Lead Flight Software Engineer

Reposted 2 Months Ago
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Reading, Berkshire, England, GBR
Hybrid
Mid level
Aerospace • Manufacturing
Engineering Earth’s lowest orbiting satellites to rapidly advance global connectivity and insight
The Role
Design and implement flight software for satellites, ensuring autonomous operation and safe data management while collaborating across technical teams.
Summary Generated by Built In
Company

NewOrbit builds satellites that fly in very low Earth orbit, below 300 km, along with the electric propulsion that keeps them there.

Flying closer to Earth means sharper imagery from smaller optics, and an orbit that cleans itself: our satellites de-orbit within a month at end of life, leaving no debris.

Our AURA family of RF gridded ion thrusters powers our own NEO-1 satellite, with first flight planned for Q3 2028, and is also offered to other operators.

Electric propulsion is what lets our satellites hold very low orbits, and our AURA RF gridded ion thruster is at the centre of it.

Role

  • You’ll lead the team that owns the software that makes the spacecraft behave: real-time control flows, autonomy, mode management, FDIR, and the core flight applications that coordinate every subsystem.

  • You’ll design and implement robust flight-software services on RTOS or Embedded Linux - turning mission requirements into deterministic, testable software - then take it from simulation all the way to launch and on-orbit operations.

  • You’ll ensure our VLEO satellites stay safe and productive with strong fault tolerance, clean observability, and rapid iteration through over-the-air updates.

Key Responsibilities

  • Lead the flight software engineering team – recruit, coach, and direct the work of a team of software engineers to deliver the flight software elements of a novel spacecraft to operate in VLEO.

  • Own the on-board flight-software stack – design, implement and test real-time C/C++ on RTOS or Embedded Linux

  • Integrate subsystems end-to-end – define ICDs and build drivers/middleware over I2C/SPI/UART/CAN(-FD)/SpaceWire (as applicable).

  • Build spacecraft behaviors & autonomy – implement mode management, sequencing, and autonomous FDIR for safe and productive operations.

  • Deliver reliable real-time performance – manage concurrency, timing, CPU/memory budgets, and observability under tight constraints.

  • Build verification infrastructure – prototypes, SIL/HIL test harnesses, simulations, and telemetry analysis tooling to validate designs early.

  • Ship code from review to orbit – push through CI/CD, support integration and launch ops, and deliver secure over-the-air updates.

  • Work across disciplines – collaborate with avionics, AOCS, comms and mission teams to trade compute, power, thermal, storage and link budgets.

Key Requirements

  • 5+ years’ experience in development of flight software for spacecraft, including experience in leading engineers with flight software deliverables.

  • Proven experience in building production embedded or real-time systems in C/C++ and/or Rust on RTOS or Embedded Linux for space systems.

  • Strong grasp of real-time software: scheduling, interrupts, concurrency primitives, determinism, and designing for constrained CPU/memory.

  • Proven ability to build reliable, testable systems: unit/integration testing, simulation-first development, HIL validation, and disciplined debugging.

  • Hands-on experience integrating with hardware via common interfaces (I2C, SPI, UART, CAN(-FD), GPIO, etc.) and practical lab debugging.

  • Solid software engineering fundamentals: architecture, code review, static analysis, CI/CD, configuration management, and observability/logging.

  • Ability to own systems end-to-end: from requirements and design through implementation, verification, operations support, and iterative improvement.

Nice-to-haves

  • Experience with spacecraft flight software frameworks, (e.g., cFS, F´, or building lightweight component-based equivalents).

  • Familiarity with autonomy and fault management patterns for radiation/SEUs, watchdog strategies, redundancy, and safe-mode design.

  • GNC/AOCS-adjacent experience: sensor/actuator pipelines, control-loop integration, estimation/filters, timing analysis.

  • Digital-twin / simulator / SIL-HIL experience for end-to-end behavior validation and regression testing.

  • On-orbit operations know-how: commissioning flows, anomaly response, telemetry triage, and OTA update strategies.

Why NewOrbit Space?
  • Pioneering space technology - Your work on our RF gridded ion thrusters and VLEO satellite platform will redefine satellite operations and challenge traditional LEO.

  • Ownership and impact - You'll have a level of ownership that's rare in the space industry, and you'll take part in the full lifecycle of satellite technology.

  • Equity and competitive salary - Alongside a competitive salary you receive a company ownership stake, so you share in the technology you help build and in our collective success.

  • Comprehensive benefits - Private health insurance with dental and optical cover, and annual health check-ups.

  • Hybrid working - One dedicated remote day per week.

  • Visa sponsorship and relocation support - We sponsor visas and provide relocation support for candidates moving to join us.

Skills Required

  • Experience building production embedded or real-time systems in C/C++ or Rust on RTOS or Embedded Linux.
  • Solid grasp of on-board computer architecture, BSPs, watchdogs and high-speed buses (CAN-FD, SpaceWire, SPI, LVDS).
  • Experience taking code through unit, integration & HIL tests and shipping via CI/CD.
  • Strong software-design fundamentals, including data structures, concurrency and debugging.
  • Master version-control, static analysis, containerised build tooling and automated deployment.
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The Company
HQ: Reading
28 Employees
Year Founded: 2021

What We Do

NewOrbit develops satellites to enable missions to the most beneficial orbits – Ultra Low Earth Orbits (180-220 km). By operating at altitudes, 3x lower than conventional satellites, we can observe the world more clearly and provide better connectivity services.

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