Key Responsibilities:
- End-to-End Program Ownership: Lead system design reviews (CDR/PDR), subsystem qualification, site commissioning, and risk mitigation across multi-year fusion hardware projects.
- Cabled HTS Design: Specify and optimize high-current cabled HTS conductors, managing thermomechanical stresses, high-field Lorentz forces, and thermal quench propagation.
- Large-scale manufacturing: Specify and review designs in the 1-10m range and in the 10-100 Tonne range.
- Electro-Mechanical Integration: Direct coupling between high-current electrical power leads, quench detection systems, cryogenic cooling interfaces, and structural mechanical supports.
- Vendor & Lifecycle Management: Oversee technical deliverables for HTS tape/cable vendors, manufacturing facilities, and integration test platforms.
Core Competencies & Requirements:
- Superconducting Systems: Proven track record design and delivery of high-field (10T+) HTS cabled magnets or low-temperature (LTS) Cable-in-Conduit Conductors (CICC) for fusion applications.
- Program Execution: Demonstrated ownership of major lifecycle milestones in complex megaprojects (e.g., W7x, JT60SA, KSTAR, ITER -scale setups, or commercial fusion ventures) with budget ownership $10M - $50M.
- Failure Analysis & Test Operations: Hands-on leadership of full-scale magnet testing, cryogenic qualification (4.2K–20K), and post-test forensics.
- Start-up experience: Has dealt with the demands of a fast-growing start-up.
- Large-scale magnet manufacturing experience: Demonstrated experience with dealing with the challenges of forgings, composite insulation, solder potting in the 1-10m length scale and aware of the challenges.
- Applied Superconductivity: REBCO 2G-HTS tape mechanics, strain limitations, current distribution, AC losses, and tape-to-cable joint architecture.
- Multiphysics Engineering: FEA modeling coupling electromagnetic forces (Lorentz/Maxwell), structural stress analysis, thermal management, and fluid flow (gaseous/supercritical helium).
- Quench Protection & Diagnostics: Active and passive protection systems, voltage tap arrays, fiber-optic temperature sensors, and high-speed dump circuit interfaces.
- Strategic Risk Mitigation: Mastery of FMEA (Failure Mode and Effects Analysis) applied to cryogenic system failures, vacuum loss (loss of vacuum/L VAC), and runaway quench scenarios.
- Systems Engineering: CONOPS, requirements, Interface control documentation (ICD), requirements traceability, and cross-functional leadership spanning electrical and mechanical teams.
- Software Tools: Proficiency with ANSYS, COMSOL, OPERA, MATLAB/Simulink, or custom HTS electrodynamic modeling tools.
- B.S., M.S., or Ph.D. in Electrical Engineering, Mechanical Engineering, Applied Physics, or Nuclear Engineering.
Company Benefits:
- Comprehensive health benefits (e.g. medical/dental/vision)
- Employee equity stock options
- 20 days PTO