Robotics Engineer Jobs Campinas

Robotics Engineer Jobs Campinas on Rex.zone focus on building and deploying real-world robotic systems end-to-end: perception, localization, motion planning, controls, and software integration. These remote, full-time roles support robotics development workflows used by tech startups, AI labs, and product teams—covering simulation-to-reality validation, sensor fusion, ROS/ROS2 nodes, and production-grade QA for safety and performance. Explore Robotics Engineer Jobs Campinas at Rex.zone to apply to roles aligned with mid-senior engineering impact, scalable autonomy stacks, and measurable field reliability improvements.

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Robotics Engineer Jobs Campinas

Title: Robotics Engineer Jobs Campinas 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, Motion Planning, SLAM, Sensor Fusion, Computer Vision, Controls, Gazebo, Docker Salary Currency: USD Salary Min: 63360 Salary Max: 126720 Pay Period: YEAR

About the Role

You will design, implement, and validate robotics software and algorithms across the autonomy stack, from perception and state estimation to planning and control. The work includes building ROS/ROS2 components, integrating sensors (camera, LiDAR, IMU), validating behavior in simulation (e.g., Gazebo) and on hardware, and improving runtime reliability through testing and observability. You will collaborate with product and hardware teams to ship safe, robust robotic capabilities while maintaining engineering standards for documentation, code review, and reproducible builds.

Key Responsibilities

Own robotics features from design to field readiness, including requirements and acceptance criteria. Build and maintain ROS/ROS2 nodes, launch files, and middleware integrations. Implement perception pipelines, sensor fusion, SLAM/localization, and map handling where applicable. Develop motion planning and control modules, tune controllers, and validate stability under constraints. Create simulation scenarios and regression tests to close the sim-to-real gap. Improve system performance (latency, CPU/GPU usage) and reliability (fault handling, watchdogs, recovery). Write clear documentation and support cross-team debugging during integration and field trials.

Required Qualifications

Mid-senior experience delivering robotics or autonomous systems in production or advanced prototypes. Strong C++ and Python skills with clean architecture and unit/integration testing practices. Practical experience with ROS or ROS2, message passing, TF frames, and sensor drivers. Hands-on understanding of SLAM/localization concepts, sensor fusion, and motion planning fundamentals. Familiarity with Linux development environments, Git workflows, and CI. Ability to diagnose real-world robotics issues using logs, rosbag data, and performance profiling.

Preferred Qualifications

Experience with computer vision (OpenCV), deep learning inference at the edge, or real-time perception constraints. Knowledge of planning frameworks (e.g., OMPL) and trajectory optimization. Experience with navigation stacks, calibration procedures, and time synchronization. Comfort with containerization (Docker) and reproducible deployment pipelines. Exposure to safety practices, field testing protocols, and failure mode analysis for robotic platforms.

Tools, Tech Stack, and Workflows

Typical stacks include ROS2, C++/Python, Linux, Gazebo or similar simulation tools, and modern DevOps practices for builds and deployment. Workflows often involve dataset collection (rosbags), annotation/ground truth when needed, offline evaluation, hardware-in-the-loop testing, and iterative parameter tuning. You will contribute to QA processes such as regression suites, scenario coverage, and performance benchmarks to ensure model and system improvements translate into real-world reliability.

Compensation and Benefits

This is a remote, full-time role with annual compensation in USD within the stated range, depending on skills and experience. Benefits and additional perks may vary by assignment and client team, but typically include structured onboarding, clear deliverables, and ongoing support through Rex.zone.

How to Apply on Rex.zone

Apply through Rex.zone with an up-to-date resume highlighting robotics systems shipped, ROS/ROS2 projects, and measurable outcomes (latency reductions, success rates, uptime, navigation accuracy). Include links to repositories, technical write-ups, or demos when available. If you have recent work in SLAM, planning, controls, or perception, describe the environment, sensors, constraints, and validation methods used.

Frequently Asked Questions

  • Q: Are these roles remote even though the keyword includes Campinas?

    Yes. These postings are explicitly marked Remote and are listed on Rex.zone for remote, full-time robotics engineering opportunities aligned with the Campinas search intent.

  • Q: What does a Robotics Engineer do in this context?

    A Robotics Engineer builds the software and algorithms that enable robots to perceive their environment, estimate state, plan motion, and execute controls reliably. The work commonly includes ROS/ROS2 integration, sensor fusion, SLAM/localization, motion planning, simulation validation, and field troubleshooting.

  • Q: Which skills matter most for Robotics Engineer Jobs Campinas?

    Core skills include ROS2, C++, Python, motion planning, SLAM, sensor fusion, computer vision, and controls, plus strong Linux and debugging fundamentals for real hardware and simulation workflows.

  • Q: Is this full-time only, or are contract and freelance options available?

    This specific listing is FULL_TIME. Rex.zone may also feature contract or freelance robotics roles, but the job metadata here remains full-time as provided.

  • Q: What industries and employers typically hire for these roles?

    Employers include technology companies such as robotics startups, autonomy teams, AI labs, and product organizations building industrial automation, logistics robots, service robotics, or R&D platforms.

  • Q: How is performance evaluated for robotics engineering work?

    Evaluation typically includes simulation-based regression tests, scenario coverage, field reliability metrics, latency and resource usage benchmarks, and safety/robustness checks across sensors and environments.

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