Robotics Software Engineer Jobs Mexico City

Robotics Software Engineer Jobs Mexico City connect mid-senior engineers with remote, full-time robotics software work across perception, localization, planning, and controls. On Rex.zone, you will help build production robotics systems that integrate ROS/ROS2 nodes, real-time C++/Python services, sensor fusion, SLAM, motion planning, and simulation-to-real deployment. This role supports end-to-end robot development workflows: writing reliable autonomy code, validating behavior in Gazebo/Isaac/CI pipelines, improving safety and performance, and collaborating with hardware, QA, and field teams. Explore Rex.zone to apply, compare remote robotics opportunities, and ship software that moves real robots in the real world.

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Robotics Software Engineer Jobs Mexico City

Title: Robotics Software Engineer Jobs Mexico City | 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: ROS, ROS2, C++, Python, SLAM, Sensor Fusion, Motion Planning, Computer Vision, Navigation, Controls, Gazebo, Isaac Sim, Linux, Real-Time Systems, Docker, CI/CD | Salary Currency: USD | Salary Min: 63360 | Salary Max: 126720 | Pay Period: YEAR

About the Role

As a Robotics Software Engineer, you will design, implement, and maintain autonomy software for robots operating in dynamic environments. You will work remotely while collaborating with cross-functional teams to integrate perception, localization, planning, and control into robust ROS/ROS2 applications. Your work will include simulation-first development, real-world validation, debugging complex sensor/actuator issues, and improving robot reliability through test automation and observability.

What You Will Do

Build and optimize ROS/ROS2 nodes for perception, localization, planning, and control; implement SLAM, sensor fusion, and state estimation pipelines; develop motion planning and navigation behaviors with safety constraints; integrate cameras, LiDAR, IMU, GPS, encoders, and motor controllers; create simulation and replay workflows (Gazebo/Isaac Sim, bag playback) for rapid iteration; write production-grade C++/Python with profiling, logging, and metrics; design automated tests, CI/CD checks, and regression suites for autonomy stacks; collaborate with hardware, QA, and field teams to diagnose failures and improve uptime; document interfaces, configuration, and runbooks for deployment and operations.

Required Qualifications

Mid-senior experience shipping robotics software in production or field pilots; strong C++ and Python for performance-critical and tooling workflows; hands-on ROS or ROS2 development including topics, services, actions, TF, and launch tooling; experience with SLAM, localization, sensor fusion, or state estimation; familiarity with motion planning and navigation concepts (costmaps, trajectory generation, collision checking); Linux proficiency and comfort debugging distributed systems; ability to read logs, analyze bag files, reproduce issues, and deliver fixes with tests.

Preferred Qualifications

Experience with computer vision (OpenCV, feature tracking, depth, calibration) and/or deep learning perception; exposure to real-time systems, latency budgeting, and safety-oriented design; experience with simulators (Gazebo, Isaac Sim) and sim-to-real validation; knowledge of autonomy frameworks (Nav2, MoveIt) and common robotics middleware patterns; familiarity with Docker, CI/CD, and reproducible builds; experience supporting deployments, observability, and incident response for robots in the field.

Tools and Tech Stack

ROS/ROS2, C++, Python, Linux, Git, Docker, CI/CD, Gazebo/Isaac Sim, OpenCV, SLAM and sensor fusion libraries, debugging/profiling tools, telemetry/logging, and hardware integration workflows for cameras, LiDAR, IMU, GPS, and motor controllers.

How to Apply on Rex.zone

Apply via Rex.zone with your resume, links to repositories (if available), and brief notes on robotics domains you have shipped (perception, SLAM, planning, controls, simulation). Include one example of a hard debugging or field reliability problem you solved and how you validated the fix (tests, replay, simulation, on-robot trials).

Role Modifiers and Related Searches

Remote robotics jobs, full-time robotics engineer, contract robotics software engineer, freelance robotics developer, entry-level robotics roles, senior robotics engineer positions, ROS2 developer, autonomy engineer, SLAM engineer, perception engineer, motion planning engineer, controls engineer, computer vision robotics, navigation stack, simulation engineer, tech startup robotics, AI labs robotics, and robotics vendors.

Frequently Asked Questions

  • Q: Is this role remote?

    Yes. Remote Type is set to Remote, and the job is designed for distributed collaboration with scheduled overlap for engineering syncs.

  • Q: Why does the page say Mexico City but the country is US?

    The SEO keyword targets "Robotics Software Engineer Jobs Mexico City" while the job metadata Country remains US as provided. The role is remote, so location is treated as a search modifier rather than an on-site requirement.

  • Q: What robotics domains does this role cover?

    Common focus areas include ROS/ROS2 integration, perception and computer vision, SLAM/localization, sensor fusion, motion planning, navigation behaviors, and controls, supported by simulation and automated testing.

  • Q: What experience level is expected?

    Experience Level is Mid-Senior. You should be comfortable owning components end-to-end, from design to deployment, with strong debugging and reliability practices.

  • Q: What employment type and pay range are listed?

    Employment Type is FULL_TIME with an annual USD salary range of 63360 to 126720, paid per YEAR.

  • Q: What skills should I highlight to match this posting?

    Highlight ROS/ROS2, C++, Python, SLAM, sensor fusion, motion planning, navigation, controls, simulation (Gazebo/Isaac Sim), Linux, Docker, and CI/CD, plus evidence of field testing and reliability improvements.

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50+Countries Represented

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