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Director Advanced Manufacturing Jobs in Raleigh, NC

Electrical Controls Engineer

Durham, NC

$72K - $96K/yr

... manufacturing systems, including Liquid Metal and Laser Wire DED (Directed Energy Deposition) 3D printers. This role combines PLC/IPC programming, electrical hardware design, and advanced system ...

The Director of Architecture partners closely with Regional Discipline Leaders and Project ... Experience supporting life sciences, advanced manufacturing, or food & beverage projects.

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Director Advanced Manufacturing information

See Raleigh, NC salary details

$67.6K

$137.9K

$203.7K

How much do director advanced manufacturing jobs pay per year?

As of Jun 26, 2026, the average yearly pay for director advanced manufacturing in Raleigh, NC is $137,911.00, according to ZipRecruiter salary data. Most workers in this role earn between $108,400.00 and $162,300.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Director of Advanced Manufacturing, and why are they important?

To thrive as a Director of Advanced Manufacturing, you need deep expertise in manufacturing processes, automation, and production management, typically supported by an engineering degree and relevant leadership experience. Familiarity with advanced manufacturing technologies like robotics, ERP/MES systems, Lean Six Sigma methodologies, and industry certifications (e.g., PMP, Six Sigma Black Belt) is highly valuable. Strong strategic thinking, leadership, and communication skills set standout candidates apart by enabling effective team management and cross-functional collaboration. These skills are critical for driving innovation, operational efficiency, and maintaining a competitive edge in a rapidly evolving manufacturing landscape.

How does a Director of Advanced Manufacturing typically collaborate with cross-functional teams to implement new technologies?

As a Director of Advanced Manufacturing, you will regularly work with engineering, quality, supply chain, and IT teams to evaluate, select, and implement emerging manufacturing technologies. This involves coordinating pilot projects, setting technology adoption roadmaps, and ensuring seamless integration with existing systems and processes. Effective collaboration is crucial for aligning on goals, addressing technical challenges, and training staff on new equipment or software. Strong communication and project management skills are essential to drive innovation while minimizing disruption to production.

What is the difference between Director Advanced Manufacturing vs Manufacturing Manager?

AspectDirector Advanced ManufacturingManufacturing Manager
CredentialsBachelor's or Master's in Engineering, Manufacturing, or related fields; often requires leadership experienceBachelor's degree in Engineering, Manufacturing, or related fields; some roles prefer certifications
Work EnvironmentStrategic leadership in manufacturing facilities, overseeing multiple teams and projectsOperational management on the shop floor, supervising production teams
Industry UsageUsed across industries like automotive, aerospace, electronics for high-level oversightCommonly found in manufacturing plants managing daily operations

The Director Advanced Manufacturing focuses on strategic planning, innovation, and overseeing multiple manufacturing operations, while the Manufacturing Manager handles daily production activities and team supervision. Both roles require technical knowledge, but the director's role is more strategic and leadership-oriented.

What does a Director of Advanced Manufacturing do?

A Director of Advanced Manufacturing oversees the development, implementation, and optimization of cutting-edge manufacturing processes within an organization. This role involves integrating advanced technologies such as automation, robotics, and data analytics to improve production efficiency and product quality. They collaborate with engineering, operations, and leadership teams to drive innovation and maintain competitiveness in the marketplace. Additionally, they are responsible for managing budgets, setting strategic goals, and ensuring compliance with industry standards.
What are the most commonly searched types of Advanced Manufacturing jobs in Raleigh, NC? The most popular types of Advanced Manufacturing jobs in Raleigh, NC are:
What are popular job titles related to Director Advanced Manufacturing jobs in Raleigh, NC? For Director Advanced Manufacturing jobs in Raleigh, NC, the most frequently searched job titles are:
What job categories do people searching Director Advanced Manufacturing jobs in Raleigh, NC look for? The top searched job categories for Director Advanced Manufacturing jobs in Raleigh, NC are:
What cities near Raleigh, NC are hiring for Director Advanced Manufacturing jobs? Cities near Raleigh, NC with the most Director Advanced Manufacturing job openings:

Advanced Manufacturing Engineering Programmer

ExpressPros - Oxford, NC

Oxford, NC

$40.87 - $57.69/hr

Full-time

Medical, Dental, Vision, PTO

Posted 23 days ago


Job description

Job Description: Manufacturing / Programming Engineer (Advanced Manufacturing)

**Direct Hire **

Position Summary

The Manufacturing / Programming Engineer is responsible for developing, programming, and optimizing advanced manufacturing processes, equipment, and systems. This role combines hands-on manufacturing engineering with programming expertise to drive efficiency, precision, and automation across production operations. The engineer will support both new product introduction (NPI) and existing process improvements using data-driven and digitally integrated manufacturing solutions.

Key Responsibilities

Manufacturing Process Engineering

  • Develop, improve, and maintain manufacturing processes for high-quality, cost-effective production.

  • Design workflows, tooling, fixtures, and process documentation to ensure repeatability and efficiency.

  • Support new product launches by defining manufacturing methods and process validation plans.

  • Lead continuous improvement efforts focused on cycle time reduction, waste elimination, and throughput improvement.

Programming & CNC Systems

  • Develop, test, and optimize CNC programs (mills, lathes, multi-axis machines) using CAM software.

  • Edit machine code (G-code/M-code) and troubleshoot programming-related issues on the shop floor.

  • Collaborate with machinists and operators to improve program efficiency and machining strategies.

  • Maintain program libraries and version control systems.

Automation & Advanced Manufacturing

  • Support implementation of automation solutions including robotics, PLCs, and vision systems.

  • Develop or assist in programming automated systems, including PLC logic or robot paths (as applicable).

  • Integrate advanced technologies such as CAD/CAM systems, digital twins, and Industry 4.0 tools.

  • Work with cross-functional teams to modernize production systems and increase automation levels.

Production & Technical Support

  • Provide technical support to production teams, troubleshooting manufacturing and programming issues.

  • Conduct root cause analysis and implement corrective actions for defects, downtime, or inefficiencies.

  • Monitor system performance and recommend improvements based on data analysis and KPIs.

  • Work closely with maintenance teams to ensure equipment reliability and uptime.

Quality & Compliance

  • Ensure all manufacturing programs and processes meet quality standards and specifications.

  • Support development of PFMEA, control plans, and standard operating procedures (SOPs).

  • Participate in audits and ensure compliance with internal and external standards.

Project Management

  • Lead or contribute to engineering projects involving equipment upgrades, new lines, or process improvements.

  • Coordinate activities across engineering, production, quality, and supply chain teams.

  • Manage timelines, budgets, and technical deliverables for assigned projects.

Qualifications

Education

  • Bachelor’s degree in Manufacturing Engineering, Mechanical Engineering, Industrial Engineering, or related field.

Experience

  • 3–7 years of experience in manufacturing engineering and/or CNC programming.

  • Hands-on experience in machining environments, automation, or high-volume production.

Technical Skills

  • Strong experience with:

  • Working knowledge of:

Soft Skills

  • Strong analytical thinking and problem-solving ability

  • Effective communication with technical and non-technical teams

  • Ability to work both independently and collaboratively in a fast-paced environment

  • Strong attention to detail and commitment to quality

Preferred Qualifications

  • Six Sigma Green Belt or equivalent certification

  • Experience with Industry 4.0 technologies (IoT, MES systems, real-time data monitoring)

  • Knowledge of toolpath optimization, cutting theory, and high-speed machining

  • Experience with ERP/MRP systems

  • Background in a regulated or high-precision industry (aerospace, medical, automotive)

Work Environment

  • Manufacturing plant with regular time on the shop floor

  • Hands-on involvement with machinery and programming systems

  • May involve standing, walking, and occasional lifting

  • Minimal travel for training or vendor support

Key Performance Indicators (KPIs)

  • CNC program efficiency (cycle time reduction)

  • Machine utilization and uptime

  • Scrap and rework reduction

  • Successful implementation of automation and process improvements

  • On-time project delivery and cost performance

**Compensation & Benefits**

  • Competitive salary based on experience

  • Health, dental, and vision insurance

  • Paid time off

You should be proficient in:

  • Equipment Troubleshooting
  • Troubleshooting Skills
  • CNC Programming
  • CNC Machine Setup & Changeover
  • Advanced Inspection & Gauge Measurement
  • Machine Geometry & Alignment
  • Machine Setups for Production Runs

Machines & technologies you'll use:

  • CNC Mill (3-4 axis VMC) (Fanuc)
  • CAM Software (Mastercam, Autodesk Fusion 360, Siemens NX)
  • CNC Lathe (5+ axis)
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