[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"job-senior-robotics-engineer-jobs":3},{"Ques":4,"Slug":22,"Header":23,"job_category":53},{"title":5,"content":6},"Frequently Asked Questions",[7,10,13,16,19],{"A":8,"Q":9},"A Senior Robotics Engineer designs and ships autonomy capabilities for real robots, typically spanning perception, localization\u002FSLAM, motion planning, and control. The work includes ROS\u002FROS2 development, sensor integration, simulation, testing, and on-robot debugging to achieve reliable field performance.","What does a Senior Robotics Engineer do in these roles?",{"A":11,"Q":12},"Yes. The roles on this page are Remote and FULL_TIME. Some teams may require occasional travel for hardware integration or field testing, depending on the platform.","Are these Senior Robotics Engineer jobs remote and full-time?",{"A":14,"Q":15},"Skills that align strongly include Robotics, ROS2, C++, Python, Motion Planning, SLAM, Sensor Fusion, Computer Vision, Control Systems, Gazebo, Isaac Sim, and Linux.","Which skills should match the Senior Robotics Engineer Jobs keyword intent?",{"A":17,"Q":18},"Common employers include technology companies building robotics products, AI labs working on autonomy, robotics startups, and teams deploying robots in logistics, inspection, healthcare, or consumer environments.","What types of companies hire for Senior Robotics Engineer Jobs through Rex.zone?",{"A":20,"Q":21},"Include evidence of deployed systems: ROS\u002FROS2 packages you owned, datasets or scenarios used for validation, performance metrics (latency, drift, success rate), reliability improvements, and how you debugged real sensor and actuator issues. Links to repos, technical blogs, and demo videos help.","What should I include in my application to stand out?","senior-robotics-engineer-jobs",{"desc":24,"title":25,"content":26},"Senior Robotics Engineer Jobs at Rex.zone connect experienced robotics engineers with remote, full-time roles building and deploying real-world robotic systems. You will design robot software and motion pipelines, integrate sensors and actuators, and improve autonomy using perception, planning, and control. Typical workflows include ROS\u002FROS2 development, SLAM and localization, path planning, computer vision, simulation-to-real transfer, and production-grade testing. These opportunities span AI labs, tech startups, and robotics product teams, with end-to-end ownership from prototype to field performance, reliability, and safety. Explore and apply on Rex.zone to match with Senior Robotics Engineer jobs aligned to your robotics domain and stack.","Senior Robotics Engineer Jobs",[27,29,32,35,38,41,44,47,50],{"h2":25,"desc":28},"LinkedIn Job Metadata: Title: Senior Robotics Engineer Jobs | 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: Robotics, ROS2, C++, Python, Motion Planning, SLAM, Sensor Fusion, Computer Vision, Control Systems, Gazebo, Isaac Sim, Linux | Salary Currency: USD | Salary Min: 63360 | Salary Max: 126720 | Pay Period: YEAR",{"h2":30,"desc":31},"About the Role","As a Senior Robotics Engineer, you will architect and implement robot autonomy features across perception, planning, and control. You will build robust ROS\u002FROS2 nodes, integrate sensors (cameras, LiDAR, IMU, encoders), and ship reliable behaviors in real environments. You will collaborate with mechanical, electrical, and product partners to define interfaces, validation plans, and deployment processes for remote-first robotics teams.",{"h2":33,"desc":34},"Key Responsibilities","You will: design and maintain ROS\u002FROS2-based autonomy stacks; implement localization, mapping, and SLAM pipelines; develop motion planning and trajectory optimization for dynamic environments; build perception modules using computer vision and sensor fusion; tune control loops and state estimators for stability and performance; create simulation environments and test harnesses (Gazebo, Isaac Sim) to reproduce field issues; establish logging, telemetry, and debugging workflows for fleet learning and regression analysis; write production-quality C++\u002FPython code with CI, code review, and documentation; partner on safety, reliability, and fail-safe behaviors for hardware deployment.",{"h2":36,"desc":37},"Required Qualifications","You have: 5+ years of robotics software engineering or equivalent experience delivering deployed robotic systems; strong C++ and Python proficiency on Linux; hands-on ROS\u002FROS2 expertise including TF, Nav2\u002FMoveIt (as applicable), message design, and real-time considerations; experience with SLAM\u002Flocalization (EKF\u002FUKF, factor graphs, scan matching), and sensor fusion; familiarity with motion planning (A*, RRT*, MPC, trajectory smoothing) and control (PID, LQR); ability to debug hardware-software integration issues with logs and instrumentation; experience designing APIs and ownership boundaries across perception, planning, and control modules.",{"h2":39,"desc":40},"Preferred Qualifications","You may also have: experience deploying to embedded compute (Jetson, x86 edge) and managing performance constraints; knowledge of calibration (camera intrinsics\u002Fextrinsics), time synchronization, and coordinate frames; familiarity with safety standards, fault detection, and redundancy patterns; experience with multi-robot coordination, fleet management, or cloud robotics; exposure to learning-based robotics (imitation learning, RL) and sim-to-real workflows; background in testing methodologies for robotics including HIL\u002FSIL, bag replay, and scenario-based evaluation.",{"h2":42,"desc":43},"Tools and Tech Stack","Common stacks include: ROS\u002FROS2, C++, Python, Linux, Git, CI\u002FCD; perception with OpenCV and point cloud processing; planning with Nav2\u002FMoveIt and custom planners; simulation with Gazebo, Isaac Sim, or similar; visualization with RViz; observability via structured logging, metrics, and bagging; containerization and reproducible builds where needed.",{"h2":45,"desc":46},"Remote Work and Collaboration","These are remote, full-time roles. You will work asynchronously with distributed teams, participate in design reviews and incident retrospectives, and maintain clear documentation and testable interfaces. Some positions may involve periodic travel for hardware integration, field testing, or onsite validation depending on the robot platform.",{"h2":48,"desc":49},"Compensation","Salary Range: 63360 to 126720 USD per year, based on role scope, domain specialization, and interview performance. Exact compensation may vary by team, location constraints, and responsibilities.",{"h2":51,"desc":52},"How to Apply on Rex.zone","Apply via Rex.zone with a resume highlighting deployed robotics projects, ROS\u002FROS2 modules you owned, and measurable outcomes (navigation success rate, localization error, uptime, latency, or safety improvements). Include links to code samples, publications, demos, or technical write-ups when available.","Engineering"]