$ cat jobs/capacitor-manufacturing-engineer-fuse-a86d20090316.json
Capacitor Manufacturing Engineer
ABOUT FUSE We are building one of the most potentially consequential companies of the century. Our mission is to accelerate the world's transition to fusion energy while safeguarding humankind. This is not a normal company. This is not a normal job. We are committed for the long term to win. ABOUT THE ROLE Fuse is establishing a dedicated in-house manufacturing facility for high-voltage pulsed-power capacitors. The program requires production of hundreds of thousands of 40–160 nF, 100 kV double-ended capacitors, previously produced only by a handful of specialized manufacturers worldwide. As the Capacitor Manufacturing Engineer, you'll bring deep hands-on expertise in high-voltage film capacitor fabrication to commission, qualify, and operate this facility from the ground up — a founding engineering role with direct impact on the core pulsed-power infrastructure. CORE RESPONSIBILITIES Facility Setup & Process Engineering - Lead the setup and commissioning of the capacitor manufacturing facility, including procurement and qualification of winding, impregnation, encapsulation, and high-voltage test equipment. - Establish the manufacturing process from raw film through finished, tested capacitor. Film Winding & Dielectric Stack Assembly - Develop and optimize winding parameters for metallized polypropylene (PP) film or film/foil electrode systems for high-voltage, low-inductance pulse applications. - Define winding tension, layer counts, geometry, and metallization strategies to improve performance and service life. Vacuum Impregnation & Encapsulation - Develop and qualify vacuum pressure impregnation (VPI) and encapsulation processes to eliminate voids, suppress partial discharge, and maximize dielectric strength. - Ensure terminal integration and mechanical robustness under repetitive discharge stress. High-Voltage Testing & Quality Control - Establish production acceptance testing, including capacitance, dissipation factor (tan δ), DC hipot, partial discharge, and p