--- title: 'Flight Software Engineer at Katalyst Space Technologies' canonical: 'https://feeny.ai/job/flight-software-engineer-katalyst-space-technologies-broomfield-colorado-nnvtxneh32t1' type: 'job' last_seen: '2026-09-12' --- # Flight Software Engineer at Katalyst Space Technologies - **Company:** Katalyst Space Technologies - **Location:** Broomfield Colorado, United States - **Posted:** 2026-09-08 - **Last confirmed live:** 2026-09-12 - **Apply:** https://job-boards.greenhouse.io/katalyst/jobs/6185969004 ## Job description Katalyst Description: Katalyst is an American technology company focused on dynamic space operations.  We are building a fleet of dual-use multipurpose robotic space vehicles to create the future where maneuvering, upgrading, refueling, resupply and exploration are as routine as they are on Earth. Getting to space and overcoming the gravity well is only half the story. What you do there is the future. We are not building the trains. We are building the machines that lay down the tracks. By developing the foundational capabilities that make sustained, responsive operations possible, we enable a new era of space exploration that strengthens national security and ensures freedom of action in an increasingly contested domain. Katalyst Culture: Working at Katalyst is intense, hands-on, and deeply rewarding. You’ll take real ownership and see your work move from concept to operations in an environment where the problems are hard and the impact is real. We value humility, craftsmanship, and doing things the right way, even when it’s harder. You’ll work closely with thoughtful, driven teammates who push each other to do their best. Broomfield, CO. Onsite. Full time. This position may be filled at Engineer, Senior, or Principal level depending on experience. Pick the level where you are strongest, we interview against that bar. Katalyst builds spacecraft that rendezvous with, capture, and service other spacecraft. Our first vehicle is in orbit right now, flying real proximity operations, and the flight software running it is what you would own: the core platform every subsystem, sensor, and radio on the vehicle talks through. Small team, real hardware, your code flies, and you watch it fly from the console. ## What you will do - Own core flight software subsystems end to end: telemetry and messaging, the command and sequencing path, fault detection and recovery, hardware interfaces (UART, CAN, TCP/IP, RS-422), and the radios that keep us commandable - Write modern C++ on a Linux flight computer, Python where it moves faster, and keep it memory-safe and thread-safe under schedule pressure, because the schedule belongs to a spacecraft - Take changes from design through review, flatsat and hardware-in-the-loop verification, deploy, and on-orbit behavior, and close them, verified and handed over, not demoed - Run point on anomalies: diagnose from telemetry and logs, decide what is safe to command, then fix the class of defect, not the instance - Make the team stronger: review flight code with rigor, hand systems off with documentation that outlives you, and coach less experienced engineers to shippable instead of rewriting their work - Defend your design decisions to GNC, avionics, operations, and leadership, with data ## What we need - Deep, hands-on C++ on real-time or resource-constrained systems that had to work, RTOS or embedded Linux - Fault-tolerant thinking: what happens when this module fails, how the vehicle stays safe and commandable, how it recovers without waiting for the ground - The habit of finishing: you close what you commit to, you verify before you call it done, and when a date slips we hear it from you first - The instinct to challenge an assumption, back the challenge with data, and convince people. Engineers here make the call and defend it. - Engineer: 2+ years. Senior: 6+ years. Principal: 10+ years. Years are a guide, not a gate. Spacecraft or launch vehicle experience helps a lot, real-time software on real hardware that had to work is what we actually need, and at Engineer level we care more about how fast you learn than what you have already flown. - BS in computer science, computer engineering, aerospace, electrical engineering, or equivalent proficiency. We mean the "or". - US person (ITAR). No security clearance required, this is commercial servicing. What this is not This is not a tooling or DevOps role. We have pipelines and you will touch them, but the code here commands hardware, and the hardest problem you have solved should be one where a physical thing did the wrong thing. If your best work is build infrastructure, we would rather point you at a role that celebrates it than waste your time here. ## Nice to have - cFS, custom middleware, or other spacecraft and robotics frameworks. We fly our own, and we evolve it deliberately: bring strong patterns from somewhere else and you get a real voice in where the architecture goes. - Radios, CCSDS, or spacecraft comms stacks - SIL/HIL test infrastructure you built or ran yourself - Rust, or safety-critical process experience (MISRA, NASA-STD-8739.8) - Pose estimation, relative navigation, or vision-consumer integration How we interview, because we think it matters Three conversations and one working session, all of it with us in the room. A short screen, a 45-minute technical conversation, then a 2-hour on-site: a small synthetic codebase seeded with a real class of bug from orbit, your choice of problem track and level, using any tools you normally would, AI assistants included. You present and defend what you did to a small panel and walk a few ops scenarios. Everyone gets the same session, scored against the level you chose. Every stage is scheduled within 5 business days of the last, we fly you in for the on-site, and if you need an accommodation for any of it, say so and we work it out. Additional Requirements: Must be willing to work extended hours and weekends as needed. Compensation and Benefits: Your base salary will be determined on a case-by-case basis and may vary based on the following considerations: job-related knowledge and skills, education, and experience. The anticipated salary range for this role is: Engineer $105,000 - $150,000, Senior $160,000 - $210,000, Principal $200,000 - $250,000, base plus equity for every engineer Base salary is just one part of your total rewards package at Katalyst. You will also be eligible for long-term incentives, in the form of the Employee Stock Option and Equity Plan, as well as a relocation bonus and other discretionary bonuses. You will also receive access to comprehensive medical, vision, and dental coverage, and unlimited Paid Time Off. At Katalyst our work on projects involving the U.S. Department of Defense requires adherence to International Traffic in Arms Regulations (ITAR), 22 C.F.R. Parts 120-130, which requires compliance with U.S. export laws before allowing employees to perform certain positions. Currently, our available roles necessitate access to ITAR-controlled information, and as a result, Katalyst would have to ensure any non-US person is authorized access to ITAR information before the commencement of employment. We are committed to equal employment opportunities and all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, or national origin. ## About Katalyst Space Technologies ## Company Overview - **One-liner**: Katalyst Space Technologies builds robotic spacecraft and modular payloads for in‑orbit servicing, satellite upgrades, and space domain awareness. - **Entity Type**: Private (raised $12M in June 2026) - **Headquarters**: Flagstaff, Arizona, United States (additional offices in Broomfield, Colorado, and Washington, D.C.) - **Founded**: 2019 - **Founders**: Ghonhee Lee, Nicholas Liapis, Kaleb Beebout, Vanessa Clark (joined via acquisition of Atomos Space) ## Core Business - **Primary industries**: In‑orbit servicing & assembly, space transportation & logistics, space domain awareness. - **Target customers**: Government agencies, defense organizations, commercial satellite operators (MEO, GEO, XGEO / Cislunar markets). - **Mission**: To make in‑space operations routine and break the long cycle times, rigid architectures, and inflexibility that dominate the satellite industry. ## Products & Services - **NEXUS**: A multi‑mission robotic spacecraft with a patented Split Stewart Platform for grappling, docking, and servicing spacecraft not originally designed for docking. Includes full sensor suite for rendezvous and proximity operations, large solar arrays, and enough delta‑V to reach the Moon and back without refueling. - **SIGHT**: Real‑time space domain awareness (SDA) system for orbital hazard identification, collision avoidance, and independent power, comms, and data processing. - **SHIELD**: Defensive counterspace capability for anomaly inspection, close‑range imaging, and defensive maneuvers. - **Hardware Payload Bays**: Two payload bays for transporting and installing mission hardware upgrades on unprepared satellites. ## Market Standing - **Valuation**: Not disclosed - **Key Metric**: Total funding of $12M (June 2026), including a seed round of $880,635 (May 2024) - **Notable Investors/Partners**: Not publicly listed; acquired Atomos Space (April 2025) and Atomos Nuclear and Space Corporation. - **Growth Signals**: Headcount grew 111% YoY to ~49 employees; opened offices in Broomfield, CO and Washington, D.C.; Katalyst’s LINK robotic spacecraft integrated with Pegasus XL and ready for launch (June 2026); NEXUS passed a key testing milestone ahead of a first‑of‑its‑kind GEO servicing demo mission (May 2026). ## Competitive Advantages - **Patented Split Stewart Platform** – a lighter, stiffer robotic arm system that can grapple a wide range of structures, including satellites not designed for docking. - **Full‑stack validation** – tests sensors, software, actuators, propulsion, and robotics at a state‑of‑the‑art testbed, not just simulation. - **Ability to upgrade unprepared satellites** – delivers hardware on mission‑relevant timelines, bypassing 10+ year design cycles. - **High delta‑V propulsion** – enables LEO‑to‑Moon round trips without refueling. ## Strategic Focus - First‑of‑its‑kind GEO servicing demonstration mission for 2026–2027. - Scaling the NEXUS spacecraft platform across multiple mission types (servicing, refueling, inspection, defense). - Deepening government and defense partnerships for space domain awareness and counterspace capabilities. - Expanding the team (13 active job postings) and operational footprint to support growing mission cadence. ## Why Work Here - **Culture**: Demanding, fast‑moving, hands‑on environment where employees own real problems from concept through flight. Emphasizes craftsmanship, humility, and doing things right even when difficult. - **Work model**: Likely on‑site at one of three offices (Flagstaff, Broomfield, Washington D.C.); some roles may offer hybrid flexibility. - **Benefits**: Competitive compensation plus equity, medical/dental/vision insurance, flexible time off, meaningful ownership from day one. - **Engineering culture**: Deep focus on spacecraft design, GNC, flight software, and robotics; heavy background from Northrop Grumman, Lockheed Martin, Atomos Space, and Amazon. Active recruiting for senior and principal engineers. ## Sources 1. [katalystspace.com](https://www.katalystspace.com/) 2. [linkedin.com](https://www.linkedin.com/company/katalyst-space) 3. [spaceindex.io](https://spaceindex.io/companies/katalyst-space-technologies) 4. 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