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Manufacturing Technology Jobs in Michigan (NOW HIRING)

We manufacture mission-critical metal components for highly regulated applications, with a strong ... Our new Aerospace and Defense Advanced Manufacturing Technology Center (ADAMTeC) is opening soon ...

We manufacture mission-critical metal components for highly regulated applications, with a strong ... Our new Aerospace and Defense Advanced Manufacturing Technology Center (ADAMTeC) is opening soon ...

Bachelor's Degree in Business, Manufacturing Technology, Engineering or related field or combination of education and experience. * 8+ years' experience in a plant manufacturing environment * 3+ ...

We are looking for a Manufacturing Tech to join our team in our Nutrilite Spaulding facility and work in our Solid Dose Manufacturing area. This role will work a 4-day, 10 hour schedule, and the 2nd ...

Manufacturing Engineer

Lansing, MI · On-site

$74K - $95K/yr

Actively apply new manufacturing technologies and evaluate opportunities that contribute to plant objectives, cost reduction, quality improvement, and operational efficiency. * Participate in product ...

Manufacturing Engineer

Warren, MI · On-site

$68K - $88K/yr

Actively apply new manufacturing technologies and evaluate opportunities that contribute to plant objectives, cost reduction, quality improvement, and operational efficiency. * Participate in product ...

Manufacturing Engineer

Grand Rapids, MI · On-site

$67K - $86K/yr

Evaluate new manufacturing technologies and equipment to improve operational performance. * Support equipment installation, startup, validation, and ongoing optimization. * Assist with PLC ...

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Showing results 21-40

Manufacturing Technology information

See Michigan salary details

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$21

$30

How much do manufacturing technology jobs pay per hour?

As of Aug 14, 2026, the average hourly pay for manufacturing technology in Michigan is $21.74, according to ZipRecruiter salary data. Most workers in this role earn between $17.60 and $25.14 per hour, depending on experience, location, and employer.

What is the difference between Manufacturing Technology vs Manufacturing Engineering?

AspectManufacturing TechnologyManufacturing Engineering
CredentialsCertificates in manufacturing processes, technical diplomasBachelor's or higher in manufacturing, mechanical, or industrial engineering
Work EnvironmentFactories, production lines, technical labsDesign offices, production planning, process optimization
Industry UsageFocuses on applying manufacturing methods and toolsInvolves designing and improving manufacturing systems

Manufacturing Technology professionals primarily focus on applying existing manufacturing processes and tools in production environments, while Manufacturing Engineering involves designing, developing, and optimizing manufacturing systems and processes. Both roles are essential in the manufacturing industry but differ in scope and responsibilities.

What is manufacturing technology?

Manufacturing technology refers to the tools, machines, equipment, and processes used to produce goods and products efficiently and at scale. It encompasses a wide range of techniques, including automation, robotics, computer-aided design (CAD), and advanced materials. These technologies help improve productivity, reduce costs, and ensure high-quality products in industries such as automotive, electronics, and consumer goods. As manufacturing evolves, new technologies like additive manufacturing (3D printing) and the Industrial Internet of Things (IIoT) are increasingly important.

What are the key skills and qualifications needed to thrive in manufacturing technology, and why are they important?

To thrive in Manufacturing Technology, you need a solid understanding of manufacturing processes, engineering principles, and quality control, often supported by a degree in engineering or a related technical field. Familiarity with CAD/CAM software, automation systems, and industry standards (such as Lean or Six Sigma certifications) is highly beneficial. Strong problem-solving abilities, teamwork, and adaptability help professionals excel in dynamic production environments. These skills and qualifications are crucial for improving efficiency, ensuring product quality, and driving innovation in manufacturing operations.

How does a professional in manufacturing technology typically collaborate with engineering and production teams to implement process improvements?

Professionals in Manufacturing Technology work closely with both engineering and production teams to identify inefficiencies and implement process improvements on the factory floor. This collaboration often involves analyzing current workflows, suggesting technological upgrades or automation solutions, and facilitating training sessions for frontline staff. Open communication and cross-functional teamwork are essential, as manufacturing technologists must ensure that proposed changes align with engineering standards while also being practical for daily production operations. Regular meetings and feedback loops help maintain alignment and support successful implementation of new technologies.

What does manufacturing technology do?

Manufacturing technology involves developing and applying tools, machines, and processes to produce goods efficiently and accurately. Professionals in this field work with automation, computer-aided design (CAD), and quality control to optimize manufacturing operations and improve product quality.
Infographic showing various Manufacturing Technology job openings in Michigan as of July 2026, with employment types broken down into 78% Full Time, 14% Part Time, and 8% Contract. Highlights an 78% Physical, 3% Hybrid, and 19% Remote job distribution, with an average salary of $45,227 per year, or $21.7 per hour.

Senior Advanced Manufacturing Engineer

Detroit Manufacturing Systems

Auburn Hills, MI • On-site

$86K - $117K/yr

Full-time

Re-posted 5 days ago


Job description

Senior Advanced Manufacturing Engineer - Launch & Process Optimization
Position Summary
We are seeking a highly experienced Senior Advanced Manufacturing Engineer to lead the development, benchmarking, and optimization of manufacturing processes for complex automotive assembly systems. This role will serve as a key technical leader and individual contributor focused on improving launch performance, operational efficiency, automation strategy, and manufacturing excellence across multiple assembly domains.
The ideal candidate combines deep hands-on manufacturing knowledge with a forward-thinking mindset around automation, digital tools, and AI-enabled engineering. This individual will collaborate across operations, engineering, suppliers, integrators, and leadership teams to help shape the next generation of efficient, scalable manufacturing systems.
Key Responsibilities
• Lead development of advanced manufacturing strategies for new and existing assembly processes.
• Develop scalable and efficient manufacturing concepts focused on safety, quality, throughput, ergonomics, and cost.
• Support manufacturing process optimization from early concept through launch stabilization.
• Drive continuous improvement initiatives focused on cycle time reduction, labor optimization, equipment utilization, and operational stability.
• Lead internal and external benchmarking activities across automotive and other relevant industries.
• Research emerging manufacturing technologies, automation solutions, AI-enabled tools, and best practices.
• Support successful launches of new manufacturing lines and processes.
• Collaborate cross-functionally with operations, engineering, quality, maintenance, suppliers, and integrators.
Core Process Expertise
• Tire & wheel assembly
• Cockpit assembly
• Console assembly
• Engine dress operations
• Suspension assembly systems
Qualifications
• Bachelor's degree in Engineering or related technical field.
• 10+ years of manufacturing engineering experience.
• Significant experience in automotive general assembly manufacturing.
• Strong understanding of automation, ergonomics, PFMEA, line balancing, and lean manufacturing.
• Experience with launch support and manufacturing optimization.
Desired Attributes
• Open-minded and curious with a passion for continuous learning.
• Embraces AI and emerging technologies to accelerate engineering capability.
• Strong team player who values collaboration and people.
• Principal-level technical leadership capability as an individual contributor.