Collaborate with an interdisciplinary teams of battery, electrical, chemical, systems, and reliability engineers to develop, model, and optimize system designs for performance, cost, and reliability throughout the full development cycle
Manage and grow a world-class team of mechanical architects, thermal engineers, and structural engineers
Lead the mechanical architecture, and structural/fluid/thermal analysis and optimization of Form Energy’s iron-air battery
Requirements
mechanical design
thermal analysis
structural analysis
mechanical engineering
fmea
leadership
Strong technical communication skills, especially with external parties and across internal functional teams
Expert knowledge of either: thermal analysis (CFD/FEA), structural analysis (static/dynamic)
Strong mechanical design experience across multiple shipping products
Bachelor's Degree in Mechanical Engineering or related field; with 12+ years of industry experience
Experience defining products and engineering requirements, and implementing FMEA principles
Experience in batteries, energy storage, or other high power products is a plus
Well-developed experience analyzing and designing mechanical systems, assemblies and components high-volume manufacture in a hardware product development company
Demonstrated experience leading, managing, and mentoring direct reports
Hands-on experience in model validation/correlation
Benefits
Information not given or found
Training + Development
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Interview process
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Visa Sponsorship
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Security clearance
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Company
Overview
Focused on transforming energy storage and use for a sustainable future.
Developing ultra-low-cost, long-duration energy storage solutions.
Innovative iron-air battery technology stores renewable energy for days, providing reliable backup for solar and wind power.
Energy storage technology poised to revolutionize grid storage, enhancing resilience and flexibility.
Aims to reduce reliance on fossil fuels through scalable and affordable solutions.
Collaborating with energy providers and grid operators for large-scale deployment.
Working on integrating energy storage into existing grids to optimize renewable energy use and improve stability.
Culture + Values
extremely passionate and devoted and mission oriented, and we also are able to sustain things like a family life. And those two things are not in opposition.
team composed of passionate people who are deeply motivated and inspired to create a better world
culture where constructive disagreement is welcomed to drive innovation
Environment + Sustainability
2030 Target
Net-Zero Emissions Goal
Targets achieving net-zero greenhouse gas emissions by the year 2030.
$30M Grant
California Energy Commission Funding
Received a significant grant to support renewable energy storage deployment.
500 MWh Storage
Multi-Day Energy Storage Capacity
Deployment of a large-scale energy storage system to support renewable energy grids.
83% Reduction
Decrease in Renewable Curtailment
Modeling shows substantial reduction in the need to curtail renewable energy production.
Developing iron-air batteries using iron, water and air to enable fully renewable electric grid year-round.
Building commercial-scale iron-air battery factory in West Virginia by end of 2025.
Working on electrochemical ironmaking with ARPA-E funding to produce net-negative CO₂ iron at cost-parity with pig iron.
Modeling shows potential savings of ~$100B in hardware costs for New England.
Inclusion & Diversity
No publicly disclosed DEI strategy or gender‑related data found