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Remote Robotics Research Engineer Jobs in Greenbrae, CA

Research Engineer

San Francisco, CA · On-site +1

$140K - $250K/yr

Location: Remote (United States) Work Model: Remote Industry: AI training data infrastructure ... As a Research Engineer, you will build the automated systems that verify and assure data quality so ...

Research Engineer

San Francisco, CA · Remote

$140K - $250K/yr

Location: Remote (United States) Work Model: Remote Industry: AI training data infrastructure ... As a Research Engineer, you will build the automated systems that verify and assure data quality so ...

As a Research Engineer in the World Models team, you will develop algorithms and productionize the ... You have a Master's degree in Computer Vision, Machine Learning, Robotics, or a related field, or ...

As a Research Engineer in the World Models team, you will develop algorithms and productionize the ... You have a Master's degree in Computer Vision, Machine Learning, Robotics, or a related field, or ...

As a Research Engineer in the World Models team, you will develop algorithms and productionize the ... You have a Master's degree in Computer Vision, Machine Learning, Robotics, or a related field, or ...

Remote Commitment: 20+ hours/week Role Responsibilities * Attempt open-ended machine learning research tasks under a fixed time and compute budget. * Work independently in a sandboxed Linux ...

About Menlo Menlo Research is an Applied R&D lab building Asimov, an open-source humanoid robot ... Establish secure and auditable remote access solutions for engineers troubleshooting robots in the ...

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Showing results 1-20

Remote Robotics Research Engineer information

See Greenbrae, CA salary details

$32.8K

$119.5K

$191.2K

How much do remote robotics research engineer jobs pay per year?

As of Aug 26, 2026, the average yearly pay for remote robotics research engineer in Greenbrae, CA is $119,494.00, according to ZipRecruiter salary data. Most workers in this role earn between $94,500.00 and $143,700.00 per year, depending on experience, location, and employer.

What is a remote robotics research engineer?

Remote Robotics Research Engineers are professionals who design, develop, and test robotic systems while working from a remote or virtual location. They use advanced programming skills, simulation tools, and data analysis to create robots or autonomous systems for various industries, such as manufacturing, healthcare, or space exploration. Their responsibilities often include conducting research, collaborating with cross-functional teams, and publishing their findings, all while utilizing cloud-based platforms and remote communication tools. This role is ideal for individuals with strong technical backgrounds who seek flexibility and global collaboration opportunities.

What are the key skills and qualifications needed to thrive as a remote robotics research engineer?

To thrive as a Remote Robotics Research Engineer, you need a strong background in robotics, computer science, and mathematics, often supported by an advanced degree in a related field. Proficiency in programming languages such as Python or C++, robotics frameworks like ROS, and simulation tools such as Gazebo or MATLAB is typically required. Exceptional problem-solving, self-motivation, and effective virtual communication are crucial soft skills for collaborating and innovating remotely. These skills and qualities are vital for developing cutting-edge robotics solutions and ensuring smooth teamwork across distributed environments.

How does collaboration typically work for a remote robotics research engineer, and what tools are commonly used for remote teamwork?

As a Remote Robotics Research Engineer, you’ll frequently collaborate with multidisciplinary teams that may include software developers, mechanical engineers, and data scientists. Communication and project management are facilitated through tools like Slack, Microsoft Teams, and project tracking platforms such as Jira or Asana. Version control and code collaboration often occur via GitHub or GitLab. Regular virtual meetings, code reviews, and shared documentation ensure alignment and productivity despite the physical distance, making strong communication skills and self-motivation essential for success in this remote environment.

What is the difference between Remote Robotics Research Engineer vs Remote Robotics Software Developer?

AspectRemote Robotics Research EngineerRemote Robotics Software Developer
Required CredentialsMaster's or PhD in Robotics, Mechanical, or Electrical EngineeringBachelor's or Master's in Computer Science or Software Engineering
Work EnvironmentResearch labs, universities, R&D departmentsTech companies, startups, industrial firms
Industry UsageResearch, academia, innovation projectsProduct development, software solutions, automation
Common Search/ComparisonFocuses on research and innovation in roboticsFocuses on software development for robotics applications

The main difference is that Remote Robotics Research Engineers focus on advancing robotics technology through research and experimentation, often working in academic or R&D settings. In contrast, Remote Robotics Software Developers primarily develop and implement software solutions for robotic systems in industry. Both roles require technical skills, but their goals and work environments differ significantly.

What cities near Greenbrae, CA are hiring for Remote Robotics Research Engineer jobs?

Cities near Greenbrae, CA with the most Remote Robotics Research Engineer job openings:

Infographic showing various Remote Robotics Research Engineer job openings in Greenbrae, CA as of August 2026, with employment types broken down into 1% As Needed, 85% Full Time, 11% Part Time, and 3% Contract. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $119,494 per year, or $57.4 per hour.

Research Engineer / Scientist (SLAM)

San Francisco, CA • On-site, Remote

Full-time

Re-posted 9 days ago


Job description

About World Labs

World Labs is a frontier AI research and product company advancing spatial intelligence, the next frontier beyond large language models. Co-founded by Dr. Fei-Fei Li, Justin Johnson and Ben Mildenhall, the company is pioneering world models that perceive, generate, reason, and interact with virtual and physical worlds.

The company's flagship product, Marble, transforms text, images, and video into fully navigable 3D worlds, unlocking applications across gaming, film, architecture, robotics, and immersive digital experiences. Backed by leading investors and with over $1B raised, World Labs is assembling a world-class team at the intersection of AI research and real-world deployment.

Role Overview

We're looking for a SLAM Specialist to design, implement, and advance state-of-the-art simultaneous localization and mapping systems that enable accurate, robust spatial understanding from real-world sensor data. This role is focused on modern SLAM techniques-both classical and learning-based-with an emphasis on scalable state estimation, sensor fusion, and long-term mapping in complex, dynamic environments.

This is a hands-on, research-driven role for someone who enjoys working at the intersection of robotics, computer vision, and probabilistic inference. You'll collaborate closely with research scientists, ML engineers, and systems teams to translate cutting-edge SLAM ideas into production-ready capabilities that form the backbone of our world modeling stack.

What You Will Do
  • Design and implement modern SLAM systems for real-world environments, including visual, visual-inertial, lidar, or multi-sensor configurations.
  • Develop robust localization and mapping pipelines, including pose estimation, map management, loop closure, and global optimization.
  • Research and prototype learning-based or hybrid SLAM approaches that combine classical geometry with modern machine learning methods.
  • Build and maintain scalable state estimation frameworks, including factor graph optimization, filtering, and smoothing techniques.
  • Develop sensor fusion strategies that integrate cameras, IMUs, depth sensors, lidar, or other modalities to improve robustness and accuracy.
  • Analyze failure modes in real-world SLAM deployments (e.g., perceptual aliasing, dynamic scenes, drift) and design principled solutions.
  • Create evaluation frameworks, benchmarks, and metrics to measure SLAM accuracy, robustness, and performance across large datasets.
  • Optimize performance across the stack, including real-time constraints, memory usage, and compute efficiency, for large-scale and production systems.
  • Collaborate with reconstruction, simulation, and infrastructure teams to ensure SLAM outputs integrate cleanly with downstream world modeling and rendering pipelines.
  • Contribute to technical direction by proposing new research ideas, mentoring teammates, and helping define best practices for localization and mapping across the organization.
Key Qualifications
  • 6+ years of experience working on SLAM, state estimation, robotics perception, or related areas.
  • Strong foundation in probabilistic estimation, optimization, and geometric vision (e.g., bundle adjustment, factor graphs, Kalman filtering).
  • Deep experience with one or more SLAM paradigms (visual, visual-inertial, lidar, multi-sensor, or hybrid systems).
  • Proficiency in Python and/or C++, with hands-on experience building research or production-grade SLAM systems.
  • Experience with numerical optimization libraries and/or robotics frameworks.
  • Familiarity with learning-based perception or representation learning and how it can augment classical SLAM pipelines.
  • Strong understanding of real-world sensor characteristics, calibration, synchronization, and noise modeling.
  • Proven ability to work in ambiguous, fast-moving environments and drive projects from concept through deployment.
  • A strong sense of ownership and engineering rigor: you care deeply about correctness, stability, and measurable improvements.
  • Enjoy collaborating with a small, high-caliber team and raising the technical bar through thoughtful design, experimentation, and code quality.
Who You Are
  • Fearless Innovator: We need people who thrive on challenges and aren't afraid to tackle the impossible.
  • Resilient Builder: Impacting Large World Models isn't a sprint; it's a marathon with hurdles. We're looking for builders who can weather the storms of groundbreaking research and come out stronger.
  • Mission-Driven Mindset: Everything we do is in service of creating the best spatially intelligent AI systems, and using them to empower people.
  • Collaborative Spirit: We're building something bigger than any one person. We need team players who can harness the power of collective intelligence.

We're hiring the brightest minds from around the globe to bring diverse perspectives to our cutting-edge work. If you're ready to work on technology that will reshape how machines perceive and interact with the world, World Labs is your launchpad.

Join us, and let's make history together.


Equal Opportunity & Pay Transparency

Equal Employment Opportunity

World Labs is an equal opportunity employer. We do not discriminate on the basis of race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability, genetic information, veteran status, or any other characteristic protected under applicable law. We welcome all qualified applicants and are committed to providing reasonable accommodations throughout the hiring process upon request.

California Pay Transparency

In accordance with California law, we disclose the following:

Pay Range

$250,000-$350,000 base salary (good-faith estimate for San Francisco Bay Area upon hire; actual offer based on experience, skills, and qualifications)

Total Compensation

Base salary plus equity awards

Salary History

We do not request or consider prior compensation in making offers

Compliance: Cal. Lab. Code 432.3 (pay scale disclosure & salary history ban); Cal. Lab. Code 1197.5 (Equal Pay Act); Cal. Gov. Code 12940 (FEHA); 42 U.S.C. 2000e (Title VII); 29 U.S.C. 621 (ADEA); 42 U.S.C. 12101 (ADA)