[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"job-robotics-developer-jobs-sao-paulo":3},{"Ques":4,"Slug":25,"Header":26,"job_category":53},{"title":5,"content":6},"Frequently Asked Questions",[7,10,13,16,19,22],{"A":8,"Q":9},"Yes. The roles on this page are marked Remote and FULL_TIME, with expectations for consistent delivery, code reviews, and collaborative engineering practices in a distributed team.","Are these Robotics Developer jobs truly Remote and full-time?",{"A":11,"Q":12},"The SEO keyword targets Robotics Developer Jobs São Paulo to match candidate search intent, while the job metadata uses the provided Country value (US) and Remote Type (Remote). Remote roles may support teams across regions while still being searchable by city-based modifiers.","Why does the page target \"Robotics Developer Jobs São Paulo\" if the country is US?",{"A":14,"Q":15},"Most roles prioritize ROS2, C++\u002FPython, SLAM and localization, sensor fusion, motion planning, and control systems, plus strong testing habits using simulation and log-driven evaluation.","What robotics skills are most important for these roles?",{"A":17,"Q":18},"It depends on the product. Many robotics stacks benefit from computer vision for perception (e.g., detection, tracking, depth), but some roles emphasize navigation, planning, or controls more heavily.","Do I need computer vision experience?",{"A":20,"Q":21},"Highlight shipped robotics features with measurable results: improved navigation success rate, reduced localization drift, faster planning latency, better obstacle avoidance, or improved system reliability in field deployments. Mention sensors used, simulation setup, and how you validated changes.","What kind of projects should I highlight on my application?",{"A":23,"Q":24},"Rex.zone may also list contract and freelance roles depending on employer needs, but this page is specifically configured for Remote FULL_TIME positions.","What employment types can I find on Rex.zone besides full-time?","robotics-developer-jobs-sao-paulo",{"desc":27,"title":28,"content":29},"Robotics Developer jobs in São Paulo focus on building and deploying software for real-world robotic systems, including perception, planning, control, and autonomous navigation. On Rex.zone, these Remote FULL_TIME roles typically connect engineering workflows across ROS2, sensor fusion, SLAM, motion planning, and edge deployment to improve robot performance in production. If you are targeting Robotics Developer Jobs São Paulo, you will collaborate with cross-functional teams to ship reliable robotics features, validate behavior with simulation and hardware-in-the-loop testing, and uphold safety and quality standards from prototype to fleet operations.","Robotics Developer Jobs São Paulo",[30,32,35,38,41,44,47,50],{"h2":28,"desc":31},"Title: Robotics Developer Jobs São Paulo | 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: ROS2, C++, Python, SLAM, Sensor Fusion, Computer Vision, Motion Planning, Control Systems, Autonomous Navigation, Gazebo Simulation | Salary Currency: USD | Salary Min: 63360 | Salary Max: 126720 | Pay Period: YEAR",{"h2":33,"desc":34},"About Rex.zone","Rex.zone helps candidates discover and apply to high-signal Remote, full-time, contract, and freelance roles across technology teams. For robotics hiring, Rex.zone supports employers such as AI labs, tech startups, and industrial automation teams looking for engineers who can deliver robust autonomy software, integrate sensors and actuators, and support field deployment with strong engineering discipline.",{"h2":36,"desc":37},"What You Will Do","You will design, implement, and maintain robotics software modules for perception, localization, mapping, planning, and control. You will build ROS2 nodes, define message interfaces, and integrate cameras, LiDAR, IMU, GNSS, and wheel odometry for sensor fusion. You will contribute to SLAM pipelines, motion planning, obstacle avoidance, and trajectory tracking. You will create simulation scenarios, run regression suites, and perform hardware-in-the-loop tests to validate behavior. You will analyze logs, tune parameters, fix real-time performance bottlenecks, and improve reliability across deployments. You will collaborate with hardware, QA, and product teams to translate requirements into safe, testable, production-ready robotics features.",{"h2":39,"desc":40},"Core Workflows and Technical Scope","Daily work commonly includes autonomy stack development, ROS2 lifecycle management, and debugging distributed systems across on-robot compute and edge devices. You may work with computer vision and depth estimation, multi-sensor calibration, EKF\u002FUKF filtering, and map management. Planning and control scope can include behavior trees, MPC\u002FPID controllers, kinematic constraints, collision checking, and time-optimal trajectory generation. Quality processes include code reviews, CI pipelines, simulation replay, dataset-driven evaluation, and safety-oriented validation with clear acceptance criteria.",{"h2":42,"desc":43},"Required Qualifications","Mid-Senior experience delivering robotics or autonomy software in production or research-to-production settings. Strong C++ and Python engineering skills with debugging, profiling, and performance optimization. Practical ROS2 experience, including node design, tf2, launch systems, and message definitions. Familiarity with SLAM, localization, sensor fusion, and navigation concepts. Ability to work remotely with clear written communication, reproducible experiments, and disciplined version control practices.",{"h2":45,"desc":46},"Preferred Qualifications","Experience with Gazebo, Isaac Sim, or similar simulation environments; hardware-in-the-loop testing; and log-based evaluation. Exposure to computer vision (OpenCV), point cloud processing (PCL), and calibration tooling. Familiarity with real-time constraints, edge deployment, Linux on embedded platforms, and containerization. Knowledge of safety practices, fail-safe behaviors, and testing strategies for robotics systems operating in the physical world.",{"h2":48,"desc":49},"Remote Work and Collaboration","This role is explicitly Remote and FULL_TIME, with expectations for asynchronous collaboration, documented design decisions, and testable deliverables. Teams typically rely on structured issue tracking, reproducible simulation runs, and clear performance metrics such as localization accuracy, collision rate, navigation success rate, and latency budgets.",{"h2":51,"desc":52},"How to Apply on Rex.zone","Apply through Rex.zone by submitting your resume and a short summary of robotics systems you have shipped, including your role, stack (ROS2, sensors, simulation), and measurable outcomes. Including links to code samples, technical writeups, or demo videos can strengthen your application.","Engineering"]