Senior Robot Infrastructure Engineer
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At a glance
Job overview
Skild AI is hiring a Senior Robot Infrastructure Engineer. Skild AI seeks a versatile Robotics Infrastructure Engineer to build edge-to-cloud systems that connect, manage, update, and monitor robot fleets at scale, writing production‑grade C++ and Python on robots while designing secure, low‑latency pipelines and collaborating across robotics, autonomy, hardware, deployment, and web product teams.
Key focus areas include Design, implement, and maintain production‑grade C++ and Go on robotic platforms, Build on‑device systems for core robotics interfacing and edge communication, and Architect secure, low‑latency edge‑to‑cloud pipelines linking fleets to cloud and web platforms.
Important skills include Python, Designing Secure Low-Latency Pipelines, Designing Edge-to-Cloud Systems, Managing Robot Fleet, Updating Robot Fleet, and Monitoring Robot Fleet. Preferred (not required): C++, Fleet Observability, AWS, and GCP IoT Core.
Skills & qualifications
Skills
Qualifications
Full job description
Company Overview At Skild AI, we are building the world's first general purpose robotic intelligence that is robust and adapts to unseen scenarios without failing. We believe massive scale through data-driven machine learning is the key to unlocking these capabilities for the widespread deployment of robots within society. Our team consists of individuals with varying levels of experience and backgrounds, from new graduates to domain experts. Relevant industry experience is important, but ultimately less so than your demonstrated abilities and attitude. We are looking for passionate individuals who are eager to explore uncharted waters and contribute to our innovative projects.
Position Overview We are seeking a versatile Robotics Infrastructure Engineer to build the edge-to-cloud systems that connect, manage, update, and monitor our robot fleet at scale. Your work will span on-device software, cloud infrastructure, fleet observability, OTA updates, and reliable connectivity in real-world environments. You should be comfortable writing production-grade C++ and Python on robots while also designing secure, low-latency pipelines into cloud and web platforms. This role involves close collaboration with robotics, autonomy, hardware, deployment, and web product teams to unlock new capabilities powered by real-time robot data.
Responsibilities
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Design, implement, and maintain production-grade C++ and Go running directly on robotic platforms.
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Build on-device systems for interfacing with core robotics software, managing local data buffering, and handling edge-side communication logic.
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Architect and maintain secure, low-latency edge-to-cloud data pipelines connecting deployed robot fleets to cloud infrastructure and web platforms.
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Design, build, and operate OTA update mechanisms for safely and reliably deploying software updates to robots in the field.
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Build telemetry, alerting, logging, and monitoring tools across the robot operating system, cloud infrastructure, and fleet dashboards.
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Optimize edge software for reliability, performance, resource usage, and resilience under real-world deployment constraints.
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Collaborate with autonomy, hardware, deployment, and web product teams to support new features powered by live robot data and fleet-scale infrastructure.
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Continuously improve fleet reliability, observability, uptime across both device and cloud systems.
Preferred Qualifications
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3+ years of relevant industry experience.
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Strong production programming experience in C++ and Go.
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Prior experience deploying, operating, or managing connected hardware, IoT devices, or robotic systems at scale.
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Experience architecting and managing cloud infrastructure, including services such as AWS, GCP IoT Core, EC2, S3, Lambda, or related technologies.
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Deep understanding of networking protocols commonly used in robotics, IoT, or constrained environments, such as MQTT, WebSockets, gRPC, or similar protocols.
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Demonstrated experience building or managing OTA update systems for edge devices or deployed fleets.
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Strong systems-level understanding of edge computing constraints, including CPU, memory, storage, power cycles, connectivity loss, and local data persistence.
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Experience building fleet observability systems, including telemetry, metrics, logging, alerting, monitoring, and uptime tracking.
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Strong focus on reliability, fault tolerance, self-healing infrastructure, and safe operation of deployed systems.
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Experience with OS-level OTA infrastructure or full-device update mechanisms
Base Salary Range $100,000 — $300,000 USD
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