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Advanced Manufacturing Engineering Manager Jobs in Michigan

Development of manufacturing processes by completing detailed engineering analysis of * Design for ... Visual management * Process failure mode and effect analysis * Production equipment & tooling ...

Ensure manufacturability of engineering designs and engineering changes. * Collaborate with I.E ... Effectively work and communicate with customers and/or Program Manager to interpret their needs and ...

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Advanced Manufacturing Engineering Manager information

What does an advanced manufacturing engineering manager do?

An Advanced Manufacturing Engineering Manager oversees the development and implementation of innovative manufacturing processes and technologies within a company. They lead teams of engineers to improve production efficiency, ensure product quality, and reduce costs by adopting advanced manufacturing methods such as automation, robotics, and data analytics. Their responsibilities include project management, process optimization, collaboration with design and production teams, and staying current with industry trends. This role is crucial for maintaining competitiveness and driving continuous improvement in manufacturing operations.

How does an advanced manufacturing engineering manager typically collaborate with cross-functional teams to implement new manufacturing technologies?

An Advanced Manufacturing Engineering Manager regularly works with cross-functional teams—including design, quality, production, and supply chain—to ensure the seamless integration of new manufacturing technologies. They facilitate discussions to align technology goals with operational requirements, coordinate pilot runs or trials, and gather feedback to optimize implementation. This collaborative approach ensures that new processes meet both technical specifications and production efficiency goals, while proactively addressing potential challenges such as scalability or workforce training needs.

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

To thrive as an Advanced Manufacturing Engineering Manager, you need a solid background in mechanical or industrial engineering, experience in manufacturing processes, and often a relevant bachelor’s or master’s degree. Familiarity with CAD/CAM software, ERP systems, lean manufacturing tools, and Six Sigma certification is highly valued. Strong leadership, problem-solving, and communication skills are essential for managing cross-functional teams and driving continuous improvement. These skills and qualifications are crucial for optimizing production efficiency, ensuring product quality, and successfully leading engineering projects in a competitive manufacturing environment.

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

AspectAdvanced Manufacturing Engineering ManagerManufacturing Engineer
Required CredentialsBachelor's or Master's in Engineering, often with management experienceBachelor's in Engineering or related field
Work EnvironmentOversees teams in manufacturing plants, focuses on process improvementWorks on designing, developing, and optimizing manufacturing processes
Employer & Industry UsageCommon in large manufacturing firms, automotive, aerospaceFound across various manufacturing sectors, including electronics and consumer goods

The Advanced Manufacturing Engineering Manager typically leads teams and manages projects to improve manufacturing processes, requiring leadership skills and management experience. In contrast, Manufacturing Engineers focus on designing and implementing manufacturing processes, often working individually or in small teams. Both roles are essential in manufacturing but differ mainly in scope and responsibility.

What cities in Michigan are hiring for Advanced Manufacturing Engineering Manager jobs?

Cities in Michigan with the most Advanced Manufacturing Engineering Manager job openings:

Advanced Manufacturing Engineer

Clinton Township, MI • On-site

Full-time

Re-posted 16 days ago


Job description

Advanced Manufacturing EngineerJob SummaryThe Advanced Manufacturing Engineer is responsible for developing, planning, and launching manufacturing processes for automotive seating products. This role supports new program launches by designing efficient manufacturing systems, optimizing production processes, and ensuring safety, quality, cost, and delivery objectives are achieved. The engineer collaborates with cross-functional teams including Product Engineering, Quality, Production, Purchasing, and suppliers to deliver robust manufacturing solutions.Key ResponsibilitiesLead manufacturing process development for new seating programs from concept through production launch.Develop manufacturing process flows, work instructions, PFMEA, control plans, and standardized work documentation.Design and implement assembly processes for seat structures, foam, trim, mechanisms, and final seat assembly.Specify, source, and validate manufacturing equipment, tooling, fixtures, and automation systems.Coordinate equipment installation, commissioning, runoff, and production readiness activities.Conduct process capability studies and ensure manufacturing processes meet customer quality requirements.Support APQP activities, including Process Flow Diagrams, PFMEA, Control Plans, Run-at-Rate, and PPAP submissions.Drive continuous improvement initiatives focused on safety, quality, productivity, and cost reduction.Analyze manufacturing data to identify opportunities for process optimization and waste elimination.Support ergonomic assessments and implement improvements to reduce operator fatigue and improve workplace safety.Collaborate with suppliers to ensure tooling and equipment meet technical specifications and project timelines.Participate in Design for Manufacturability (DFM) reviews during product development.Troubleshoot manufacturing issues during prototype, pilot, and production phases.Manage manufacturing engineering project timelines, budgets, and deliverables.Ensure compliance with customer specifications, IATF 16949, ISO 14001, and company standards.Required QualificationsBachelor's degree in Mechanical Engineering, Manufacturing Engineering, Industrial Engineering, or a related technical discipline.5+ years of manufacturing engineering experience in automotive manufacturing, preferably seating or interior systems.Experience supporting new product launches from concept through production.Knowledge of APQP, PPAP, PFMEA, Control Plans, MSA, and SPC.Experience with Lean Manufacturing and Six Sigma methodologies.Strong understanding of assembly processes, ergonomics, and industrial engineering principles.Experience with automated assembly equipment, robotics, and poka-yoke systems.Proficiency with CAD software (CATIA, SolidWorks, AutoCAD, or similar).Strong project management and problem-solving skills.Excellent communication and cross-functional collaboration abilities.Preferred QualificationsExperience in automotive seating manufacturing.Knowledge of seat structures, recliners, tracks, foam, trim, and seat assembly operations.Familiarity with PLCs, industrial controls, vision systems, and automation integration.Green Belt or Black Belt Six Sigma certification.Experience with Industry 4.0 technologies, MES systems, and data analytics.Familiarity with ergonomic assessment tools and time studies.Technical SkillsAPQP / PPAPPFMEA / DFMEAProcess Flow DevelopmentControl PlansLean ManufacturingSix SigmaRoot Cause Analysis (8D, 5 Why, Fishbone)Value Stream MappingIndustrial EngineeringRobotics & AutomationErgonomic AnalysisCAD SoftwareMicrosoft Office SuiteProject ManagementCore CompetenciesManufacturing process developmentContinuous improvement mindsetTechnical problem solvingProject leadershipTeam collaborationAttention to detailCustomer focusResults orientationDecision makingTime managementPhysical RequirementsAbility to work in both office and manufacturing environments.Ability to stand and walk on the production floor for extended periods.Occasional lifting of up to 25 lbs.Ability to travel up to 20% to suppliers and customer locations as required.Key Performance Indicators (KPIs)Successful launch of new seating programsAchievement of launch timing milestonesFirst-pass yield and process capability (Cp/Cpk)Equipment uptime and OEE improvementsManufacturing cost reductionScrap and rework reductionSafety performanceContinuous improvement project completionCustomer quality performance (PPM)