1

Mechatronics Engineer Jobs in Virginia (NOW HIRING)

Systems Engineer 1: A Master of Science Degree (MS) or, a Bachelor of Science Degree (BSME, BSEE, BS Mechatronics Engineer or BSCompE) or, Associate of Science Degree (ASEE) with 10 years of relevant ...

Reliability Maintenance & Engineering (RME) are the business partners that work tirelessly behind ... About the Role As a Mechatronics & Robotics Technician, you will use your skills to support the ...

Reliability Maintenance & Engineering (RME) are the business partners that work tirelessly behind ... About the Role As a Mechatronics & Robotics Technician, you will use your skills to support the ...

Reliability Maintenance & Engineering (RME) are the business partners that work tirelessly behind ... About the Role As a Mechatronics & Robotics Technician, you will use your skills to support the ...

The Opportunity RS&H is currently seeking an Airfield Civil Engineer I to join our Aviation Practice in Richmond, VA! Job Summary: RS&H is passionate about aviation! We choose to design and manage a ...

next page

Showing results 1-20

Mechatronics Engineer information

See Virginia salary details

$59K

$89.7K

$152.2K

How much do mechatronics engineer jobs pay per year?

As of Jun 11, 2026, the average yearly pay for mechatronics engineer in Virginia is $89,735.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,900.00 and $104,100.00 per year, depending on experience, location, and employer.

What engineers make $500,000?

Highly experienced engineers in specialized fields such as petroleum engineering, aerospace engineering, and certain senior roles in software engineering can earn $500,000 or more annually. These positions often require advanced skills, certifications, and leadership responsibilities, typically found in senior management or executive levels within large organizations.

What Do Mechatronics Engineers Do?

Mechatronics engineers help design and manufacture new technology, parts, tools, and machine control systems for production manufacturing. Your duties include analyzing and assessing automated production and determining ways to improve productivity and efficiency through the introduction of new tools. You visit assembly lines, observe machinery, and then make suggestions for ways to engineer new machines that will speed up production. You and your team must take into consideration many different elements of the production process in order to build a tool or machine that will be easy to use while also improving assembly-line efficiency.

What job does a mechatronics engineer do?

A mechatronics engineer designs, develops, and maintains integrated systems that combine mechanical, electrical, and software components. They work on automation, robotics, and control systems, often using tools like CAD software and programming languages such as C or MATLAB. Their role involves troubleshooting, testing, and optimizing complex electromechanical devices in various industries.

What are some common challenges mechatronics engineers face when working on multidisciplinary teams?

Mechatronics engineers often collaborate with specialists from mechanical, electrical, and software engineering backgrounds, which can lead to challenges in communication and aligning project goals. Navigating differences in terminology, design approaches, and problem-solving methods requires strong interpersonal and project management skills. Successful mechatronics engineers proactively foster clear communication and regularly coordinate with team members to ensure all aspects of a project are integrated smoothly. This collaborative environment also provides an excellent opportunity to broaden technical expertise and develop leadership skills.

What are Mechatronics Engineers?

Mechatronics Engineers are professionals who design, develop, and maintain intelligent systems and products by integrating mechanical engineering, electronics, computer science, and control engineering. They work on a wide range of technologies, such as robotics, automated manufacturing systems, and smart devices. Their expertise enables them to create innovative solutions that combine hardware and software to improve efficiency, performance, and reliability in various industries. Mechatronics Engineers often collaborate with multidisciplinary teams to solve complex engineering challenges.

What can you do with mechatronic engineering?

A mechatronics engineer designs, develops, and maintains integrated systems that combine mechanical, electrical, and software components, such as robotics, automation systems, and intelligent devices. They often work with tools like CAD software and programming languages, and may need certifications in specific technologies. This role typically involves problem-solving, system integration, and working in multidisciplinary teams to improve product functionality and efficiency.

What engineers make $300,000 a year?

Senior engineers in specialized fields such as petroleum engineering, aerospace engineering, and certain software engineering roles can earn $300,000 or more annually, especially with extensive experience, advanced skills, and leadership responsibilities. High-level positions often require advanced degrees, certifications, and working in high-demand industries or management roles.

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

To thrive as a Mechatronics Engineer, you need a strong background in mechanical, electrical, and computer engineering, typically supported by a relevant bachelor's degree. Proficiency with CAD software, PLC programming, and simulation tools, as well as familiarity with robotics and automation systems, is essential. Strong analytical thinking, creative problem-solving, and effective teamwork set top performers apart in this multidisciplinary field. These skills and qualities enable engineers to innovate, optimize complex systems, and ensure seamless integration of mechanical and electronic components in advanced technologies.

What is the difference between Mechatronics Engineer vs Electrical Engineer?

AspectMechatronics EngineerElectrical Engineer
Required CredentialsBachelor's in Mechatronics, Mechanical, or Electrical EngineeringBachelor's in Electrical Engineering or related field
Work EnvironmentDesigning and integrating mechanical, electronic, and software systemsDesigning electrical circuits, systems, and power distribution
Industry UsageAutomation, robotics, manufacturing, consumer electronicsPower, telecommunications, electronics manufacturing

Mechatronics Engineers focus on integrating mechanical, electronic, and software components to develop intelligent systems, while Electrical Engineers primarily work on electrical circuits and power systems. Both roles share similar educational backgrounds and often collaborate in industries like automation and manufacturing, but their core responsibilities differ in scope and specialization.

What are the most commonly searched types of Mechatronics Engineer jobs in Virginia? The most popular types of Mechatronics Engineer jobs in Virginia are:
What job categories do people searching Mechatronics Engineer jobs in Virginia look for? The top searched job categories for Mechatronics Engineer jobs in Virginia are:
What cities in Virginia are hiring for Mechatronics Engineer jobs? Cities in Virginia with the most Mechatronics Engineer job openings:
Infographic showing various Mechatronics Engineer job openings in Virginia as of June 2026, with employment types broken down into 92% Full Time, and 8% Contract. Highlights an 100% In-person job distribution, with an average salary of $89,735 per year, or $43.1 per hour.

Other

Medical, Dental, Vision, Retirement, PTO

Posted 24 days ago


Job description

The  Autonomy Systems Engineer researches, develops, designs and validates mechanical, electrical, and hydraulic hardware and associated control logic for use in large mining haul trucks and/or large autonomous mining haul trucks.

Responsibilities

Level 1:

  • Develops mechanical, electrical, hydraulic, and electro-mechanical systems for use on large mining haul trucks and/or large autonomous mining haul trucks
  • Performs system calculations and/or simulations
  • Creates schematic representations of mechanical, electrical, hydraulic, and electro mechanical systems
  • Interfaces with other disciplines (Mechanical, Hydraulic, Electrical, etc.) to create specifications/requirements that outline control system logic necessary for haul truck functions
  • Writes software and/or uses model based design techniques to develop software modules
  • Develops detailed test requests to initiate both component and system level testing and validation
  • Works independently and as a team member with other engineers, designers, and production personnel or on ad hoc projects
  • Participates in the Engineering Development Program

Level 2:

  • Demonstrated proficiency of Systems Engineer Level 1, plus:
  • Research electric and hydraulic components for use in control systems

Level 3:

  • Demonstrated proficiency of Systems Engineer Level 2, plus:
  • Researches solutions to optimize system designs and parameters with analytical methods
  • Interfaces with other disciplines (Mechanical, Hydraulic, Electrical, etc.) to specify proper control components (PLC's, computing platforms, HMI, and other associated hardware)
  • Estimates time and cost requirements for the development and serial production of haul truck systems
  • Researches and analyzes customer design proposals, specifications, manuals, and other data
  • Confers with Engineers and other personnel to develop operating procedures, resolve system malfunctions, and provide technical information

Level 4 (Senior):

  • Demonstrated proficiency of Systems Engineer Level 3, plus:
  • Trains, mentors, and develops Engineers and other personnel on operating procedures, resolving system malfunctions, and providing technical information. (Autonomy)
  • Reviews and approves designs of mechanical and/or electrical systems to ensure conformance with engineering design and performance specifications. (Autonomy)
Competencies

Education and Experience:

  • Systems Engineer 1: A Master of Science Degree (MS) or, a Bachelor of Science Degree (BSME, BSEE, BS Mechatronics Engineer or BSCompE) or, Associate of Science Degree (ASEE) with 10 years of relevant electrical
  • experience in an engineering environment.
  • Systems Engineer 2: A Master of Science Degree (MS) with 1 year of relevant electrical experience in an engineering environment or, a Bachelor of Science Degree (BSME, BSEE, BS Mechatronics Engineer or BSCompE)
  • with 2 years of relevant electrical experience in an engineering environment.
  • Systems Engineer 3: A Master of Science Degree (MS) with 4 to 6 years of relevant electrical experience in an engineering environment or, a Bachelor of Science Degree (BSME, BSEE, BS Mechatronics Engineer or BSCompE)
  • with 6 to 8 years of relevant electrical experience in an engineering environment.
  • Systems Engineer 4 (Senior): A Master of Science Degree (MS) with 6 to 8 years of relevant electrical experience in an engineering environment or, a Bachelor of Science Degree (BSME, BSEE, BS Mechatronics Engineer or BSCompE)
  • with 8 to 10 years of relevant electrical experience in an engineering environment. 

Level 1:

  • Ability to mathematically model mechanical, hydraulic, and basic electrical systems
  • Ability to create schematics depicting system operation and design
  • Ability to learn and apply system modeling techniques using Matlab/Simulink
  • Ability to review and post process machine data logs to develop future system operational parameters using Matlab or similar high performance language for technical computing
  • Ability to learn programming languages and/or model based code development
  • Ability to write specifications and requirements that describe system function and logic
  • Ability to apply basic electrical equations to circuit analysis
  • Ability to work with mathematical concepts such as algebra, probability and statistical inference, and fundamentals of plane and solid geometry and trigonometry
  • Ability to install and modify basic control system wiring (Autonomy)
  • Ability to apply concepts such as fractions, percentages, ratios, and proportions to practical situations

Level 2:

  • Demonstrated proficiency of Systems Engineer Level 1, plus:
  • Ability to review schematics depicting system operation and design
  • Proficiency in system modeling techniques using Matlab/Simulink
  • Understanding of the model based code development processes and tools
  • Ability to review CAD layouts in 3D Modeling Software

Level 3:

  • Demonstrated proficiency of Systems Engineer Level 2, plus:
  • Knowledge of technical fundamentals of robotics and/or autonomous systems (Autonomy)
  • Knowledge of industrial hydraulics
  • Knowledge of mechanical and electro-mechanical systems
  • Knowledge of automated control (Product Engineering)
  • Ability to perform CAD layouts in a 3D modeling software
  • Ability to review and post process machine data logs to develop future system operational parameters using nCode Glyphworks or similar
  • Knowledge of Project Management tools (ex. Microsoft Project) (Product Engineering)
  • Ability to accurately scope technical projects and develop supporting documentation (Product Engineering)
  • Ability to write specifications that describe system function and logic
  • Ability to read and interpret documents such as safety rules, operating and maintenance manuals, and procedure manuals, software specifications
  • Ability to apply common sense understanding to carry out instructions furnished in written, oral, or diagram form (Product Engineering)

Level 4 (Senior):

  • Demonstrated proficiency of Systems Engineer Level 3, plus:
  • Knowledge of robotic and/or autonomous systems (Autonomy)
  • Knowledge of automated control (Autonomy)
  • Ability to create schematics depicting system operation and design
  • Knowledge of Project Management tools (ex. Microsoft Project) (Autonomy)
  • Ability to accurately scope technical projects and develop supporting documentation (Autonomy)
  • Ability to apply common sense understanding to carry out instructions furnished in written, oral, or diagram form (Autonomy)

Additional Requirements:

  • Travel domestically and internationally up to 15% of the time.
  • Ability to obtain and maintain a valid driver's license and passport.
  • Ability to maintain Mine Safety & Health Administration (MSHA) certification. 
Our Offer

An interesting and ambitious role in a successful international company. We offer a secure work environment with a comprehensive benefits package that includes major medical, dental and vision insurance, 401K plan with company match, paid vacation and personal days and competitive salary.

Referral Bonus: Tier I

Have we awoken your interest? Then we look forward to receiving your online application. If you have any questions, please contact Thomas Steele.

Liebherr-America, Inc. and its US affiliates are Equal Opportunity Employers. Employment decisions are made without regard to race, color, religion, national origin, gender, sexual orientation, gender identity, age, physical or mental disability, genetic factors, military/veteran status or other characteristics protected by law.
If you are a California resident, please visit Liebherr USA, Co. Privacy Statement for more information regarding how Liebherr-America, Inc. and its US affiliates collect and process your personal information.

One Passion. Many Opportunities.

The company

In line with its international growth, Liebherr's venture into the United States began in 1970. Within a couple of years, the company expanded and completed its production facilities in Newport News, Virginia, for its product line of hydraulic excavators. It was later converted into Liebherr's manufacturing facility for mining trucks and remains home to Liebherr Mining Equipment Newport News, Co. In addition to its production facility, Liebherr markets a wide variety of products and technologies its companies located across the United States. The companies are Liebherr-Aerospace Saline, Inc., Liebherr Gear Technology, Inc., Liebherr Automation Systems, Co., and Liebherr USA, Co., the umbrella company for eight divisions that are positioned across the United States.

Location

Liebherr Mining Equipment Newport News Co.

4100 Chestnut Avenue

23607 Newport News, VA

United States (US)

Contact

Thomas Steele

trey.steele@liebherr.com