Full-Time

Lead Flight Software Engineer

Updated on 8/1/2026

NewOrbit Space

NewOrbit Space

11-50 employees

Low-Earth-orbit access for imaging and telecom

No salary listed

Reading, UK

Hybrid

One dedicated remote day per week is required.

Category
Aerospace Engineering (1)
Software Engineering (1)
Required Skills
Rust
Software Testing
Observability
C/C++
DevOps

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Requirements
  • At least 5 years of experience developing spacecraft flight software, including leading engineers with flight-software deliverables.
  • Experience building production embedded or real-time systems in C, C++, and/or Rust on a real-time operating system or Embedded Linux for space systems.
  • Strong understanding of real-time software, including scheduling, interrupts, concurrency primitives, determinism, and designing for constrained CPU and memory.
  • Ability to build reliable, testable systems through unit and integration testing, simulation-first development, hardware-in-the-loop validation, and disciplined debugging.
  • Hands-on experience integrating hardware through I2C, SPI, UART, CAN, CAN-FD, GPIO, or similar interfaces, with practical laboratory debugging.
  • Knowledge of software architecture, code review, static analysis, continuous integration and continuous delivery, configuration management, and observability or logging.
  • Ability to own systems end-to-end, from requirements and design through implementation, verification, operations support, and iterative improvement.
Responsibilities
  • Lead the flight software engineering team by recruiting, coaching, and directing software engineers to deliver flight software for a VLEO spacecraft.
  • Own the onboard flight-software stack by designing, implementing, and testing real-time C and C++ on a real-time operating system or Embedded Linux.
  • Integrate subsystems end-to-end by defining interface control documents and building drivers and middleware over I2C, SPI, UART, CAN, CAN-FD, and SpaceWire as applicable.
  • Build spacecraft behaviors and autonomy, including mode management, sequencing, and autonomous fault detection, isolation, and recovery for safe and productive operations.
  • Manage concurrency, timing, CPU and memory budgets, and observability to deliver reliable real-time performance under tight constraints.
  • Build verification infrastructure, including prototypes, software-in-the-loop and hardware-in-the-loop test harnesses, simulations, and telemetry-analysis tooling.
  • Move code from review to orbit through continuous integration and continuous delivery, integration and launch operations support, and secure over-the-air updates.
  • Collaborate with avionics, attitude and orbit control, communications, and mission teams to trade compute, power, thermal, storage, and link budgets.
Desired Qualifications
  • Experience with spacecraft flight-software frameworks such as cFS or F´, or with building lightweight component-based equivalents.
  • Familiarity with autonomy and fault-management patterns for radiation and single-event upsets, watchdog strategies, redundancy, and safe-mode design.
  • Experience adjacent to guidance, navigation, and control or attitude and orbit control, including sensor and actuator pipelines, control-loop integration, estimation or filters, and timing analysis.
  • Digital-twin, simulator, or software-in-the-loop and hardware-in-the-loop experience for end-to-end behavior validation and regression testing.
  • Knowledge of on-orbit operations, including commissioning flows, anomaly response, telemetry triage, and over-the-air update strategies.

NewOrbit Space provides long-term access to very low Earth orbit (VLEO) at about 180–220 km, focusing on geospatial imaging and telecommunications. Its satellites enable high-resolution imagery and faster, more efficient communication by operating closer to Earth. The technology includes an air-breathing propulsion system that improves maneuverability and operational efficiency, while the close-in orbit reduces satellite aperture size, shield requirements, satellite mass, and power needs, cutting both construction and launch costs. It also shortens development time. The company differentiates itself by targeting VLEO to deliver lower-cost, higher-quality data and simpler ground infrastructure, supported by reduced radiation exposure and improved radiometric performance. The goal is to offer cost-effective, high-performance satellite solutions that make advanced imaging and communications more accessible for clients in geospatial and telecom markets.

Company Size

11-50

Company Stage

Series A

Total Funding

$26M

Headquarters

Reading, United Kingdom

Founded

2021

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Simplify Jobs

Simplify's Take

What believers are saying

  • Recent $18.5 million Series A funds the 2027 production complex.
  • Higher-resolution imagery and lower-latency connectivity support imaging and telecom customers.
  • First commercial payloads in 2028 can establish early VLEO category leadership.

What critics are saying

  • Atmospheric drag and atomic oxygen threaten five-year VLEO mission lifetimes.
  • Rivals can copy benefits without accepting VLEO operational risk.
  • 2028 launch depends on NEO-1 proving sustained station-keeping first.

What makes NewOrbit Space unique

  • Targets 180-220 km VLEO, below conventional 500+ km satellite altitudes.
  • Uses air-breathing propulsion to counter drag and extend mission duration.
  • Builds NEO-1 and AURA thruster for sustained commercial VLEO operations.

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Benefits

Health Insurance

Dental Insurance

Vision Insurance

Company Equity

Hybrid Work Options

Relocation Assistance

Growth & Insights and Company News

Headcount

6 month growth

-3%

1 year growth

7%

2 year growth

7%
NewOrbit Space
Jul 21st, 2026
BBC | Berkshire-based NewOrbit developing technology to go the distance.

BBC | Berkshire-based NewOrbit developing technology to go the distance. 2026-07-21 Its CEO Anatolii joined the BBC at Farnborough to discuss its new satellite and production facility NewOrbit was featured on the BBC after its CEO joined them at the Farnborough International Airshow this week to discuss its flagship NEO-1 mission launching in 2028 and the new NEO Production Facility, its satellite manufacturing facility capable of producing dozens of satellites a year.