Education: Bachelor's degree
Experience: 5+ years
- Own End-to-End ESS Delivery: Drive battery pack development from concept to production on extremely accelerated timelines, taking full ownership of achieving performance requirements, cost targets, reliability issue resolution, design-for-manufacturing (DFM) support, and more.
- Serve as the Core Interface: Act as the main point of contact between the Core Battery Group and internal Anduril product teams, maintaining a positive, collaborative relationship throughout the program lifecycle while sharing expertise to the rest of the company.
Requirements: Collaborate with program teams to translate user stories and CONOPs into actionable ESS requirements.
- Drive Cell Selection: Lead battery cell selection using accelerated de-risking and validation processes.
- Lead Design Iterations: Partner with mechanical engineers to deliver design revisions across component testing, mini (scaled down) modules, prototype packs, and production packs-defining the maturity required at each stage.
- Support Manufacturing Ramp: Work with manufacturing engineering to scale from prototype pack revisions to production units, ensuring adequate validation and reliability verification in an organized fashion through tools like DFMEAs.
- Get Hands-On: Directly support battery bring-up, test, debug, and vehicle integration activities.
- Sustain Fielded Systems: Conduct root cause analysis and data processing on fielded ESSs to drive countermeasures and design updates as needed.
- Bachelor's Degree in Electrical Engineering, Mechanical Engineering, Manufacturing Engineering, or fundamental Physical Sciences with an applied focus on energy storage technologies, plus 5+ years of experience designing, testing, and troubleshooting energy storage systems.
- Past ownership of battery pack design and prototype assembly.
- Demonstrated experience delivering robust, high-performance energy storage systems with substantial technical ownership and contributions.
- Demonstrated technical contributions to drive one or more energy storage systems from prototype to production.
- Professional awareness of at least one: 1) Battery management system (BMS) electrical design, 2) BMS algorithms and software functionality, 3) BMS validation against operational requirements.
- Professional awareness of at least one: 1) Battery cell characterization methods (mission profile validation, equivalent-circuit model characterization, cycle/calendar life assessment, safety features, etc.), 2) Battery cell or pack modeling/simulation in Matlab or Simulink.
- Basic capabilities and understanding of CAD tools (CATIA, NX, SolidWorks).
- Understanding of UN38.3, NAVSEA S9310, and/or equivalent (UL, IEC) battery safety standards.
- Must be a U.S. Person due to required access to U.S. export-controlled information or facilities.
- Graduate Degree in Electrical Engineering, Mechanical Engineering, Manufacturing Engineering, or fundamental Physical Sciences with a focus on energy storage technologies.
- Understanding and familiarity with MIL-STD-882, MIL-STD-810, MIL-STD-704, MIL-STD-461, MIL-STD-464.
- Advanced experience designing battery pack components and sub-assemblies with CAD tools.
- Experience with student lead competition/collegian competitions (e.g. Formula SAE/Baja, Hyperloop, racing, small startups).
- Advanced expertise with: 1) Battery management system (BMS) electrical design, 2) BMS algorithms and software functionality, 3) BMS validation against operational requirements.
- Advanced expertise with: 1) Battery cell characterization methods (mission profile validation, equivalent-circuit model characterization, cycle/calendar life assessment, safety features, etc.), 2) Battery cell or pack modeling/simulation in Matlab or Simulink.
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