Systems Engineer III - MSAD

Voyager — Folsom, CA, USA

Apply on employer website
Voyager is an innovative space, defense, and national security technology company committed to advancing and delivering transformative, mission-critical solutions. We tackle the most complex challenges to unlock new frontiers for human progress, fortify national security, and protect critical assets to lead in the race for technological and operational superiority from ground to space. ; ; Forge the Future: Join Voyager Technologies ; ; The future belongs to those who build it. At Voyager Technologies, we’re building technologies that protect lives, expand frontiers and prepare us for what’s next. And we’re doing that with people who are wired to solve, build, adapt and lead. These roles are not for the faint of heart.  ; ; You’ll help lay the foundation for humanity's future. Join a culture where innovation thrives, curiosity is rewarded, and impact is real. We’re a company of doers, thinkers and builders, united by purpose and grounded in reality. ; ; If you want to put your skills to work where the stakes The Systems Engineer III – MSAD is responsible for contributing to the design, development, and analysis of modeling, simulation, and control systems supporting propulsion and aerospace systems. The role supports program execution through modeling, algorithm development, system-level performance assessments, and multidisciplinary collaboration, with increasing technical independence and ownership under the guidance of senior engineers. The position reports to the Engineering Department Manager and is part of the Strategic Systems department based in Folsom, CA. This role is hybrid and is located in Folsom, CA. In this role, the essential functions are: Develop models and control algorithms for propulsion, flight control, and guidance subsystems. Support development of system simulation architectures for design iteration, verification, and validation. Perform dynamic system studies and data analysis to assess system behavior, validate models against test data, and improve simulation fidelity and reliability. Support control system topology definition, gain-tuning methodologies, and model anchoring techniques. Contribute to program performance engineering through requirement derivation, margin analysis, performance trade studies, and Monte Carlo, sensitivity, and parametric analyses. Apply physics-based modeling to mechanical, thermal, and aerodynamic subsystems and support modeling and simulation planning for new programs and R&D initi..




Looking for a job?

Visit Careersaas to find millions of new and unfilled roles, including thousands of remote and hybrid positions.