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Precision Engineer Jobs in Michigan (NOW HIRING)

MI

$69K - $90K/yr

Required Skills & Qualifications * 7-10 years of manufacturing or production engineering experience, preferably in aerospace or precision manufacturing. * Minimum 5 years of Aerospace & Defense ...

MI · On-site

$66K - $86K/yr

Required Skills & Qualifications * 7-10 years of manufacturing or production engineering experience, preferably in aerospace or precision manufacturing. * Minimum 5 years of Aerospace & Defense ...

$67K - $87K/yr

Required Skills & Qualifications * 7-10 years of manufacturing or production engineering experience, preferably in aerospace or precision manufacturing. * Minimum 5 years of Aerospace & Defense ...

Showing results 41-60

Precision Engineer information

See Michigan salary details

$27K

$83.5K

$111.1K

How much do precision engineer jobs pay per year?

As of Aug 16, 2026, the average yearly pay for precision engineer in Michigan is $83,495.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,600.00 and $101,100.00 per year, depending on experience, location, and employer.

Who is a precision engineer?

A precision engineer specializes in designing, developing, and maintaining highly accurate and precise mechanical or electronic components and systems. They often work with advanced measurement tools, such as coordinate measuring machines (CMMs), and require strong technical skills, attention to detail, and knowledge of manufacturing processes to ensure components meet strict specifications.

What are some common challenges faced by precision engineers, and how can they be addressed?

Precision Engineers often encounter challenges such as maintaining extremely tight tolerances, ensuring consistent quality in production, and troubleshooting complex equipment. These challenges can be addressed by leveraging advanced measurement tools, adhering to strict quality control protocols, and collaborating closely with other engineers and technicians. Ongoing training and staying updated on the latest manufacturing technologies are also essential for success in this role.

What is the difference between Precision Engineer vs Mechanical Engineer?

AspectPrecision EngineerMechanical Engineer
CertificationsTypically requires engineering degrees, often with specialized training in precision manufacturingRequires a mechanical engineering degree; certifications like PE or Chartered Engineer are common
Work EnvironmentManufacturing plants, laboratories, or quality control settings focused on high-precision componentsDesign offices, manufacturing facilities, or R&D labs working on mechanical systems
Industry UsagePrecision engineering, aerospace, automotive, medical devicesAutomotive, aerospace, industrial machinery, consumer products

While both roles require engineering knowledge, Precision Engineers focus on high-accuracy manufacturing and quality control of components, whereas Mechanical Engineers are involved in designing, analyzing, and developing mechanical systems. The roles often overlap in manufacturing settings but differ in specialization and scope.

What does a precision engineer do?

A Precision Engineer is a professional who specializes in designing, developing, and maintaining high-accuracy components, systems, and instruments. Their work often involves working with tolerances at the micron or even nanometer level in industries such as aerospace, electronics, medical devices, and manufacturing. Precision Engineers use advanced tools, CAD software, and measurement systems to ensure that each product meets strict quality and performance standards. They play a key role in innovation and quality control, ensuring that complex parts fit and function perfectly.

What are the key skills and qualifications needed to thrive as a precision engineer, and why are they important?

To thrive as a Precision Engineer, you need a strong background in mechanical engineering, mathematics, and materials science, often supported by a relevant engineering degree. Expertise with CAD software, CNC machinery, and metrology tools, along with certifications like Six Sigma or GD&T, is typically required. Attention to detail, problem-solving abilities, and effective teamwork are crucial soft skills for this role. These skills and qualifications are vital to ensure the development and production of high-precision components that meet stringent industry standards.
Infographic showing various Precision Engineer job openings in Michigan as of August 2026, with employment types broken down into 89% Full Time, 4% Part Time, 1% Temporary, and 6% Contract. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $83,495 per year, or $40.1 per hour.

$69K - $90K/yr

Full-time

Posted 8 days ago


Job description

We are seeking an experienced Aerospace Manufacturing Engineer to support manufacturing process development, production optimization, tooling design, and continuous improvement initiatives for aerospace and defense programs. The ideal candidate will have hands-on experience in manufacturing engineering, process documentation, lean manufacturing, CAD design, and aerospace quality standards.

Key Responsibilities
  • Document current manufacturing processes and develop detailed shop-floor work instructions.
  • Create and maintain Process Failure Mode and Effects Analysis (PFMEA).
  • Design new tooling and perform reverse engineering of legacy components.
  • Develop shop aid drawings, tooling documentation, and manufacturing work instructions.
  • Update manufacturing routings, work orders, and production documentation in ERP/MES systems.
  • Analyze and optimize TAKT time, cycle time, and manufacturing workflows.
  • Perform Value Stream Mapping (VSM) and implement Lean Manufacturing improvements.
  • Improve production cell layouts, identify bottlenecks, and optimize shop-floor efficiency.
  • Develop and maintain Acceptance Test Procedures (ATP) and support first article inspections.
  • Define packaging specifications for purchased components.
  • Support manufacturing engineering activities during engineering, manufacturing, and quality release processes.
  • Collaborate with cross-functional teams including Design Engineering, Quality, Production, Supply Chain, and Manufacturing Operations.
  • Drive continuous improvement initiatives focused on quality, productivity, cost reduction, and operational excellence.
Required Skills & Qualifications
  • 7–10 years of manufacturing or production engineering experience, preferably in aerospace or precision manufacturing.
  • Minimum 5 years of Aerospace & Defense industry experience.
  • Strong expertise in 2D drafting and 3D CAD (SOLIDWORKS, CATIA, Creo, Siemens NX, Altium, or equivalent).
  • Hands-on experience with GD&T, tooling design, and engineering drawings.
  • Experience developing PFMEA, manufacturing routings, work instructions, and shop-floor documentation.
  • Working knowledge of Lean Manufacturing methodologies including:
    • Value Stream Mapping (VSM)
    • TAKT Time Analysis
    • Cycle Time Optimization
    • Cell Layout Improvements
  • Experience with ERP/MES manufacturing systems.
  • Familiarity with tooling maintenance planning and reverse engineering.
  • Knowledge of Acceptance Test Procedures (ATP) and First Article Inspection (FAI).
  • Understanding of AS9100 aerospace quality standards.
  • Experience supporting integrated mechanical, electrical, and software systems.
  • Knowledge of composite materials, bonding processes, and UAV programs is a plus.
  • Exposure to 3D scanning and reverse engineering technologies is preferred.
  • Experience with Design for Manufacturing (DFM) and manufacturing cost reduction initiatives.
  • Exposure to Model-Based Systems Engineering (MBSE) is desirable.
  • Lean Six Sigma Green Belt or equivalent continuous improvement certification is preferred.
Preferred Qualifications
  • Experience with aerospace manufacturing, defense systems, or precision engineering.
  • Strong analytical and problem-solving skills.
  • Ability to work effectively in both independent and collaborative environments.
  • Experience working with global engineering teams across multiple time zones.
  • Excellent communication and stakeholder management skills.
  • Proven ability to lead manufacturing improvement initiatives and drive operational excellence.