Lithium Werks

Lithium Werks Lithium Werks provides save and mobile energy solutions to enable the transition from fossil fuels t

Lithium Werks cells are a great match for applications which require charging and discharging at high C rates. Charging ...
08/06/2026

Lithium Werks cells are a great match for applications which require charging and discharging at high C rates. Charging limits are -25C to 60C which are great for demanding applications. Please contact us at [email protected] for more information.

16/04/2026

A sneak peek in our factory, where the crucial process starts, the mixing of the proprietary ingredients of the LithiumWerks Nanophosphate® LFP chemistry.

LithiumWerks Nanophosphate® is a comprehensive materials engineering platform that addresses the intrinsic kinetic and structural limitations of olivine LiFePO4. ​ Unlike conventional "nano-LFP" materials, it delivers superior power capability, electrode density, thermal behavior, and cycle life through precise control of crystallite size, architecture, carbon connectivity, and densification.

Nanophosphate® technology demonstrates longer cycle life, reduced impedance growth, and lower peak temperatures during high-rate cycling. ​

Cells manufactured using LithiumWerks Nanophosphate® technology maintain high power and utilization windows with minimal degradation over thousands of cycles.

If you would like to find out more about LithiumWerks' Nanophosphate®, contact us at [email protected]

Low‑Temperature Performance for Lithium-Ion Batteries ❄️One of the most persistent myths in the battery world is that “a...
13/04/2026

Low‑Temperature Performance for Lithium-Ion Batteries ❄️
One of the most persistent myths in the battery world is that “all LFP cells behave the same at low temperature.” The data shows a very different reality.

Under low temperature, the manufacturer matters as much as the chemistry.
LithiumWerks’ Nanophosphate® LFP technology is robust, safe, and cost‑effective.

❄️ 1. Capacity Retention Drops… but Not Uniformly
The gap between “spec sheet” and “real use” becomes very visible in winter conditions.

⚡ 2. Internal Resistance Tells the Real Story
Higher resistance, making high‑power operation nearly impossible.

🚗 3. Charge Acceptance Makes or Breaks Winter Usability
Under low temperature most LFP cells require pre‑heating to accept current safely.

📉 4. Energy vs. Power: Who Wins? Choosing the “wrong” LFP type for a cold environment leads to poor cold‑start performance, reduced cycle life, unhappy customers

🧪 5. What This Means for Integrators & OEMs
Low‑temperature performance is no longer a nice‑to‑have spec, it’s a competitive differentiator

If you’re evaluating low temperature LFP performance and want to avoid surprises at –10 °C, –20 °C or below, and want to know more about LithiumWerks’ Nanophosphate® LFP technology low temperature performance, contact us at [email protected]

LithiumWerks' Nanophosphate® is a comprehensive materials engineering platform that addresses the intrinsic kinetic and ...
31/03/2026

LithiumWerks' Nanophosphate® is a comprehensive materials engineering platform that addresses the intrinsic kinetic and structural limitations of olivine LiFePO4. Unlike conventional "nano-LFP" materials, it delivers superior power capability, electrode density, thermal behavior, and cycle life through precise control of crystallite size, architecture, carbon connectivity, and densification.

• Nanophosphate® technology demonstrates longer cycle life, reduced impedance growth, and lower peak temperatures during high-rate cycling.
• Cells maintain high power and utilization windows with minimal degradation over thousands of cycles.

If you like to find out more on LithiumWerks' Nanophosphate®, contact us at [email protected]

Lithium Werks attended the BAE Supplier Conference in Boston. Our battery cells are a good match for high end applicatio...
27/03/2026

Lithium Werks attended the BAE Supplier Conference in Boston. Our battery cells are a good match for high end applications.

Adres

Colosseum 65, 7521 PP
Enschede
7556BN

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