Robotics Engineer Jobs in Quito

Robotics Engineer jobs in Quito focus on designing, integrating, and deploying robotic systems that combine perception, control, and autonomy. On Rex.zone, these roles commonly span ROS/ROS2 development, motion planning, SLAM, sensor fusion, embedded software, and validation in simulation and real hardware. You will collaborate with cross-functional engineering teams to improve robot performance, reliability, and safety across real-world deployments, while using modern tooling for CI/CD, testing, and documentation. Explore remote, full-time opportunities aligned to Robotics Engineer Jobs Quito search intent, including work with AI/ML for robotics, computer vision, and edge compute workflows.

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Robotics Engineer Jobs in Quito (Remote, Full-Time) — Overview

Title: Robotics Engineer Jobs Quito | 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, Robotics Software Engineering, Motion Planning, SLAM, Sensor Fusion, Computer Vision, Control Systems, C++, Python, Embedded Systems | Salary Currency: USD | Salary Min: 63360 | Salary Max: 126720 | Pay Period: YEAR

About the Role

You will design and ship robotics capabilities for production environments, from prototyping in simulation to deployment on real hardware. This includes building ROS/ROS2 nodes, implementing control and autonomy logic, integrating sensors (LiDAR, cameras, IMU), and improving navigation, localization, and mapping performance. You will collaborate with mechanical, electrical, and product stakeholders, write tests and documentation, and use metrics-driven iteration to improve robot behavior, uptime, and safety. This role is Remote and Full-Time while supporting teams and deployments aligned to Quito robotics hiring demand.

Key Responsibilities

Responsibilities include owning robotics software components; developing ROS2 packages for perception, planning, and control; implementing SLAM, localization, and sensor fusion pipelines; tuning controllers and motion behaviors; validating in simulation (e.g., Gazebo/Ignition) and on hardware; building automated tests, logs, and debugging tools; improving real-time performance and reliability; contributing to safety and operational readiness reviews; collaborating on interface definitions, telemetry, and on-call support for deployed systems.

Required Qualifications

Mid-Senior experience building robotics systems; strong C++ and Python; practical ROS/ROS2 development and debugging; experience with localization/SLAM, motion planning, or control systems; ability to integrate and calibrate sensors and reason about coordinate frames; familiarity with Linux, networking, and real-time constraints; strong engineering fundamentals in software design, code review, and testing; clear documentation and cross-team communication in remote workflows.

Preferred Qualifications

Experience with Nav2, MoveIt, Eigen, OpenCV, PCL, or common robotics middleware patterns; experience with perception stacks (object detection, tracking) and camera/LiDAR calibration; experience with embedded platforms (NVIDIA Jetson, ARM) and performance profiling; familiarity with safety standards and failure mode analysis; experience shipping robots into warehouses, logistics, manufacturing, or field robotics; knowledge of cloud telemetry, CI/CD, and fleet management systems.

Tools and Workflows You Will Use

Typical workflows include requirements-to-implementation tracking, iterative experimentation in simulation, hardware bring-up, and regression testing. You will use ROS2, Linux, Git, code review, automated testing, logging/telemetry, and repeatable builds. You will collaborate with distributed teams using clear interfaces, versioned APIs, and reproducible experiments to improve robot performance, navigation stability, and runtime reliability.

Compensation and Work Arrangement

This is a Remote, FULL_TIME role with an annual salary range of USD 63360 to USD 126720, depending on experience and scope. The role supports robotics engineering delivery aligned to Rex.zone opportunities and hiring demand connected to Quito. Compensation is paid on a YEAR pay period and follows the Salary Currency listed.

How to Apply on Rex.zone

Search Rex.zone for Robotics Engineer Jobs Quito and review matching postings by seniority, domain (computer vision, SLAM, motion planning, embedded), and employer type (tech startups, robotics companies, AI labs). Prepare a resume highlighting shipped robotics projects, ROS2 packages, system integration, test evidence, and metrics like navigation success rate, localization drift, latency, and runtime stability.

Frequently Asked Questions

  • Q: What does a Robotics Engineer do in these roles?

    A Robotics Engineer designs, builds, and improves robot software and system integration, including ROS/ROS2 components, perception pipelines, motion planning, SLAM/localization, control tuning, and validation in simulation and real hardware. The goal is measurable improvements in robot performance, safety, and reliability.

  • Q: Are these Robotics Engineer Jobs in Quito remote and full-time?

    Yes. This page is configured for Remote and FULL_TIME roles, and remote roles explicitly remain marked Remote in the job metadata.

  • Q: Which skills should match the Robotics Engineer Jobs Quito keyword intent?

    Skills should align to robotics engineering search intent: ROS2, robotics software engineering, motion planning, SLAM, sensor fusion, computer vision, control systems, C++, Python, embedded systems, and validation/testing workflows.

  • Q: What industries commonly hire Robotics Engineers for Quito-aligned roles?

    Common hiring domains include technology companies building autonomy, warehouse and logistics automation, manufacturing robotics, field robotics, and robotics-focused startups, with remote teams supporting deployments and product development.

  • Q: How do I stand out when applying via Rex.zone?

    Show evidence of shipped robotics work: ROS2 packages, real-world debugging and sensor integration, reproducible tests, simulation-to-hardware validation, and metrics such as navigation stability, localization accuracy, latency, and failure recovery behavior.

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