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System Engineer - Robotics

Remote / Online - Candidates ideally in
Greater London, London, Greater London, W1B, England, UK
Listing for: Decisive Point
Remote/Work from Home position
Listed on 2026-06-21
Job specializations:
  • Engineering
    Robotics, Systems Engineer
Salary/Wage Range or Industry Benchmark: 60000 - 80000 GBP Yearly GBP 60000.00 80000.00 YEAR
Job Description & How to Apply Below
Location: Greater London

About Applied Intuition

Applied Intuition, Inc. is powering the future of physical AI. Founded in 2017 and now valued at $15 billion, the Silicon Valley company is creating the digital infrastructure needed to bring intelligence to every moving machine on the planet. Applied Intuition services the automotive, defense, trucking, construction, mining and agriculture industries in three core areas: tools and infrastructure, operating systems, and autonomy.

Eighteen of the top 20 global automakers, as well as the United States military and its allies, trust the company’s solutions to deliver physical intelligence. Applied Intuition is headquartered in Sunnyvale, California, with offices in Washington, D.C.;
San Diego;
Ft. Walton Beach, Florida;
Ann Arbor, Michigan;
London;
Stuttgart;
Munich;
Stockholm;
Bangalore;
Seoul; and Tokyo.

Learn more at

We are an in‑office company, and our expectation is that employees primarily work from their Applied Intuition office 5 days a week. However, we also recognize the importance of flexibility and trust our employees to manage their schedules responsibly. This may include occasional remote work, starting the day with morning meetings from home before heading to the office, or leaving earlier when needed to accommodate family commitments.

About

the role

As a Systems Engineer on the UK Engineering team, you will play a critical role in defining system requirements, designing architectures, and integrating Applied Intuition’s technology onto autonomous vehicles and defence systems. This role combines systems engineering, robotics, software deployment, architecture, integration, and real‑world testing.

You will work across both office and field‑based environments, with significant time spent deploying, testing, and validating software on autonomous systems in dynamic, operationally relevant settings. You will collaborate closely with software engineers, autonomy engineers, perception teams, data scientists, and field operators to ensure systems are robust, reliable, and ready for deployment.

At Applied, you will:
  • Define system requirements from user needs on operational concepts
  • Define system and system‑of‑systems architectures and align with open standards such as PYRAMID, FCADE, etc.
  • Design and build out reference architectures for multiple systems of interest including autonomy systems, mission systems, and weapon systems
  • Lead the development of system engineering models and artifacts to capture key design decisions
  • Develop, deploy, and validate software systems on autonomous vehicles, focusing on robotics, sensors, and vehicle autopilots
  • Participate in hands‑on fieldwork, deploying software on vehicles and ensuring proper functionality in dynamic, real‑world environments
  • Work with the Perception and Autonomy teams to deploy and optimize perception pipelines (Vision, Radar, Fusion) and vehicle autonomy SW, ensuring robust and safe vehicle operation
  • Address inter‑vehicle communication, ensuring seamless data exchange between vehicles for collaborative autonomous operations
  • Leverage simulation environments to test vehicle systems, validating software behavior in various scenarios before field deployment
  • Collaborate with cross‑functional teams, including software engineers, data scientists, and field operators, to ensure the successful deployment of systems. Document processes and provide updates on system status and improvements
We’re looking for someone who has:
  • MS or Ph.D. in Robotic Engineering, Aerospace Engineering, Electrical Engineering, Computer Science, Computer Engineering, Optimization, or equivalent OR 5 years of relevant experience designing multi‑agent autonomy
  • Strong proficiency in Linux and command‑line tools
  • Strong proficiency in Python and/or C++
  • Hands‑on experience with robotic systems, sensors (such as RADAR, cameras, radar), and vehicle autopilots (e.g., PX4, ROS)
  • Knowledge of communication protocols for inter‑vehicle communications (e.g., DDS, ROS 2, or similar)
  • Experience in integrating third‑party software and APIs
  • Experience with standards such as PYRAMID, FACE, ARP 4754A, DO‑178C, or similar
  • Systems architecturing and requirements writing experience
  • Ability…
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