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Automation Simulation Engineer Jobs in North Carolina

Lead Engineer - Automation Tooling

Charlotte, NC · On-site

$100K - $131K/yr

Experience building cloud-native developer platforms, large-scale simulation and validation infrastructure, HIL/SIL automation frameworks. * Leadership Competencies * Strong system-level thinking ...

Sr. Controls Engineer

Benson, NC

$78K - $104K/yr

As the Senior Controls Engineer you will lead the controls and software integration for a massive 1 ... automation simulations. * Electrical schematics, pneumatic drawings, controls panel layouts, and ...

Sr. Controls Engineer

Durham, NC

$93K - $123K/yr

As the Sr. Controls Engineer (FAT/CSV) you will lead automation acceptance and commissioning for a ... automation simulations. * Electrical schematics, pneumatic drawings, controls panel layouts, and ...

... ATC automation, simulation systems and procedures. This position will provide mentoring for ... ing services, and professional services. We integrate emerging technology, rapidly and securely ...

... automation, simulation systems and procedures. This position may provide mentoring for students and ... ing services, and professional services. We integrate emerging technology, rapidly and securely ...

Showing results 21-40

Automation Simulation Engineer information

What is an automation simulation engineer?

Automation Simulation Engineers are professionals who design, develop, and test virtual models of automated systems, such as robotics, manufacturing lines, or industrial processes. They use simulation software to replicate real-world operations, helping companies optimize performance, identify issues, and reduce costs before actual implementation. Their work is crucial in industries like automotive, aerospace, and manufacturing, where efficiency and precision are vital. By simulating automation systems, they enable organizations to make informed decisions and improve overall productivity.

What is the difference between Automation Simulation Engineer vs Automation Test Engineer?

AspectAutomation Simulation EngineerAutomation Test Engineer
Primary FocusDeveloping and validating simulation models for automation systemsDesigning and executing automated tests for software and hardware
Required SkillsSimulation software, control systems, programming (e.g., Python, MATLAB)Testing frameworks, scripting, defect tracking
Work EnvironmentEngineering labs, R&D departments, manufacturing settingsSoftware development teams, QA departments, manufacturing
Industry UsageManufacturing, robotics, industrial automationSoftware development, electronics, automation industries

While both roles involve automation, the Automation Simulation Engineer focuses on creating virtual models to test automation systems, whereas the Automation Test Engineer concentrates on executing automated tests to ensure software and hardware quality. Both roles require technical skills and are vital in automation industries, but their core responsibilities differ significantly.

How does an automation simulation engineer typically collaborate with cross-functional teams during project development?

Automation Simulation Engineers frequently work alongside controls engineers, mechanical designers, and project managers to ensure simulation models accurately reflect real-world system behaviors. Collaboration often involves participating in design reviews, sharing simulation results, and iterating on model parameters based on feedback from different departments. Effective communication and teamwork are crucial, as simulation insights guide design choices, troubleshoot potential issues, and optimize automation processes before physical implementation. This cross-disciplinary approach ensures smoother project execution and greater system reliability.

What are the key skills and qualifications needed to thrive as an automation simulation engineer, and why are they important?

To thrive as an Automation Simulation Engineer, you need a solid background in engineering principles, control systems, and process automation, usually supported by a degree in electrical, mechanical, or automation engineering. Proficiency with simulation software (such as Siemens Tecnomatix, Rockwell Arena, or MATLAB/Simulink), programming languages, and PLC systems is crucial, and certifications in automation or simulation tools are often valued. Strong analytical thinking, attention to detail, and effective communication skills enable you to interpret complex data and collaborate with multidisciplinary teams. These skills are essential to ensure accurate modeling, efficient automation solutions, and successful project outcomes in industrial environments.
What cities in North Carolina are hiring for Automation Simulation Engineer jobs? Cities in North Carolina with the most Automation Simulation Engineer job openings:
Infographic showing various Automation Simulation Engineer job openings in North Carolina as of July 2026, with employment types broken down into 90% Full Time, 8% Part Time, and 2% Contract. Highlights an 82% Physical, 6% Hybrid, and 12% Remote job distribution.

Manufacturing Engineer - Machining & Automation

Vulcan Elements

Benson, NC

$70K - $90K/yr

Full-time

Posted 24 days ago


Job description

Vulcan Elements is manufacturing American rare-earth permanent magnets for a secure, resilient future. With a focus on national security and economic resiliency, we serve critical industries such as defense, aerospace, and automotive powering a high-technology future. Vulcan Elements is building a team of ambitious professionals committed to Mission Focus, Technical Excellence, and Transparency.

As a Manufacturing Engineer, you will contribute to the full lifecycle of a massive 1 million square foot manufacturing facility expansion—from design and equipment specification through installation, commissioning, production startup, and scale-up to full capacity. You will be responsible for a process step, translating pilot-line processes into full-scale, stable, and repeatable production systems. This is a high-impact, high-ownership role requiring deep technical expertise and leadership.

This role begins in Durham, NC and is expected to move to Benson, NC upon completion of new facility.

Core Expectations & Responsibilities

  • Lead the evaluation, quote comparison, and selection of advanced manufacturing technologies and vendors. You will own the technical and financial side-by-side comparisons to ensure selected machinery meets our aggressive scaling and quality goals.
  • Own equipment design/requirements, vendor performance and schedule, commissioning activities, process development, and production qualification for a major automated production process (machining, grinding, coating, testing, and packaging).
  • Develop and optimize manufacturing processes to improve throughput, quality, and equipment reliability. Monitor OEE results and station cycle times to drive yield and capacity improvements.
  • Manage technical schedules, budgets, and deliverables aligned with company milestones and customer commitments.
  • Provide hands-on support during production startup, helping stabilize processes and eliminate early bottlenecks.
  • Develop and innovate new processes and equipment strategies (collaborating with R&D) to implement in future production lines, pushing Vulcan to achieve best-in-class magnet manufacturing.
  • Ensure compliance with safety, environmental, and quality standards across all process activities.
  • This position will require some interaction and travel to support equipment development reviews and Factory Acceptance Tests (FATs) as needed (estimated at <10% travel).

You will also be responsible for developing, reviewing, or managing the following deliverables:

  • Risk Assessments, Ergonomic Assessments, PFMEA.
  • Line Layouts, Process Flow Charts, Bill of Process (BOP), Station Cycle Times, Process Sheets, and Simulations.
  • CAD Drawings, Electrical & Pneumatic Drawings, and performing necessary Electrical and Pneumatic Calculations.
  • Quality Control Plans, R&R (Gage Repeatability and Reproducibility) Studies, Quality Checklists, and Process Checklists.
  • Work Instructions (SOPs), Calibration Procedures, Spare Parts Lists, Bill of Materials (BOM), and Maintenance Manuals.
  • HMI Controls Manuals, Vision Programs, MES Transactions Lists.

Responsibilities and tasks outlined are not exhaustive and may change as determined by the needs of the business

Qualifications

  • Bachelor's or Masters degree in Mechanical Engineering, Electrical Engineering, Automation Engineering, or a related technical discipline with 3+ years of experience.
  • Strong, hands-on experience creating, modifying, and validating complex equipment assemblies and custom automation layouts in CAD.
  • Direct, hands-on experience specifying, integrating, or operating heavy automation, robotics, AGVs (Automated Guided Vehicles), advanced vision systems, and industrial laser systems.
  • Expert-level experience authoring and developing standard manufacturing documents (PFMEA, Control Plans, Work Instructions, and Process Flows).
  • Ability to read, interpret, and create electrical schematics and pneumatic diagrams, including performing core engineering calculations (electrical/pneumatic).

Must be a U.S. Person due to required access to U.S. export-controlled information or facilities.

Preferred Qualifications

  • Experience specifically in precision CNC machining, high-volume grinding, or industrial surface coating applications.
  • Hands-on experience with machine vision programming (e.g., Cognex, Keyence).
  • Proficiency with advanced simulation software for automated workflow and line balancing.
  • Familiarity with MES (Manufacturing Execution Systems) implementation and automated transaction mapping.

Physical and Environmental Requirements

The position requires regular presence on the production floor and the ability to navigate all areas of the facility. Candidates must be able to climb stairs, stand and walk for extended periods, and work in environments that may be hot, humid, or noisy. The role also requires the use of personal protective equipment, including respirators, and adherence to all applicable safety policies, procedures, and regulatory requirements. Employees must be able to complete required fit testing, wear appropriate PPE for the duration of assigned tasks, and respond safely to changing conditions within the production environment.