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ADCS Engineer III; Controls), Elytra

Job in Cedar Park, Williamson County, Texas, 78613, USA
Listing for: Firefly Aerospace
Full Time position
Listed on 2026-06-05
Job specializations:
  • Engineering
    Aerospace / Aviation / Avionics, Systems Engineer
Salary/Wage Range or Industry Benchmark: 80000 - 100000 USD Yearly USD 80000.00 100000.00 YEAR
Job Description & How to Apply Below
Position: ADCS Engineer III (Controls), Elytra

Career Opportunities with Firefly Aerospace

Come be a part of the 21 st Century Space Race!

Careers At Firefly Aerospace

Firefly Aerospace is a space and defense technology company that enables our world to launch, land, and operate in space – anywhere, anytime. As the partner of choice for critical space missions, Firefly is the only commercial company to launch a satellite to orbit with 24-hour notice and the only company to achieve a successful Moon landing. Our launch vehicles, lunar landers, and orbital vehicles provide government and commercial customers with full mission services from low Earth orbit to the Moon and beyond.

Headquartered in north Austin, Texas, Firefly is looking for passionate, hardworking innovators to join our team and help fuel our successful trajectory into space.

SUMMARY

As a Senior ADCS Engineer specializing in controls and autonomy at Firefly, you will design and implement advanced control systems and autonomous flight software for operational spacecraft. In this role, you will develop and tune attitude control software, support hardware‑in‑the‑loop testing and system integration, and provide technical leadership while collaborating with multidisciplinary teams. This position combines advanced control theory, real‑time embedded systems development, and hands‑on flight operations support while mentoring junior engineers in a fast‑paced operational environment.

RESPONSIBILITIES
  • Design, analyze, and tune spacecraft attitude control software to ensure accurate pointing across all mission phases
  • Implement control techniques for critical mission phases using reaction wheels, control moment gyros, magnetic torque rods, and thruster systems
  • Develop control systems accounting for complex spacecraft dynamics including structural flex modes, propellant slosh, gimbal dynamics, and control structure interaction
  • Establish technical standards and validation methodologies for control system design, software development, and hardware‑in‑the‑loop testing
  • Conduct stability analysis, sensitivity studies, and performance optimization for control systems under nominal and off‑nominal conditions
  • Support hardware‑in‑the‑loop test campaigns for integrated ADCS systems including control algorithm validation, flight software verification, and system‑level performance testing
  • Drive resolution of complex ADCS challenges requiring deep technical expertise and rapid problem‑solving
  • Provide technical direction on system architecture and serve as subject matter expert for spacecraft control
  • Mentor junior engineers in control theory and flight software development
  • Author technical documentation and analysis reports that communicate ADCS concepts and results to diverse audiences
  • Interface with cross‑discipline teams to integrate control software with spacecraft hardware
  • Serve as an ADCS console operator for spacecraft operations and perform post‑mission analysis to improve spacecraft models
  • Champion continuous improvement initiatives for ADCS processes, tools, and operational efficiency
QUALIFICATIONS
Required
  • Bachelor's degree in aerospace engineering, mechanical engineering, electrical engineering, computer science, or related field
  • 5-10 years of experience in spacecraft ADCS systems with significant depth in attitude control system design or flight software development
  • Advanced knowledge of attitude dynamics and control theory, including rotational dynamics, attitude representations, control moment generation, and stability analysis
  • Strong understanding of classical control theory and frequency domain analysis techniques
  • Expertise in real‑time software development using C++ for mission‑critical applications
  • Experience developing high‑fidelity actuator models and attitude control system testbeds
  • Proficiency in hardware‑in‑the‑loop testing and requirement verification for mission‑critical systems
  • Understanding of software development best practices including version control (Git), code documentation, and testing
  • Excellent communication and presentation skills
  • Master's degree or PhD in aerospace engineering, mechanical engineering, electrical engineering, applied mathematics, or related field
  • Experience architecting and…
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