Exceptional Power Density for High-Density Rack Deployment
Exceptional Power Density for High-Density Rack Deployment With industry-leading high-rate discharge performance, the cell supports rack-level backup power of up to 1.2 MW, enabling substantially higher power density than conventional battery architectures. It is optimized for AI clusters, hyperscale data centers, and other applications requiring rapid high-power response. Higher rack-level output reduces the number of parallel battery strings, simplifies system topology, lowers system complexity, and maximizes power delivery within limited rack space.
Extended Calendar Life for Lower Total Cost of Ownership (TCO)
Validated through accelerated aging testing, the cell delivers a calendar life exceeding six years under typical backup power operating conditions. Its low-capacity-fade characteristics help maintain consistent backup performance throughout the service life while reducing battery replacement frequency and maintenance requirements. The result is a lower Total Cost of Ownership (TCO), making it well suited for mission-critical infrastructure requiring continuous 24/7 operation.
Intrinsically Safe Design for Enhanced System-Level Safety
The cell is engineered based on a comprehensive understanding of thermal runaway initiation and gas evolution mechanisms. Multi-level optimization of the material system, electrode structure, and venting design helps suppress thermal propagation while controlling heat and gas release during failure events. These intrinsic safety characteristics contribute to improved system-level performance in UL9540A thermal runaway testing, supporting lower temperature rise, reduced gas generation, and limited flame propagation. This provides system integrators with greater confidence in safety qualification and regulatory compliance.