Senior Engineer M&S Finite Element Analysis

Faith Technologies
4dOnsite

About The Position

Faith Technologies Inc. (FTI) is currently seeking a Senior Engineer M&S Finite Element Analysis to join our Product Engineering team in Menasha, WI. We are seeking a highly skilled Senior Engineer M&S Finite Element Analysis to support our research and technology (R&D) development programs and product development projects. The successful candidate will be responsible for conducting structural and thermal impact analysis of enclosures and components under various stresses, loading conditions, and heat rejection of electronic components. Key responsibilities include supporting the design of power distribution enclosures, data center enclosures, switchboards, and battery packs, ensuring robust solutions that optimize material and cost. You will use modeling and simulation to optimize battery pack design and reduce the potential for flaws to guide the build of physical prototypes. The ideal candidate will have strong analytical skills and experience in finite element analysis (FEA) to support initial concepts, prototype design, and manufacturing. About the Product Engineering Team Our Product Engineering Team sits at the intersection of innovation and execution, transforming ideas into real-world products and solutions for Excellerate Products(tm), a division of Faith Technologies Incorporated (FTI). From early concept through full-scale production, our engineers design Data Center power distribution products, Electric Vehicle charging skids, switchboards and more! With a strong focus on quality, manufacturability, and customer outcomes, we ensure every product is engineered to perform in the real world—safely, reliably, and at scale. To learn more about our products and services, visit our website: Excellerate Products – Smarter Power Solutions – FTI. MINIMUM REQUIREMENTS · Bachelor’s degree in Mechanical Engineering or related field. · 5+ years of experience in FEA modeling · Proven experience in finite element analysis with use of Ansys, Abaqus, COMSOL or similar software · Strong knowledge of static and dynamic structural analysis, material strength, and failure modeling for different classes of materials · Knowledge of CAD design software such as AutoCAD, SolidWorks, or similar · Familiarity with renewable energy systems, including solar, wind, power conversion, and energy storage systems and containers · Familiarity with power distribution enclosures including UPS, switchboards, batteries, and power electronics · Strong analytical and problem-solving skills to interpret simulation results · Ability to effectively communicate technical findings and collaborate with cross-functional teams WORK LOCATION This role requires work to be done Onsite from our Menasha, WI office. Our onsite roles include a high level of workplace and schedule flexibility to support a healthy work-life balance. Menasha, WI offers an excellent quality of life with a low cost of living, short commute times, and a strong sense of community. Located in the heart of the Fox Valley and along Lake Winnebago, the area provides access to outdoor recreation, safe neighborhoods, and top-rated schools. Just minutes from Appleton and within easy reach of Green Bay and Milwaukee, Menasha combines small-town living with convenient access to dining, entertainment, sports, and regional travel, making it an ideal place to relocate and build a long-term career. PREFERRED REQUIREMENTS · Graduate degree in Mechanical Engineering or relevant field · Experience modeling renewable energy systems, including solar, wind, power conversion, and energy storage systems and containers · Experience modeling power distribution enclosures including UPS, switchboards, batteries, and power electronics · Strong understanding of related regulatory frameworks and industry standards related to the relevant energy technologies: Microgrid, Power generation, and Energy storage. Travel: 5-10% Work Schedule: This position works between the hours of 7 AM and 5 PM, Monday- Friday. However, work may be performed at any time on any day of the week to meet business needs.

Requirements

  • Bachelor’s degree in Mechanical Engineering or related field.
  • 5+ years of experience in FEA modeling
  • Proven experience in finite element analysis with use of Ansys, Abaqus, COMSOL or similar software
  • Strong knowledge of static and dynamic structural analysis, material strength, and failure modeling for different classes of materials
  • Knowledge of CAD design software such as AutoCAD, SolidWorks, or similar
  • Familiarity with renewable energy systems, including solar, wind, power conversion, and energy storage systems and containers
  • Familiarity with power distribution enclosures including UPS, switchboards, batteries, and power electronics
  • Strong analytical and problem-solving skills to interpret simulation results
  • Ability to effectively communicate technical findings and collaborate with cross-functional teams

Nice To Haves

  • Graduate degree in Mechanical Engineering or relevant field
  • Experience modeling renewable energy systems, including solar, wind, power conversion, and energy storage systems and containers
  • Experience modeling power distribution enclosures including UPS, switchboards, batteries, and power electronics
  • Strong understanding of related regulatory frameworks and industry standards related to the relevant energy technologies: Microgrid, Power generation, and Energy storage.

Responsibilities

  • Structural and thermal impact analysis of power distribution enclosures, switchboard enclosures, data center enclosures (including components like panels, mounting brackets, busbars, wiring, circuit breakers) and battery energy storage systems
  • Modeling of enclosures to simulate loading conditions (loading, transporting, environmental conditions) and mechanical stress to identify potential weaknesses in the design and optimize structural integrity before physical prototyping
  • Simulate and predict the potential for fatigue failure in a component or structure due to repeated thermal cycles, heat rejection of electronic components, and mechanical stress
  • Model the temperature distribution within the structure or battery pack under different thermal loading conditions including heating and cooling cycles
  • Optimization of modular enclosure designs (switchboards, UPS, battery pack) to reduce material weight and cost and improve overall robustness and safety
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