About this role
About the Team
We are seeking a highly experienced Mechanical Engineer to own the battery system integration for our robotic platform. This individual will be responsible for the end-to-end mechanical integration of the battery system, including structural design, electrical packaging and routing support, thermal management, and safety features such as thermal propagation mitigation.
About the Role
This is a critical role with a direct impact on robot performance, reliability, safety, manufacturability, and total lifecycle cost. The ideal candidate combines deep technical expertise in battery pack integration, packaging, and mounting with broad mechanical engineering experience and a proven ability to execute complex, cross-functional hardware programs from concept through production.
You're excited about this opportunity because...
Battery System Mechanical Integration
• Own the mechanical integration of the battery system throughout the product lifecycle, from concept through production.
• Design robust battery mounting structures, enclosures, retention features, and interfaces for a mobile robotic platform.
• Develop packaging solutions that balance structural performance, serviceability, manufacturability, weight, and cost.
• Collaborate closely with electrical, firmware, and systems engineers to ensure seamless battery integration into the overall robot architecture.
Mechanical Design & Product Development
• Design and release mechanical components and assemblies using CAD and engineering best practices.
• Perform tolerance analysis, stack-up studies, and interface definition for battery-related hardware.
• Support prototype builds, design reviews, testing, root cause investigations, and engineering change implementation.
• Drive designs through validation and into production while maintaining high quality and reliability.
Thermal & Environmental Performance
• Develop mechanical solutions that support battery thermal performance, including cooling airflow, heat transfer, insulation, and environmental protection.
• Collaborate with battery and electrical engineers to validate thermal performance under expected operating conditions.
• Design for environmental durability including water ingress, dust, vibration, shock, corrosion, and impact resistance.
Safety & Reliability
• Design mechanical features that improve battery safety, including crash protection, containment, venting, isolation, and thermal propagation mitigation.
• Participate in DFMEA, design reviews, and failure investigations to improve overall system robustness.
• Define and execute validation testing for structural integrity, vibration, drop, environmental exposure, and abuse scenarios.
Cross-Functional Collaboration
• Partner closely with Electrical Engineering, Systems Engineering, Firmware, Manufacturing, Supply Chain, and Reliability teams throughout product development.
• Support supplier selection, component qualification,