Serve as the Design Responsible Engineer (DRE) for plastic components, ensuring compliance with Form Energy’s engineering standards and quality requirements
Ensure accurate application of GD&T and perform tolerance analyses using RSS methods
Contribute to and continuously improve Form Energy’s plastics design best practices while mentoring junior engineers
Apply first-principles engineering to guide design decisions and trade-offs
Collaborate with cross-functional design teams to ensure seamless system integration and compatibility
Lead supplier engagement to transition designs from prototype through high-volume production, ensuring manufacturability and consistency
Requirements
mechanical degree
5+ years
solidworks
cad
manufacturing
problem solving
Bachelor’s Degree in Mechanical Engineering or related field, with 5+ years of dedicated, hands-on experience as a Plastics Engineer, with a proven track record of taking components from concept to high-volume production
Demonstrated success guiding products through the full lifecycle with adaptability, sound judgment, and practical, hands-on problem-solving
Strong foundation in first-principles design and modeling, with demonstrated success optimizing for performance, cost, and manufacturability
Proven ability to optimize mechanical and system-level designs across complex, multidisciplinary architectures
Proficiency in CAD design; SolidWorks experience preferred
Hands-on experience in manufacturing environments or with contract manufacturing partners
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