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Advanced Manufacturing Engineer Jobs in Oregon (NOW HIRING)

Composites Manufacturing Engineer

Hood River, OR · On-site

$76K - $98K/yr

Role Summary The Manufacturing Engineer reports directly to the Engineering Manager and serves as ... Strong understanding of GD&T; advanced on-the-job training available * Familiarity with composite ...

Manufacturing Engineer

White City, OR · On-site

$73K - $94K/yr

As a Manufacturing Engineer, you will play a key role in ensuring our PCBA &/or electromechanical ... excellence, advanced engineering, and a strong commitment to customer relationships. Emerald ...

Manufacturing Process Engineer

Wilsonville, OR · On-site

$76K - $101K/yr

Play a key role in a growing business focused on advanced manufacturing technologies What You Will ... Bachelor's degree in Chemical Engineering, Industrial Engineering, Mechanical Engineering ...

New

Manufacturing Engineer

Beaverton, OR · On-site

$76K - $97K/yr

Even with Vanguard's advanced technology, vast manufacturing capability, and leading-edge ... The Manufacturing Engineer is the internal technical product owner through all aspects of Vanguard ...

Manufacturing Engineer

Beaverton, OR · On-site

$77K - $99K/yr

Even with Vanguard's advanced technology, vast manufacturing capability, and leading-edge ... The Manufacturing Engineer is the internal technical product owner through all aspects of Vanguard ...

Manufacturing Engineer

Beaverton, OR · On-site

$76K - $97K/yr

Even with Vanguard's advanced technology, vast manufacturing capability, and leading-edge ... The Manufacturing Engineer is the internal technical product owner through all aspects of Vanguard ...

Manufacturing Engineer

Beaverton, OR · On-site

$76K - $97K/yr

Even with Vanguard's advanced technology, vast manufacturing capability, and leading-edge ... The Manufacturing Engineer is the internal technical product owner through all aspects of Vanguard ...

Manufacturing Engineer II

Portland, OR · On-site

$77K - $99K/yr

As a full-time Manufacturing Engineer II, you will be responsible for developing, maintaining, and ... Preferably in Solidworks, Microsoft Word and Excel at an intermediate to advanced proficiency level.

Manufacturing Engineer II

Portland, OR · On-site

$77K - $99K/yr

As a full-time Manufacturing Engineer II, you will be responsible for developing, maintaining, and ... Preferably in Solidworks, Microsoft Word and Excel at an intermediate to advanced proficiency level.

Senior Manufacturing Engineer The Manufacturing Engineer will join an experienced group responsible ... advanced programming required). * Exposure to LabVIEW/NI platforms is a plus (ability to assist ...

Showing results 21-40

Advanced Manufacturing Engineer information

See Oregon salary details

$44.4K

$101.5K

$157.5K

How much do advanced manufacturing engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for advanced manufacturing engineer in Oregon is $101,499.00, according to ZipRecruiter salary data. Most workers in this role earn between $81,400.00 and $124,200.00 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 Oregon?

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

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

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

Infographic showing various Advanced Manufacturing Engineer job openings in Oregon as of August 2026, with employment types broken down into 1% As Needed, 78% Full Time, 19% Part Time, and 2% Contract. Highlights an 84% Physical, 3% Hybrid, and 13% Remote job distribution, with an average salary of $101,499 per year, or $48.8 per hour.

Composites Manufacturing Engineer

Hood River, OR • On-site

$76K - $98K/yr

Full-time

Re-posted 4 days ago


Job description

Role Summary

The Manufacturing Engineer reports directly to the Engineering Manager and serves as the critical link between Engineering and Production teams. This role is responsible for translating customer requirements into manufacturable designs, developing the tooling and processes needed to produce high-complexity composite parts, and driving continuous improvement across the shop floor. This role also supports quality engineering functions such as doing dimensional inspection using CMM machines, creating inspection plans, interpreting GD&T, and doing root cause and corrective action activities.

Duties & Responsibilities

  • Work directly with customers and engineering teams to understand product requirements and translate them into practical manufacturing specifications
  • Design molds, trim fixtures, and assembly tooling for high-complexity composite part production
  • Create and maintain engineering drawings, work instructions, and process documentation to support shop floor execution
  • Evaluate production readiness for new products and support the introduction of new parts into the manufacturing workflow
  • Develop, document, and continuously improve lamination and machining processes in collaboration with production staff
  • Identify and resolve recurring manufacturing issues through structured root cause analysis and corrective action
  • Train and support production personnel on process requirements, drawing interpretation, and quality standards
  • Perform incoming customer drawing reviews and advise on appropriate tolerances and DFM best practices.
  • Develop and refine inspection methods, fixturing, and documentation to support part acceptance and quality verification
  • Evaluate new technologies, materials, and methods that could improve manufacturing capability or product quality
  • Support First Article Inspection processes and other quality engineering responsibilities
  • Perform other duties as assigned

Skills & Knowledge

  • Solid understanding of composite manufacturing processes, materials, and tooling
  • Proficiency in CAD/solid modeling for tooling and fixture design (SolidWorks preferred)
  • Ability to produce clear engineering drawings with proper GD&T callouts per ASME Y14.5 or equivalent
  • Strong working knowledge of GD&T and its practical application in a manufacturing environment
  • Experience writing work instructions, process documentation, and manufacturing procedures
  • Familiarity with root cause analysis and corrective action processes
  • Foundational knowledge of AS9100 and First Article Inspection; deeper expertise can be developed on the job
  • Hands-on, solutions-oriented mindset with strong attention to detail
  • Effective communicator with the ability to work across engineering, production, and customer-facing contexts
  • Proficient in Microsoft Office (Excel, Word, PowerPoint)

Minimum Qualifications

  • Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, or a related technical field
  • 3+ years of experience in a manufacturing engineering role, preferably in composites or aerospace
  • 3+ years of CAD/solid modeling experience (SolidWorks preferred)
  • Strong understanding of GD&T; advanced on-the-job training available
  • Familiarity with composite materials, processes, and aerospace product requirements
  • Exposure to AS9100 environments preferred but not required
  • Self-starter with strong analytical and problem-solving skills who works well independently and within a team
  • Eligible candidates must be a U.S. citizen, U.S. national, lawfully admitted permanent resident, or otherwise eligible U.S. person

Skills & Knowledge

  • Solid understanding of composite manufacturing processes, materials, and tooling
  • Proficiency in CAD/solid modeling for tooling and fixture design (SolidWorks preferred)
  • Ability to produce clear engineering drawings with proper GD&T callouts per ASME Y14.5 or equivalent
  • Strong working knowledge of GD&T and its practical application in a manufacturing environment
  • Experience writing work instructions, process documentation, and manufacturing procedures
  • Familiarity with root cause analysis and corrective action processes
  • Foundational knowledge of AS9100 and First Article Inspection; deeper expertise can be developed on the job
  • Hands-on, solutions-oriented mindset with strong attention to detail
  • Effective communicator with the ability to work across engineering, production, and customer-facing contexts
  • Proficient in Microsoft Office (Excel, Word, PowerPoint)

Minimum Qualifications

  • Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, or a related technical field
  • 3+ years of experience in a manufacturing engineering role, preferably in composites or aerospace
  • 3+ years of CAD/solid modeling experience (SolidWorks preferred)
  • Strong understanding of GD&T; advanced on-the-job training available
  • Familiarity with composite materials, processes, and aerospace product requirements
  • Exposure to AS9100 environments preferred but not required
  • Self-starter with strong analytical and problem-solving skills who works well independently and within a team
  • Eligible candidates must be a U.S. citizen, U.S. national, lawfully admitted permanent resident, or otherwise eligible U.S. person