Cryogenics Engineer (f/m/d)

MAGNOTHERM

Darmstadt

Vor Ort

EUR 85.000 - 110.000

Vollzeit

Vor 12 Tagen

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Benefits dieser Stelle

Flexible hours
30 days vacation

Zusammenfassung

MAGNOTHERM builds refrigerant-free magnetocaloric cooling systems. The role focuses on cryogenic thermal design, cryostat specification, and integration of HTS coil-based systems for industrial machines that operate cryogen‑free.

You will own the thermal design, cryostat requirements, cryocooler selection, current leads, and the build‑and‑validate lifecycle from simulation to measured data. Strong emphasis on autonomous ownership and collaboration with manufacturing partners.

Qualifikationen

  • Hands-on cryostat and vacuum‑technology design experience: vessels, MLI, thermal shields, supports, feedthroughs — you’ve designed hardware that got cold and stayed cold.
  • Thermal and structural analysis: FEM (ANSYS or similar) plus first‑principles thermal‑network modelling.
  • Strong CAD and drawing craft (NX, Fusion360, Inventor, or similar): 3D models and drawings for manufacturing.

Aufgaben

  • Build and maintain the thermal-network model of the cold mass, including heat-load budgets and insulation.
  • Design and specify the bespoke cryostat with warm bore and room-temperature regenerator, coordinating RFQ and manufacturer through build and acceptance.
  • Evaluate, select, and qualify cryocoolers and helium compressors, including testing and commissioning.
  • Design and procure current leads with heat leaks and ohmic losses optimization.
  • Assemble and integrate the cryogenic module and validate performance with cold‑mass measurements.
  • Support the high‑field test bench with cryogenics handling and safe cryogenic practices.

Kenntnisse

Cryostat design
Thermal‑structural analysis
CAD (NX/Fusion360/Inventor)
Supplier RFQ management
Cryogenic fluids handling
Autonomous ownership
English & German (C1+)

Tools

ANSYS

Jobbeschreibung

MAGNOTHERM builds refrigerant-free magnetocaloric cooling systems.

Our next-generation STELLAR program replaces permanent magnets with high-temperature superconducting (HTS) coils — and those coils need to live at cryogenic temperature, cryogen-free, inside an industrial machine that ships to customers. You own that cold world end to end: the thermal design, the cryostat specification and its manufacturer, the cryocooler selection, the current leads, the build, and the validation campaign that measures the physics the whole program depends on. From simulation to measured data.

What you'll own:
  • Cryogenic thermal design & simulation. Build and maintain the thermal-network model of the cold mass: heat-load budgets across the cold and shield stages, multi-layer insulation (MLI) and radiation shielding, conduction through supports and feedthroughs, and AC loss — the heat the cycling magnetic field induces in the superconductor — from the moving magnetocaloric regenerator, and optimization of the hybrid current leads. Your model is the design authority for everything below room temperature.
  • Cryostat design & manufacturer interface. Design and specify our bespoke cryostat — vacuum vessel, MLI, thermal shield, cold-mass supports — with a first-of-its-kind twist: a warm bore with a room-temperature regenerator moving through it. You write the specification, run the RFQ, coordinate the cryostat manufacturer through build and first-article acceptance. This is a long-lead item on the program’s critical chain; you drive it.
  • Cold head & compressor. Evaluate, select, and qualify cryocoolers and their helium compressors: manufacturer evaluation, test purchases, commissioning, and duration testing.
  • Current leads. Design and procure current leads feeding the coils — the classic heat-leak‑vs‑ohmic-loss optimization, yours to solve.
  • Build, integration & validation. Assemble and integrate the cryogenic module: vacuum leak‑checking, pump‑down iteration, cooldown, steady‑state heat‑load measurement — and the AC‑loss‑under‑cycling measurement. The data you produce baselines the design of the full‑scale machine.
  • Research‑bench cryo operations. Support our high‑field test bench as its cryogenics hand: helium handling, vacuum systems, cryostat operations, and safe cryogenic work practices across the lab.
Startdate

From 01.10.2026 onwards.

What you will be doing here

MAGNOTHERM builds refrigerant-free magnetocaloric cooling systems.

Our next-generation STELLAR program replaces permanent magnets with high-temperature superconducting (HTS) coils — and those coils need to live at cryogenic temperature, cryogen-free, inside an industrial machine that ships to customers. You own that cold world end to end: the thermal design, the cryostat specification and its manufacturer, the cryocooler selection, the current leads, the build, and the validation campaign that measures the physics the whole program depends on. From simulation to measured data.

What you'll own:

  • Cryogenic thermal design & simulation. Build and maintain the thermal‑network model of the cold mass: heat‑load budgets across the cold and shield stages, multi‑layer insulation (MLI) and radiation shielding, conduction through supports and feedthroughs, and AC loss — the heat the cycling magnetic field induces in the superconductor — from the moving magnetocaloric regenerator, and optimization of the hybrid current leads. Your model is the design authority for everything below room temperature.
  • Cryostat design & manufacturer interface. Design and specify our bespoke cryostat — vacuum vessel, MLI, thermal shield, cold‑mass supports — with a first‑of‑its‑kind twist: a warm bore with a room‑temperature regenerator moving through it. You write the specification, run the RFQ, coordinate the cryostat manufacturer through build and first‑article acceptance. This is a long‑lead item on the program’s critical chain; you drive it.
  • Cold head & compressor. Evaluate, select, and qualify cryocoolers and their helium compressors: manufacturer evaluation, test purchases, commissioning, and duration testing.
  • Current leads. Design and procure current leads feeding the coils — the classic heat‑leak‑vs‑ohmic‑loss optimization, yours to solve.
  • Build, integration & validation. Assemble and integrate the cryogenic module: vacuum leak‑checking, pump‑down iteration, cooldown, steady‑state heat‑load measurement — and the AC‑loss‑under‑cycling measurement. The data you produce baselines the design of the full‑scale machine.
  • Research‑bench cryo operations. Support our high‑field test bench as its cryogenics hand: helium handling, vacuum systems, cryostat operations, and safe cryogenic work practices across the lab.
What you would ideally bring to the table
Must‑have skills & experience
  • Hands‑on cryostat and vacuum‑technology design experience: vessels, MLI, thermal shields, supports, feedthroughs — you’ve designed hardware that got cold and stayed cold.
  • Thermal and structural analysis: FEM (ANSYS or similar) plus first‑principles thermal‑network modelling; you can defend a heat‑load budget line by line.
  • Strong CAD and drawing craft (NX, Fusion360, Inventor, or similar): 3D models, manufacturing drawings, and technical documentation that a workshop can build from.
  • Supplier and manufacturing interface: writing specifications and RFQs, coordinating contractors, and designing for what a manufacturer can actually make.
  • Practical experience with cryogenic fluids (LN2, LHe, and/or LH2) and the safety culture that goes with them.
  • Working style: autonomous ownership of a full module, pragmatic build‑test‑iterate mindset, clear documentation.
  • English language skills (C1+), German language skills (C1+).
Nice to have
  • Cryocooler integration experience — Gifford‑McMahon (GM) or pulse‑tube cold heads, helium compressors, cryogen‑free (dry) systems.
  • Exposure to superconducting magnet systems: HTS/REBCO coils, quench considerations, current leads, cold‑mass mechanics.
  • Process simulation and liquefaction‑cycle background.
  • Scripting for analysis and automation (Python, C++).
  • FEM for convection and shield design.
  • Pressure‑equipment and relief‑device experience for cryogenic service (safety valves).
What makes this role unusual
  • Simulation, specification, procurement, build, and the validation measurement are a single scope — you see your own model confirmed (or corrected) by your own data.
  • First‑of‑kind hardware: a warm‑bore cryostat with a moving room‑temperature regenerator inside exists in no catalogue; you design it with the manufacturer.
  • Dry by design: the product is cryogen‑free — liquid helium stays in the research lab, so what you build is industrial cooling hardware, not lab apparatus.
What you will get from the job
  • Flexible hours and 30 days of vacation.
  • Compensation aligned with startup standards, with room to grow as the company scales.
  • A team that's sharp, interdisciplinary, and doesn't take itself too seriously.
  • The chance to pioneer technology that actually helps the planet.
  • Ownership, responsibility, and a culture where learning from mistakes is expected.
  • A front‑row seat as a deep‑tech company scales.
  • Memes. Good ones. And lots of them.
About us

We believe in science; we believe in facts. Climate change is speeding up more than ever and we need to do something about it. We are convinced that we need better technologies to overcome this tremendous challenge – or more precisely: this tremendous threat to humanity. We are on a mission to decarbonize the refrigeration industry and reduce its contribution of 7% to global greenhouse gas emissions.

Support us in making our vision a reality – join us!

We are material scientists, chemists, physicists, a lot of engineers as well as product and graphic designers. We are an agile team of bright minds with diverse and international backgrounds. We love hanging out together, we argue about new technologies, politics, the best sport, and food trends. Basically, we are human.

MAGNOTHERMis an equal opportunity employer. We embrace diversity and are committed to creating an inclusive environment for all employees. We are open to all groups of people without regard to age, color, national origin, religion, gender, sex, sexual orientation, gender identity and/or expression, marital status, or any other legally protected characteristics.

Do I need to meet all the requirements to apply?

Studiesby several different sources have shown that, on average, men will apply for a job if they meet 60% of the application requirements. In contrast, women/non-binary people will seek to match a much higher percentage of the requirements before applying. We encourage everyone to apply and give us a chance to evaluate your skills and experience. We are all learning on the job, and although the listing above has been carefully compiled, we are also open‑minded and interested to hear about the value you can bring to the role and MAGNOTHERM.

How can I demonstrate that I have particular needs in the application process?

For people living with disabilities, chronic illnesses, or neurodiversity, adjustments and support can make a decisive difference in the application process. If you need any specific accommodations (tools, time, etc.) and feel comfortable disclosing this, please let us know.

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