[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"job-robotics-software-engineer-jobs-sao-paulo":3},{"Ques":4,"Slug":31,"Header":32,"job_category":59},{"title":5,"content":6},"Frequently Asked Questions",[7,10,13,16,19,22,25,28],{"A":8,"Q":9},"Yes. The roles on this page are explicitly marked Remote and are designed for distributed collaboration across engineering, QA, and operations.","Are these Robotics Software Engineer Jobs São Paulo remote?",{"A":11,"Q":12},"It refers to an engineer who builds robot software stacks: ROS\u002FROS2 integration, perception pipelines, SLAM\u002Flocalization, motion planning, and control—plus testing, simulation, and deployment for real robots.","What does “Robotics Software Engineer” mean in this posting?",{"A":14,"Q":15},"Yes. Employment Type is FULL_TIME and Pay Period is YEAR.","Is this a full-time role?",{"A":17,"Q":18},"Core skills include ROS2, C++, Python, SLAM, sensor fusion, motion planning, control systems, computer vision, embedded Linux, simulation (Gazebo), and CI\u002FCD.","Which skills should match the keyword intent for Robotics Software Engineer Jobs São Paulo?",{"A":20,"Q":21},"Technology teams across robotics startups, AI labs, industrial automation, logistics\u002Fwarehouse robotics, autonomous mobility, and enterprise R&D commonly hire for these roles.","What industries commonly hire for Robotics Software Engineer Jobs São Paulo?",{"A":23,"Q":24},"ROS2 is strongly preferred for modern robotics stacks, though strong ROS1 experience can be relevant if you can demonstrate migration knowledge and production system ownership.","Do I need ROS2 specifically?",{"A":26,"Q":27},"Show end-to-end ownership of a robotics subsystem (perception, SLAM, planning, or control), how you tested it (simulation, bag replay, HIL), and the performance\u002Freliability improvements you delivered in production.","What should I highlight in my application?",{"A":29,"Q":30},"Yes. The keyword targets São Paulo, so employers may prefer candidates aligned with that market or time zone, but the role remains marked Remote.","Is the location São Paulo relevant even though the job is remote?","robotics-software-engineer-jobs-sao-paulo",{"desc":33,"title":34,"content":35},"Robotics Software Engineer jobs in São Paulo focus on building and deploying robot software stacks for real-world automation—perception, planning, control, and integration—across mobile robots, manipulators, and industrial systems. On Rex.zone, these remote full-time roles connect you with teams shipping production robotics using ROS\u002FROS2, C++\u002FPython, SLAM, sensor fusion, and simulation-to-real workflows. You will collaborate with hardware, QA, and platform engineering to improve reliability, safety, and performance, while maintaining clean interfaces, test coverage, and CI\u002FCD for robotics software. Explore and apply to Robotics Software Engineer Jobs São Paulo that match your experience, domain (computer vision, autonomy, controls), and preferred robotics platform.","Robotics Software Engineer Jobs São Paulo",[36,38,41,44,47,50,53,56],{"h2":34,"desc":37},"Title: Robotics Software Engineer Jobs São Paulo\nDate: 25-02-2026\nCompany: Rexzone\nCountry: US\nRemote Type: Remote\nEmployment Type: FULL_TIME\nExperience Level: Mid-Senior\nIndustry: Technology\nJob Function: Engineering\nSkills: ROS2, C++, Python, SLAM, Sensor Fusion, Motion Planning, Control Systems, Computer Vision, Embedded Linux, Gazebo, Docker, CI\u002FCD\nSalary Currency: USD\nSalary Min: 63360\nSalary Max: 126720\nPay Period: YEAR",{"h2":39,"desc":40},"About the Role","Design, implement, and maintain robotics software for autonomy and automation. You will work on core robotics modules such as perception pipelines (camera\u002FLiDAR\u002FIMU), localization and mapping (SLAM), behavior planning, motion planning, and closed-loop controls. You will integrate with hardware drivers, safety interlocks, and fleet\u002Fcloud services; improve on-robot observability (telemetry, logs, metrics); and ship reliable releases using testing, simulation, and CI\u002FCD. These Robotics Software Engineer Jobs São Paulo emphasize production-grade engineering, code quality, and measurable performance improvements in real environments.",{"h2":42,"desc":43},"Key Responsibilities","Own robotics software components across the stack: perception, localization, planning, and control; build ROS\u002FROS2 nodes, topics, services, and actions with clean APIs and message definitions; implement sensor calibration, time synchronization, and sensor fusion (e.g., EKF\u002FUKF) for robust state estimation; develop and tune SLAM and localization pipelines for diverse environments and dynamic obstacles; create motion planning and trajectory generation that respect kinematic constraints, safety margins, and real-time deadlines; integrate robotics software with embedded Linux, firmware interfaces, and hardware IO; validate in simulation (Gazebo\u002FIsaac) and transition to real robots with simulation-to-real testing; add automated tests (unit\u002Fintegration\u002FHIL), regression benchmarks, and performance profiling; collaborate with QA, product, and operations to triage field issues, reproduce bugs, and deliver fixes; document architecture, runbooks, and deployment procedures for maintainability.",{"h2":45,"desc":46},"Required Qualifications","Mid-Senior experience building production software in robotics, autonomy, or embedded systems; strong C++ and Python skills with clean architecture, memory safety, and debugging proficiency; hands-on experience with ROS\u002FROS2, message passing, lifecycle nodes, and tooling; solid foundations in robotics math: coordinate frames, transforms, kinematics, and estimation; experience with at least one of: SLAM, state estimation, motion planning, control systems, or computer vision; familiarity with Linux development, build systems (CMake\u002Fcolcon), and version control workflows; ability to write tests, use profilers, and diagnose performance bottlenecks; clear communication and ability to work remotely across time zones.",{"h2":48,"desc":49},"Preferred Qualifications","Experience with navigation stacks (e.g., Nav2), costmaps, and obstacle avoidance; perception experience with OpenCV, point clouds (PCL), or deep learning inference on edge devices; embedded and real-time systems knowledge (RT kernels, scheduling, latency analysis); simulation experience (Gazebo, Isaac Sim) and data-driven validation; experience with Docker, Kubernetes, and deploying robotics services at scale; knowledge of functional safety concepts (fault detection, redundancy, safe stop) and robotics safety standards; exposure to fleet management, over-the-air updates, and remote monitoring.",{"h2":51,"desc":52},"Tools and Workflows","Typical stacks include ROS\u002FROS2, C++17\u002F20, Python, Eigen, OpenCV, PCL, SLAM\u002Fstate estimation libraries, and navigation\u002Fmotion planning toolkits. Development commonly uses Linux, CMake\u002Fcolcon, clang-tidy, gdb\u002Flldb, profiling tools, Docker, and CI\u002FCD pipelines. Testing includes simulation-based validation, replay tools, bag files, automated regression suites, and hardware-in-the-loop checks.",{"h2":54,"desc":55},"What Success Looks Like","Robot behaviors are stable, repeatable, and safe across expected operating conditions; localization drift, planning failures, and control oscillations decrease through measurable improvements; software releases are predictable with automated tests and clear rollback paths; field issues are diagnosed quickly using logs, metrics, and reproducible test cases; cross-functional stakeholders trust the robotics stack because performance and reliability are transparent and continuously improved.",{"h2":57,"desc":58},"How to Apply on Rex.zone","Search Rex.zone for Robotics Software Engineer Jobs São Paulo and filter by remote, full-time, and experience level. Prepare a resume highlighting ROS\u002FROS2 projects, autonomy modules you owned (SLAM, planning, control), and evidence of production deployment (testing, CI\u002FCD, field debugging). Include links to GitHub, publications, demos, or project write-ups that show system design, performance tuning, and reliability work.","Engineering"]