[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"job-robotics-jobs-buenos-aires":3},{"Ques":4,"Slug":25,"Header":26,"job_category":51},{"title":5,"content":6},"Frequently Asked Questions",[7,10,13,16,19,22],{"A":8,"Q":9},"Yes. The posting metadata specifies Remote Type: Remote and Employment Type: FULL_TIME, and roles listed on Rex.zone remain explicitly remote unless stated otherwise.","Are these roles actually remote and full-time?",{"A":11,"Q":12},"Modern robotics relies on perception and autonomy models that improve via structured data collection, dataset curation, annotation guidelines compliance, and continuous evaluation. These workflows connect robotics engineering to AI\u002FML training pipelines and measurable model performance improvement.","Why does a Robotics Engineer role mention evaluation and training data quality?",{"A":14,"Q":15},"Keyword-aligned skills include Robotics, ROS2, SLAM, Motion Planning, Control Systems, Computer Vision, Sensor Fusion, C++, and Python—covering the most common search-modifier terms tied to robotics engineering roles.","What skills should match the SEO intent for Robotics Jobs Buenos Aires?",{"A":17,"Q":18},"Common domains include mobile robotics, autonomous navigation, warehouse\u002Findustrial robotics, last-mile delivery, inspection, and perception-heavy autonomy stacks that use computer vision and sensor fusion.","What kind of robotics domains are included?",{"A":20,"Q":21},"Compensation is listed as Salary Currency: USD with Salary Min: 63360 and Salary Max: 126720, Pay Period: YEAR, using plain numbers without symbols or commas.","What is the compensation range and how is it presented?",{"A":23,"Q":24},"ROS2 is commonly used for modern autonomy stacks, but equivalent experience with ROS1 plus strong robotics fundamentals, testing discipline, and production experience can still be relevant depending on the team.","Do I need ROS2 specifically?","robotics-jobs-buenos-aires",{"desc":27,"title":28,"content":29},"Robotics Jobs Buenos Aires on Rex.zone focus on the search-recognizable Robotics Engineer entity and adjacent robotics workflows: robot perception (CV, sensor fusion), SLAM, motion planning, control systems, autonomy stacks (ROS\u002FROS2), simulation, and field validation. You will build and evaluate robotics software that improves model performance, safety, and reliability across real-world deployments—connecting development, testing, and production operations in modern AI\u002FML training pipelines. This page supports remote, full-time hiring and helps candidates navigate Rex.zone to explore and apply to robotics roles aligned with Buenos Aires talent and global engineering teams.","Robotics Jobs Buenos Aires",[30,33,36,39,42,45,48],{"h2":31,"desc":32},"Robotics Engineer","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, SLAM, Motion Planning, Control Systems, Computer Vision, Sensor Fusion, C++, Python | Salary Currency: USD | Salary Min: 63360 | Salary Max: 126720 | Pay Period: YEAR",{"h2":34,"desc":35},"About the Role","You will design, build, and validate robotics software components used in autonomy stacks, including perception, localization (SLAM), motion planning, and control. The work emphasizes training data quality and evaluation loops: collecting sensor logs, curating datasets, defining annotation guidelines compliance for perception tasks, running regression test suites in simulation, and measuring model performance improvement in real-world scenarios. You will collaborate with platform and QA teams to ship reliable robot behaviors through structured experiments, failure analysis, and continuous integration.\nImplement and maintain robotics features across perception, localization, planning, and control modules.\nCreate evaluation protocols and QA gates for autonomy performance, including scenario-based testing and edge-case coverage.\nIntegrate sensor stacks (camera, LiDAR, IMU, wheel odometry) and build robust sensor fusion pipelines.\nDevelop simulation-first workflows (digital twin, Gazebo\u002FIsaac\u002FUnity) and validate against real-world logs.\nDefine data collection and labeling requirements for perception models (object detection, segmentation, tracking).\nPartner with cross-functional teams to improve safety, reliability, and on-robot performance through telemetry and debugging.",{"h2":37,"desc":38},"Key Responsibilities","This role blends robotics engineering with rigorous evaluation, reliability engineering, and practical deployment considerations in remote-first teams.\nBuild and tune SLAM pipelines (VIO\u002FLiDAR SLAM) and maintain map management strategies.\nImplement motion planning (trajectory generation, collision checking) and control (PID\u002FMPC) modules.\nOptimize runtime performance on embedded\u002Fedge compute and ensure deterministic behavior where required.\nEstablish testing strategy: unit\u002Fintegration tests, scenario libraries, and benchmarking dashboards.\nAnalyze failures using logs, sensor playback, and root-cause analysis; propose fixes and prevention checks.\nDocument interfaces, assumptions, and safety constraints for downstream teams and production support.",{"h2":40,"desc":41},"Required Qualifications","We are looking for mid-senior engineers who can own components end-to-end and collaborate across robotics, AI, and platform teams.\nProfessional experience shipping robotics software in production or large-scale pilots.\nStrong C++ and Python skills; familiarity with ROS\u002FROS2 nodes, messages, TF, and navigation stacks.\nHands-on experience with SLAM, sensor fusion, or robot perception (computer vision pipelines).\nUnderstanding of motion planning and control systems fundamentals for mobile robots or manipulators.\nExperience building test harnesses, evaluation metrics, and CI pipelines for robotics.\nAbility to communicate technical decisions clearly in a remote environment.",{"h2":43,"desc":44},"Preferred Qualifications","These are helpful but not required; the role can be tailored depending on your depth in autonomy vs. platform engineering.\nExperience with autonomy simulation and scenario generation (Gazebo, Isaac Sim, CARLA, Unity).\nBackground in ML for robotics: perception models, dataset curation, and offline\u002Fonline evaluation.\nExperience with safety practices (hazard analysis, operational design domain constraints, fail-safes).\nFamiliarity with edge deployment, profiling, and optimization (CUDA, TensorRT, ARM).\nExposure to fleet operations, telemetry pipelines, and long-term robot reliability.",{"h2":46,"desc":47},"Tools and Tech Stack","The exact stack varies by team, but these are common across Robotics Jobs Buenos Aires aligned roles at Rex.zone.\nLanguages: C++, Python\nRobotics: ROS\u002FROS2, TF, Nav2, MoveIt (as applicable)\nPerception: OpenCV, point cloud processing, detection\u002Fsegmentation pipelines\nLocalization: VIO, LiDAR SLAM, map formats and lifecycle management\nPlanning\u002FControl: trajectory optimization, collision checking, PID\u002FMPC concepts\nDevOps: Git, CI\u002FCD, Docker, Linux, profiling and logging tools",{"h2":49,"desc":50},"How to Apply on Rex.zone","Apply through Rex.zone to be considered for remote, full-time robotics roles. Your profile should demonstrate ownership of autonomy features, evaluation rigor, and measurable reliability improvements.\nSubmit a resume highlighting shipped robotics systems, test coverage, and autonomy metrics.\nInclude links to repositories, papers, demos, or case studies where available.\nDescribe one deep-dive project: problem, constraints, approach, evaluation, and results.\nBe ready to discuss debugging methodology using logs, playback, simulation, and on-robot tests.","Engineering"]