Systems Engineer - Safety & UAS (m/f/d)

  • Stark Defence
  • Swindon, Wiltshire
  • 11/06/2026
Full time Information Technology Telecommunications Testing

Job Description

Your mission

You will be the systems safety lead for a next-generation Unmanned Aerial System (UAS), driving a safety-by-design approach across the entire product lifecycle. This includes ensuring all mechanical, electrical, and software subsystems meet stringent safety requirements. As a Principal / Senior Systems Engineer, you will define the safety-critical architecture and interfaces, manage safety integration and verification activities, and drive system safety validation through rigorous testing, hazard analysis, and compliance reporting.

Responsibilities
  • Serve as the system safety lead for UAS product development and upgrades, owning overall platform safety and coherency from concept through delivery.

  • Work day-to-day within multidisciplinary teams (mechanical, electrical, avionics, software, test) across the full lifecycle of UAS design, integration, test and fielding.

  • Conceptualise and capture system architecture for new platforms and enhancements, producing technical trade studies, safety critical sizing, and system performance assessments.

  • Establish and execute the system safety program, including the development of Preliminary Hazard Analyses (PHA) and System/Subsystem Hazard Assessments (SHA/SSHA).

  • Lead and coordinate Failure Mode and Effects Analysis (FMEA) and Design Failure Mode and Effects Analysis (DFMEA) activities across multidisciplinary teams.

  • Produce layout and system design plans, define Interface Control Documents (ICDs) and enforce interface control processes for mechanical, electrical, and software subsystems.

  • Establish and maintain requirements baselines, including safety requirements, and traceability using industry tools (e.g., IBM DOORS) and MBSE approaches.

  • Implement robust change control processes to manage and assess the impact of all design changes on system safety and compliance.

  • Act as the technical interface between internal teams, suppliers and customers to coordinate payload integration, unique/custom hardware or software interfaces, and ensure on time capability delivery.

  • Manage tactical engineering tasks during development sprints and test campaigns, resolving cross discipline issues and maintaining configuration control.

Qualifications
  • Degree (or equivalent) in Systems, Aerospace, Electrical or a closely related Engineering discipline.

  • Significant industry experience with demonstrable systems engineering and system safety responsibility on UAV/aerospace or equivalent complex, safety critical platforms.

  • Strong practical experience integrating complex systems: power systems, RF/EMC, EO sensors, networking, flight controllers and payload interfaces.

  • Proven track record in requirements capture, compliance analysis, and verification/validation activities; proficient with requirements management tools (IBM DOORS or similar).

  • Demonstrable experience leading and executing safety analyses, including Hazard Assessments (PHA/SHA/SSHA) and FMEA/DFMEA.

  • Familiarity with safety standards (e.g., ARP4754A, ARP4761, DO-178C, DO-254) and the principles of requirements and change control in a regulated environment.

  • Familiarity with MBSE principles, interface control processes and configuration management in regulated environments.

  • Excellent written and verbal communication skills; highly organised and detail oriented.

  • Ability to operate effectively in fast moving, ambiguous environments and to travel within the UK/Europe for testing and integration.

  • A genuine passion for system development, integration and testing and a collaborative, inclusive team approach.

  • Security cleared or eligible to obtain UK defence clearance.

Desirable
  • Prior experience leading Systems Engineering and authoring safety assurance documentation and risk management artefacts.

  • Experience integrating complex/custom payloads for partner or customer use (hardware, electrical and software interfaces).

  • Background in start up or scale up environments where rapid prototyping, iterative testing and pragmatic engineering decisions are typical.