About the job

Oligo is revolutionizing the aerospace industry by creating a manufacturing-in-the-loop foundation model designed to automate spacecraft design and production globally. Our innovative approach allows clients to concentrate on their core technology and mission goals while we manage every aspect, from design and manufacturing to launch and operational support. With a focus on AI-driven generative design and automated manufacturing, our team, comprising alumni from MIT, Harvard, and NASA JPL, is committed to delivering the most advanced payload-specific spacecraft within weeks, not months.
With esteemed advisors on our board and fresh capital from leading investors like Lux Capital, we are continuously searching for exceptional builders, quick learners, and ambitious engineers. Whether your expertise lies in spacecraft systems, avionics, ML/AI, or advanced manufacturing, you will collaborate across disciplines on real missions that launch, perform in orbit, and achieve international scalability.
We merge world-class AI/ML talent with top-notch satellite engineers under one roof to redefine how space systems are constructed, grounded in first principles. Expect no bureaucracy and no outdated thinking.
If you believe you align with our vision, we are eager to meet you.
Are you enthusiastic about developing the foundational software powering advanced aerospace systems? Do you excel at solving complex challenges in real-time, high-reliability settings? Join us as a Mid/Senior Level Embedded Flight Software Engineer and take a crucial role in designing, developing, and deploying the essential software that empowers our spacecraft to fulfill their missions. If you possess expertise in F-prime, real-time operating systems, and building resilient embedded solutions, we would love to connect with you!
Responsibilities
As a Generative Spacecraft Engineer - FSW, you will oversee significant portions of the flight software lifecycle, from initial architecture to on-orbit operations. Your key responsibilities will include:
Designing and implementing flight software components using the F-prime framework, specifically for bare-metal and resource-constrained embedded systems.
Architecting and contributing to F-prime topology and pattern design, ensuring our software is modular, scalable, and highly reliable.
Developing and integrating real-time operating system (RTOS) solutions tailored for bare-metal targets, maximizing performance and determinism.

