Software Engineer, Networking & Linux Systems
at Avride · 251-500 employees
- Location
- Austin, Texas
- Posted
- 5d ago
at Avride · 251-500 employees
Avride develops and operates autonomous vehicles and delivery robots that share common self-driving technology.
<h2 data-path-to-node="7">About the Team</h2> <p data-path-to-node="8">We build the foundational system software and embedded Linux platform that run our autonomous vehicles and delivery robots. Modern autonomous platforms are essentially rolling, edge data centers: high-throughput cameras, LiDARs, compute nodes, and managed switches must communicate with ultra-low latency and microsecond-level time synchronization. Simultaneously, the vehicle must maintain robust, high-availability connectivity to the cloud via cellular and Wi-Fi networks while moving through unpredictable physical environments. Our team owns this foundation end-to-end: the on-board network architecture, customized Linux images, fleet-wide OS updates, and the connectivity daemons that keep our fleet online. When our layer works seamlessly, the autonomy stack above it doesn't have to think about hardware, packets, or clocks — and that is exactly the goal.</p> <h2 data-path-to-node="10">About the Role</h2> <p data-path-to-node="11">We are looking for a <strong data-path-to-node="11" data-index-in-node="21">Senior Systems & Networking Engineer</strong> to own, scale, and harden the communication fabric of our autonomous vehicles. You will focus deeply on both our complex, multi-gigabit internal network (connecting safety-critical sensors and high-compute nodes using the latest Automotive Ethernet and TSN standards) and external connectivity (high-throughput 5G telemetry), debugging complex issues across the Linux stack and target hardware.</p> <p data-path-to-node="12">This is a high-impact, hands-on role with broad technical ownership. You will collaborate closely with core platform and hardware engineers to evolve our networking architecture. Your work spans the entire systems stack — from low-level optimizations like NIC ring buffer tuning and microsecond PTP/gPTP synchronization, to architecting high-performance Go daemons for multi-carrier cellular bonding and failover.</p> <h2 class="heading-2">What you'll do</h2> <h3 data-path-to-node="15">Internal Networking & Time Synchronization</h3> <ul data-path-to-node="16"> <li> <p data-path-to-node="16,0,0"><strong data-path-to-node="16,0,0" data-index-in-node="0">Safety-Critical Infrastructure:</strong> Architect, configure, and optimize the internal fault-tolerant network linking on-board compute nodes, controllers, and high-bandwidth sensors (LiDARs, cameras).</p> </li> <li> <p data-path-to-node="16,1,0"><strong data-path-to-node="16,1,0" data-index-in-node="0">Clock Synchronization:</strong> Drive the design and reliability of vehicle-wide time synchronization utilizing PTP / IEEE 802.1AS (gPTP) for safety-critical data paths.</p> </li> <li> <p data-path-to-node="16,2,0"><strong data-path-to-node="16,2,0" data-index-in-node="0">Switch & Hardware Management:</strong> Configure and troubleshoot managed automotive/industrial switches (e.g., Marvell, Broadcom), VLAN segmentation, and Automotive Ethernet to ensure deterministic traffic isolation.</p> </li> </ul> <h3 data-path-to-node="17">External Connectivity & Platform Systems</h3> <ul data-path-to-node="18"> <li> <p data-path-to-node="18,0,0"><strong data-path-to-node="18,0,0" data-index-in-node="0">Engineered Connectivity:</strong> Design robust failover mechanisms and network bonding frameworks (aggregating multiple LTE/5G carriers) to ensure zero-drop external links.</p> </li> <li> <p data-path-to-node="18,1,0"><strong data-path-to-node="18,1,0" data-index-in-node="0">Linux Performance Tuning:</strong> Debug and tune low-level networking parameters (NIC buffers, hardware offloads, interrupt handling, and NAPI behavior) for high-throughput, low-latency performance.</p> </li> <li> <p data-path-to-node="18,2,0"><strong data-path-to-node="18,2,0" data-index-in-node="0">Systems Software Development:</strong> Write and maintain reliable system-level software, telemetry agents, and daemons in Go and Python for x86_64 and ARM64 (NVIDIA) platforms.</p> </li> <li> <p data-path-to-node="18,3,0"><strong data-path-to-node="18,3,0" data-index-in-node="0">Hardware-Software Integration:</strong> Assist the embedded Linux team with hardware bring-up, debugging physical interfaces (PCIe, Ethernet), and integrating networking components into our custom OS deployment.</p> </li> <li> <p data-path-to-node="18,4,0"><strong data-path-to-node="18,4,0" data-index-in-node="0">Observability:</strong> Build end-to-end monitoring for the networking stack, exporting granular performance metrics so the fleet's connectivity health is debuggable at scale.</p> </li> </ul> <h2 class="heading-2">What you'll need</h2> <ul data-path-to-node="21"> <li> <p data-path-to-node="21,0,0"><strong data-path-to-node="21,0,0" data-index-in-node="0">Systems Programming Depth:</strong> Strong track record in system-level software development with deep expertise in Linux systems and networking fundamentals (roughly mid to senior level — we care about depth, not a year count).</p> </li> <li> <p data-path-to-node="21,1,0"><strong data-path-to-node="21,1,0" data-index-in-node="0">Advanced Networking Expertise:</strong> Hands-on experience with IP routing, VLANs, firewalling (<code data-path-to-node="21,1,0" data-index-in-node="88">nftables</code>/<code data-path-to-node="21,1,0" data-index-in-node="97">iptables</code>), and expert-level packet troubleshooting (<code data-path-to-node="21,1,0" data-index-in-node="149">tcpdump</code>, <code data-path-to-node="21,1,0" data-index-in-node="158">Wireshark</code>, etc.).</p> </li> <li> <p data-path-to-node="21,2,0"><strong data-path-to-node="21,2,0" data-index-in-node="0">Language Proficiency:</strong> Solid experience programming in <strong data-path-to-node="21,2,0" data-index-in-node="54">Go and Python</strong>, with a willingness to work interchangeably between them. Comfort reading and understanding <strong data-path-to-node="21,2,0" data-index-in-node="160">C/C++</strong> for lower-level driver and kernel debu