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Mechatronics Engineering Jobs in Simpsonville, SC

The Mechatronics Engineer is responsible for supporting, improving, modernizing, and integrating ... Coordinate technical implementation with Maintenance, Process Engineering, Operations, EHS, OEMs ...

New

Job Summary The Mechatronics Technician II supports maintenance and process engineering by ... installing, improving, and troubleshooting automated equipment. This is a growth-oriented role with ...

SITE MANUFACTURING ENGINEERING INTERN

Greer, SC · On-site

$16 - $21/hr

Currently pursuing a Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, Industrial Engineering, Mechatronics Engineering, or a related field. * Junior or Senior standing ...

SITE MANUFACTURING ENGINEERING INTERN

Greer, SC

$15.50 - $20.25/hr

Currently pursuing a Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, Industrial Engineering, Mechatronics Engineering, or a related field. * Junior or Senior standing ...

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 ...

Bachelor's degree in Electrical Engineering, Mechanical Engineering, Mechatronics Engineering, Controls Engineering, or a related technical field. * 5+ years of experience in industrial automation ...

Associate degree or technical certification in Industrial Engineering Technology, Manufacturing Technology, Mechanical Technology, Mechatronics, Advanced Manufacturing, or a related technical field ...

Associate degree or technical certification in Industrial Engineering Technology, Manufacturing Technology, Mechanical Technology, Mechatronics, Advanced Manufacturing, or a related technical field ...

Associate degree or technical certification in Industrial Engineering Technology, Manufacturing Technology, Mechanical Technology, Mechatronics, Advanced Manufacturing, or a related technical field ...

Senior Controls Engineer

Greer, SC · On-site

$93K - $123K/yr

AS or BS in Engineering. Ideally, Computer Science, Mechatronics, Electrical Engineer or similar. Equivalent years of experience can be substituted for a degree.

Senior Controls Engineer

Greer, SC · On-site

$93K - $123K/yr

AS or BS in Engineering. Ideally, Computer Science, Mechatronics, Electrical Engineer or similar. Equivalent years of experience can be substituted for a degree.

Senior Controls Engineer

Greer, SC · On-site

$93K - $123K/yr

AS or BS in Engineering. Ideally, Computer Science, Mechatronics, Electrical Engineer or similar. Equivalent years of experience can be substituted for a degree. Employment Type: FULL_TIME

Project Lead

Moore, SC · On-site

$90 - $120/hr

Bachelor's Degree in Robotics Engineering, Electrical Engineering, Mechanical Engineering, Mechatronics, or related field * Proficient in Microsoft Office tools, particularly Excel * 5 years of ...

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Mechatronics Engineering information

See Simpsonville, SC salary details

$52.7K

$80.2K

$136K

How much do mechatronics engineering jobs pay per year?

As of Aug 31, 2026, the average yearly pay for mechatronics engineering in Simpsonville, SC is $80,218.00, according to ZipRecruiter salary data. Most workers in this role earn between $60,700.00 and $93,100.00 per year, depending on experience, location, and employer.

What is mechatronics engineering?

Mechatronics engineering is an interdisciplinary field that combines mechanical engineering, electrical engineering, computer science, and control systems to design and create smart machines and systems. Mechatronics engineers work on products such as robots, automated manufacturing equipment, and intelligent consumer devices. Their work involves integrating hardware and software to improve system functionality and efficiency. This field is crucial for developing innovative automation solutions in industries like automotive, aerospace, and manufacturing.

What does a mechatronics engineer do?

Mechatronics Engineers often collaborate with mechanical, electrical, and software engineers to design, develop, and optimize smart systems such as robotics, automated manufacturing equipment, or precision instrumentation. Daily responsibilities may include integrating sensors and actuators, programming microcontrollers, troubleshooting electromechanical systems, and participating in design reviews. Working in a multidisciplinary environment requires strong communication skills and adaptability, as you'll frequently coordinate with team members from various engineering backgrounds to ensure seamless system integration and project success.

What are the key skills and qualifications needed to thrive as a mechatronics engineer?

To thrive as a Mechatronics Engineer, you need a solid background in mechanical, electrical, and software engineering, typically supported by a relevant bachelor’s degree. Familiarity with CAD software, PLC programming, robotics systems, and industry-standard simulation tools is essential, along with certifications like Certified Mechatronics Engineer (CMfgE) being advantageous. Strong problem-solving skills, teamwork, and effective communication help distinguish professionals in this multidisciplinary field. These skills are crucial for designing, integrating, and maintaining complex automated systems that drive innovation and efficiency in modern industries.

What is the difference between Mechatronics Engineering vs Electrical Engineering?

AspectMechatronics EngineeringElectrical Engineering
Required CredentialsBachelor's in Mechatronics or related fieldBachelor's in Electrical Engineering
Work EnvironmentDesigning and integrating mechanical, electronic, and software systemsDesigning electrical circuits, power systems, and electronic devices
Industry UsageRobotics, automation, manufacturingPower generation, electronics, telecommunications

Mechatronics Engineering focuses on integrating mechanical, electronic, and software systems to develop intelligent products like robots and automation systems. Electrical Engineering primarily deals with electrical circuits, power systems, and electronic devices. While both fields share foundational knowledge and sometimes overlap, Mechatronics emphasizes system integration and interdisciplinary skills, whereas Electrical Engineering concentrates on electrical components and systems.

Do mechatronics engineers make a lot of money?

Mechatronics engineers typically earn competitive salaries that vary by industry, experience, and location. Entry-level positions often start around the national average for engineering roles, with experienced professionals earning higher wages, especially those with specialized skills in robotics, automation, or control systems.

Is mechatronics engineering a good career option?

Mechatronics engineering is a multidisciplinary field combining mechanical, electrical, and computer engineering, with job opportunities in automation, robotics, and manufacturing industries. It offers a strong job outlook due to increasing automation and technological integration, and requires skills in programming, systems design, and troubleshooting. The profession often involves working with CAD software, control systems, and embedded systems, and may require relevant certifications or degrees.

What are popular job titles related to Mechatronics Engineering jobs in Simpsonville, SC?

For Mechatronics Engineering jobs in Simpsonville, SC, the most frequently searched job titles are:

What job categories do people searching Mechatronics Engineering jobs in Simpsonville, SC look for?

The top searched job categories for Mechatronics Engineering jobs in Simpsonville, SC are:

What cities near Simpsonville, SC are hiring for Mechatronics Engineering jobs?

Cities near Simpsonville, SC with the most Mechatronics Engineering job openings:

Infographic showing various Mechatronics Engineering job openings in Simpsonville, SC as of August 2026, with employment types broken down into 3% Internship, 87% Full Time, 7% Part Time, and 3% Temporary. Highlights an 100% In-person job distribution, with an average salary of $80,218 per year, or $38.6 per hour.

Mechatronics Engineer

Duncan, SC


Afl Telecommunications Llc
Media and Telecom • 5 - 10K employees

7.6

Company rating: 7.6 out of 10

Based on 16 frontline employees who took The Breakroom Quiz

Great coworkers

People enjoy working here

Good employer


Full-time

Posted 3 days ago

New


Job description

The Mechatronics Engineer is responsible for supporting, improving, modernizing, and integrating automated manufacturing equipment within AFL cable manufacturing operations. The position provides advanced technical expertise in industrial controls, automation, electrical systems, motion control, machine integration, and equipment troubleshooting.

The engineer supports both existing manufacturing assets and new equipment installations, with primary responsibility for machine sustainability and controls modernization projects, PLC/HMI and drive upgrades, equipment integration, advanced troubleshooting, and equipment startup and commissioning.

The Mechatronics Engineer works closely with Maintenance, Process Engineering, Manufacturing Technology, Operations, OEMs, and outside integrators to ensure manufacturing equipment is safe, reliable, maintainable, and capable of meeting production requirements.

Responsibilities

Machine Improvement & Automation

  • Execute machine improvement and automation projects in support of manufacturing, process, safety, quality, reliability, and operational objectives.
  • Develop technical solutions in response to approved project requests from Operations, Process Engineering, EHS, Maintenance, Quality, and other manufacturing support functions.
  • Translate defined project needs and performance objectives into controls, automation, electrical, and electromechanical solutions.
  • Design, develop, program, integrate, and commission machine modifications involving PLCs, HMIs, drives, motion control, sensors, machine vision, laser measurement systems, safety systems, smart devices, and industrial communications.
  • Collaborate with project requestors and other stakeholders to understand the problem, establish technical requirements, evaluate solution alternatives, and define the appropriate scope of work.
  • Support projects intended to improve manufacturing performance, including equipment capability, throughput, RFT, scrap reduction, process control, safety, ergonomics, reliability, and operational efficiency.
  • Develop machine improvements that enhance operator interfaces, diagnostics, alarm handling, process control, error-proofing, and equipment functionality.
  • Coordinate technical implementation with Maintenance, Process Engineering, Operations, EHS, OEMs, integrators, and other resources as required.
  • Validate completed modifications and confirm that the implemented solution meets the defined project objectives.
  • Document machine modifications, controls changes, programming, drawings, settings, and other technical information required for long-term equipment support.

Machine Sustainability & Controls Modernization

  • Identify and execute machine sustainability projects addressing obsolete, unsupported, or unreliable controls and automation components.
  • Upgrade legacy PLCs, HMIs, variable frequency drives, servo systems, industrial networks, sensors, safety devices, and other machine-control hardware.
  • Develop migration strategies for aging or obsolete control platforms while minimizing production risk and equipment downtime.
  • Develop and modify PLC, HMI, SCADA, motion-control, and drive applications required for equipment upgrades and improvements.
  • Integrate new controls and automation technologies into existing manufacturing equipment.
  • Maintain appropriate backups and technical documentation for modified control systems.
  • Improve equipment reliability, maintainability, diagnostics, and troubleshooting capability through controls and automation improvements.

Advanced Troubleshooting & Operational Support

  • Serve as a technical resource for difficult or recurring equipment problems requiring advanced controls, electrical, automation, or electromechanical troubleshooting.
  • Troubleshoot PLC-controlled equipment including I/O, industrial networks, sensors, VFDs, servo systems, motion control, safety circuits, HMIs, and associated electrical systems.
  • Analyze equipment failures and recurring problems to determine root cause and develop sustainable corrective actions.
  • Support Maintenance and Process Engineering when problems extend beyond normal maintenance troubleshooting capabilities.
  • Use electrical schematics, PLC logic, OEM documentation, machine data, and diagnostic tools to systematically troubleshoot complex equipment problems.
  • Assist in developing technical troubleshooting skills within Maintenance and other technical organizations.
  • Provide technical support during critical equipment failures and production interruptions when required.

Equipment Startup, Commissioning & Integration

  • Provide technical support for new OEM equipment installations and startups.
  • Work directly with OEM technicians, controls engineers, integrators, Maintenance, Process Engineering, and Operations during machine commissioning.
  • Review and troubleshoot OEM controls, electrical systems, PLC/HMI programs, drives, networks, instrumentation, and machine interfaces.
  • Support acceptance testing and verify that equipment controls and functionality meet AFL requirements and purchase specifications.
  • Integrate new OEM equipment with existing AFL equipment, controls, production systems, and supporting processes.
  • Identify and resolve controls and automation issues discovered during startup and production ramp-up.
  • Support post-startup debugging, optimization, and stabilization of new manufacturing equipment.

Equipment Relocation & Restart

  • Provide controls and technical support following internal equipment relocations.
  • Assist with machine reconnection, controls verification, I/O checkout, network communication, drive and motion-system verification, and functional testing.
  • Debug equipment following relocation and resolve electrical, controls, communication, or integration problems created or discovered during the move.
  • Support machine startup and return-to-production activities following relocation.
  • Work with Maintenance, Process Engineering, Operations, and contractors to ensure relocated equipment is returned to a safe and reliable operating condition.

 

Engineering Documentation & Technical Standards

  • Develop and maintain electrical drawings, controls documentation, PLC/HMI backups, network information, drive parameters, and other technical information required to support manufacturing equipment.
  • Document modifications made to equipment and control systems.
  • Review OEM documentation and controls architecture for new equipment and major upgrades.
  • Help establish and maintain controls and automation standards for AFL manufacturing equipment.
  • Ensure technical documentation is organized and usable by Engineering and Maintenance personnel.

Personal Qualities

  • Collaboration - Able to translate manufacturing and operational needs into defined technical solutions and work effectively across Operations, Maintenance, Process Engineering, Manufacturing Technology, OEMs, and integrators.
  • Organization / Work Management - Able to self-manage priorities, schedules, and technical work to meet project and production requirements.
  • Technical Discipline - Verifies assumptions, checks work, maintains backups and documentation, collects appropriate data, and confirms equipment performance following modifications.
  • Coaching & Development - Develops technical skills in self and others and shares controls, automation, and troubleshooting knowledge with technical personnel.
  • Business Acumen - Understands how equipment reliability, throughput, quality, downtime, and maintainability affect manufacturing performance.
  • Problem Solving / Improvement - Uses a systematic, multidisciplinary, and data-driven approach to complex equipment problems and continuous improvement.

Qualifications

  • Bachelor's degree in Mechatronics Engineering, Electrical Engineering, Mechanical Engineering, Automation Engineering, or a closely related engineering discipline.
  • Relevant engineering experience commensurate with the assigned Mechatronics Engineer level. Relevant internship/co-op experience will be considered when evaluating technical readiness, particularly for entry-level candidates.
  • Strong electromechanical and industrial automation background with demonstrated ability to troubleshoot complex manufacturing equipment.
  • Proficiency with industrial PLC platforms including Siemens, Allen-Bradley/Rockwell, and/or GE/Emerson.
  • Ability to develop, troubleshoot, and modify PLC and HMI applications.
  • Working knowledge of industrial communication networks including EtherNet/IP, PROFINET/PROFIBUS, and related industrial protocols.
  • Working knowledge of variable frequency drives, AC vector drives, servo systems, motion control, electromagnetic braking, coordinated drives, and tension-control applications.
  • Ability to read and troubleshoot electrical schematics and machine-control documentation.
  • Experience with industrial sensors, instrumentation, safety systems, machine vision, and other smart automation devices.
  • Experience with equipment commissioning, startup, and production debugging.
  • Working knowledge of AutoCAD, SolidWorks, or similar engineering software is beneficial.
  • Experience with SCADA, industrial data acquisition, and manufacturing connectivity systems is beneficial.
  • Working knowledge of Microsoft Office Suite.

 

Working Conditions

Works in a manufacturing environment around automated production equipment and heavy machinery operating on a 24-hour, 7-day schedule. The position may require occasional after-hours support for equipment startups, major upgrades, commissioning activities, planned shutdowns, or critical equipment problems.



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