Full-Time

Autonomy Software Engineer

Maritime

Odin Dynamics, Inc

Odin Dynamics, Inc

Develops autonomous undersea combat vehicles

Compensation Overview

$180k - $230k/yr

No H1B Sponsorship

Los Angeles, CA, USA

In Person

US Citizenship Required

Category
Software Engineering (1)
Required Skills
Software Testing
Machine Learning
Robotics
DevOps
Computer Vision
Data Analysis

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Requirements
  • Deep practical experience developing autonomy, perception, planning, or robotics software for real-world systems.
  • Strong proficiency in at least one systems programming language.
  • Strong proficiency in a scripting language commonly used for autonomy development, data analysis, model development, testing, and automation.
  • Experience with machine learning or deep learning for perception, classification, detection, tracking, recognition, or related autonomy tasks.
  • Experience with classical computer vision, machine vision, state estimation, localization, sensor fusion, or related non-ML perception methods.
  • Experience with path planning, motion planning, obstacle avoidance, mission planning, behavior trees, state machines, or other autonomous decision-making approaches.
  • Experience integrating autonomy software into real systems with imperfect sensors, incomplete requirements, constrained compute, noisy data, and difficult operating environments.
  • Experience training, validating, evaluating, and improving models using structured metrics, test datasets, simulation, replay, and field data.
  • Experience developing reliable production software, not just prototypes, research code, notebooks, or isolated algorithms.
  • Experience writing maintainable code, conducting code reviews, developing automated tests, using static analysis, profiling performance, and debugging complex system behavior.
  • Experience building or extending simulation, replay, software-in-the-loop, hardware-in-the-loop, hardware-in-the-loop/test-in-the-loop, or scenario-based test environments for autonomy validation.
  • Ability to reason from first principles about autonomy failures, perception failures, sensor limitations, edge cases, and system-level behavior.
  • Ability to work from incomplete information, make defensible technical decisions, and rapidly iterate between design, implementation, testing, and refinement.
  • Ability to work independently with minimal oversight while collaborating closely across engineering disciplines.
  • Willingness to support field testing and sea trials when required.
  • U.S. citizenship and eligibility to obtain and maintain a U.S. security clearance.
Responsibilities
  • Serve as the Responsible Engineer for the autonomy and perception stack.
  • Develop greenfield autonomy software from initial requirements and architecture through field-tested, production-ready implementation.
  • Own autonomy behavior across mission planning, path planning, localization, state estimation, sensor fusion, perception, obstacle avoidance, recovery behavior, and fault-aware decision-making.
  • Design and implement algorithms for object detection, recognition, classification, tracking, mapping, navigation, and autonomous decision-making.
  • Develop both machine-learning-based and classical perception approaches, selecting the appropriate method based on mission requirements, data availability, compute constraints, reliability, and test evidence.
  • Train, validate, evaluate, and improve perception and autonomy models using real, simulated, and replayed data.
  • Build and maintain data workflows for model evaluation, scenario replay, regression testing, performance analysis, and failure investigation.
  • Write, review, test, profile, and debug production software in appropriate systems and autonomy-development languages.
  • Use modern machine learning frameworks for model development, training, evaluation, and deployment.
  • Develop performance-conscious autonomy software under real-world compute, latency, memory, power, reliability, and observability constraints.
  • Collaborate with Avionics engineers on sensor selection, sensing architecture, sensor trade studies, and practical perception requirements.
  • Collaborate with Embedded Software engineers on platform integration, sensor interfaces, data pipelines, timing, logging, diagnostics, and deployment.
  • Work with Test Engineering to validate autonomy behavior in simulation, laboratory, field, and sea-trial environments.
  • Develop and maintain autonomy test environments, including hardware-out-of-the-loop/software-in-the-loop, hardware-in-the-loop, scenario-based simulation and replay, and model validation and regression testing.
  • Analyze vehicle behavior from logs, telemetry, simulation results, field tests, and sea trials to identify root causes and drive corrective improvements.
  • Define metrics for autonomy performance, perception quality, model reliability, mission success, and failure modes.
  • Build automated development workflows using modern build systems, continuous integration, static analysis, profiling, model-evaluation pipelines, and automated testing.
  • Produce concise, functional engineering documentation that enables implementation, testing, operation, and future development.
  • Use AI-assisted development tools to accelerate implementation, testing, debugging, data analysis, and documentation while independently validating outputs and maintaining a first-principles understanding of the resulting system.
  • Mentor other engineers and contribute to technical reviews without moving away from hands-on engineering.
Desired Qualifications
  • Approximately five or more years of relevant autonomy, perception, robotics, machine-learning, or production software experience is preferred.
  • Experience with autonomous vehicles, unmanned systems, unmanned aerial vehicles, underwater systems, maritime systems, drones, robotics, aerospace systems, self-driving vehicles, industrial autonomy, or other real-world autonomous platforms.
  • Experience taking autonomy, perception, planning, or machine-learning software from early architecture through field-tested deployment.
  • Experience developing safety-critical, mission-critical, or high-reliability software for systems that operate in difficult real-world environments.
  • Experience working with a range of perception and navigation sensing technologies.
  • Experience developing autonomy software for GPS-denied, communications-constrained, low-observability, or otherwise challenging operating environments.
  • Experience with machine-learning model development, training, evaluation, deployment, or optimization using modern frameworks.
  • Experience building simulation, replay, synthetic-data, scenario-generation, Monte Carlo, software-in-the-loop, hardware-in-the-loop/test-in-the-loop, or model-validation environments for autonomy development.
  • Experience debugging autonomy behavior using logs, telemetry, visualization tools, field data, and post-mission analysis.
  • Experience working closely with electrical, embedded software, mechanical, manufacturing, and test engineers on tightly integrated electromechanical systems.

Odin Dynamics designs and builds autonomous undersea vehicles (UUVs) for defense use, including precision strike, intelligence, surveillance and reconnaissance (ISR), and mine warfare. The vehicles are unmanned, capable of long endurance and long range, and use a modular design so different mission modules can be swapped to fit a mission. They can be launched from submarines or surface ships and operate as part of a larger network of naval assets to extend reach while reducing risk to sailors. The company differentiates itself through a team that combines defense program experience with high-tech expertise, supported by U.S. Navy program managers and veterans from Tesla, and by focusing on scalable deterrence in contested maritime zones. Odin Dynamics’s goal is to accelerate the deployment of next-generation undersea combat systems to enhance naval superiority and national security.

Company Size

N/A

Company Stage

N/A

Total Funding

N/A

Headquarters

Los Angeles, California

Founded

2024

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Simplify Jobs

Simplify's Take

What believers are saying

  • Closed pre-seed in February 2026 and says seed financing is next.
  • Rear Admiral Matt Burns joined as Senior Military Advisor in 2026, boosting credibility.
  • June 2026 content says Odin targets one hull every 20 minutes, signaling manufacturability.

What critics are saying

  • No announced Navy contract exists by August 6, 2026, leaving revenue entirely unproven.
  • The company has 2-10 employees, risking execution failure across battery, autonomy, and certification.
  • One failed endurance test destroys the torpedo-UUV thesis before procurement ever starts.

What makes Odin Dynamics, Inc unique

  • Tesla battery engineers and Navy EOD veterans combine hardware and acquisition expertise.
  • One platform serving as both UUV and torpedo broadens mission flexibility.
  • Hiring supply chain, test, and operations roles signals prototype-to-production ambition.

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