the supply chain for propellant tanks, and Airbus’ will contribute as both a supplier and potential first adopter of the technology.

Innnovation Radar's analysis of this innovation is based on data collected on 08/08/2024.
The unique id of this innovation in the European Commission's IT systems is: 125360