HiTHIUM, a top global supplier of energy storage systems, has launched its new AI data center energy storage solution at RE+ 2025. The offering includes the ∞Power 6.25MWh 8-hour long-duration BESS, the ∞Power N2.28MWh 1-hour sodium-ion battery system, and a customized lifespan evaluation model tailored for AI data center applications. The solution is engineered to improve power reliability and renewable energy integration while supporting real-time computational demands.
With AI driving rapid growth in data centers, operators face mounting pressure to incorporate renewables without compromising performance. Intermittent green energy and ultrafast load shifts pose risks to power consistency, creating a critical need for long-duration storage.
Existing storage options often use generic models ill-suited to AI workloads. HiTHIUM’s new AIDC ESS combines two battery types: lithium-based 8-hour storage for baseline endurance and sodium-ion for rapid discharge during demand spikes. A dedicated degradation model offers precise lifespan forecasting under dynamic conditions, helping increase renewable consumption and reduce electricity costs.
“Our portfolio is designed for real-world operations,” said Kush Sutaria, HiTHIUM Senior Application Engineering Manager. “The 8-hour BESS maximizes efficiency, while our sodium-ion system offers 20,000 cycles and millisecond-level reaction—essential for AI data centers balancing scale and sustainability.”
Supporting its product rollout, HiTHIUM emphasizes localized support and manufacturing. Its 10GWh Texas factory and U.S.-based team of 100+ engineers provide regional warehousing and rapid onsite response. This “Local for Local” approach speeds up deployment and ensures long-term service reliability.
Ranked among the top two in global utility-scale energy storage shipments in early 2025, HiTHIUM continues to expand its full-scenario adaptation capabilities. The new AIDC ESS solution reinforces its role in enabling high-performance computing infrastructures to integrate cleaner energy while maintaining grid stability.
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