Full-Time

Navigation Engineer

Simulation Software

Logos Space

Logos Space

11-50 employees

Secure, high-speed satellite connectivity for enterprises

Compensation Overview

$190k - $280k/yr

Mountain View, CA, USA + 1 more

More locations: San Diego, CA, USA

In Person

Category
Aerospace Engineering (1)
Required Skills
Python
Software Testing
Git
REST APIs
C/C++
Linux/Unix
Data Analysis

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Requirements
  • Bachelor’s degree in Aerospace Engineering, Computer Science, Electrical Engineering, Applied Mathematics, Physics, or a related STEM field, or equivalent practical experience.
  • 5+ years of relevant professional experience building simulation software, constellation software, distributed systems, network simulation, astrodynamics software, spacecraft operations software, or other high-reliability engineering software.
  • Proficiency in modern C++ and/or Python for production software development.
  • Experience building scalable software systems that combine simulation, data processing, APIs, visualization, and automated validation.
  • Working knowledge of orbital mechanics, spacecraft ephemerides, coordinate frames, time systems, mission geometry, or similar dynamic system modeling fundamentals.
  • Experience modeling or analyzing network behavior, routing, link availability, latency, throughput, topology changes, or distributed system performance.
  • Experience building scenario generation, replay, regression, or automated test infrastructure.
  • Experience with Linux-based development environments, Git, and automated testing.
  • Strong written and verbal communication skills.
Responsibilities
  • Develop and maintain C++ and Python software for the Logos constellation-level software framework.
  • Build constellation-scale infrastructure that combines spacecraft ephemerides, mission geometry, timing behavior, link availability, ground assets, network topology, routing state, and operational constraints.
  • Develop software services that ingest, generate, and distribute navigation-derived state products used by the framework, including propagated trajectories, time-tagged spacecraft states, contact geometry, link windows, coverage products, and mission event timelines.
  • Support modeling and testing of software-defined networking behavior, including routing state, link-state changes, handovers, path availability, latency, throughput constraints, degradation modes, and network recovery behavior.
  • Build scenario generation tools for constellation deployment, nominal operations, planned maneuvers, ground contacts, network outages, spacecraft degradation, regional demand changes, maintenance windows, and mission-critical “what-if” cases.
  • Develop capabilities that allow the team to simulate future constellation behavior, reconstruct past events, compare predicted and observed behavior, and support anomaly investigations.
  • Build user-facing dashboards, visualization tools, and 2D/3D constellation viewers that allow engineers, operators, and stakeholders to inspect constellation state, link availability, routing behavior, coverage, latency, and network performance.
  • Develop scalable simulation and data-processing infrastructure capable of handling many spacecraft, many links, long time horizons, and repeated scenario sweeps.
  • Define data models, message schemas, configuration formats, scenario definitions, telemetry interfaces, and validation workflows for framework inputs and outputs.
  • Build validation infrastructure, including unit tests, integration tests, regression tests, deterministic replay, scenario comparison tools, performance benchmarks, and independent cross-checks against trusted analysis tools.
  • Work closely with navigation, astrodynamics, networking, flight software, ground software, mission operations, systems engineering, and product teams to define clean interfaces and integrated workflows.
  • Support integrated test campaigns, operational rehearsals, constellation performance analysis, commissioning, flight-data investigations, and anomaly response as needed.
Desired Qualifications
  • 8+ years of relevant experience and the ability to independently own technical workstreams.
  • Master’s degree or PhD in Aerospace Engineering, Computer Science, Electrical Engineering, Applied Mathematics, Physics, or a related field with specialization in astrodynamics, distributed systems, networking, simulation, or spacecraft operations.
  • Experience building constellation-level mission modeling, satellite networking, operational analysis, or large-scale simulation software.
  • Experience with LEO communication constellations, inter-satellite links, ground networks, dynamic routing, SDN, handover behavior, coverage analysis, or latency and throughput modeling.
  • Experience with software-defined networking, routing protocols, link-state systems, network orchestration, traffic modeling, or distributed network control planes.
  • Experience with visualization frameworks.
  • Experience with astrodynamics and mission simulation tools.
  • Experience integrating simulation environments with flight software, ground software, network testbeds, hardware-in-the-loop systems, or mission operations systems.
  • Familiarity with CCSDS data formats, spacecraft command and telemetry systems, mission planning interfaces, or ground-to-flight software interfaces.
  • Ability and willingness to obtain and maintain a U.S. Government Security Clearance.

Logos Space provides satellite-based connectivity services designed for high performance and resilience, serving enterprise customers and government agencies. Its system delivers secure, multi-gigabit satellite links that remain reliable even under electronic warfare or jamming. Built-in resilience and security are core design features, giving it an edge in contested environments and for sensitive government use. The goal is to close the market gap for dependable, high-speed satellite connectivity for global enterprises and critical national security operations, including naval assets.

Company Size

11-50

Company Stage

Series A

Total Funding

$50M

Headquarters

Redwood City, California

Founded

2025

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Simplify Jobs

Simplify's Take

What believers are saying

  • FCC approval legitimizes deployment of 4,178 satellites.
  • $50 million Series A funds engineering, hiring, and prototypes.
  • First launch planned for late 2027 creates a concrete milestone.

What critics are saying

  • SpaceX Starlink and Starshield already dominate enterprise and defense mindshare.
  • FCC approval is not launch authorization; manufacturing and integration remain unproven.
  • 4,178 satellites require far more capital than the current Series A.

What makes Logos Space unique

  • Enterprise-focused LEO network with dedicated bandwidth and isolation.
  • Uses Ka, Q, and V bands plus narrow beams.
  • Designed for multi-gigabit, jamming-resistant government and commercial connectivity.

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Growth & Insights

Headcount

6 month growth

15%

1 year growth

15%

2 year growth

2%