1

Robotics Jobs in Virginia (NOW HIRING)

Robot Tester

Sterling, VA · On-site

$22/hr

Molg builds robotics microfactories and software to autonomously assemble and disassemble complex electronic products like laptop PCs, servers, and battery packs. Working with some of the leading ...

Associate degree or technical training in robotics, mechatronics, electronics, electromechanical systems, automation, or a related discipline or equivalent related industrial experience. * Experience ...

Showing results 41-60

Robotics information

See Virginia salary details

$83.3K

$95.2K

$115.5K

How much do robotics jobs pay per year?

As of Sep 2, 2026, the average yearly pay for robotics in Virginia is $95,176.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,200.00 and $101,100.00 per year, depending on experience, location, and employer.

What are robotics jobs?

Robotics jobs involve designing, building, programming, testing, and maintaining robots or robotic systems. Professionals in this field may work in industries such as manufacturing, healthcare, automotive, aerospace, and research, focusing on automation and innovative technology solutions. Roles can include robotics engineers, technicians, programmers, and researchers, all working together to improve efficiency, safety, and productivity through robotics. These positions typically require knowledge in areas like mechanical engineering, electronics, computer programming, and artificial intelligence.

What are the qualifications to get a job in robotics?

The qualifications you need to get a job in robotics depend on the position you are interested in. Engineers and designers typically need a bachelor’s or master’s degree in robotics, mechanical or electrical engineering, or computer science, as well as strong programming skills. Some technicians and operators also need to have a bachelor’s degree or extensive training. Good technical and analytical skills are required for work in robotics. The duties of these positions vary significantly, although in many cases job responsibilities overlap. For example, engineers often gather advice and technical knowledge from technicians and operators about how robots function when they design new systems.

How do robotics professionals typically collaborate with other engineering disciplines during a project?

Robotics professionals frequently work in cross-functional teams alongside electrical, mechanical, and software engineers. This collaboration ensures that robotic systems are seamlessly integrated, from hardware design to control algorithms and user interfaces. Effective communication and iterative problem-solving are key, as team members must align on technical requirements, system architecture, and testing protocols. Such teamwork not only enhances project outcomes but also provides valuable opportunities to broaden technical skills and learn from other engineering domains.

What is the difference between Robotics vs Mechanical Engineering?

AspectRoboticsMechanical Engineering
Required CredentialsTypically requires a degree in Robotics, Electrical, or Mechanical Engineering; certifications in automation or control systemsRequires a degree in Mechanical Engineering; professional licensure may be preferred
Work EnvironmentOften involves working with automation systems, programming robots, and integrating hardware/softwareFocuses on designing, analyzing, and manufacturing mechanical systems
Industry UsageUsed in automation, manufacturing, aerospace, and researchApplied across automotive, aerospace, energy, and manufacturing sectors

Robotics and Mechanical Engineering share overlapping skills, especially in design and systems analysis. However, Robotics emphasizes automation, programming, and system integration, while Mechanical Engineering focuses on mechanical design and analysis. Both fields are vital in manufacturing and technology sectors, but Robotics professionals often work more with software and control systems, whereas Mechanical Engineers concentrate on physical components.

Is robotics still a good career?

Robotics is a growing field with increasing demand for engineers and technicians skilled in automation, programming, and systems integration. Careers in robotics often require knowledge of programming languages like Python or C++, and familiarity with hardware and sensors, making it a viable and evolving profession with strong job prospects.

What are the most commonly searched types of Robotics jobs in Virginia?

The most popular types of Robotics jobs in Virginia are:

What cities in Virginia are hiring for Robotics jobs?

Cities in Virginia with the most Robotics job openings:

Infographic showing various Robotics job openings in Virginia as of August 2026, with employment types broken down into 90% Full Time, 7% Part Time, 2% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $95,176 per year, or $45.8 per hour.

Embedded Systems & Robotics Engineer

MAG Aerospace

Fairfax, VA • On-site

Full-time

Re-posted 15 days ago


Job description

Position Summary
MAG is staffing for an Embedded Systems & Robotics Engineer who will bridge the critical hardware-software boundary for autonomous tactical systems. You'll modify and enhance systems and solutions that operate independently in GPS-denied environments, from underwater vehicles to aerial swarms, while ensuring reliability in the harshest conditions.
US Citizens Only
Former US Defense Contractor / US Gov / US Military Experience Only
This is a Hybrid Position - Remote mainly - but as well on call to come into a MAG office when requested.
We are seeking candidates who live in proximity to our corporate HQ in Fairfax, VA primarily but will entertain persons living near our satellite offices in:
Aberdeen, MD - Titusville, FL - Newport News, VA - Carthage NC
Essential Duties and Responsibilities
Primary Responsibilities
  • Enhance or augment embedded software for autonomous vehicles (UGV, UAV, UUV, USV) to extend baseline capabilities
  • Implement sensor fusion for autonomous navigation (LIDAR, cameras, IMU, sonar)
  • Design control systems for robotic platforms and actuators
  • Create hardware abstraction layers following MOSA/SOSA standards
  • Develop digital twin simulations for hardware-in-the-loop testing
  • Implement real-time operating systems (RTOS) and safety-critical software
  • Develop and verify safety-critical software in accordance with established standards and best practices
  • Design and fabricate custom hardware solutions using 3D printing and rapid prototyping
  • Apply Model-Based Systems Engineering (MBSE) practices using SysML/AADL
Secondary Responsibilities
  • Lead field testing and validation of autonomous systems
  • Support deployment and troubleshooting in operational environments
  • Create hardware test fixtures and validation procedures
  • Document MOSA compliance and interface specifications
  • Train operators on system capabilities and limitations

Requirements
Experience:
Required Qualifications
  • 5+ years embedded systems and/or robotics development experience
  • Strong proficiency in C and C++ for real-time for resource-constrained systems
  • Expert proficiency and practical knowledge of Python for scripting, tooling, and rapid prototyping
  • Experience with ROS/ROS2 for robotics development
  • Hands-on experience with autonomous vehicle platforms
  • Proficiency with CAD tools and 3D printing/fabrication
  • Understanding of control theory and path planning algorithms
  • Experience with hardware communication protocols (CAN, I2C, SPI, UART)
  • Familiarity with MOSA/SOSA standards and open architectures
  • Experience with simulation tools (Gazebo, MATLAB/Simulink)
Preferred Qualifications
  • Experience with NVIDIA Jetson platforms for autonomous systems
  • Military/defense robotics experience (ROS-M, JAUS)
  • Hands-on experience with RTOS (e.g., FreeRTOS, VxWorks) and/or embedded Linux (Yocto, Buildroot)
  • Knowledge of digital twin technologies and real-time simulation
  • Familiarity with DO-178C, DO-254, or similar safety standards
  • Experience with swarm robotics and distributed control
  • Understanding of SLAM and computer vision for navigation
  • Experience with environmental testing (MIL-STD-810)
  • Pilot's license or experience with FAA Part 107 operations

Education:
  • Bachelor's degree in EE, CE, ME, CS or related field

Clearance:
  • Must be eligible for Secret security clearance
  • US Citizenship required

Special Note
What Makes You Successful Here
  • You can go from CAD design to functioning prototype in days
  • You understand autonomy from sensors to behavior planning
  • You apply systems engineering rigor to rapid prototyping
  • You're comfortable with both lab development and field operations
  • You see MOSA as an enabler, not a constraint