About the job
About Us
At Aurora, our mission is to safely and swiftly deliver the advantages of self-driving technology on a large scale.
Discover the Aurora Driver will usher in a transformative era in mobility and logistics, promising a safer, more efficient, and accessible future for all.
Joining Aurora means engaging with complex challenges alongside a team of passionate and intelligent professionals, allowing you to grow as an expert while expanding your knowledge. Stay updated with the latest from Aurora by visiting aurora.tech or following us on LinkedIn.
Aurora seeks talented individuals from diverse backgrounds who are eager to contribute to building a transportation ecosystem that enhances road safety, ensures timely delivery of essential goods, and fosters efficient and accessible mobility for everyone.
We are currently looking for a Staff Software Engineer specializing in Vehicle Platforms. In this pivotal role, you will significantly contribute to the software architecture that integrates our computing systems, sensors, and networking into a cohesive self-driving fleet. This position is crucial for leading the advancement of our onboard systems from isolated vehicle integrations to a scalable, high-performance service platform, ensuring the Aurora Driver operates with optimal reliability and efficiency.
Your Responsibilities Include:
- Designing and leading the architecture of the vehicle computing and networking stack, ensuring a modular and scalable interface between autonomy software and various hardware platforms.
- Driving the technical roadmap for hardware health monitoring and performance optimization across the fleet, converting raw system metrics into actionable insights for fleet reliability.
- Leading cross-functional integration efforts for new sensors and embedded devices, defining standards for low-latency data interfaces utilized by the autonomy stack.
- Establishing stringent engineering standards for Hardware-in-the-Loop (HIL) testing and automated performance profiling to ensure safety and stability.

