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NEXTMOVEFDE careers · United States

Software Engineer - Simulation & Robotics Engineer

AI summary of the role

Build and evolve the core Skydio Simulator, a high-fidelity real-time digital replica used by customers and autonomy engineers.

What you’ll do

  • Design and implement core simulator architecture in C++ and Python
  • Improve physics models and sensor/hardware simulations
  • Integrate and validate full autonomy stack in simulation
  • Optimize performance and fidelity

What you’ll bring

  • Strong C++ and Python software engineering experience
  • Building complex systems with performance, determinism, or correctness focus
  • Reasoning about time-synchronized or real-time systems
  • Working in large evolving codebases

Technologies

C++ · Python · physics engines · sensor simulation · real-time systems · multithreading · IMUs · autonomy stack

About Skydio

Builds autonomous drones, docks, and operating software for public safety, defense, and critical infrastructure teams that need trusted U.S.-made aerial systems.

Series F · 500–1000 people

Source and classification

Internal deployment & tooling · Evidence for this classification:

Skydio is the leading US drone company and the world leader in autonomous flight, the key technology for the future of drones and aerial mobility. The Skydio team combines deep expertise in artificial intelligence, best-in-class hardware and software product development, operational excellence, and customer obsession to empower a broader, more diverse audience of drone users, from utility inspectors to first responders, soldiers in battlefield scenarios, and beyond. About the Role: We are looking for a software engineer to build and evolve the core of the Skydio Simulator — a high-fidelity, real-time digital replica of the physical world used both by customers and by Skydio’s autonomy engineers every day. In this role, you will work deep in the simulator stack: from physics and sensor simulation, to hardware emulation, to the core architecture that runs our full autonomy software in
More from the job description

Skydio is the leading US drone company and the world leader in autonomous flight, the key technology for the future of drones and aerial mobility. The Skydio team combines deep expertise in artificial intelligence, best-in-class hardware and software product development, operational excellence, and customer obsession to empower a broader, more diverse audience of drone users, from utility inspectors to first responders, soldiers in battlefield scenarios, and beyond. About the Role: We are looking for a software engineer to build and evolve the core of the Skydio Simulator — a high-fidelity, real-time digital replica of the physical world used both by customers and by Skydio’s autonomy engineers every day. In this role, you will work deep in the simulator stack: from physics and sensor simulation, to hardware emulation, to the core architecture that runs our full autonomy software in simulation. You will help define how simulated worlds behave, how vehicles perceive and interact with them, and how closely simulation mirrors reality. This is a systems-heavy role focused on correctness, performance, and realism. Prior robotics experience is not required, but curiosity about physical systems and an interest in autonomous robots is essential. Areas of Responsibility: Core Simulator Architecture: Design, implement, and evolve the foundational architecture of the Skydio Simulato [... source excerpt omitted ...] simulation, ensuring consistency between simulated and real-world behavior. Feature Development on Top of the Core: Implement simulator capabilities that unlock new workflows for customers and internal autonomy engineers, from training scenarios to advanced testing modes. Performance and Fidelity: Profile, optimize, and improve simulator performance while continuously pushing realism and accuracy. What You’ll Do: Develop core simulator components in C++ and Python, working close to real-time constraints. Collaborate with autonomy, perception, and controls engineers to align simulation behavior with real-world systems. Debug complex interactions between physics, sensors, aut [... source excerpt omitted ...] term technical direction of the simulator as both a product and an internal platform. Contribute to documentation and shared understanding of how the simulator works internally. Qualifications: Strong software engineering experience with C++ and Python. Experience building complex systems where performance, determinism, or correctness matter. Comfort reasoning about time-synchronized systems, state machines, or real-time execution. Ability to work in a large, evolving codebase with multiple stakeholders. Interest in robotics, simulation, or physical systems (prior robotics experience is a plus, not a requirement). Bonus Experience: Robotics, simulation, game engines, or real-t

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