SharkNinja
Product Design Engineer II - Motorized
About this role
SharkNinja seeks a Product Design Engineer II to lead mechanical design of motorized consumer products from concept to production launch. You'll own the full development lifecycle—balancing performance, cost, and manufacturability—while partnering with global cross-functional teams across design, electrical, quality, and manufacturing.
What you'll do
- Design and develop mechanical systems, components, and assemblies through the complete product development lifecycle
- Create 3D CAD models, detailed drawings, specifications, and comprehensive product documentation
- Conduct engineering analysis, tolerance assessments, and trade-off studies to inform design decisions
- Plan, build, and test prototypes to validate performance, reliability, and user experience
- Collaborate with Industrial Design, Electrical Engineering, Quality, and Manufacturing on integrated solutions
- Support supplier engagement and manufacturing development to ensure successful production ramp
What they're looking for
- Mechanical design and product engineering
- SolidWorks, Creo, or equivalent CAD software
- Plastics and manufacturing processes knowledge
- Design for Manufacture and Assembly (DFMA) principles
- Prototype planning and testing execution
- Verification and validation activities
- Problem-solving and root cause analysis
- Cross-functional collaboration and communication
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SharkNinja
SharkNinja designs and develops consumer appliances including corded and cordless products, with expanding focus on AI-driven innovations and medical devices. The company is hiring mechanical engineers, product developers, test engineers, AI product managers, and compliance specialists to support product development from early-stage innovation through market validation and regulatory certification.
- Website
- sharkninja.com
Likely interview questions
- Walk us through a motorized product you designed from concept to production—what were the key mechanical challenges and how did you solve them?
- How do you approach balancing performance, cost, and manufacturability when trade-offs arise in mechanical design?