Lithium Werks

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

High Power at High TemperatureAs global temperature extremes continue to widen, customers and applications increasingly ...
15/07/2026

High Power at High Temperature

As global temperature extremes continue to widen, customers and applications increasingly demand battery cells that deliver reliable performance in both low‑ and high‑temperature environments. We’ve already demonstrated how our cells excel in low‑temperature conditions. Now, we’re showcasing the opposite end of the spectrum.

This new data highlights the high‑temperature performance of our 26650 Nanophosphate© LFP power cell. Even at an ambient temperature of 80°C, the cell maintains impressive power capability, reinforcing its suitability for demanding, thermally challenging applications.

If your application requires a wide range in operational temperature, or you want to know more about the capabilities of our power cells, contact us at [email protected]

 , not just a word for LithiumWerks!Last week, we were informed, in a positive way, by one of our customers on a safety ...
06/07/2026

, not just a word for LithiumWerks!

Last week, we were informed, in a positive way, by one of our customers on a safety issue. The engineer noticed that one of the 18650 cells was being charged for a long period at 4.44V. This is well above the maximum specified and certified charge voltage of 3.85V.

The charging was ongoing for at least a few hours before getting noticed. There was no visible damage to the cell at all and, yes, the cell did get hot. But, there was no leakage; even after taking the cell out of the charger and let it cool down, there was no visible damage. Even better, the cell was performing as normal compared to any other cell.

The root cause was a defect in the charger, and the cell was disposed for safety reasons.

This actual case shows that for , "safety" is not just a word.

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.

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Colosseum 65, 7521 PP
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7556BN

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