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Automation Simulation Engineer Jobs in Smyrna, TN

Automation Engineer

Murfreesboro, TN · On-site

$110 - $150/hr

SUMMARY The Automation Engineer provides plant-level strategic and technical leadership for ... simulation. * Vision systems: Ability to review Keyence CV‑X and Cognex In‑Sight or VisionPro ...

Summary The Automation Engineer provides plant-level strategic and technical leadership for ... simulation. * Vision systems: Ability to review Keyence CV-X and Cognex In-Sight or VisionPro ...

... automation and software suppliers, and external systems teams managing all facets of the interior ... run all simulations and scripts required to support successful launches and turnovers. * Data ...

Testing Engineer

Franklin, TN · On-site

$90 - $130/hr

... automation and software suppliers, and external systems teams managing all facets of the interior ... run all simulations and scripts required to support successful launches and turnovers. Data ...

Industrial Engineer

Smyrna, TN · On-site

$65K - $88K/yr

DRiV is the aftermarket business group of Tenneco - DRiV website Industrial Engineer We are looking ... Automation * Warehouse management systems (WMS) * AI and data analytics * Simulation * Proven ...

Industrial Engineer

Smyrna, TN · On-site

$65K - $88K/yr

DRiV is the aftermarket business group of Tenneco - DRiV website Industrial Engineer We are looking ... Automation * Warehouse management systems (WMS) * AI and data analytics * Simulation * Proven ...

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Automation Simulation Engineer information

See Smyrna, TN salary details

$36.4K

$115.1K

$177.6K

How much do automation simulation engineer jobs pay per year?

As of Aug 30, 2026, the average yearly pay for automation simulation engineer in Smyrna, TN is $115,074.00, according to ZipRecruiter salary data. Most workers in this role earn between $85,800.00 and $136,600.00 per year, depending on experience, location, and employer.

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.

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 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.

What are popular job titles related to Automation Simulation Engineer jobs in Smyrna, TN?

For Automation Simulation Engineer jobs in Smyrna, TN, the most frequently searched job titles are:

What cities near Smyrna, TN are hiring for Automation Simulation Engineer jobs?

Cities near Smyrna, TN with the most Automation Simulation Engineer job openings:

Automation Engineer

Murfreesboro, TN • On-site


Adient plc
Motor Vehicle Manufacturing • 10K+ employees

6.3

Company rating: 6.3 out of 10

Based on 44 frontline employees who took The Breakroom Quiz

485th of 545 rated manufacturers

Paid breaks

Respectful managers

Good training


$110 - $150/hr

Other

Posted 12 days ago


Job description

JOB DESCRIPTION

We are a global leader in automotive seating because of our people — a team of adventurous thinkers and passionate high performers who make it all possible. We pride ourselves on being at the vanguard of new industry trends and technologies. When you join Adient, you’ll play an important role in helping us improve the experience of a world in motion.

SUMMARY

The Automation Engineer provides plant-level strategic and technical leadership for automated manufacturing systems. The role owns automation standards, design governance, capital execution, launch readiness, performance improvement, and lifecycle management. Acting as the approval authority for new systems and significant modifications, the Automation Engineer ensures automation solutions are safe, standardized, maintainable, financially justified, and capable of stable production performance before transfer to operations.

RESPONSIBILITIES
  • Define, maintain, and enforce plant automation standards, design specifications, controls architecture, documentation requirements, and risk-mitigation protocols.
  • Review and approve automation concepts, detailed designs, software architectures, safety solutions, modifications, and production launches.
  • Lead automation capital planning and execution, including business cases, ROI analysis, scope development, vendor selection, technical bid evaluation, schedule and budget control, installation, commissioning, and final acceptance.
  • Coordinate internal stakeholders, equipment suppliers, system integrators, maintenance, operations, IT/OT, quality, and safety teams to deliver compliant and production-ready systems.
  • Establish launch‑readiness criteria and verify that equipment meets safety, quality, cycle‑time, reliability, maintainability, documentation, training, and spare‑parts requirements before release to production.
  • Monitor automated‑cell performance using OEE, mean time between failures, downtime, throughput, quality, and 30/60/90‑day launch‑stability metrics; lead corrective actions and escalation for significant performance events.
  • Own automation lifecycle governance from concept through sustainment, ensuring systems are not transferred to operations until defined stability criteria are achieved and no unsupported or “orphaned” systems remain.
  • Drive root‑cause analysis, continuous improvement, standardization, and replication of proven automation solutions across the plant.
  • Maintain awareness of emerging automation technologies and recommend practical applications that improve safety, quality, productivity, flexibility, or cost.
QUALIFICATIONS
  • Bachelor’s degree in electrical, mechanical, industrial, manufacturing, mechatronics, controls, or a related engineering discipline.
  • Seven or more years of progressive experience in manufacturing automation, controls engineering, systems integration, or advanced manufacturing engineering.
  • Demonstrated experience leading automation capital projects valued at $500,000 or more, including technical scope, supplier management, schedule, budget, commissioning, and acceptance.
  • Working knowledge of lean manufacturing, OEE improvement, structured problem‑solving, risk assessment, and equipment‑launch processes.
  • Ability to interpret electrical schematics, mechanical layouts, control narratives, network drawings, safety documentation, and supplier technical proposals.
  • Strong leadership, decision‑making, communication, and cross‑functional collaboration skills, with the ability to establish technical direction and hold stakeholders accountable to standards.
SPECIFIC TECHNICAL REQUIREMENTS
  • PLC and controls: Advanced understanding of Rockwell Automation ControlLogix and CompactLogix architectures; ability to review ladder logic, structured text, and function block diagrams; proficiency navigating and managing projects in RSLogix 5000 and Studio 5000.
  • HMI systems: Ability to review and approve FactoryTalk View SE and ME applications, alarm strategies, operator interfaces, security, and system integration.
  • Robotics: Working knowledge of FANUC robot programming and system integration, including Teach Pendant programs, logic validation, iRVision, Dual Check Safety, CR‑series collaborative robot safety concepts, and Roboguide simulation.
  • Vision systems: Ability to review Keyence CV‑X and Cognex In‑Sight or VisionPro applications, including lighting, inspection criteria, pass/fail thresholds, and vision‑to‑PLC or vision‑to‑robot communications.
  • Industrial networks: Strong understanding of EtherNet/IP architecture, device addressing, managed‑switch configuration, bandwidth considerations, diagnostics, I/O mapping, tag structures, and communication handshaking.
  • Industrial cybersecurity: Working knowledge of OT network segmentation, access control, secure remote support, asset management, backup and recovery, and baseline industrial cybersecurity practices.
  • Machine safety: Knowledge of machinery risk assessment and safeguarding principals, including ISO 12100 concepts, safety PLC applications, robot safety, and validation expectations.
  • Software, Certifications, and Training: Proficiency with Microsoft Project or equivalent project‑tracking software.
  • Ability to review layouts and technical drawings using AutoCAD, SolidWorks, or equivalent software.
  • Advanced capability with Microsoft Excel and experience with Power BI, Tableau, or comparable data‑visualization tools.
  • PMP, Lean Six Sigma Green Belt, or equivalent project‑management or continuous‑improvement certification preferred.
  • OSHA 30‑Hour General Industry and machinery risk‑assessment training preferred.
  • Rockwell Automation and FANUC platform training, including FANUC HandlingTool Operations or equivalent, preferred.
PRIMARY LOCATION

Murfreesboro Facility Adient (NYSE: ADNT) is a global leader in automotive seating. With more than 65,000 employees in 29 countries, Adient operates ~200 manufacturing/assembly plants worldwide. We produce and deliver automotive seating for all major OEMs. From complete seating systems to individual components, our expertise spans every step of the automotive seat‑making process. We take our products from research and design to engineering and manufacturing — and into millions of vehicles every year.

For more information, please visit www.adient.com.

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