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Remote Robotics Engineer Jobs (NOW HIRING)

Robotics Software Engineer Hinckley, IL (~ 50 miles west of Chicago) Remote Position Summary Join our dynamic team and contribute to the design and development of cutting-edge automated robotic 3D ...

Senior Software Engineer, Robotics

Phillipsburg, NJ ยท On-site +1

$140K - $160K/yr

As part of our Engineering Team, our Senior Software Engineer, Robotics drives some of the most ... While remote candidates will be considered, we strongly prefer individuals who are willing to ...

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Remote Robotics Engineer information

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$29K

$105.6K

$169K

How much do remote robotics engineer jobs pay per year?

As of Aug 12, 2026, the average yearly pay for remote robotics engineer in the United States is $105,605.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,500.00 and $127,000.00 per year, depending on experience, location, and employer.

What is a remote robotics engineer?

A Remote Robotics Engineer designs, develops, and tests robotic systems while working from a remote location. They use simulation tools, software, and cloud-based platforms to build and program robots for various industries, such as manufacturing, healthcare, and automation. Communication and collaboration with teams are typically done through video calls, online project management tools, and remote coding environments. This role requires expertise in robotics software, hardware integration, and control systems, alongside strong problem-solving skills.

What are the key skills and qualifications needed to thrive as a remote robotics engineer, and why are they important?

To thrive as a Remote Robotics Engineer, you need a strong background in robotics engineering, programming (such as Python or C++), and experience with embedded systems, supported by a relevant degree in engineering or computer science. Familiarity with industry tools like ROS (Robot Operating System), simulation software (Gazebo or MATLAB), and version control systems (Git) is commonly required, along with relevant certifications. Strong problem-solving skills, self-motivation, effective communication, and the ability to work independently are highly valued in remote settings. These abilities ensure the successful design, testing, and deployment of robotics solutions while collaborating virtually with interdisciplinary teams.

What are some typical challenges a remote robotics engineer might face, and how are they addressed?

Remote Robotics Engineers often encounter challenges related to hardware access, coordination with on-site teams, and troubleshooting physical systems from a distance. To address these issues, engineers frequently utilize remote desktop tools, simulation platforms, and detailed documentation to diagnose and resolve problems without being physically present. Regular video meetings, thorough written communication, and close collaboration with on-site personnel help bridge the gap between remote and in-person work. Proactively coordinating schedules for hands-on testing and leveraging cloud-based development environments can also improve project efficiency and outcomes.

More about Remote Robotics Engineer jobs
What cities are hiring for Remote Robotics Engineer jobs? Cities with the most Remote Robotics Engineer job openings:
What are the most commonly searched types of Robotics Engineer jobs? The most popular types of Robotics Engineer jobs are:
What states have the most Remote Robotics Engineer jobs? States with the most job openings for Remote Robotics Engineer jobs include:
Infographic showing various Remote Robotics Engineer job openings in the United States as of August 2026, with employment types broken down into 90% Full Time, 3% Part Time, and 7% Contract. Highlights an 100% Remote job distribution, with an average salary of $105,605 per year, or $50.8 per hour.

Principle Engineer, 3D Reconstruction

Wayve

Sunnyvale, CA โ€ข On-site, Remote

Full-time

Posted 23 days ago


Job description

The Role

Wayve is looking for a Principal Engineer, 3D Reconstruction to lead the development of an offline 3D reconstruction capability that builds high-quality 3D world geometry from vehicle sensor data in dynamic scenes. The system will draw on localization and mapping, state estimation, and sensor fusion to produce offline 3D geometric reconstructions and best-estimate ego motion from heterogeneous vehicle platforms and sensor suites. The work will support internal validation, data enrichment, and model development by turning raw sensor data into reliable, quality-assessed 3D ground-truth outputs. This is a principal-level technical leadership role for someone who can set the technical direction, build early prototypes, and align cross-functional teams around a shared reconstruction capability.

Key Responsibilities

  • Define the technical architecture and roadmap for Wayve's offline 3D reconstruction system.
  • Lead the development of MVPs that unblock high-priority internal use cases, while guiding the transition to a robust internal platform.
  • Establish the core technical interfaces, output representations, and tools needed to support internal customers.
  • Partner with calibration, sensor fusion, perception, data, infrastructure, and validation teams to align requirements, resources and ownership boundaries.
  • Set technical standards for reconstruction quality, failure analysis, uncertainty measurement, and dataset suitability and execute strategies to validate them
  • Mentor and provide technical leadership to engineers contributing to the 3D reconstruction effort.
  • Communicate technical tradeoffs, limitations, and progress clearly to engineering leaders and cross-functional stakeholders.

Required Skills/Experience

  • Deep technical expertise in SLAM, 3D reconstruction, mapping, state estimation, or closely related robotics/perception fields.
  • Strong hands-on experience with lidar-based reconstruction, point-cloud registration, pose estimation, and real-world robotics sensor data.
  • Experience building offline reconstruction, mapping, or perception systems that operate on large volumes of sensor data.
  • Strong software engineering skills in C++, Python, or similar robotics/perception environments.
  • Experience taking research or prototype algorithms into reliable production systems.
  • Comfortable defining technical strategy, roadmaps, and milestones in ambiguous problem spaces
  • Strong cross-functional technical leadership in ambiguous, multi-team environments.
  • Clear communication of algorithmic tradeoffs, limitations, confidence, and failure modes to technical and cross functionalย  stakeholders.
  • Systems-level understanding of sensor calibration, timing, synchronization and qualityย  issues, and ability to define requirements and work with specialist teams to achieve them

Desired Skills/Experience

  • MS/PhD in Robotics, Computer Science, State Estimation, Sensor Fusion, SLAM, 3D Reconstruction, or a related technical field; or equivalent practical experience.
  • Experience with autonomous vehicles, robotics, mapping, or ground-truth data pipelines in a production setting.
  • Experience with GNSS/INS fusion, sensor based odometry, or other high-accuracy position estimation approaches
  • Experience with nonlinear optimization techniques such asย  pose graph optimization, factor graphs, bundle adjustment, ICP etc
  • Experience apply modern machine learning approaches to 3D reconstruction, mapping, or scene understanding, including foundation models or learned 3D representations
  • Familiarity with robotics tooling such as ROS, PCL, OpenCV, CUDA, or similar.
  • Familiarity with ML data enrichment, autolabelling, annotation workflows, or validation-data generation.
  • Experience designing quality metrics, validation evidence, or credibility arguments for reconstructed data.
  • Experience leading small expert technical teams from early-stage concept to production use.

This role is a full-time role based in Sunnyvale.

At Wayve we want the best of all worlds so we operate a hybrid working policy that combines time together in our offices and workshops to fuel innovation, culture, relationships and learning, and time spent working from home. We operate core working hours so you can determine the schedule that works best for you and your team.ย ย