Warehouse Robotics Jobs Rio de Janeiro

Warehouse robotics engineers design, deploy, and support autonomous mobile robots (AMRs), robotic picking, and warehouse automation systems that improve safety, throughput, and inventory accuracy across fulfillment operations. At Rex.zone, these remote roles connect real-world robotics workflows—robot fleet operations, perception and navigation, PLC/WMS integration, and reliability engineering—with modern software delivery, telemetry, and continuous improvement. You will collaborate with cross-functional teams to optimize robot performance, reduce downtime, validate safety behaviors, and scale deployments using repeatable procedures and data-driven decisions.

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Open Role: Warehouse Robotics Engineer (Rio de Janeiro)

Date: 25-02-2026 | Company: Rexzone | Country: US | Remote Type: Remote | Employment Type: FULL_TIME | Experience Level: Mid-Senior | Industry: Technology | Job Function: Engineering | Skills: warehouse robotics, AMR fleet operations, ROS2, robot navigation, SLAM, computer vision, sensor fusion, PLC integration, WMS integration, Python, C++, telemetry and monitoring, safety standards | Salary Currency: USD | Salary Min: 63360 | Salary Max: 126720 | Pay Period: YEAR

About the Role

You will work remotely to support warehouse robotics programs serving fulfillment and distribution networks. Your focus includes robot fleet operations, performance tuning, incident response, and deployment readiness for AMRs and robotic workcells. You will use logs, telemetry, and on-site feedback loops to improve navigation robustness, pick success rate, and system uptime while maintaining safety compliance.

Key Responsibilities

Own end-to-end reliability for warehouse robotics systems, including monitoring, alerting, and root-cause analysis. Integrate robots with warehouse systems (WMS/WES), conveyors, sensors, and PLC-controlled equipment. Tune navigation, localization (SLAM), and traffic management to improve throughput and reduce collisions and deadlocks. Build and maintain robot fleet dashboards, KPIs, and incident playbooks (MTTR, uptime, mission success rate). Validate safety behaviors and operational constraints (geofencing, speed limits, e-stops, safe stop distance). Run controlled experiments (A/B tests, parameter sweeps) to improve model and system performance. Partner with site operations teams to translate workflow constraints into robotics requirements and SOPs. Document deployment standards, acceptance tests, and change management procedures.

Required Qualifications

Mid-senior experience in warehouse automation, robotics engineering, or field reliability engineering. Hands-on experience with AMR/AGV systems, robotic workcells, or high-availability industrial automation. Strong programming skills in Python and/or C++ with production debugging experience. Working knowledge of ROS/ROS2 concepts, robot telemetry/logging, and navigation stacks. Experience integrating software systems with PLCs and warehouse applications (WMS/WES). Comfortable owning incidents, writing postmortems, and driving corrective actions.

Preferred Qualifications

Experience with computer vision and sensor fusion (LiDAR, depth cameras, IMU) in warehouse environments. Familiarity with SLAM, localization, path planning, and multi-robot coordination. Understanding of safety standards relevant to mobile robots and industrial environments. Experience with cloud-based monitoring, observability stacks, and CI/CD for robotics software.

Tools and Technologies

Robotics: ROS2, navigation stacks, SLAM toolchains, simulation environments Software: Python, C++, Linux, Git, CI/CD Systems: PLC interfaces, industrial networking basics, WMS/WES integrations Ops: telemetry pipelines, dashboards, alerting, incident management

What Success Looks Like (First 90 Days)

Establish measurable baselines for fleet health, throughput, and failure modes using telemetry and site feedback. Reduce repeat incidents by implementing fixes, safeguards, and clear operational runbooks. Deliver at least one reliability or performance improvement (e.g., fewer deadlocks, higher mission success rate). Create or refine acceptance tests that improve deployment readiness and change safety.

Why Rex.zone

Rex.zone connects engineers with remote-first projects across technology teams that build and operate real-world automation systems. You will work with structured processes, clear deliverables, and measurable outcomes while contributing to scalable warehouse robotics deployments.

How to Apply

Apply through Rex.zone with your resume or LinkedIn profile. Include 2–3 examples of robotics or automation projects you owned (deployment, reliability, integration, or performance tuning). Highlight experience with AMRs/AGVs, ROS2, WMS/PLC integration, and incident response.

Frequently Asked Questions

  • Q: Is this role remote?

    Yes. Remote Type is Remote, and you will collaborate with distributed engineering and operations stakeholders via online tools, telemetry dashboards, and scheduled syncs.

  • Q: Why does the page mention Rio de Janeiro if the country is US?

    The keyword targets search intent for "Warehouse Robotics Jobs Rio de Janeiro" while the job metadata remains set to Country: US per the provided defaults.

  • Q: What kind of warehouse robotics systems will I work on?

    Typical systems include AMR fleets, robotic picking or put-wall workcells, and integrated automation where robots interface with WMS/WES, conveyors, scanners, and PLC-controlled equipment.

  • Q: What are the most important skills for success?

    Warehouse robotics experience, AMR fleet operations, ROS2/navigation fundamentals, Python/C++ debugging, system integration (WMS/PLC), telemetry-driven troubleshooting, and safety-focused engineering.

  • Q: Is this full-time?

    Yes. Employment Type is FULL_TIME.

  • Q: What experience level is expected?

    Mid-Senior level. You should be comfortable owning deployments, reliability improvements, and cross-team coordination.

  • Q: What does the interview process typically focus on?

    System design for robotics operations, debugging and incident response scenarios, integration patterns (WMS/PLC), navigation and fleet management basics, and practical experience delivering improvements in real deployments.

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