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Pdm Windchill Jobs (NOW HIRING)

At-least 4 to 6 years of experience in Windchill. * Experience in PDM Link is required * Experience in windchill Business Administration is required * Experience in windchill System administration is ...

Experience with using CAD tools such as Solidworks, NX or Creo, and PDM tools such as Solidworks PDM, Windchill (Solidworks and SolidworksPDM experience is preferred) * Familiar with product ...

Experience with using CAD tools such as Solidworks, NX or Creo, and PDM tools such as Solidworks PDM, Windchill (Solidworks and SolidworksPDM experience is preferred) * Familiar with product ...

Manufacturing Engineer - Effectors

El Segundo, CA · On-site

$77K - $100K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

PLM systems (SOLIDWORKS PDM, Windchill, or equivalent) * MES / ERP systems * Experience conducting MRL assessments. Why CHAOS? * Health Benefits: Medical, dental, and vision benefits 100% paid for by ...

Manufacturing Engineer - Effectors

El Segundo, CA · On-site

$77K - $100K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

PLM systems (SOLIDWORKS PDM, Windchill, or equivalent) * MES / ERP systems * Experience conducting MRL assessments. Why CHAOS? * Health Benefits: Medical, dental, and vision benefits 100% paid for by ...

Engineer Administrator

Houston, TX

  • Medical

  • Dental

  • Vision

  • PTO

Experience with SharePoint, Autodesk Vault, SolidWorks PDM, Windchill, or similar document management systems is preferred. * Working knowledge of ERP systems such as SAP, Oracle, Epicor, or ...

... environment PLM/PDM/ERP experience preferably Windchill Good experience in cross functional interactions & Good experience in technical writing skills Good communication skills Required ...

Showing results 41-60

Pdm Windchill information

See salary details

$27K

$89.2K

$183.5K

How much do pdm windchill jobs pay per year?

As of Aug 13, 2026, the average yearly pay for pdm windchill in the United States is $89,173.00, according to ZipRecruiter salary data. Most workers in this role earn between $39,000.00 and $119,500.00 per year, depending on experience, location, and employer.

What is the difference between Pdm Windchill vs Mechanical Design Engineer?

AspectPdm WindchillMechanical Design Engineer
Primary RoleProduct Data Management and PLM system administrationDesigning mechanical components and systems
Required SkillsPLM software expertise, data management, CAD integrationMechanical CAD, engineering principles, design software
Work EnvironmentEngineering teams, PLM system administrationDesign offices, manufacturing settings
CertificationsPLM certifications, CAD proficiencyMechanical engineering degrees, CAD certifications

While Pdm Windchill specialists focus on managing product data and supporting engineering workflows, Mechanical Design Engineers concentrate on creating and developing mechanical components. Both roles often collaborate but serve different functions within product development teams.

What are some common challenges faced by professionals working with PDM Windchill, and how can they be addressed?

Professionals working with PDM Windchill often encounter challenges such as managing complex product data structures, ensuring data consistency across teams, and adapting to frequent software updates. Collaboration between engineering, manufacturing, and IT departments can sometimes be hindered by differing workflows or a lack of standardized processes. To address these challenges, it’s important to invest time in thorough training, maintain clear communication with cross-functional teams, and utilize Windchill’s built-in tools for workflow automation and permissions management.

What is PDM Windchill?

PDM Windchill is a Product Data Management (PDM) software developed by PTC that helps organizations manage product information, engineering data, and related processes throughout the product lifecycle. It centralizes product data, streamlines collaboration among teams, and ensures version control and data integrity. PDM Windchill is widely used in industries such as manufacturing, automotive, and aerospace to improve product development efficiency and regulatory compliance.

What are the key skills and qualifications needed to thrive as a PDM Windchill specialist?

To thrive as a PDM Windchill specialist, you need a solid background in engineering or information technology, with experience in product data management and familiarity with PLM concepts. Proficiency in Windchill software, CAD integration, and understanding of related systems such as ERP is crucial, and certifications in PTC Windchill can be advantageous. Strong analytical thinking, problem-solving abilities, and effective communication skills help in managing complex projects and collaborating with cross-functional teams. These skills ensure efficient product lifecycle management, data accuracy, and seamless workflow integration within an organization.
More about Pdm Windchill jobs
Infographic showing various Pdm Windchill job openings in the United States as of August 2026, with employment types broken down into 93% Full Time, 1% Part Time, and 6% Contract. Highlights an 92% Physical, 5% Hybrid, and 3% Remote job distribution, with an average salary of $89,173 per year, or $42.9 per hour.

Senior Mechanical Engineer, Fuel Cells

Redwire Defense Tech

Ann Arbor, MI • On-site

$105K - $135K/yr

Full-time

This job post has expired today. Applications are no longer accepted.


Job description

WORK LOCATION: Ann Arbor, MI

FLSA STATUS: Exempt

SALARY RANGE: The anticipated salary range for this role is $105,000 to $135,000 annually. This range reflects a good faith estimate based on the targeted level for the role and typical compensation benchmarks across U.S. locations. Actual compensation may vary depending on the selected candidate’s qualifications, experience, geographical location, and internal alignment.

SUMMARY

The Senior Mechanical Engineer is responsible for leading the design, development, and validation of complex mechanical systems and subsystems for Solid Oxide Fuel Cell (SOFC) power systems used in uncrewed aerial systems (UAS) and in portable power generators. This role demonstrates a strong blend of technical depth, design execution, and leadership capability. The engineer independently owns major subsystem designs—balancing performance, reliability, and manufacturability—and contributes to the broader engineering architecture through technical review and mentorship. 

The Senior Engineer provides hands-on leadership during prototype builds, test campaigns, and production transitions. They are recognized for their expertise in mechanical design and cross-functional coordination, driving technical excellence and contributing to design standards and process improvements across multiple programs. 

RESPONSIBILITIES

The following job functions are a basic requirement but are not limited to and may be assigned other duties. 

  • Lead the design, modeling, and analysis of major mechanical and structural subsystems for SOFC power systems and their supporting products. 
  • Perform and review tolerance analysis, structural analysis (FEA), and materials selection. 
  • Oversee design documentation, drawing release, and configuration management activities. 
  • Coordinate design integration across disciplines—mechanical, electrical, and software. 
  • Guide prototype builds, resolving issues related to manufacturability, fit, and performance. 
  • Develop and execute test plans to validate structural integrity and system performance. 
  • Analyze data, present results, and make informed decisions. 
  • Lead and participate in design reviews (CoDR, PDR, CDR) and incorporate feedback into designs. 
  • Support production readiness and quality verification for new and existing products. 
  • Mentor junior engineers and CAD specialists, promoting technical best practices and efficient workflows. 
  • Contribute to continuous improvement initiatives in design standards, configuration management, and documentation processes. 

REQUIRED QUALIFICATIONS

  • Bachelor’s degree in Mechanical Engineering, Aerospace Engineering, or a related field required. 
  • 4–7 years of relevant experience in mechanical or aerospace engineering, with demonstrated ownership of major subsystems or assemblies. 
  • Experience with Fuel Cells, Power Generators, High Temperature systems, Fluid management systems, or DC Power Electronics 
  • Proven experience developing products for aerospace, defense, or similarly regulated environments. 
  • Experience supporting prototype, production, and test activities in a hands-on capacity. 
  • Advanced proficiency with CAD modeling and drafting (SolidWorks preferred). 
  • Deep understanding of GD&T, mechanical drawing standards, and documentation control. 
  • Working knowledge of materials, composites, machined parts, and structural integration. 
  • Experience performing FEA and interpreting results for design optimization. 
  • Familiarity with PDM/PLM systems (e.g., SolidWorks PDM, Windchill). 
  • Strong technical leadership and decision-making skills. 
  • Strong working knowledge of processes for prototyping and large-scale manufacturing. 
  • Excellent communication and collaboration across multi-disciplinary teams. 
  • Analytical mindset with strong problem-solving and root-cause analysis capabilities. 
  • Organized and detail-oriented with experience managing multiple design tasks simultaneously. 
  • Ability to mentor others and uphold engineering rigor and design quality. 

PREFERRED QUALIFICATIONS

  • Master’s degree in Mechanical or Aerospace Engineering. 
  • 6–8 years of experience designing mechanical systems for UAS or defense applications. 
  • Experience leading subsystem integration efforts and participating in flight or environmental testing. 
  • Experience with advanced analysis tools (FEA, CFD, or fatigue analysis). 
  • Familiarity with composite layup design, bonded structures, or lightweight mechanisms. 
  • Experience developing and reviewing engineering standards or process documentation. 
  • Familiarity with systems engineering practices and requirements traceability. 
  • Strong leadership presence with the ability to influence technical direction. 
  • Ability to synthesize feedback from multiple stakeholders into actionable design decisions. 
  • Continuous improvement mindset, with a focus on efficiency and repeatable design excellence. 
  • Comfort operating in fast-paced environments with evolving pr