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Mechanical Design Engineer Chassis Jobs in Nevada

Senior Mechanical Design Engineer

Reno, NV

$89K - $123K/yr

We are seeking a skilled Senior Mechanical Design Engineer to join our team and contribute to the development of power electronics products. The primary function of this position is to design custom ...

Senior Mechanical Design Engineer

Reno, NV · On-site

$89K - $123K/yr

We are seeking a skilled Senior Mechanical Design Engineer to join our team and contribute to the development of power electronics products. The primary function of this position is to design custom ...

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Senior Mechanical Design Engineer - Aviation

Carson City, NV · On-site

$88K - $121K/yr

Bachelor's degree in Mechanical Engineering, Industrial Design, Aerospace Engineering, or a highly related technical field (equivalent exceptional portfolio/experience considered). Regulatory ...

Design and develop mechanical systems, assemblies, and components utilizing 3D CAD software * Create detailed engineering drawings, specifications, bills of materials (BOMs), and technical ...

Design Engineer II

Carson City, NV

$74K - $100K/yr

The Mechanical/Design Engineer will design and develop new product, and technologies, as well as develop manufacturing packages. The role includes research and development activities ...

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Mechanical Design Engineer Chassis information

What does a mechanical design engineer chassis do?

A Mechanical Design Engineer Chassis is responsible for designing, developing, and testing the structural framework of vehicles, commonly referred to as the chassis. They work with computer-aided design (CAD) software to create models and drawings, ensuring that the chassis meets safety, performance, and manufacturing requirements. Their role involves collaborating with other engineering teams, selecting appropriate materials, and conducting analysis to optimize strength, weight, and cost. These engineers are crucial in the automotive, aerospace, and heavy machinery industries.

What are the key skills and qualifications needed to thrive as a mechanical design engineer chassis?

To thrive as a Mechanical Design Engineer Chassis, you need a solid background in mechanical engineering, chassis design principles, and proficiency with CAD software, often supported by a relevant engineering degree. Familiarity with tools like CATIA, SolidWorks, and FEA software, alongside knowledge of industry standards and certifications such as Professional Engineer (PE), is typical. Strong problem-solving abilities, teamwork, and effective communication skills help you collaborate across disciplines and address design challenges. These competencies ensure the creation of safe, reliable, and innovative chassis systems that meet both performance and regulatory requirements.

What are some typical challenges mechanical design engineers face when working on chassis development projects?

Mechanical Design Engineers working on chassis development often encounter challenges such as balancing structural strength with weight reduction, integrating new materials or manufacturing processes, and meeting strict safety and regulatory standards. Collaboration with cross-functional teams—including manufacturing, testing, and simulation experts—is key to addressing these issues. Additionally, adapting designs to accommodate evolving technologies like electric drivetrains or advanced suspension systems is a common and rewarding aspect of the role.

What is the difference between Mechanical Design Engineer Chassis vs Mechanical Design Engineer Suspension?

AspectMechanical Design Engineer ChassisMechanical Design Engineer Suspension
Primary FocusDesigning vehicle chassis structures for strength and safetyDesigning suspension systems for ride comfort and handling
Required SkillsStructural analysis, CAD, materials selectionKinematics, dynamics, CAD, materials
Work EnvironmentAutomotive manufacturing, R&D labsAutomotive testing, R&D, manufacturing
Industry UsageAutomotive, motorsports, heavy machineryAutomotive, motorsports, off-road vehicles

Both roles involve mechanical design and CAD skills, but the Mechanical Design Engineer Chassis focuses on structural components of vehicles, while the Mechanical Design Engineer Suspension specializes in dynamic systems that affect vehicle handling and comfort. They often collaborate but have distinct technical focuses within vehicle design.

What are popular job titles related to Mechanical Design Engineer Chassis jobs in Nevada?

For Mechanical Design Engineer Chassis jobs in Nevada, the most frequently searched job titles are:

What job categories do people searching Mechanical Design Engineer Chassis jobs in Nevada look for?

The top searched job categories for Mechanical Design Engineer Chassis jobs in Nevada are:

What cities in Nevada are hiring for Mechanical Design Engineer Chassis jobs?

Cities in Nevada with the most Mechanical Design Engineer Chassis job openings:

Infographic showing various Mechanical Design Engineer Chassis job openings in Nevada as of August 2026, with employment types broken down into 87% Full Time, 8% Part Time, and 5% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution.

Senior Mechanical Design Engineer

Reno, NV

$89K - $123K/yr

Full-time

Re-posted 17 days ago


Job description

Role Summary: 

We are seeking a skilled Senior Mechanical Design Engineer to join our team and contribute to the development of power electronics products. The primary function of this position is to design custom machinery and support the entire project cycle from concept development through installation, commissioning, and handover to the operations team. You will work closely with cross-functional teams, including product design, Controls, manufacturing, and test engineers, to ensure efficient performance and reliability in high-power density environments.

Responsibilities:

  •  Utilize CAD software CAD software (3D EXPERIENCE (3DX), CATIA, NX, SolidWorks, Creo etc.) to create detailed mechanical designs.
  • Model and design complex electro-mechanical parts, including plastics, sheet metal, insulators, magnetic components, and high-voltage connectors.

  • Perform mechanical design analysis, 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.

  • 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.

  • Lead 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.

  • Drive trade studies to inform system-level decisions on design architecture, materials, and manufacturing processes.

  • Guide selection for structural, thermal, and electrical compatibility in high-voltage environments.

  • Contribute to the layout and design of integrated cooling systems including cold plates, thermal interfaces, and airflow paths.

  • Develop assembly procedures and manufacturing instructions to support scalable production.

  • Participate in mechanical  FMEA and DVP&R activities across product lifecycle stages.

  • Work with quality and reliability teams to meet performance, lifecycle, and safety targets.

Qualifications:

  • Bachelor's or Master's degree in Mechanical Engineering or a related field.

  • 3+ years of experience in mechanical design for power electronics, automotive, industrial, or energy products.

  • 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.

  • Proficiency in GD&T, tolerance analysis, and DFM/DFA principles.

  • Experience designing enclosures for IP-rated or outdoor-rated power equipment.

  • Experience with high-volume manufacturing processes such as injection molding, die casting, extrusion, and sheet metal forming.

  • Working knowledge of materials: metals (aluminum, steel), plastics, ceramics, gaskets, potting compounds.

  • Hands-on experience taking designs from prototype through production deployment.

  • Familiarity with PLM systems (3D EXPERIENCE, Windchill, etc.) and engineering change workflows.

  • Comfortable with root-cause analysis, failure mode resolution, and mechanical reliability testing.

  • Strong communication skills and ability to lead cross-functional design reviews and technical deep-dives.

  • Prior experience collaborating with suppliers on tooling development, DFM feedback, and tolerance negotiations.

  • Familiarity with PCBAs, connectors, and mechanical integration of high-density electronic assemblies.

  • Experience with design and test documentation for regulatory standards (UL, IEC, NEC preferred).

  • Passion for product innovation, sustainability, and enabling electrification through engineering excellence.

  • Willingness and ability to travel up to 15% - 20% including internationally

Bonus Qualifications:

  • Strong background in structural, thermal, and vibration analysis using tools like Ansys Mechanical, Fluent, and Maxwell.

  • Familiarity with electronics packaging and PCB interface considerations.

  • 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.Â