Redwood Materials
Systems Engineer, Energy Storage
About this role
Join Redwood Materials as an early Systems Engineer leading the design and integration of a new energy storage product. You'll coordinate across mechanical, electrical, and software teams to define requirements, evaluate architectures, and drive cohesive system delivery in a fast-paced startup environment.
What you'll do
- Optimize system architecture to meet cost, efficiency, energy density, power density, and availability targets
- Own system-level performance and functional requirements while developing subsystem specifications with design engineers
- Perform or define system modeling, simulation, and testing to validate performance against requirements
- Define clear requirements and evaluate system architectures for cross-functional engineering teams
- Apply model-driven design practices and right-sized system engineering frameworks for agile development
- Drive technical decisions across the engineering organization
What they're looking for
- Systems engineering and architecture design
- Model-driven design and simulation
- Requirements definition and management
- Energy storage or battery systems knowledge
- Cross-functional collaboration and technical leadership
- System performance modeling and trade-off analysis
- Startup mentality and adaptability
- Mechanical, electrical, and software systems integration
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Redwood Materials
Redwood Materials develops battery products and energy storage systems, with a focus on battery refining, material production, and end-of-life battery processing. The company is hiring Systems Engineers, Design Engineers, Solutions Engineers, Software Engineers specializing in ML and Computer Vision, and Service Engineers to build and scale their battery technology and manufacturing operations.
- Website
- redwoodmaterials.com
Likely interview questions
- Describe your experience applying model-driven design in product development—what frameworks have you used?
- How have you balanced competing system-level metrics like cost, efficiency, and density in a previous project?