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Dimensional Engineering Jobs in Detroit, MI (NOW HIRING)

Engineering Intern

Troy, MI

$16 - $20.50/hr

Participating in dimensional capability studies * Tracking and accounting for inbound pilot and early production materials * Work with respective engineer to advance his/her skill sets in preparation ...

Engineering Intern

Troy, MI

$16 - $20.50/hr

Participating in dimensional capability studies * Tracking and accounting for inbound pilot and early production materials * Work with respective engineer to advance his/her skill sets in preparation ...

Engineering Intern

Troy, MI

$16 - $20.50/hr

Participating in dimensional capability studies * Tracking and accounting for inbound pilot and early production materials * Work with respective engineer to advance his/her skill sets in preparation ...

Work with disciplines across ME Body, including Dies, ME Architects, Virtual Engineering, Dimensional, Paint, and Body Execution. * Gain valuable experience across both Manufacturing Engineering and ...

New

Work with disciplines across ME Body, including Dies, ME Architects, Virtual Engineering, Dimensional, Paint, and Body Execution. * Gain valuable experience across both Manufacturing Engineering and ...

New

Work with disciplines across ME Body, including Dies, ME Architects, Virtual Engineering, Dimensional, Paint, and Body Execution. * Gain valuable experience across both Manufacturing Engineering and ...

New

Supplier Quality Manager - BIW and Chassis

Troy, MI

$123K - $185K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Engineering Degree or equiv. or previous working level experience. * 10+ years of Supplier Quality experience including PPAP management, APQP, dimensional and appearance compliance, commodity-based ...

New

Supplier Quality Manager - BIW and Chassis

Troy, MI · On-site

$123K - $185K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Engineering Degree or equiv. or previous working level experience. * 10+ years of Supplier Quality experience including PPAP management, APQP, dimensional and appearance compliance, commodity-based ...

New

Showing results 41-60

Dimensional Engineering information

See Detroit, MI salary details

$61.9K

$92.4K

$163.3K

How much do dimensional engineering jobs pay per year?

As of Aug 16, 2026, the average yearly pay for dimensional engineering in Detroit, MI is $92,427.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,200.00 and $108,900.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a dimensional engineer?

To thrive as a Dimensional Engineer, you need a solid background in engineering principles, geometric dimensioning and tolerancing (GD&T), and statistical analysis, typically with a degree in mechanical or manufacturing engineering. Familiarity with 3D CAD software (such as CATIA or SolidWorks), metrology tools, and quality management systems is essential. Strong problem-solving, attention to detail, and effective communication skills help you collaborate with cross-functional teams and ensure precision in manufacturing. These skills are crucial for guaranteeing product quality, minimizing defects, and maintaining manufacturing efficiency.

What is dimensional engineering?

Dimensional engineering is a specialized field focused on ensuring that manufactured parts and assemblies meet precise dimensional specifications and tolerances. Professionals in this area use advanced measurement techniques, statistical analysis, and engineering principles to control and optimize the size, shape, and fit of components throughout the design and production process. Their work helps prevent costly errors, improve product quality, and ensure components function together as intended. Dimensional engineers often collaborate with design, manufacturing, and quality teams to address any dimensional issues and enhance overall product performance.

What is the difference between Dimensional Engineering vs Mechanical Engineering?

AspectDimensional EngineeringMechanical Engineering
CredentialsTypically requires a degree in engineering or related field, often with certifications in measurement or quality controlRequires a degree in mechanical engineering, often with licensure or professional engineer (PE) certification
Work EnvironmentPrimarily in manufacturing, quality assurance, and assembly environments focusing on precise measurementsIn design, analysis, manufacturing, and testing across various industries
Industry UsageCommon in aerospace, automotive, and precision manufacturing sectorsWidespread across industries including automotive, aerospace, energy, and consumer products

Dimensional Engineering focuses on precise measurements, tolerances, and quality control, often working closely with manufacturing and assembly teams. Mechanical Engineering covers a broader scope, including design, analysis, and development of mechanical systems. While both roles require engineering knowledge, Dimensional Engineering emphasizes measurement accuracy, whereas Mechanical Engineering emphasizes system design and functionality.

What does a dimensional engineer do?

A dimensional engineer is responsible for ensuring the precise measurement and control of physical dimensions in manufacturing and engineering processes. They develop and apply measurement techniques, use tools like calipers and coordinate measuring machines (CMMs), and verify that parts meet design specifications and quality standards.

How much do dimensional engineers make?

Dimensional engineers typically earn a median annual salary ranging from $60,000 to $90,000, depending on experience, industry, and location. Salaries can increase with specialized skills in CAD software, measurement tools, and quality control processes.

What are some common challenges faced by dimensional engineers when working on large-scale manufacturing projects?

Dimensional Engineers often encounter challenges such as ensuring precise tolerances across complex assemblies, managing measurement uncertainty, and coordinating with cross-functional teams like design, quality, and production. On large-scale projects, they must interpret and communicate geometric dimensioning and tolerancing (GD&T) requirements clearly to prevent costly errors. Effective collaboration and strong problem-solving skills are essential, as unexpected deviations or tooling issues may arise and require quick, data-driven solutions.

What are popular job titles related to Dimensional Engineering jobs in Detroit, MI?

For Dimensional Engineering jobs in Detroit, MI, the most frequently searched job titles are:

What job categories do people searching Dimensional Engineering jobs in Detroit, MI look for?

The top searched job categories for Dimensional Engineering jobs in Detroit, MI are:

Infographic showing various Dimensional Engineering job openings in Detroit, MI as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $92,427 per year, or $44.4 per hour.

Senior Principal Engineer - Engineering Excellence & Problem Solving

Kratos Defense

Auburn Hills, MI • On-site

$98K - $135K/yr

Full-time

Posted 9 days ago


Kratos Defense & Security Solutions rating

7.8

Company rating: 7.8 out of 10

Based on 10 frontline employees who took The Breakroom Quiz


Job description

GENERAL JOB SUMMARY:

The Senior Principal Engineer - Engineering Excellence & Problem Solving serves as a senior individual-contributor and technical subject-matter expert responsible for leading complex engineering investigations, improving product and process robustness, and strengthening TDI's structured problem-solving capabilities.

Reporting to the Director of Operations and primarily supporting the Engineering organization, this position works cross-functionally with Product Engineering, Design Engineering, Manufacturing, Quality, Supplier Quality, Supply Chain, Test, Program Management, and external suppliers.

The Senior Principal Engineer applies Design for Six Sigma, Lean Six Sigma, reliability engineering, statistical analysis, and advanced root-cause methods to resolve complex technical issues involving turbine-engine performance, design variation, manufacturing processes, supplier components, materials, dimensional conditions, measurement systems, assembly, and testing.

This position does not have direct reports and does not replace the responsible design engineer, Engineering leadership, Configuration Control Board, Quality authority, or functional process owners. The role leads analysis, facilitates technical problem-solving, challenges assumptions, develops recommendations, and builds organizational capability through coaching and standardization.

ESSENTIAL JOB FUNCTIONS:

Engineering Problem Solving

  • Lead complex cross-functional investigations involving product performance, design, manufacturing, suppliers, materials, inspection, assembly, and test data.
  • Establish clear problem statements, containment actions, data-collection plans, root-cause evidence, corrective actions, and validation criteria.
  • Apply appropriate problem-solving tools, including DMAIC, DMADV, DFSS, DOE, regression analysis, Weibull analysis, fault-tree analysis, MSA, SPC, and process capability.
  • Ensure teams distinguish between symptoms, contributing factors, escape points, and verified root causes.
  • Support NCR, CAPA, FRACAS, RMA, supplier corrective-action, and field-failure investigations.

Design Robustness and Reliability

  • Support Engineering in applying Design for Six Sigma throughout product development, design changes, qualification, and production support.
  • Facilitate DFMEA, design-risk reviews, tolerance analysis, functional analysis, and Design of Experiments.
  • Help identify key characteristics, critical characteristics, and performance-sensitive design parameters.
  • Correlate design requirements, dimensional variation, material properties, manufacturing conditions, and engine performance.
  • Apply Weibull and reliability methods to evaluate failure modes, product life, risk, and improvement opportunities.
  • Incorporate lessons learned from testing, nonconformances, supplier issues, and field performance into future designs.

Engineering and Manufacturing Integration

  • Support producibility, manufacturability, inspection, testability, and production-readiness reviews.
  • Connect DFMEA outputs to PFMEAs, control plans, inspection plans, work instructions, and process controls.
  • Identify gaps between engineering intent and manufacturing execution.
  • Support prototype builds, qualification, validation, low-rate production, and production-release activities.
  • Help determine whether issues are design-related, process-related, supplier-related, material-related, measurement-related, or test-related.

Supplier and Measurement Support

  • Support Supplier Quality with technically complex supplier investigations.
  • Participate in supplier process reviews, corrective-action reviews, and capability assessments.
  • Evaluate supplier manufacturing processes, special processes, dimensional data, inspection systems, and measurement correlation.
  • Support MSA, SPC, process capability, sampling plans, and measurement-system improvement.
  • Help develop technical recovery plans for critical components and supplier processes.

Continuous Improvement and Capability Development

  • Lead selected Lean Six Sigma projects tied to quality, delivery, cost, capacity, reliability, and customer commitments.
  • Develop TDI problem-solving standards, templates, procedures, and training materials.
  • Train and coach Engineering, Quality, Manufacturing, and Supplier Quality personnel in structured problem-solving.
  • Facilitate technical workshops, root-cause sessions, reliability reviews, and improvement events.
  • Build internal capability so functional teams can independently apply these methods.
  • Establish a reusable lessons-learned process across programs.

Technical Communication

  • Prepare clear technical reports, investigation summaries, statistical analyses, and executive or customer presentations.
  • Document data sources, assumptions, methods, findings, conclusions, corrective actions, and validation results.
  • Communicate technical information effectively to engineers, technicians, suppliers, customers, and leadership.
  • Maintain records in accordance with TDI procedures, customer requirements, and configuration-control requirements.

AUTHORITY AND ACCOUNTABILITY

The Senior Principal Engineer may:

  • Lead assigned technical investigations.
  • Request relevant engineering, manufacturing, supplier, quality, dimensional, and test data.
  • Recommend containment, testing, design changes, process changes, supplier actions, and corrective actions.
  • Escalate unresolved technical risks or unsupported conclusions.
  • Challenge assumptions and request objective evidence before investigation closure.

The Senior Principal Engineer does not independently approve:

  • Engineering drawings or specifications.
  • Configuration changes.
  • Product release or shipment.
  • Supplier commercial decisions.
  • Program priorities.
  • Changes outside established functional approval processes.

EDUCATION AND EXPERIENCE

Required

  • Bachelor's degree in Engineering or a related technical discipline.
  • Minimum of 15 years of progressive experience in engineering, quality, reliability, manufacturing, operational excellence, or technical problem-solving.
  • Extensive experience leading complex engineering and root-cause investigations.
  • Demonstrated experience with Lean Six Sigma, Design for Six Sigma, FMEA, DOE, MSA, SPC, process capability, and statistical analysis.
  • Experience supporting complex engineered products in development and production.
  • Strong technical writing, communication, facilitation, and coaching skills.
  • Ability to influence and lead without direct organizational authority.

Preferred

  • Master's degree in Engineering, Engineering Management, Quality, Statistics, or a related field.
  • Lean Six Sigma Master Black Belt or Black Belt certification.
  • Experience with Weibull analysis and reliability engineering.
  • Aerospace, defense, turbine-engine, automotive, or precision-manufacturing experience.
  • Experience with AS9100, APQP, FRACAS, CAPA, configuration management, and product-development gate reviews.
  • Experience with suppliers, special processes, machining, welding, balancing, metrology, and CMM systems.

CORE COMPETENCIES

  • Advanced problem solving
  • Design robustness
  • Reliability engineering
  • Statistical analysis
  • Systems thinking
  • Technical leadership
  • Cross-functional collaboration
  • Coaching and capability development
  • Fact-based decision-making
  • Clear technical communication

PERFORMANCE EXPECTATIONS

Performance will be measured by the individual's ability to:

  • Resolve complex technical issues using objective evidence.
  • Improve the quality and consistency of root-cause investigations.
  • Reduce recurrence of significant product and process problems.
  • Improve linkage between design requirements, supplier data, manufacturing data, and engine performance.
  • Strengthen DFMEA, PFMEA, control-plan, and lessons-learned integration.
  • Develop internal engineering and problem-solving capability.
  • Complete improvement projects with measurable technical, operational, customer, or financial benefit.
  • Provide strong technical leadership while respecting established functional authority.

PHYSICAL AND WORK ENVIRONMENT REQUIREMENTS

  • Ability to work in office, engineering, laboratory, manufacturing, test, and supplier environments.
  • Ability to travel to suppliers, customers, test sites, and company locations as required.
  • Ability to support urgent technical investigations and customer commitments when necessary.
  • Ability to comply with all safety, security, export-control, quality, and customer requirements.

DISCLAIMER

This job description describes the general nature and level of work performed in this position. Duties and responsibilities may be adjusted based on business needs, program requirements, and organizational priorities.

TRAVEL REQUIREMENTS:

  • 0-25% May be required between other Kratos locations

THE ABOVE STATEMENTS ARE INTENDED TO DESCRIBE THE GENERAL NATURE AND LEVEL OF WORK BEING PERFORMED BY INDIVIDUALS ASSIGNED TO THIS CLASSIFICATION. THEY ARE NOT INTENDED TO BE CONSTRUED AS AN EXHAUSTIVE LIST OF ALL RESPONSIBILITIES, DUTIES AND SKILLS REQUIRED OF PERSONNEL SO CLASSIFIED.

A REVIEW OF THIS CLASSIFICATION HAS EXCLUDED THE MARGINAL FUNCTIONS OF THE CLASSIFICATION THAT ARE INCIDENTAL TO THE PERFORMANCE OF FUNDAMENTAL JOB JUTIES. ALL DUTIES AND RESPONSIBILITIES ARE ESSENTIAL JOB FUNCTIONS AND REQUIREMENTS AND ARE SUBJECT TO POSSIBLE MODIFICATION TO REASONABLY ACCOMMODATE INDIVIDUALS WITH DISABILITIES TO PERFORM THIS JOB PROFICIENTLY. THE REQUIREMENTS LISTED IN THIS DOCUMENT ARE THE MINIMUM LEVELS OF KNOWLEDGE, SKILLS OR ABILITIES.

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