What you'll do
Own the electrical power system architecture for Hypersonica’s high-speed flight vehicles, ensuring generation, conversion, storage, distribution, protection, and monitoring functions operate as a coherent and resilient system.
Define, manage, and maintain power system requirements, ensuring full traceability from mission and vehicle-level needs through subsystem design, verification, and validation.
Develop power-system architectures and performance budgets covering voltage regulation, load management, efficiency, redundancy, thermal constraints, fault tolerance, and mission-critical availability.
Lead the integration of power generation, battery systems, power electronics, energy storage, distribution networks, protection devices, and control systems across vehicle and payload architectures.
Conduct electrical system analyses including load-flow, transient response, fault analysis, protection coordination, power quality, thermal performance, and reliability assessments.
Define and support system-level modelling, simulation, laboratory testing, environmental qualification, and vehicle integration activities, using data-driven analysis to improve performance and mitigate risk.
Produce and maintain critical engineering artefacts including specifications, electrical schematics, interface control documents (ICDs), analysis reports, verification plans, and design review material.
Apply systems engineering and MBSE principles to ensure traceability between requirements, architectures, analyses, verification activities, and flight-test outcomes.
Identify and mitigate system-level risks associated with power availability, thermal loading, EMC performance, reliability, safety, integration complexity, and operational resilience.
Act as a technical authority across electrical power systems, collaborating closely with avionics, controls, software, thermal, mechanical, EMC, and systems engineering teams to deliver robust vehicle capability.
Who you are
An experienced Power Systems Engineer with 8+ years of experience delivering complex electrical power, energy storage, avionics, aerospace, defence, automotive, space, or other mission-critical systems.
Strong background in electrical system architecture, requirements management, systems integration, verification, and validation across the full engineering lifecycle.
Deep understanding of electrical power generation, power conversion, battery systems, energy storage, power distribution, protection systems, and power electronics.
Experienced in electrical analysis including load-flow studies, transient response, fault analysis, protection coordination, power quality, thermal performance, and reliability assessments.
Comfortable designing and integrating high-performance electrical power systems within highly constrained environments where weight, volume, efficiency, and thermal management are critical.
Familiar with systems engineering and MBSE approaches, using structured methods to manage complexity, interfaces, traceability, and technical risk.
Experienced supporting major design reviews, qualification campaigns, integration programmes, and the transition from concept through detailed design and verification.
Technically credible across multiple engineering disciplines, capable of influencing decisions, challenging assumptions, and driving technical direction.
Comfortable operating in ambitious, fast-paced environments where priorities evolve quickly and engineering decisions have significant programme impact.
Motivated by solving difficult engineering problems and delivering technologies that strengthen European sovereign defence capability.
Security and Eligibility Requirement
Due to the nature of the work, applicants must be an EU/Nato/German citizen and be eligible for German Security Clearance.
What we offer
A mission-driven environment with the opportunity to work on one of Europe’s most consequential defence challenges, with direct impact on sovereign capability and security.
Daily collaboration with top experts across engineering, operations, and defence, with real opportunity to learn from the best, contribute, and grow.
High ownership and autonomy; no time tracking, no micromanagement, just clear objectives and accountability for outcomes.
A fast-paced environment where good ideas are implemented quickly, and feedback from testing and operational activities drives real decisions.
A culture that values clarity, integrity, and excellence, and supports people who take initiative and push boundaries responsibly.
Competitive compensation and real share options aligned to responsibility and impact, not tenure or hierarchy.
Skills Required
- 8+ years of experience delivering complex electrical power, energy storage, avionics, aerospace, defence, automotive, space, or other mission-critical systems
- Strong background in electrical system architecture, requirements management, systems integration, verification, and validation across the full engineering lifecycle
- Deep understanding of electrical power generation, power conversion, battery systems, energy storage, power distribution, protection systems, and power electronics
- Experience with load-flow studies, transient response, fault analysis, protection coordination, power quality, thermal performance, and reliability assessments
- Experience designing and integrating high-performance electrical power systems under weight, volume, efficiency, and thermal constraints
- Familiarity with systems engineering and MBSE approaches
- Experience supporting major design reviews, qualification campaigns, integration programs, and transition from concept through detailed design and verification
- Ability to influence technical decisions and drive technical direction across multiple engineering disciplines
- EU, NATO, or German citizenship
- Eligibility for German security clearance
What We Do
Hypersonica is a mission-driven European defense and aerospace company that develops next-generation hypersonic systems for military and civilian applications. Founded in 2023, the company aims to equip European allies with sovereign, cost-effective hypersonic strike capabilities. By utilizing a modular architecture and rapid iteration, they significantly reduce development costs and timelines, focusing on enhancing Europe's defense autonomy and technological independence in a complex global security environment.









