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Ilogic Jobs in Michigan (NOW HIRING)

Ilogic information

What is iLogic?

iLogic is a rule-based programming tool integrated within Autodesk Inventor, used to automate design processes and enforce standards by creating logic-driven models. An iLogic developer creates custom rules, scripts, and user interfaces within Inventor to streamline repetitive tasks, improve design efficiency, and ensure consistency in engineering workflows. They often work closely with engineers and designers to implement automation that enhances productivity and reduces errors in CAD modeling.

What are the key skills and qualifications needed to thrive as an iLogic developer?

To thrive as an iLogic Developer, you need a solid understanding of Autodesk Inventor, programming logic, and engineering principles, often backed by a degree in engineering or a related field. Proficiency in iLogic, VB.NET scripting, and CAD automation tools is essential for customizing and automating design processes. Strong problem-solving skills, attention to detail, and effective communication help in translating engineering requirements into automated solutions. These skills enable the efficient creation of parametric models and workflows, improving productivity and reducing errors in design engineering.

What are some common challenges faced by engineers using iLogic in Autodesk Inventor projects?

Engineers working with iLogic in Autodesk Inventor often encounter challenges such as managing complex rule logic, ensuring script consistency across large assemblies, and troubleshooting errors that arise from parameter changes. Collaboration can also be tricky, as team members need to maintain clear documentation and version control for iLogic rules to prevent conflicts. Despite these challenges, mastering iLogic can significantly streamline repetitive design tasks and improve project efficiency.

What is the difference between Ilogic vs Mechanical Engineer?

AspectIlogicMechanical Engineer
Required CredentialsTypically requires knowledge of CAD software, programming, and logic-based skillsRequires a bachelor's degree in mechanical engineering, often with licensure or certification
Work EnvironmentPrimarily in software development, automation, and design environmentsIn manufacturing, design offices, and research labs
Industry UsageUsed in automation, control systems, and product designApplied in manufacturing, automotive, aerospace, and energy sectors
Common Search/ComparisonOften compared for technical skills and industry applicationsCompared for engineering design and project management

While Ilogic focuses on automation, programming, and design within software environments, Mechanical Engineers are involved in designing and analyzing physical systems and products. Both roles require technical knowledge but differ in their focus areas and work settings.

What are popular job titles related to Ilogic jobs in Michigan?

For Ilogic jobs in Michigan, the most frequently searched job titles are:

Infographic showing various Ilogic job openings in Michigan as of August 2026, with employment types broken down into 100% Full Time. Highlights an 91% Physical, 4% Hybrid, and 5% Remote job distribution.

Mechanical Product Development Engineer - Conveyors & Magnetics

Highland, MI • On-site

$100K - $120K/yr

Other

Posted 2 days ago

New


Job description

A day in the life

You start by translating a rough concept into a production-ready mechanical design. You open your preferred CAD platform (SolidWorks, CATIA, or Inventor—Inventor preferred) and model assemblies with the manufacturability details already in mind. You prep for a design review, tightening up documentation so quality and repeatability are never in doubt.

By midday, you’re on the shop floor building and testing a prototype you designed—sometimes even taking it into the field to validate performance under real constraints. You run analyses (finite element analysis, fatigue, and motion studies) to back up your design choices and adjust parameters accordingly.

In the afternoon, you sync with customers, controls engineers, and manufacturing partners to ensure requirements align with reality. You apply APQP principles, craft validation plans, and use FMEA to anticipate failure modes. When something breaks, you own the root-cause investigation and iterate toward a better solution. A few times each quarter, you’ll support installations or testing at customer sites (~10% travel).

What you’ll tackle
  • End-to-end mechanical design from concept through production release
  • Hands-on prototyping, lab testing, and occasional field trials
  • Structured engineering practice: design reviews, validation testing, and clear documentation
  • Analytical verification: FEA, fatigue life considerations, and motion/kinematic analysis
  • Cross-functional collaboration with customers, controls, and manufacturing
  • Failure investigation and continuous design improvement based on real performance
  • On-site installation and test support as needed (~10%)
What you bring
  • 3+ years of hands-on mechanical design/R&D experience
  • Strong grounding in structures, materials, and motion systems
  • Design-for-manufacturability mindset (production-ready, not just theoretical)
  • 3D CAD proficiency: SolidWorks, CATIA, or Inventor (Inventor preferred)
  • PDM experience (Autodesk Vault preferred)
  • Comfort working in the shop and in the field
  • Bias for ownership and moving projects forward
  • Bachelor’s degree in Mechanical Engineering or related field
  • Experience with APQP processes, validation plans, and FMEA
  • Knowledge of machining, casting, welding, and additive manufacturing
  • Experience with conveyors and/or magnetics
  • Practical understanding of tolerances, materials, fasteners, and fabrication
Bonus points
  • Background in automation, robotics, or heavy equipment
  • Experience with dynamic systems or vibration analysis
  • Direct collaboration experience with manufacturing teams
  • Understanding of control systems and motion feedback
  • Familiarity with Python, VBA, or iLogic
  • Experience with parametric configurators
Why this role

Own the full mechanical lifecycle—from whiteboard to working product—and see your designs come to life on the shop floor and at customer sites.