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Internship Cfd Engineer Jobs in Reno, NV (NOW HIRING)

Internship Cfd Engineer information

See Reno, NV salary details

$13

$19

$26

How much do internship cfd engineer jobs pay per hour?

As of Jun 9, 2026, the average hourly pay for internship cfd engineer in Reno, NV is $19.79, according to ZipRecruiter salary data. Most workers in this role earn between $16.78 and $21.83 per hour, depending on experience, location, and employer.

What is the difference between Internship Cfd Engineer vs Mechanical Engineering Intern?

AspectInternship Cfd EngineerMechanical Engineering Intern
Required CredentialsRelevant coursework, basic knowledge of CFD softwareMechanical engineering coursework, basic engineering principles
Work EnvironmentEngineering teams, simulation labs, software-focused tasksDesign labs, manufacturing settings, general engineering projects
Industry UsageAutomotive, aerospace, energy sectors with CFD focusManufacturing, product design, general engineering sectors

The main difference is that an Internship Cfd Engineer focuses on computational fluid dynamics simulations within engineering projects, often requiring knowledge of CFD software. A Mechanical Engineering Intern has a broader scope, working on various mechanical design and analysis tasks. Both roles provide valuable industry experience but differ in technical focus and daily responsibilities.

Mechanical Design Engineering Internship

Amperesand

Reno, NV • On-site

$30 - $45/hr

Other

Posted 9 days ago


Job description

Internship Duration: May 2026 - August 2026 

Role Summary

Amperesand is working to develop, build, test, and validate a ground-up redesigned next-generation solid state transformer (SST) and the power stage modules (PSMs) that convert power from medium-voltage AC to customer-facing DC output.  This internship will include building and testing of prototype units, root cause analysis of issues found, and design and changes of parts to fix or improve.   

Responsibilities: 

  • UtilizeCAD software to create detailed mechanical designs.  3DX/Catia experience preferred but not required. 
  • Model and design complex electro-mechanical parts, including plastics, sheet metal, insulators, magnetic components, and high-voltage connectors.
  • Perform mechanical design analysisby means offirst principal calculation or simulation with commercial software, including structural FEA, thermal CFD, vibration, and fatigue assessments. 
  • Solve packaging challenges involving electrical isolation, sealing, thermal dissipation, EMI/EMC shielding, and mechanical shock/vibration.
  •  Perform prototype development, fabrication, assembly, and mechanical testing of new designs.
  •  Support root-cause analysis of design issues in pilot or production builds and lead iterative improvements. 
  •  Define and execute validation test plans including structural, thermal, and environmental testing. 
  • 2D drawings with GD&T for production and inspection.
  • Create engineering documentation, tolerance stacks, BOMs, and release packages through PLM systems.
  •  Collaborate cross-functionally with electrical, thermal, firmware and controls, manufacturing, test, and industrial design teams.
  •  Work closely with suppliers to optimize DFM, DFA, and tooling strategies for high-volume production. 

Qualifications: 

  • Final year undergraduate standing or graduate study inMechanical Engineering or a closely-related field. 
  • Expertise in CAD modeling using 3D EXPERIENCE (CATIA V6/V5), SolidWorks, NX, or Creo. 
  •  Deep understanding of mechanical fundamentals-statics, dynamics, heat transfer, and materials.
  • Working knowledge of materials: metals (aluminum, steel), plastics, ceramics, gaskets, potting compounds.
  • Comfortable with root-cause analysis, failure mode resolution, and mechanical reliability testing.
  • Passion for product innovation, sustainability, and enabling electrification through engineering excellence.

Bonus Qualifications: 

  • Strong background in structural, thermal, and vibration analysis using commercial software,e.g.Ansys 
  • Proficiency in GD&T, tolerance analysis, and DFM/DFA principles. 
  • Familiarity with PCBAs, connectors, and mechanical integration of high-density electronic assemblies.
  • Experience with high-volume manufacturing processes such as injection molding, die casting, extrusion, and sheet metal forming.
  • Experience with medium- to high-voltage systems and insulation coordination (creepage, clearance, potting, sealing).
  • Experience working in Agile development environments, including task management and sprint planning using Scrum methodologies and tools like Jira.

Please note: This role requires working on-site 5 days a week. We do not offer hybrid or remote options. 

Compensation: $30 - $45/hour depending on location and level of experience