Director - Electrical Engineering Systems
Listed on 2026-03-10
-
Engineering
Electrical Engineering, Systems Engineer
About Thea Energy:
Thea Energy is leveraging recent breakthroughs in stellarator physics and engineering to create a faster and simpler approach to commercializing fusion energy. The company is reinventing the stellarator using computer-controlled arrays of planar coils thereby replacing the intricate, complex modular magnets required in all other stellarator architectures. Thea Energy is on a mission to create a limitless source of zero emission energy for a sustainable future.
Position Overview:Thea Energy is seeking a Director - Electrical Engineering Systems to lead electrical system design and execution for the Company’s upcoming Eos integrated stellarator. This leader will manage and grow three tightly coupled engineering groups:
- Electrical Distribution (facility and plant electrical architecture and integration)
- Power Electronics (development of high-power converters and HTS magnet power supplies)
- Electronics Systems Engineering (embedded control and instrumentation electronics, including custom PCBAs)
This role will own the end-to-end delivery of electrical systems from architecture and requirements through detailed design, prototyping, vendor engagement, test, installation support, and commissioning readiness. The Director will serve as a key cross-functional partner to systems engineering, controls and software, mechanical engineering, safety, and program management, ensuring electrical designs are buildable, testable, safe, and integrated.
As part of a rapidly growing team, you’ll be part of the organizational build-up of a leading fusion energy company. This role will have a high degree of autonomy and must be able to move quickly. The Thea Energy team is comprised of self-motivated, creative, and fun individuals with an excitement for solving complex problems.
Key Responsibility Areas:- Lead and mentor a multi-disciplinary organization spanning power systems, power electronics, and embedded electronics, including hiring, performance management, career development, and team structure.
- Establish engineering operating rhythm: planning, prioritization, technical reviews, staffing plans, and decision-making processes.
- Set technical direction and ensure consistent engineering quality across requirements, architecture, implementation, verification, and documentation.
- Own the plant-level electrical architecture, including utility interface, substation and distribution design, grounding and protection philosophy, and power quality and reliability strategy.
- Guide system modeling and simulation efforts including load flow, short-circuit, and transient studies, and ensure models remain consistent with evolving load envelopes and operating modes.
- Lead integration strategy for compensation and storage assets such as STATCOM for load shaping, ride-through capability, and power recovery as applicable.
- Own the technical interface to external engineering, procurement, and construction partners and utilities, including technical specifications, design reviews, and factory and site acceptance participation.
- Oversee development of high-power converters and magnet power supplies, including topology selection, protection concepts, thermal strategy, and integration with embedded controls.
- Develop test strategy and execution: prototype bring-up, staged-load validation, failure mode exploration, parameter tuning, and readiness evidence for integration.
- Own hardware architecture for embedded control and instrumentation electronics that interface power conversion hardware, diagnostics, and control firmware.
- Lead electromagnetic compatibility and noise mitigation strategy across boards, cabinets, and system integration boundaries.
- Partner with systems engineering to translate device requirements into electrical requirements, interface definitions, and verification plans.
- Run evidence-based technical gates and design reviews, with clear entry and exit criteria and configuration control.
- Own delivery artifacts such as requirements, interface definitions, design packages, test plans, and acceptance evidence to support procurement, installation, and commissioning.
- Maintain a strong safety culture including electrical safety, hazard…
(If this job is in fact in your jurisdiction, then you may be using a Proxy or VPN to access this site, and to progress further, you should change your connectivity to another mobile device or PC).