Sodium-Ion Battery Packs
for Commercial & Industrial Storage
Engineered for 50 °C Ambient — Where Lithium Derates, Sodium Delivers
Built for outdoor C&I deployment across the Gulf: peak shaving, demand-charge management, PV self-consumption, backup power and off-grid sites — without the chiller that erodes your customer’s returns.
1. The Gulf Problem With Lithium
In the Middle East, summer ambient regularly exceeds 45 °C, with peak surface temperatures above 50 °C and night-time lows that never relieve the thermal load. A lithium iron phosphate pack is designed to live in a 15–35 °C window. To keep it there, you install air conditioning — and in a desert climate that air conditioning becomes:
- A parasitic load of 20–30% of the site’s arbitrage revenue;
- The most failure-prone component in the system, with compressor breakdowns and dust-clogged filters driving costly truck rolls to remote sites;
- A power derating trigger — as cells approach thermal limits, the BMS cuts charge and discharge power precisely when afternoon peak tariffs are highest and the revenue matters most.
Chillers do not fail gracefully in sandstorms. And in a water-scarce region, evaporative and water-cooled options are not viable.
2. The Sodium-Ion Answer
Full rated power from –40 °C to +60 °C
Verified high-temperature cycle life
Our packs operate continuously across the entire Gulf temperature envelope without forced cooling. No derating curve to negotiate, no afternoon power cliff.
Over 10,000 cycles at 45 °C — not a laboratory projection, but the operating condition your cabinet will actually experience for six months of the year.
Eliminate the chiller, keep the revenue
Safety margin that simplifies permitting
Passive and hybrid cooling architectures remove the largest parasitic load and the dominant maintenance liability. Auxiliary consumption falls to below 1% of throughput, against an industry average near 2% — and every kilowatt-hour saved on cooling is a kilowatt-hour sold to the grid.

Compared with LFP: 60% lower thermal runaway surface temperature, 35% lower gas generation, 40% lower expansion force, and overcharge tolerance to 140% SOC. Critical when installing on occupied premises — industrial facilities, hotels, district cooling plants, data centres — where fire officers and insurers set the terms.
3. Built for Desert and Coastal Conditions
