[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"job-robotics-jobs-queretaro":3},{"Ques":4,"Slug":31,"Header":32,"job_category":63},{"title":5,"content":6},"Frequently Asked Questions",[7,10,13,16,19,22,25,28],{"A":8,"Q":9},"Yes. The role is explicitly Remote and FULL_TIME as listed in the job metadata.","Is this role remote and full-time?",{"A":11,"Q":12},"The keyword reflects the search intent for robotics opportunities associated with Querétaro, while the posting metadata keeps the specified Country as US and the role as Remote.","Why does the page target “Robotics Jobs Querétaro” if the country is US?",{"A":14,"Q":15},"Typical work includes ROS\u002FROS2 software development, motion planning, SLAM\u002Flocalization, sensor fusion, perception\u002Fcomputer vision, simulation, and hardware-in-the-loop testing for industrial automation and autonomous systems.","What kind of robotics work is covered?",{"A":17,"Q":18},"Mid-Senior level, with a track record of shipping robotics or automation features and owning reliability, testing, and deployment readiness.","What experience level is expected?",{"A":20,"Q":21},"Emphasize ROS2, C++, Python, motion planning, SLAM, sensor fusion, computer vision, embedded Linux, simulation (Gazebo), and validation\u002Ftesting practices such as HIL and regression testing.","Which skills should I emphasize on my application?",{"A":23,"Q":24},"The listed range is USD 63360 to 126720 per year, as provided in the job metadata. Final offers typically depend on experience, scope, and interview outcomes.","Is the salary range fixed?",{"A":26,"Q":27},"This specific posting is FULL_TIME. Rex.zone may also list contract, freelance, entry-level, and senior robotics roles, so you can browse the platform for different employment types.","Do you accept contract or freelance candidates?",{"A":29,"Q":30},"Include concrete metrics (uptime, latency, success rate), links to ROS2 packages or demos, examples of simulation environments you built, details on hardware and sensors integrated, and evidence of disciplined testing and code review practices.","What should I include to stand out?","robotics-jobs-queretaro",{"desc":33,"title":34,"content":35},"Robotics Jobs Querétaro on Rex.zone connect mid-senior engineers with remote, full-time robotics work across industrial automation, autonomous systems, and robot software. You will build and validate robotic perception, controls, and motion planning pipelines using ROS\u002FROS2, simulation, and hardware-in-the-loop testing to improve system reliability and deployment readiness. This role supports real-world robotics workflows: sensor fusion, SLAM, path planning, PLC\u002FSCADA integration, safety compliance, and production-grade CI\u002FCD for embedded and edge devices. Explore Rex.zone to apply, compare remote robotics openings, and match your skills to high-impact engineering teams.","Robotics Jobs Querétaro",[36,39,42,45,48,51,54,57,60],{"h2":37,"desc":38},"Robotics Engineer (Querétaro) — Remote, Full-Time","Job Title: Robotics Engineer (Querétaro)\nDate Posted: 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, Motion Planning, SLAM, Sensor Fusion, Computer Vision, Embedded Linux, Gazebo, Hardware-in-the-Loop Testing\nSalary Currency: USD\nSalary Min: 63360\nSalary Max: 126720\nPay Period: YEAR",{"h2":40,"desc":41},"About the Role","You will design, implement, and validate robot software and automation solutions for production environments and autonomous platforms. The work spans robotics middleware (ROS\u002FROS2), real-time control, perception, and motion planning, with strong emphasis on testability, safety, and deployment. You will collaborate with cross-functional teams to translate requirements into reliable robot behaviors, integrate sensors and actuators, and maintain documentation and engineering quality standards.",{"h2":43,"desc":44},"What You Will Do","Core responsibilities include: owning robot software modules from concept to deployment; implementing navigation, localization, and motion planning stacks; integrating cameras, LiDAR, IMU, encoders, and force\u002Ftorque sensors; building simulation scenarios (Gazebo\u002FIgnition or equivalent) and hardware-in-the-loop validation; optimizing latency and throughput on embedded\u002Fedge compute; defining test plans, acceptance criteria, and regression suites; supporting field issue triage with logs, telemetry, and root-cause analysis; collaborating on safety reviews and operational readiness for deployments.",{"h2":46,"desc":47},"Required Qualifications","You should have: professional experience shipping robotics or automation systems; strong C++ and Python for production code; ROS\u002FROS2 experience with message definitions, TF, nav stacks, and lifecycle nodes; knowledge of kinematics\u002Fdynamics, control concepts, and motion planning; familiarity with SLAM\u002Flocalization methods and sensor fusion; experience with Linux, git, and CI practices; ability to work independently in a remote environment with clear written communication.",{"h2":49,"desc":50},"Preferred Qualifications","Nice to have: MoveIt2, Nav2 tuning, or custom planners; computer vision pipelines (OpenCV, depth, stereo, AprilTags); real-time constraints and profiling; embedded systems and drivers; PLC\u002FSCADA or industrial protocols; functional safety exposure (risk assessment, safety-rated I\u002FO concepts); experience with cloud robotics, telemetry, and fleet management; familiarity with simulation-to-real transfer and calibration workflows.",{"h2":52,"desc":53},"Tools and Workflows You Will Use","Typical stack includes: ROS2, C++\u002FPython, Gazebo\u002FIgnition (or equivalent), OpenCV, Eigen, Linux, Docker, git, CI\u002FCD pipelines, logging and telemetry, unit\u002Fintegration testing, and structured code reviews. You will work with repeatable build systems, reproducible environments, and clear interface contracts to ensure maintainable modules and reliable deployments.",{"h2":55,"desc":56},"How Success Is Measured","Success metrics include: improved navigation and manipulation reliability; reduced deployment regressions through better test coverage; faster integration cycles via modular architecture; measurable gains in localization robustness and planning stability; reduced mean time to resolution on field issues; and strong documentation and handoff quality for cross-team consumption.",{"h2":58,"desc":59},"Why Rex.zone","Rex.zone is the platform where remote engineering teams source specialized talent for robotics, automation, and intelligent systems. You can explore remote, contract, freelance, full-time, entry-level, and senior roles across domains including autonomous robots, industrial automation, computer vision, and edge AI—then apply to the opportunities that best match your experience and goals.",{"h2":61,"desc":62},"How to Apply","Apply through Rex.zone with a resume highlighting shipped robotics systems, ROS\u002FROS2 projects, and measurable engineering outcomes. Include links to repositories or portfolios where possible, plus brief notes on hardware you have integrated, simulations you have built, and testing practices you have owned.","Engineering"]