About Us
Grounded in Science,
Strengthened by Partnership
Farad Power Inc combines deep electrochemistry expertise, a validated defense contract track record, and a distinguished network of academic and industry partners.
Product Portfolio
Our Tunable Platform Generates a Portfolio of Advanced Bio-Synthetic Carbon Materials
Bio-Synthetic Graphite
C/SiOx Composites
Bio-Synthetic Hard Carbon
Target Markets
Critical Markets Where Performance and Supply Chain Resilience Are Essential
Lithium-ion Batteries for Electric Vehicles
Our precision-designed graphite composite anodes enable higher energy density, faster charging, and insulation from non-domestic graphite sourcing volatility.
Sodium-ion Batteries for Grid Energy Storage
Our advanced hard carbon composite anodes enable low-cost, long-duration storage and insulation from non-domestic hard carbon supply chain volatility.
Lithium-ion Batteries for Electric Flight
Our precision-designed graphite composite anodes enable weight-efficient electrification for next-generation aviation platforms.
Sodium-ion Batteries for AI Data Centers & Industrial Power
Our advanced hard carbon composite anodes enable high-power energy storage for fast-response systems.
Product Detail
Bio-Synthetic Graphite Composites for High-Performance LIB Anodes
Our graphite and graphite composites with controllable properties provide supply chain independence while enabling advanced features like fast-charging and cycling stability. LIBs based on our anodes can deliver the extended range, rapid charging, and durability that automotive OEMs and consumers demand.
Wh/kg Energy Density
(Enabling 300+ mile range and reduced battery weight).
Charge in 15 Min Fast Charging
(Eliminating range anxiety).
Cycle Life Durability
(Ensuring long-term battery performance and vehicle longevity).
Cost Reduction
(Compared to other advanced anode materials).
Bio-Synthetic Hard Carbon Composites for Grid-Scale NIB Storage
Leveraging abundant, low-cost sodium, our advanced hard carbon anodes and layered oxide cathodes deliver a cost-effective, safe, and sustainable alternative to lithium-ion for stationary applications. This is critical for stabilizing the grid and supporting the buildout of EV charging infrastructure.

Cost reduction
(Lower system cost compared to Li-ion systems)

Grid-Scale Application:
(Ideal for peak shaving and reliable backup power)

Enhanced Safety:
(Lower reactivity and improved thermal stability for large-scale, stationary deployments)
