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Advanced Manufacturing Engineer Jobs in Arkansas

Math skills for using the principals of advanced math topics including troubleshooting work, calculus for analysis and design Manufacturing Engineer Education & Experience * Degree in manufacturing ...

Manufacturing Engineer

Fort Smith, AR · On-site

$78K - $97K/yr

Math skills for using the principals of advanced math topics including troubleshooting work, calculus for analysis and design Manufacturing Engineer Education & Experience * Degree in manufacturing ...

Manufacturing Engineer

Fort Smith, AR · On-site

$78K - $97K/yr

Math skills for using the principals of advanced math topics including troubleshooting work, calculus for analysis and design Manufacturing Engineer Education & Experience * Degree in manufacturing ...

Lead, Manufacturing Engineer- Automation

Camden, AR · On-site

$73K - $94K/yr

Varies The Advanced Operations Technology (AOT) organization is seeking an experienced Automation ... Partner with industrial and manufacturing engineers to develop work standards, time studies, and ...

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Showing results 1-20

Advanced Manufacturing Engineer information

See Arkansas salary details

$34.7K

$79.4K

$123.2K

How much do advanced manufacturing engineer jobs pay per year?

As of Sep 7, 2026, the average yearly pay for advanced manufacturing engineer in Arkansas is $79,383.00, according to ZipRecruiter salary data. Most workers in this role earn between $63,700.00 and $97,200.00 per year, depending on experience, location, and employer.

What is an advanced manufacturing engineer?

Advanced Manufacturing Engineers are professionals who focus on developing and improving manufacturing processes using innovative technologies and methods. They work to increase efficiency, quality, and productivity in the production of goods, often by integrating automation, robotics, and data analytics. These engineers collaborate with design, quality, and production teams to implement advanced manufacturing techniques, troubleshoot issues, and ensure products meet industry standards. Their role is critical in driving continuous improvement and maintaining a competitive edge in modern manufacturing environments.

How does an advanced manufacturing engineer typically collaborate with cross-functional teams during a new product launch?

Advanced Manufacturing Engineers play a crucial role in new product launches by working closely with design, quality, and production teams. They provide input on manufacturability during the design phase, help develop and optimize manufacturing processes, and support troubleshooting on the shop floor. This collaboration ensures that products are designed for efficient production and high quality, while also meeting cost and timeline goals. Regular meetings, process reviews, and hands-on problem-solving are common aspects of this collaborative environment.

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

To thrive as an Advanced Manufacturing Engineer, you need a solid background in engineering principles, process optimization, and experience with manufacturing systems, often supported by a degree in mechanical, industrial, or manufacturing engineering. Familiarity with CAD/CAM software, automation technologies, lean manufacturing methodologies, and relevant certifications like Six Sigma are typically required. Strong problem-solving, project management, and effective communication skills help you collaborate with cross-functional teams and drive continuous improvement. These skills are crucial for delivering high-quality products efficiently, reducing costs, and maintaining competitiveness in advanced manufacturing environments.

What is the difference between Advanced Manufacturing Engineer vs Manufacturing Engineer?

AspectAdvanced Manufacturing EngineerManufacturing Engineer
CredentialsBachelor's degree in engineering, often with certifications in manufacturing or process improvementBachelor's degree in engineering or related field
Work EnvironmentDesigning and optimizing advanced manufacturing processes, often involving automation and new technologiesOverseeing daily production, process improvements, and equipment maintenance
Industry UsageUsed in high-tech, aerospace, automotive, and industries focusing on innovationCommon across various manufacturing sectors for general production roles

The Advanced Manufacturing Engineer focuses on developing and implementing cutting-edge manufacturing processes, often involving automation and new technologies. In contrast, the Manufacturing Engineer typically manages existing production lines and process improvements. Both roles require engineering backgrounds, but the advanced role emphasizes innovation and technology integration.

What do advanced manufacturing engineers do?

Advanced manufacturing engineers design, develop, and improve manufacturing processes and systems to increase efficiency, quality, and safety. They often work with automation, robotics, and computer-aided design (CAD) tools, and may require knowledge of materials, production methods, and industry standards to optimize manufacturing operations.

What are popular job titles related to Advanced Manufacturing Engineer jobs in Arkansas?

For Advanced Manufacturing Engineer jobs in Arkansas, the most frequently searched job titles are:

What job categories do people searching Advanced Manufacturing Engineer jobs in Arkansas look for?

The top searched job categories for Advanced Manufacturing Engineer jobs in Arkansas are:

Infographic showing various Advanced Manufacturing Engineer job openings in Arkansas as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $79,383 per year, or $38.2 per hour.

A-Manufacturing Engineer -431

Tulsa Employee Benefits Group

Jacksonville, AR • On-site

$79 - $107/hr

Other

Posted 19 days ago


Key responsibilities

  • Lead and manage capital expenditure projects, including developing project scopes, managing vendor selection, and monitoring budgets and timelines.

  • Develop, optimize, and troubleshoot CNC machining programs and manufacturing processes to improve efficiency, quality, and throughput.

  • Identify, implement, and support automation solutions such as robotics and digital manufacturing technologies to enhance safety, productivity, and operational flexibility.


Job description

If you are unable to complete this application due to a disability, contact this employer to ask for an accommodation or an alternative application process.

A-Manufacturing Engineer -431

1 Attachments

3 days ago Requisition ID: 2135

Salary: $93,250.00 Annually

Position Summary The Manufacturing Engineer – Capital Projects, CNC & Automation is responsible for driving operational excellence through the design, implementation, and optimization of manufacturing processes, CNC machining applications, automation systems, and capital investment projects. This role serves as a technical leader focused on increasing productivity, quality, safety, and capacity through the application of modern manufacturing technologies and continuous improvement methodologies. The position works cross-functionally with Operations, Maintenance, Quality, Supply Chain, and Finance to identify opportunities, develop business cases, and execute projects that support long-term growth and competitive advantage.

Key Responsibilities
  • Capital Project Leadership Identify, develop, justify, and execute capital expenditure (CAPEX) projects supporting safety, quality, productivity, capacity, and cost reduction objectives. Develop project scopes, equipment specifications, facility layouts, and technical requirements. Prepare capital appropriation requests, including ROI, payback, NPV, and productivity analyses. Lead projects from concept through commissioning, startup, and final acceptance. Manage vendor selection, equipment procurement, contractor activities, and installation schedules. Monitor project budgets, timelines, and deliverables to ensure successful execution. Support facility modernization, equipment upgrades, and manufacturing technology roadmaps.
  • CNC Manufacturing & Process Engineering Develop, optimize, and troubleshoot CNC machining programs and manufacturing processes. Improve cycle times, machine utilization, setup efficiency, and tooling performance. Lead fixture design, process validation, and machining standardization efforts. Evaluate and implement advanced machining technologies and cutting tool solutions. Establish best practices for CNC programming, setup, and process control. Support new product introductions and manufacturing process development. Drive improvements in throughput, quality, and overall equipment effectiveness (OEE).
  • Automation & Advanced Manufacturing Identify and implement automation solutions that improve safety, quality, productivity, and operational flexibility. Lead automation projects involving robotics, cobots, machine tending, vision systems, automated material handling, and digital manufacturing technologies. Collaborate with controls engineers, integrators, and equipment suppliers to design and deploy automated systems. Develop business cases and project justifications for automation investments. Support integration of automation systems with existing manufacturing processes and equipment. Evaluate emerging Industry 4.0 technologies, including machine monitoring, predictive maintenance, IIoT, and real-time production analytics. Develop and maintain standards for automated equipment and manufacturing technologies.
  • Continuous Improvement Lead Lean Manufacturing, Kaizen, and Six Sigma initiatives. Analyze production data to identify bottlenecks and opportunities for improvement. Improve OEE, throughput, labor productivity, and process capability. Support value stream mapping and workflow optimization initiatives. Reduce waste associated with downtime, setup, material handling, scrap, and rework. Implement data-driven solutions that improve operational performance.
  • Technical Leadership Serve as the plant subject matter expert for CNC machining, manufacturing technology, and automation systems. Train and mentor operators, technicians, and engineers on manufacturing processes and best practices. Provide technical leadership during equipment startups and process changes. Support root cause analysis and corrective action activities related to manufacturing performance. Partner with maintenance and operations teams to improve equipment reliability and process stability.
Education
  • Bachelor’s degree in Manufacturing Engineering, Mechanical Engineering, Industrial Engineering, Mechatronics Engineering, or a related technical field.
  • Equivalent combinations of education and relevant experience may be considered.
Experience
  • 5+ years of manufacturing engineering experience in a CNC machining or advanced manufacturing environment.
  • Demonstrated experience managing capital projects from concept through implementation.
  • Experience implementing manufacturing automation and process improvement initiatives.
  • Strong background in machining, tooling, fixtures, and manufacturing systems.
  • Experience preparing capital justifications and managing project budgets.
Technical Skills
  • CNC programming experience (Mastercam, Fusion 360, Esprit, GibbsCAM, or similar).
  • Strong understanding of: CNC machining processes G-Code and M-Code programming Tooling and fixture design GD&T and blueprint interpretation Robotics and collaborative robots (preferred) Vision inspection systems Automated material handling systems PLC fundamentals and manufacturing controls concepts CAD software (SolidWorks, AutoCAD, Inventor, or equivalent) Lean Manufacturing and continuous improvement methodologies Proficiency with Microsoft Excel and project management tools.
Qualifications
  • Lean Six Sigma Green Belt or Black Belt.
  • Project Management Professional (PMP) certification.
  • Experience with robotics integration and automation deployment.
  • Experience with machine monitoring, IIoT, MES, or digital manufacturing systems.
  • Experience supporting smart factory or Industry 4.0 initiatives.
Key Performance Indicators (KPIs)
  • Capital project completion rate
  • Capital project ROI achievement
  • Automation project implementation success
  • Labor productivity improvement
  • OEE improvement
  • CNC cycle time reduction
  • Scrap and rework reduction
  • Manufacturing cost savings
Safety improvements
  • Equipment uptime and reliability
  • Throughput and capacity gains
Success Profile

The successful candidate is a technically strong manufacturing engineer who combines hands-on CNC expertise with a passion for automation and process improvement. They can build a compelling business case for investment, lead complex projects from concept to implementation, and deliver measurable operational results through technology, innovation, and continuous improvement. They are equally comfortable analyzing production data, programming CNC equipment, evaluating automation opportunities, and leading cross-functional project teams.

Travel

Ability to travel up to 20% within the US.

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