Spacecraft GNC Integration & Test Engineer

Posted 2 Days Ago
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Rockville, MD, USA
In-Office
130K-180K Annually
Senior level
Aerospace
The Role
Leads spacecraft Guidance, Navigation, and Control subsystem integration, verification, validation, hardware characterization, calibration, and flight acceptance. Develops and automates test procedures, operates HITL and simulation environments, integrates sensors, actuators, avionics, propulsion, and flight software, and resolves anomalies. Correlates simulations with test data, performs Monte Carlo and mission-level analyses, analyzes telemetry, supports requirements closure, and collaborates with multidisciplinary teams to deliver flight-ready spacecraft.
Summary Generated by Built In

Who We're Looking For 

Quantum Space is redefining mobility and maneuverability in space. Our high-mobility spacecraft platforms support national security, civil, and commercial missions with unmatched flexibility and propulsion capability. We build fast and iterate quickly. 

We are seeking a Spacecraft GNC Integration & Test Engineer to lead integration, verification, validation, and hardware testing of the Guidance, Navigation & Control subsystem. In this role, you will own GNC hardware integration, anomaly resolution, and subsystem verification from component integration through flight acceptance. The ideal candidate thrives in a fast-paced environment and enjoys working where simulation meets flight hardware. 

Where You'll Make an Impact 

  • Own integration, verification, validation, and flight acceptance of the spacecraft Guidance, Navigation & Control (GNC) subsystem from engineering development through spacecraft delivery. 
  • Develop, document, execute, and automate GNC verification procedures supporting subsystem, system, qualification, acceptance, and environmental testing. 
  • Plan and execute GNC hardware characterization and calibration activities, including inertial sensor characterization (Allan variance, bias instability, and angular random walk), sensor alignment, timing synchronization and phasing, and spacecraft magnetic characterization campaigns. 
  • Develop and operate Hardware-in-the-Loop (HITL), Software-in-the-Loop (SIL), FlatSat, and closed-loop simulation environments to verify flight software and spacecraft behavior. 
  • Integrate and validate spacecraft sensors, actuators, avionics, propulsion, and flight software while troubleshooting hardware, software, and system-level anomalies. 
  • Correlate high-fidelity simulation results with hardware test data to validate GNC algorithms, dynamic models, estimation performance, and control system behavior. 
  • Perform Monte Carlo analyses and mission-level performance assessments to verify spacecraft operating modes, robustness, and requirements compliance across expected uncertainties and disturbances. 
  • Analyze spacecraft telemetry and test data to identify root cause, recommend corrective actions, and improve GNC subsystem performance throughout integration, environmental test, and flight operations. 
  • Develop verification evidence supporting requirements closure and participate in technical reviews. 
  • Collaborate closely with systems, flight software, avionics, propulsion, mission design, and mission operations teams to deliver a fully verified and flight-ready spacecraft. 

What It Takes 

  • B.S. or M.S. in Aerospace Engineering, Mechanical Engineering, Electrical Engineering, Robotics, or related field. 
  • 3–8+ years of experience in spacecraft or high-reliability GNC development. 
  • Strong foundation in rigid-body dynamics, and classical/modern control theory. 
  • Experience with sensor fusion for spacecraft-relevant sensors (IMUs, star trackers, sun sensors, GNSS, ranging sensors). 
  • Experience developing, documenting, executing, and following formal test procedures and verification plans 
  • Hands-on experience testing attitude control system hardware and ability to troubleshoot issues encountered during integration and test activities 
  • Strong analytical and problem-solving skills with the ability to interpret technical data and recommend corrective actions 
  • Experience collaborating within multidisciplinary engineering teams, with strong verbal and written communication skills to effectively communicate technical issues and risks. 
  • Proficiency with engineering analysis and simulation tools such as C++, MATLAB/Simulink, Python. 
  • Experience conducting Monte Carlo analyses to verify spacecraft operating modes, mission performance, and system robustness under varying conditions and uncertainties. 
  • Ability to operate in a fast-paced, hardware-integrated environment with shifting priorities. 

Nice-to-Have Experience 

  • Hands-on experience with testbeds, HITL environments, or closed-loop simulation frameworks. 
  • Experience supporting spacecraft integration, verification, validation, and environmental testing 
  • Experience with requirements verification and validation using systems engineering processes. 
  • Knowledge of aerospace industry standards and best practices for spacecraft testing and verification. 
  • Experience with RPO, proximity operations, autonomous maneuver planning, or high-ΔV vehicle dynamics. 
  • Familiarity with MAX FSW and MAX GDS or other modern COTS flight software environments. 
  • Experience with EKF variants, covariance analysis, or nonlinear control approaches. 
  • Background with thruster-based ACS, high-agility control architectures, or propulsion-coupled dynamics. 
  • Experience analyzing 6DOF models incorporating propellant slosh and flexible-body dynamics. 
  • Experience with fault management logic, safing modes, and on-orbit anomaly investigation. 
  • Prior experience working in fast-paced startups or NewSpace organizations. 

What You'll Get 

  • Ownership – Build and validate the GNC capability that defines how our spacecraft maneuver, point, and operate autonomously. 
  • Innovation – Shape next-generation GNC architectures, algorithms, and tools for high-agility missions. 
  • Impact – Directly influence spacecraft controllability, autonomy, and mission success across cislunar and GEO operations. 
  • Growth – Collaborate across avionics, FSW, systems, and mission ops, with opportunities to expand into dynamics modeling, autonomy, or flight operations. 
  • Compensation – Competitive salary, equity, and comprehensive benefits including medical, dental, vision, generous leave, HSA, 401(k) matching, and equity participation. 

Location: Rockville, MD

Base Salary: $130,000 - $180,000

The salary range for this role is determined based on a variety of factors including work experience, education, technical expertise, certifications, critical skills, and business considerations. Highly competitive equity grants are included in the majority of full-time offers and are considered part of Quantum Space's total compensation package. 

Additional Requirements 

To comply with U.S. Government space technology export regulations, including ITAR, applicants must be a U.S. citizen, lawful permanent resident, protected individual under 8 U.S.C. §1324b(a)(3), or otherwise eligible to obtain the required authorizations from the U.S. Department of State. 

Apply now. Join us in building the next generation of spacecraft. 

Skills Required

  • B.S. or M.S. degree in Aerospace Engineering, Mechanical Engineering, Electrical Engineering, Robotics, or a related field
  • 3-8+ years of experience in spacecraft or high-reliability Guidance, Navigation, and Control development
  • Strong foundation in rigid-body dynamics and classical or modern control theory
  • Experience with spacecraft sensor fusion, including IMUs, star trackers, sun sensors, GNSS, or ranging sensors
  • Experience developing, documenting, executing, and following formal test procedures and verification plans
  • Hands-on experience testing attitude control system hardware and troubleshooting integration and test issues
  • Strong analytical and problem-solving skills, including technical data interpretation and corrective-action recommendations
  • Experience collaborating within multidisciplinary engineering teams and communicating technical issues and risks effectively
  • Proficiency with C++, MATLAB or Simulink, and Python
  • Experience conducting Monte Carlo analyses for spacecraft operating modes, mission performance, and system robustness
  • Hands-on experience with testbeds, HITL environments, or closed-loop simulation frameworks
  • Experience supporting spacecraft integration, verification, validation, and environmental testing
  • Experience with requirements verification and validation using systems engineering processes
  • Knowledge of aerospace industry standards and best practices for spacecraft testing and verification
  • Experience with RPO, proximity operations, autonomous maneuver planning, or high-delta-V vehicle dynamics
  • Familiarity with MAX FSW, MAX GDS, or other modern commercial flight software environments
  • Experience with EKF variants, covariance analysis, or nonlinear control approaches
  • Background with thruster-based attitude control systems, high-agility control architectures, or propulsion-coupled dynamics
  • Experience analyzing six-degree-of-freedom models with propellant slosh and flexible-body dynamics
  • Experience with fault management logic, safing modes, and on-orbit anomaly investigation
  • Prior experience at fast-paced startups or NewSpace organizations
  • Must be a U.S. citizen, lawful permanent resident, protected individual, or otherwise eligible to obtain required U.S. Department of State authorizations under ITAR regulations
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The Company
HQ: Rockville, MD
25 Employees

What We Do

Quantum Space was founded to advance human’s journey to the stars by architecting the space superhighway. The company envisions transforming space commerce beyond Earth orbit by providing the space infrastructure required to travel through and operate in deep space more safely, reliably, affordably, and routinely.

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