Principal Flight Software Engineer
True Anomaly
| Company | True Anomaly |
| Category | Engineering |
| Location | Denver |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Lead |
| Salary | Not stated by the employer |
| Posted | 25 Mar 2026 |
| Last verified | 30 Jul 2026 |
| Source | Employer career page (greenhouse) |
Description
Space is a warfighting domain. True Anomaly seeks those with the talent and ambition to build the technology that secures it.
OUR MISSION
True Anomaly delivers decisive capabilities for space superiority. We build autonomous spacecraft, advanced payloads, mission software, and space-based interceptors — enabling the U.S. and its Allies to secure the space environment and counter threats from the ultimate high ground.
OUR VALUES
Be the offset. We create asymmetric advantages with creativity and ingenuity.
What would it take? We challenge assumptions to deliver ambitious results.
It’s the people. Our team is our competitive advantage and we are better together.
YOUR MISSION As a Principal Flight Software Engineer at True Anomaly, you will serve as a technical authority across the full spacecraft software stack, shaping architecture decisions, setting engineering standards, and driving the development of flight software from concept through on-orbit operations. You will own hard problems, influence program-level direction, and raise the technical bar for the team around you. If you are looking for a role where your decisions have real consequences in space, this is it.
RESPONSIBILITIES
Own the architecture and technical direction of flight software for space missions, including on-board computers, processing units, and associated systems
Lead the design and development of robust, safety-critical embedded software with a focus on long-term maintainability and mission reliability
Drive integration of complex GNC algorithms with flight software, collaborating closely with the GNC team to ensure correctness and performance
Define and maintain the Command Telemetry Database (CTDB) architecture to support ground and on-orbit test and operations
Establish and enforce software engineering standards including coding practices, design patterns, and verification and validation approaches
Partner with the ground C2 software team to align interfaces, data flows, and operational concepts across the full system
Architect and lead development of HITL and SITL simulation environments for subsystem and full-vehicle testing
Design and own reusable device driver and communications protocol libraries across flight hardware platforms
Serve as a key technical voice in design reviews, architecture discussions, and cross-functional planning
BASIC QUALIFICATIONS
Bachelor's degree in computer science, electrical engineering, computer engineering, or related field
15+ years of experience with embedded systems, low-level firmware architecture, and safety-critical software
Demonstrated ownership of FSW architecture on delivered space or safety-critical programs
Deep expertise in low-level device driver development and real-time embedded systems
Hands-on experience with embedded RTOS platforms such as RTLinux or Azure RTOS
Strong command of communication protocols including Ethernet, SPI, I2C, CAN, RS422, and RS485
Expert-level proficiency in C/C++; proficiency in Python
Ability to maintain or obtain TS/SCI clearance
PREFERRED SKILLS AND EXPERIENCE
Master's degree in computer science, electrical engineering, computer engineering, or related field
15+ years of FSW development experience with direct contributions to on-orbit missions
Proven ability to define and uphold engineering standards across a software organization
Experience leading architecture reviews and driving technical decisions across multidisciplinary teams
Familiarity with embedded Linux and networking protocols including UDP and TCP/IP
Fluency with embedded systems toolchains, compilers, debuggers, and IDEs
Experience with microcontrollers, application processors, and revision control systems at scale
Advanced debugging skills using instrumentation such as oscilloscopes and protocol analyzers
Background in robotics, automation, motor control, or sensor fusion
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