[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"job-robotics-jobs-costa-rica":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},"Yes. This posting is explicitly marked Remote and remains Remote across the job metadata and page content.","Are these Robotics Jobs Costa Rica roles remote?",{"A":11,"Q":12},"Typical domains include autonomy stacks (perception, SLAM, planning, control), computer vision for robotics, sensor fusion, simulation-to-real validation, and embedded integration.","What types of robotics domains are covered?",{"A":14,"Q":15},"Yes. While this role is FULL_TIME, Rex.zone also supports discovery of contract and freelance robotics roles, along with entry-level and senior postings where available.","Do you consider contract or freelance applicants?",{"A":17,"Q":18},"ROS\u002FROS2, Python, C++, Linux, simulation tools (Gazebo\u002FIsaac Sim), and strong debugging practices with logs\u002Fbags and automated QA testing are commonly expected.","Which tools are most relevant for applicants?",{"A":20,"Q":21},"Teams typically track reliability and safety metrics, navigation success rates, localization error, planning latency, regression test pass rates, and incident reductions through improved QA gates and validation.","How is performance measured in robotics engineering?","robotics-jobs-costa-rica",{"desc":24,"title":25,"content":26},"Robotics jobs Costa Rica on Rex.zone focus on building and deploying real-world robotic systems—robotics software engineering, perception and SLAM, motion planning, ROS\u002FROS2 integration, simulation-to-real validation, embedded controls, and QA testing for autonomous robots. You will support end-to-end robotics workflows used by AI labs, tech startups, and enterprise engineering teams: sensor fusion, computer vision, calibration, safety validation, and model performance improvement in production environments. Explore full-time remote roles, plus contract, freelance, entry-level, and senior tracks across NLP-adjacent human-robot interaction, computer vision, and autonomy stacks—then apply through Rex.zone.","Robotics Jobs Costa Rica",[27,29,32,35,38,41,44,47,50],{"h2":25,"desc":28},"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, Computer Vision, Sensor Fusion, Embedded Systems, Python, C++, Gazebo, Isaac Sim, Control Systems | Salary Currency: USD | Salary Min: 63360 | Salary Max: 126720 | Pay Period: YEAR",{"h2":30,"desc":31},"About the Role","You will design, integrate, and validate robotic capabilities across perception, localization, mapping, planning, and control. The work includes ROS\u002FROS2 node development, simulation-driven iteration, hardware-in-the-loop testing, sensor calibration, and production debugging. You will collaborate with cross-functional teams to define requirements, build reliable autonomy pipelines, improve system robustness, and document engineering decisions for repeatable deployment.",{"h2":33,"desc":34},"Key Responsibilities","Own robotics feature development from prototype to deployment; implement perception and sensor fusion for cameras, LiDAR, IMU, and encoders; develop and tune SLAM\u002Flocalization pipelines; build motion planning and control modules with safety constraints; create simulation scenarios for regression and performance testing; instrument logging\u002Ftelemetry and conduct root-cause analysis; write integration tests and enforce QA gates; maintain clear documentation, runbooks, and interface contracts.",{"h2":36,"desc":37},"Required Qualifications","Mid-to-senior experience shipping robotics systems; strong Python and C++ skills; hands-on ROS\u002FROS2 experience with tooling, messaging, and launch systems; practical understanding of SLAM, state estimation, and control; familiarity with computer vision pipelines and calibration; experience with Linux, Git, CI\u002FCD, and test automation; ability to debug real hardware issues using logs, bags, and profiling tools.",{"h2":39,"desc":40},"Preferred Qualifications","Experience with Gazebo, Isaac Sim, or similar simulation environments; motion planning frameworks (e.g., MoveIt) and constraint-based planning; embedded systems exposure (MCUs, real-time constraints, CAN\u002FI2C\u002FSPI); safety and verification practices for autonomy (hazard analysis, fail-safes); deployment experience on edge compute (NVIDIA Jetson) and performance optimization.",{"h2":42,"desc":43},"Workflow and Tooling","Common workflows include simulation-to-real iteration, bag review, dataset curation for perception improvements, benchmarking for model performance improvement, and regression testing for training data quality when perception models are updated. Tooling often includes ROS\u002FROS2, Python\u002FC++, OpenCV, Eigen, Gazebo\u002FIsaac Sim, Docker, and CI pipelines with automated QA evaluation for robotics releases.",{"h2":45,"desc":46},"What You’ll Work On","Autonomous navigation and obstacle avoidance; perception and scene understanding using computer vision; localization and mapping for indoor\u002Foutdoor environments; motion planning and trajectory tracking; sensor calibration and time synchronization; reliability improvements, monitoring, and incident response for deployed robots.",{"h2":48,"desc":49},"Remote Work and Collaboration","This is a Remote full-time role. You will collaborate asynchronously using written design docs, code reviews, test reports, and structured QA checklists. When hardware access is required, you will coordinate staged deployments, remote logs, and lab-based validation with partner teams.",{"h2":51,"desc":52},"How to Apply","Apply via Rex.zone with a resume highlighting robotics deployments, ROS\u002FROS2 projects, SLAM\u002Fplanning\u002Fcontrol experience, and links to GitHub or technical write-ups. Include examples of debugging complex autonomy issues, building simulation test coverage, and improving reliability in real-world environments.","Engineering"]