1

Robotics Software Engineer Jobs (NOW HIRING)

Robotics Software Engineer - Manipulation & Automation Position Overview We are seeking a Robotics Software Engineer to support advanced robotics R&D initiatives focused on robotic manipulation ...

Robotics Software Engineer Overview MVP Robotics is a boutique engineering firm born out of Dartmouth College's Thayer School of Engineering based in Bradford, VT. MVP's mission is to improve human ...

Robotics Software Engineer - Manipulation & Automation Position Overview We are seeking a Robotics Software Engineer to support advanced robotics R&D initiatives focused on robotic manipulation ...

We are seeking a Robotics Software Engineer to build the software that powers robot behavior in the real world. In this role, you will develop, integrate, and improve production-grade robotics ...

Be Seen First

Autonomous Robotics Software Engineer (Robotics / Autonomy / C++) Advanced Robotics Group, LLC is seeking highly skilled Autonomous Robotics Software Engineers to join a small, high-performing team ...

We are seeking a Robotics Software Engineer to build the software that powers robot behavior in the real world. In this role, you will develop, integrate, and improve production-grade robotics ...

Robotics Software Engineer

Pittsburgh, PA · On-site

$100K - $300K/yr

Position Overview We are seeking a versatile Robotics Software Engineer to develop and implement software solutions for our robotic systems. Your work will entail building systems for navigation ...

Be Seen First

Autonomous Robotics Software Engineer (Robotics / Autonomy / C++) Advanced Robotics Group, LLC is seeking highly skilled Autonomous Robotics Software Engineers to join a small, high-performing team ...

Be Seen First

Autonomous Robotics Software Engineer (Robotics / Autonomy / C++) Advanced Robotics Group, LLC is seeking highly skilled Autonomous Robotics Software Engineers to join a small, high-performing team ...

Be Seen First

Role Overview We are hiring a Software & Robotics Engineer to build and deploy real-world robotic systems across warehouse and industrial environments. This is a full-time, hands-on role focused on ...

next page

Showing results 1-20

Robotics Software Engineer information

See salary details

$60K

$124.5K

$179K

How much do robotics software engineer jobs pay per year?

As of Jun 8, 2026, the average yearly pay for robotics software engineer in the United States is $124,523.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,000.00 and $152,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Robotics Software Engineer, and why are they important?

To thrive as a Robotics Software Engineer, you need a strong background in computer science, robotics, and mathematics, often supported by a relevant degree and experience in algorithm development. Proficiency with programming languages like C++, Python, and ROS (Robot Operating System), as well as familiarity with simulation tools and version control systems, is essential. Problem-solving ability, teamwork, and effective communication are crucial soft skills for collaborating on complex projects and adapting to evolving technologies. These skills and qualities are vital for designing, implementing, and maintaining reliable robotic systems that perform effectively in real-world environments.

What Does a Robotics Software Engineer Do?

The job duties of a robotics software engineer are working to develop software for robot control and automation. In this job, your responsibilities include working on an embedded system that controls automated equipment. You may build new software or test, improve, or debug current software. Most robotics software engineers work for the manufacturing industry and focus on robots that companies use in product production. You may work in other fields that use robotics as well. This job may include responsibilities such as developing a user interface that non-technical employees can use to set up the equipment.

What is the difference between Robotics Software Engineer vs Mechatronics Engineer?

AspectRobotics Software EngineerMechatronics Engineer
Required CredentialsBachelor's in Robotics, Computer Science, or related field; programming skillsBachelor's in Mechatronics, Mechanical, or Electrical Engineering; multidisciplinary knowledge
Work EnvironmentSoftware development teams, robotics labs, research facilitiesDesign, integrate mechanical and electronic systems, often in manufacturing or automation
Employer & Industry UsageTech companies, robotics firms, research institutionsManufacturing, automation, aerospace, automotive industries

While both roles involve robotics, a Robotics Software Engineer primarily focuses on developing software for robotic systems, whereas a Mechatronics Engineer designs and integrates mechanical, electronic, and software components. The roles often overlap but differ in their core focus areas and skill sets.

What are some common challenges faced by Robotics Software Engineers when integrating software with hardware systems?

Robotics Software Engineers often encounter challenges related to ensuring seamless communication between software algorithms and physical hardware components. These can include dealing with sensor noise, managing real-time constraints, debugging hardware-software mismatches, and ensuring reliable performance in unpredictable environments. Close collaboration with electrical and mechanical engineers is essential to quickly resolve integration issues and to test software on physical robots. Adapting to rapid hardware changes and troubleshooting in live environments require strong problem-solving skills and effective cross-disciplinary teamwork.

What does a Robotics Software Engineer do?

A Robotics Software Engineer designs, develops, and maintains the software that controls and powers robots. This includes writing code for robot perception, control algorithms, and integration with hardware components. They work closely with hardware engineers to ensure seamless interaction between the robot's physical and digital systems. Their work often involves programming in languages such as C++, Python, or ROS (Robot Operating System) and testing robots in real-world or simulated environments.
What cities are hiring for Robotics Software Engineer jobs? Cities with the most Robotics Software Engineer job openings:
What are the most commonly searched types of Robotics Software Engineer jobs? The most popular types of Robotics Software Engineer jobs are:
Who are the top companies hiring for Robotics Software Engineer jobs? The top employers for Robotics Software Engineer jobs are:
What states have the most Robotics Software Engineer jobs? States with the most job openings for Robotics Software Engineer jobs include:
Infographic showing various Robotics Software Engineer job openings in the United States as of May 2026, with employment types broken down into 98% Full Time, 1% Part Time, and 1% Temporary. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $124,523 per year, or $59.9 per hour.
Robotics software Engineer

Robotics software Engineer

Optimal Inc.

Embry Hills, GA

Contractor

Posted 18 days ago


Job description


Robotics Software Engineer - Manipulation & Automation


Position Overview

We are seeking a Robotics Software Engineer to support advanced robotics R&D initiatives focused on robotic manipulation, grasp planning, automation, and intelligent robotic systems for automotive manufacturing applications.

This role involves developing and modifying robotics software in C++ and Python, designing new robotic manipulation strategies, integrating ROS2-based robotic platforms, and supporting real-world robotic system development using collaborative and industrial robotic systems.

The ideal candidate has strong hands-on experience with robotics software engineering, ROS2 development, controls systems, motion/path planning, and industrial robotic integration in research or production environments.

Key Responsibilities
Develop and enhance robotic manipulation and grasp planning solutions for automated pick-and-place applications
Design, modify, debug, and optimize robotics software primarily in C++ and Python
Develop ROS2-based robotic applications for real-world robotic systems
Integrate robotic software with collaborative robots, sensors, and industrial robotic platforms
Design and evaluate motion planning, path planning, and robotic control strategies
Support robotic system testing, validation, troubleshooting, and performance optimization
Work with robotic perception, sensor integration, and real-world production part handling
Collaborate with cross-functional R&D and engineering teams on advanced robotics initiatives
Maintain technical documentation and follow software engineering best practices

Required Qualifications
Master's degree or higher in Robotics, Computer Science, Mechanical Engineering, Electrical Engineering, or related field
Strong hands-on experience with C++ software development for robotics applications
Experience developing robotics software using Python and ROS/ROS2
Experience with robotic manipulation, motion planning, path planning, or robotic controls systems
Hands-on experience integrating robotic software with real robotic hardware and industrial robotic systems
Strong understanding of robot kinematics, dynamics, and control systems
Experience working in Linux/Ubuntu environments with Git version control
Strong debugging, troubleshooting, and software integration skills
Ability to understand existing codebases and develop new robotics strategies and solutions
Strong communication and collaboration skills in R&D or engineering environments

Preferred Qualifications
Experience with MoveIt, Nav2, Gazebo, Isaac Sim, MuJoCo, or similar robotics frameworks/simulators
Experience with robotic perception, SLAM, sensor fusion, or machine learning for robotics
Experience with collaborative robots (Cobots) or industrial automation systems
Experience deploying robotics solutions in manufacturing or production environments
Familiarity with robotic sensors such as LiDAR, depth cameras, IMUs, or robotic vision systems