Senior Localization Software Engineer

Posted 6 Days Ago
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San Francisco, CA, USA
In-Office
200K-260K Annually
Senior level
Aerospace • Computer Vision • Robotics • Defense
The Role
Lead design and deployment of visual localization and sensor-fusion systems for GPS-denied drones. Own algorithm development, architecture decisions, tooling, data pipelines, evaluation frameworks, and testing in simulation and real-world flights to improve accuracy, robustness, and onboard performance.
Summary Generated by Built In
Who we are

Theseus is a defense technology company building visual positioning to solve reliability for the next 10 million drones. We’re laser focused on solving localization on today's GPS-denied battlefield because we think it’s the biggest blocker to physical intelligence on drones.

Our products are already being used in real operational environments today. We’re a small team with high ownership and accountability, and we’re looking for engineers who want to move fast, build against real-world constraints, and see their work deployed in the field.

The role

We’re seeking a Senior Localization Software Engineer to help build the core of our autonomy stack. You’ll lead development of visual positioning systems that improve the accuracy, robustness, and reliability of Theseus’ products across sensors, onboard compute, and drone platforms.

This role is for someone who can independently own major parts of the localization stack, drive technical decisions, and take systems from concept through deployment in real-world conditions.

You will:
  • Own major localization problems end to end, from algorithm design through deployment, testing, and iteration
  • Improve visual localization, map matching, and sensor fusion systems for GPS-denied environments across diverse sensor inputs
  • Build tooling, data pipelines, and evaluation frameworks that accelerate development and make system performance observable
  • Drive architecture decisions across the localization stack, balancing accuracy, robustness, latency, and onboard compute constraints
  • Test, debug, and refine systems in simulation and real-world flight conditions 

You should have the following

  • 4+ years of experience working on robotic localization (e.g., SLAM, VIO, map matching) with a proven track record of taking systems through a full development lifecycle
  • Deep understanding of localization algorithms and onboard sensor modalities, including IMU, camera, barometer, and compass
  • Demonstrated ability to drive architecture decisions and make sound technical tradeoffs
  • Strong software engineering skills in C++ and Python
  • Excellent communication and collaboration skills

Nice to have

  • Background shipping localization software on drones or other autonomous hardware platforms
  • Familiarity with ArduPilot, PX4, or related drone software stacks
  • Track record of optimizing localization or perception systems for edge compute environments
  • Comfort building data, evaluation, or validation pipelines for robotics systems 
Salary Range

$200,000 - $260,000

Skills Required

  • 4+ years experience working on robotic localization (SLAM, VIO, map matching) with full development lifecycle delivery
  • Deep understanding of localization algorithms and onboard sensor modalities (IMU, camera, barometer, compass)
  • Strong software engineering skills in C++ and Python
  • Demonstrated ability to drive architecture decisions and make sound technical tradeoffs
  • Excellent communication and collaboration skills
  • Background shipping localization software on drones or other autonomous hardware platforms
  • Familiarity with ArduPilot or PX4 drone software stacks
  • Track record of optimizing localization or perception systems for edge/embedded compute
  • Experience building data, evaluation, or validation pipelines for robotics systems
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The Company
12 Employees
Year Founded: 2024

What We Do

Theseus is a defense and military technology company that develops micro visual positioning systems (Micro VPS) to provide a GPS replacement for drones. Their technology enables drones to accurately determine their location in GPS-denied environments using onboard cameras, inertial sensors, and satellite reference imagery, ensuring precision and autonomy for critical missions.

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