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Remote Ros Developer Jobs in Marietta, GA (NOW HIRING)

Production experience with ROS or ROS 2 * Experience with sensor calibration (intrinsic, extrinsic ... Remote team members are expected to have reliable high-speed internet access and a dedicated ...

Remote Ros Developer information

What is a remote ROS developer?

A Remote ROS Developer is a software engineer who specializes in developing applications using the Robot Operating System (ROS) while working from a remote location. They design, build, and test robotics software that enables robots to perceive, navigate, and interact with their environment. Their responsibilities often include integrating sensors, developing algorithms, and collaborating with teams virtually to implement robotics solutions. Remote ROS Developers use communication tools and version control systems to coordinate their work and ensure project success without being physically present in a central office.

What skills and qualifications are needed to thrive as a remote ROS developer?

To thrive as a Remote ROS Developer, you need strong programming skills (especially in C++ and Python), deep understanding of robotics concepts, and proficiency with the Robot Operating System (ROS). Familiarity with tools like Gazebo, RViz, and version control systems like Git, as well as relevant certifications or coursework, is highly valuable. Excellent problem-solving abilities, self-motivation, and effective remote communication skills set standout candidates apart. These competencies are crucial for developing robust robotic applications, collaborating with distributed teams, and ensuring efficient project delivery in a remote environment.

How does a remote ROS developer typically collaborate with cross-functional teams?

As a Remote ROS Developer, you will frequently work with teams that include robotics engineers, software developers, and sometimes hardware specialists, often spread across different time zones. Collaboration is primarily facilitated through version control systems like Git, regular video meetings, and project management tools such as Jira or Trello. Effective communication and proactive documentation are crucial, as you may need to clarify requirements, share code updates, and troubleshoot integration issues remotely. This structure encourages autonomy but also requires strong self-management skills to ensure seamless coordination and project progress.

What is the difference between Remote Ros Developer vs Robot Software Engineer?

AspectRemote Ros DeveloperRobot Software Engineer
Required CredentialsProficiency in ROS, programming skills (C++, Python), relevant certificationsSimilar skills, often with additional hardware knowledge and engineering degrees
Work EnvironmentPrimarily remote, software-focusedTypically on-site or hybrid, involving hardware integration
Industry UsageRobotics, automation, researchRobotics, manufacturing, research and development
Search & Comparison IntentYes, often compared for remote robotics rolesRelated but more hardware-oriented

Remote Ros Developers focus on software development within the Robot Operating System (ROS) environment, often working remotely. Robot Software Engineers may have similar skills but typically work on both software and hardware integration, often on-site. Both roles are vital in robotics industries, but Remote Ros Developers are more software-centric and remote-friendly, while Robot Software Engineers may involve hardware and on-site collaboration.

What are the most commonly searched types of Ros Developer jobs in Marietta, GA?

The most popular types of Ros Developer jobs in Marietta, GA are:

What are popular job titles related to Remote Ros Developer jobs in Marietta, GA?

For Remote Ros Developer jobs in Marietta, GA, the most frequently searched job titles are:

What job categories do people searching Remote Ros Developer jobs in Marietta, GA look for?

The top searched job categories for Remote Ros Developer jobs in Marietta, GA are:

Robotics Navigation and Control Engineer

Atlanta, GA • On-site, Remote

Slip Robotics
Transportation and Warehousing • 1 - 10 employees

Full-time

Medical, Dental, Vision

Re-posted 11 days ago


Job description

About Slip Robotics
Slip Robotics is transforming freight logistics with autonomous robotic systems that load and unload trailers faster, safer, and more reliably than traditional methods. Our robots operate in demanding real-world environments alongside people and heavy cargo every day. We are a small, high-impact team based in Atlanta building products that are already deployed in production.
The Role
We are looking for a Robotics Navigation and Control Engineer to own the motion planning, path planning, and control systems on our autonomous mobile robots. Our robots navigate constrained spaces-inside trailers, across loading docks, and through active warehouse floors-carrying heavy loads with tight tolerances. This role is responsible for making that movement safe, precise, and reliable.
We need someone who has shipped navigation and controls software on real robots at real customer sites. You should have hands-on experience tuning controllers on physical hardware, dealing with wheel slip, load dynamics, and the gap between simulation and reality. Academic publications are great, but production deployment experience is what matters here.
Key Responsibilities
  • Design, implement, and optimize path planning and trajectory generation for autonomous mobile robots operating in constrained logistics environments
  • Develop and tune motion controllers (PID, MPC, or similar) for heavy-payload platforms with real-world dynamics
  • Implement obstacle avoidance and safety behaviors that work reliably around people and infrastructure
  • Own the localization stack, working with perception engineers to integrate sensor-based position estimates into the control loop
  • Build simulation models and validate them against real robot behavior for faster development iteration
  • Analyze and improve robot performance using field data, telemetry, and logs from deployed systems
  • Collaborate with perception, hardware, and cloud infrastructure teams to deliver integrated autonomy features
  • Contribute to CI/CD pipelines for controls software testing and deployment to the robot fleet

Requirements
  • 5+ years of professional experience developing navigation and control systems for physical robots at a robotics or autonomous vehicle company
  • Strong proficiency in C++ and Python
  • Deep understanding of motion planning algorithms (A*, D*, RRT variants, lattice planners, or similar)
  • Hands-on experience designing and tuning controllers for mobile robot platforms
  • Production experience with ROS or ROS 2 navigation stacks
  • Experience with localization techniques (EKF, particle filters, scan matching, visual odometry)
  • Demonstrated ability to bridge the sim-to-real gap-tuning algorithms that work on actual hardware, not just in simulation
  • Comfort analyzing system behavior from logs and telemetry data
  • Strong communication skills and ability to work effectively in a small team
Nice to Have
  • Master's degree or higher in Robotics, Controls, Mechanical Engineering, or a related field
  • Experience with model predictive control (MPC) or adaptive control approaches
  • Experience with AWS IoT, Greengrass, or edge computing for fleet-scale robot management
  • Familiarity with Gazebo, Isaac Sim, or other robotics simulation environments
  • Background in logistics, warehousing, or heavy-payload robotics
Remote Work Requirements
This role can be filled remotely. Remote team members are expected to have reliable high-speed internet access and a dedicated workspace. You will need to travel to our Atlanta facility periodically for hardware integration, testing, and tuning on physical robots. A company laptop and necessary peripherals will be provided.
Benefits
What We Offer
  • Competitive salary and equity in an early-stage robotics company
  • Comprehensive benefits including health, dental, and vision
  • Permissive time off policy
  • A small team where your work has direct, visible impact on shipped products
  • The chance to work on robots that are operating in production today-not a research project