1

Avionics Software Jobs in Washington (NOW HIRING)

You will operate as a program technical lead, driving requirements, interfaces, design maturity, and verification across propulsion, structures, avionics, software, and mission operations. We are ...

Spacecraft Systems Engineer

Rockville, MD ยท On-site

$110K - $220K/yr

You will operate as a program technical lead, driving requirements, interfaces, design maturity, and verification across propulsion, structures, avionics, software, and mission operations. We are ...

next page

Showing results 1-20

Avionics Software information

What are the key skills and qualifications needed to thrive as an Avionics Software Engineer, and why are they important?

To thrive as an Avionics Software Engineer, you need strong programming skills (such as C/C++), a solid understanding of avionics systems, and typically a degree in computer science, electrical engineering, or a related field. Familiarity with real-time operating systems (RTOS), industry standards like DO-178C, and version control systems is commonly required, along with certifications in safety-critical software development. Attention to detail, problem-solving abilities, and effective teamwork are essential soft skills in this role. These skills are crucial to ensure the reliability, safety, and regulatory compliance of software that controls critical aircraft systems.

What are avionics software engineers?

Avionics software engineers are professionals who design, develop, test, and maintain the software systems used in aircraft and spacecraft. Their work ensures that navigation, communication, flight control, and other critical systems operate reliably and safely. They collaborate with hardware engineers and comply with strict industry regulations to guarantee the performance and safety of avionics systems. Avionics software engineers often use specialized programming languages and tools tailored to the aerospace industry.

What are some common challenges faced in an Avionics Software role, and how can they be addressed?

Avionics Software professionals often encounter challenges such as strict regulatory compliance, real-time system constraints, and ensuring the safety and reliability of their code. Working within rigorous development and testing processes, including DO-178C guidelines, can be demanding but is essential for aircraft certification. Collaborating closely with hardware engineers and systems teams helps to address integration issues early. Staying organized, maintaining clear documentation, and participating in code reviews are all crucial strategies for overcoming these challenges and ensuring project success.

What is the difference between Avionics Software vs Avionics Hardware Technician?

AspectAvionics SoftwareAvionics Hardware Technician
CredentialsTypically requires a degree in software engineering, computer science, or related field; certifications like FAA Part 147 may be beneficialRequires technical diploma or associate degree; certifications such as FAA Airframe & Powerplant (A&P) are common
Work EnvironmentDesigning, developing, testing software systems in labs or office settingsMaintaining, repairing, installing hardware components in aircraft or maintenance facilities
Industry UsageFocuses on software development for avionics systems used in aircraftHandles physical hardware components used in avionics systems

In summary, Avionics Software professionals develop and test the software that controls aircraft systems, while Avionics Hardware Technicians focus on maintaining and repairing the physical hardware components. Both roles are essential in the avionics industry and often collaborate to ensure aircraft safety and functionality.

What cities in Washington are hiring for Avionics Software jobs? Cities in Washington with the most Avionics Software job openings:
Infographic showing various Avionics Software job openings in Washington as of June 2026, with employment types broken down into 100% Full Time. Highlights an 75% In-person, and 25% Hybrid job distribution.

Electrical Engineer III - Spacecraft Programs (Avionics)

Quantum Space

Rockville, MD โ€ข On-site

Full-time

Medical, Dental, Vision, Retirement

Posted 15 days ago


Job description

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 motivated and technically capable Electrical Engineer to support the design, development, integration, and testing of spacecraft electrical systems and defense-related space technologies. In this role, you will contribute to spacecraft avionics, communications, power systems, embedded electronics, and hardware integration activities while collaborating closely with multidisciplinary engineering teams. You will work hands-on with cutting-edge aerospace hardware in a fast-paced environment supporting national security and spaceflight missions.
We are seeking an Electrical Engineer III - Spacecraft Programs (Avionics) to lead avionics subsystem development for Ranger spacecraft programs. This role is intended for an experienced spacecraft avionics engineer capable of driving subsystem architecture, requirements definition, interface coordination, integration planning, and hardware execution across complex multidisciplinary spacecraft programs.
You will work closely with propulsion, power, RF communications, flight software, GNC, payload, mechanical, thermal, and systems engineering teams to develop and integrate highly reliable avionics architectures supporting long-duration, high-mobility spacecraft missions.
Where You'll Make an Impact
Lead spacecraft avionics subsystem development across Ranger spacecraft programs from early architecture through integration and flight readiness
Derive avionics subsystem requirements from spacecraft- and mission-level requirements and ensure traceability throughout development
Author and maintain spacecraft-level Electrical Interface Control Documents (EICDs) and coordinate subsystem ICD development across multidisciplinary engineering teams
Define and manage spacecraft electrical interfaces across avionics, power, propulsion, RF communications, GNC, payload, and flight software subsystems
Drive resolution of technical integration issues across subsystem boundaries while maintaining vehicle-level electrical compatibility and operational integrity
Perform make-versus-buy trades supporting avionics hardware architecture and procurement decisions
Support management of avionics hardware development schedules, vendor coordination, hardware deliveries, and subsystem integration milestones
Author spacecraft avionics integration and test (I&T) plans supporting subsystem validation, vehicle integration, environmental testing, and flight readiness
Support spacecraft assembly, integration, environmental testing, and launch campaign activities
Collaborate with multidisciplinary teams to ensure avionics architectures support mission reliability, redundancy, manufacturability, and operational objectives
Participate in major spacecraft design reviews including SRR, PDR, CDR, TRR, and FRR activities
Support anomaly investigation, troubleshooting, and root-cause analysis efforts across spacecraft avionics systems
What It Takes
B.S. in Electrical Engineering or related technical field
7+ years of experience developing and integrating spacecraft avionics subsystems
Experience deriving spacecraft avionics subsystem requirements and interface definitions
Experience authoring spacecraft-level EICDs and coordinating subsystem ICDs across multidisciplinary engineering teams
Strong understanding of spacecraft electrical interface requirements and subsystem interactions
Knowledge of common spacecraft communication interfaces including RS-422/485, LVDS, SpaceWire, Gigabit Ethernet, Discrete IO, and related protocols
Strong systems-level awareness across spacecraft avionics, power, communications, software, and payload integration domains
Experience supporting subsystem integration, debugging, and technical issue resolution activities
Strong organizational, technical communication, and cross-functional coordination skills
Comfortable operating in fast-paced spacecraft development environments with high ownership and execution expectations
Nice-to-Have Experience
M.S. in Electrical Engineering or related technical field
Experience working across multiple spacecraft subsystems including propulsion, RF communications, GNC, payloads, and electrical power systems
Experience supporting spacecraft AI&T activities including vehicle-level and component-level environmental testing
Experience supporting spacecraft mission operations activities post-deployment
Experience leading hardware design reviews including schematic and PCB layout reviews
Deep understanding of spacecraft avionics redundancy architectures and fault management approaches
Experience supporting reliability, radiation, EMI/EMC, and fault-tolerance considerations at both hardware and system levels
Experience managing or coordinating spacecraft avionics hardware vendors and external suppliers
Experience supporting national security or defense-related spacecraft programs
What You'll Get
Ownership - Lead development and integration of mission-critical spacecraft avionics architectures supporting Ranger missions
Innovation - Drive spacecraft electrical interface architectures and subsystem integration strategies for next-generation high-mobility platforms
Impact - Enable reliable spacecraft operations across national security, civil, and commercial missions
Growth - Operate at the center of spacecraft development while influencing vehicle-level architecture, integration, and mission execution
Compensation - Base Salary Range: $125,000 - $175,000 - Competitive salary, equity, and comprehensive benefits including medical, dental, vision, generous leave, FSA, 401(k) matching, and equity sharing
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 per 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State.
Apply now. Join us in building the avionics systems enabling the next generation of agile, high-mobility spacecraft missions.