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How much do manufacturing engineering technology jobs pay per hour?

As of Jul 17, 2026, the average hourly pay for manufacturing engineering technology in the United States is $27.85, according to ZipRecruiter salary data. Most workers in this role earn between $23.08 and $33.17 per hour, depending on experience, location, and employer.

What is manufacturing engineering technology?

Manufacturing engineering technology is a field focused on applying engineering principles and technical skills to develop, operate, and improve manufacturing processes and systems. Professionals in this area often work with CAD software, automation tools, and quality control methods to ensure efficient production. The role typically requires technical training or an associate degree in engineering technology or a related field.

What are some common challenges faced by professionals in Manufacturing Engineering Technology, and how can they be addressed?

Professionals in Manufacturing Engineering Technology often encounter challenges such as adapting to rapidly evolving manufacturing technologies, optimizing production processes for efficiency, and ensuring quality standards are consistently met. Addressing these challenges typically involves continuous learning, close collaboration with cross-functional teams like design and quality assurance, and the use of data-driven problem-solving methods. Staying current with industry advancements, participating in ongoing training, and developing strong communication skills can all help Manufacturing Engineering Technologists navigate and overcome these obstacles effectively.

What can you do with a manufacturing engineering technology degree?

A manufacturing engineering technology degree prepares individuals for roles such as manufacturing technologist, process engineer, quality control technician, or production supervisor. Graduates work in areas like process optimization, equipment maintenance, and implementing manufacturing systems, often using tools like CAD software and statistical analysis. The degree provides a foundation for careers in manufacturing environments focused on efficiency, safety, and quality improvement.

What do manufacturing engineering technicians do?

Manufacturing engineering technicians assist in developing, testing, and improving manufacturing processes and equipment. They often work with engineers to analyze production methods, troubleshoot issues, and ensure quality standards using tools like CAD software and measurement instruments. Their role supports efficient and safe manufacturing operations in industrial settings.

What is the difference between Manufacturing Engineering Technology vs Mechanical Engineering?

AspectManufacturing Engineering TechnologyMechanical Engineering
CredentialsAssociate's or Bachelor's in Manufacturing Engineering TechnologyBachelor's or higher in Mechanical Engineering
Work EnvironmentManufacturing plants, production lines, technical supportDesign offices, research labs, manufacturing facilities
Employer & Industry UsageManufacturing companies, industrial firmsEngineering firms, aerospace, automotive, energy sectors
Common Search & ComparisonYesYes

Manufacturing Engineering Technology focuses on applying engineering principles to improve manufacturing processes, often working directly on production lines. Mechanical Engineering covers a broader scope, including design, analysis, and development of mechanical systems. Both roles share similar credentials and work environments but differ in scope and focus.

What engineers make $200,000 a year?

In manufacturing engineering technology, senior-level engineers with extensive experience, advanced skills in CAD, automation, and project management can reach or exceed a $200,000 annual salary, especially in high-demand industries or with specialized certifications. Salary levels depend on location, industry, and individual expertise, with some roles in management or consulting also reaching this threshold.

What are the key skills and qualifications needed to thrive as a Manufacturing Engineering Technologist, and why are they important?

To thrive as a Manufacturing Engineering Technologist, you need a solid understanding of manufacturing processes, quality control, and engineering principles, typically supported by a degree in manufacturing engineering technology or a related field. Familiarity with CAD software, manufacturing execution systems (MES), and certifications like Six Sigma are often required. Strong problem-solving abilities, attention to detail, and effective teamwork are crucial soft skills for this role. These skills and qualifications are essential to optimize production efficiency, ensure product quality, and drive continuous improvement in manufacturing environments.
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Manufacturing Engineering Manager

Manufacturing Engineering Manager

Praxis Powder Technology, Inc

Queensbury, NY

$102K - $126K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 8 days ago


Job description

Are you ready to work for a company that truly cares about making a meaningful difference in this world?

A little about us:

Praxis Technology is a manufacturing company that designs and develops titanium parts for medical devices, aerospace and other consumer markets.We create sustainable flexibility that delivers maximum impact to make people's lives better. It's pretty cool stuff!


What we can offer you:

In addition to being part of a locally owned & operated business who values treating everyone with integrity & respect, we offer the followingbenefitsto our employees:

  • Employee and/or Employee + Child(ren) medical insurance costs you just $1/month!
  • Comprehensive Dental + Vision
  • 401k Retirement Plan that we match up to 3%
  • Basic Life AD&D Insurance
  • Employee Assistance Program
  • Paid time off -18 days first year (pro-rated)
  • Paid holidays - 9 days
  • Annual Performance Bonus Potential
  • Employee Profit Sharing
  • Tuition Assistance
  • Employee Appreciation Events
  • $100 Hannaford Gift Card every November
  • Annual Praxis Hoodie for all employees
  • Bagel Tuesdays!


Position Summary:

The Manufacturing Engineering Manager is responsible for leading the Manufacturing Engineering team in support of operational excellence, quality, continuous improvement, new product introduction, and manufacturing scalability. This leadership role provides strategic direction and technical oversight for manufacturing processes, equipment, process validation, lean initiatives, and engineering projects that drive business growth and operational performance.


The Manufacturing Engineering Manager partners closely with Operations, Quality, Supply Chain, Program Management, and Senior Leadership to improve safety, quality, delivery, productivity, and cost. This position is accountable for developing a high-performing engineering team while ensuring manufacturing processes comply with customer requirements, regulatory standards, and Praxis Technology's Quality Management System (QMS).


The ideal candidate is a hands-on leader with strong engineering expertise, a passion for developing people, and a commitment to Praxis Technology's Core Values: Dependable, Genuinely Care, Team Player, Driven to Improve, and Own It.


How you will make an impact:

  • Lead continuous improvement initiatives focused on improving safety, quality, delivery, productivity, and cost.
  • Lead, mentor, and develop a team of Manufacturing Engineers and technical personnel to achieve departmental and organizational objectives.
  • Lead engineering support for CAPA investigations, nonconformances, process improvements, and audit findings
  • Establish clear performance expectations, development plans, and succession strategies for engineering team members.
  • Monitor key manufacturing performance indicators and prioritize improvement opportunities.Champion waste reduction, standardization, visual management, and process optimization initiatives across the organization.
  • Develop and execute the manufacturing engineering strategy to support business growth, operational excellence, and customer satisfaction.Lead continuous improvement initiatives focused on safety, quality, delivery, productivity, capacity, and cost reduction.
  • Utilize Lean Manufacturing, Six Sigma, and data-driven methodologies to drive
  • Ensure efficient transfer and scale-up of new products into production.Lead process design reviews, risk assessments, and manufacturing readiness activities.Support capacity planning, labor optimization, and equipment utilization improvements.
  • Partner with Operations teams to solve complex manufacturing challenges and eliminate production constraints.
  • Foster a culture of accountability, innovation, collaboration, and continuous improvement.
  • Provide coaching and technical guidance to support employee growth and professional development.Build organizational capability through cross-training, knowledge sharing, and leadership development.
  • Ensure manufacturing engineering activities comply with Praxis Technology's Quality Management System.
  • Lead engineering support for CAPA investigations, nonconformances, process improvements, and audit findings
  • Provide engineering leadership for new product launches and manufacturing transfer activities.Collaborate with customers, program managers, quality, and operations teams to ensure successful implementation of new programs.
  • Evaluate manufacturing risks and develop mitigation plans that ensure successful product commercialization.
  • Ensure team compliance with OSHA requirements and company safety policies


Education, Experience, and Technical Competencies

  • Bachelor's degree in Manufacturing Engineering, Mechanical Engineering, Plastics Engineering, Chemical Engineering, Industrial Engineering, or a related technical discipline.
  • 10+ years of manufacturing engineering experience preferred.
  • 5+ years of engineering leadership
  • Experience in a regulated manufacturing environment preferred, including medical device, aerospace, defense, or other highly controlled industries.
  • Familiarity with ISO 9001, ISO 13485, and AS9100 standards preferred.
  • Experience utilizing statistical methods and data analysis to improve process capability, yield, and quality.
  • Demonstrated success implementing lean manufacturing and continuous improvement methodologies
  • Experience leading root cause analysis and CAPA investigations using structured problem-solving techniques.
  • Extensive experience implementing Lean Manufacturing and continuous improvement methodologies.