About the job
ABOUT US
At Proxima Fusion, we are committed to revolutionizing the landscape of sustainable energy. Our innovative approach, leveraging the pioneering W7-X stellarator and state-of-the-art technological advancements, is setting the stage for commercially viable fusion power facilities.
Additionally, our endeavors in stellarator optimization, fueled by advanced computation and machine learning, are guiding us into new realms of fusion technology. We are unlocking new high-performance design possibilities through high-temperature superconducting magnets.
To seize this remarkable opportunity, we are assembling a team of passionate and dedicated individuals who are eager to drive extraordinary advancements, fundamentally transforming technology on a global scale.
WHY BE A PART OF PROXIMA FUSION?
Tackle some of the most intricate technological challenges to deliver abundant, safe, and clean energy to the world.
Collaborate and learn from a remarkable group of accomplished and motivated professionals.
Contribute to impactful work and enjoy the journey of innovation.
Demonstrate that significant achievements are possible in Europe by uniting top talent.
YOUR ROLE
You will be instrumental in advancing joint and cable technologies within Proxima’s magnet program, focusing on hands-on prototyping, manufacturing, and testing at our facilities located in Villigen and Böttstein.
Your contributions will be vital in the design, creation, and iterative enhancement of joints, cables, and associated components for magnet prototypes and future HTS magnets.
You will work at the intersection of mechanical, electrical, and experimental domains, facilitating rapid prototyping cycles and the integration of components into experimental setups.
KEY RESPONSIBILITIES
Design and develop mechanical and electromechanical components related to joint and busbar systems.
Create and implement early concepts of superconducting cables.
Construct, assemble, and test prototypes in close cooperation with the workshop team.
Aid in the manufacturing and integration of components into magnet prototypes and experimental frameworks.
Refine designs based on testing feedback and performance metrics.
