Powercore Ultra Smart

Engineered for integrated excellence – PowerCore Ultra Smart

The all-in-one BESS built for C&I applications. Combining three-tier protection, liquid-cooled reliability, and autonomous intelligence, it delivers unmatched safety, effortless scalability, and peak efficiency in a space-saving footprint. From OTA updates to rapid fault recovery, it’s the turnkey solution for modern energy management.

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Discover the key features of the PowerCore Ultra Smart

01

Ultimate safety

A comprehensive three-tier protection chain ensures total peace of mind: the pre-warning layer uses multi-level temperature sensing with millisecond-speed detection; the containment layer provides PACK-level fire suppression alongside multi-stage fusing; and the defense layer offers explosion-proof, fire-resistant insulation capable of withstanding 1600 °C.

02

Extreme reliability

Engineered for long-term performance even in harsh environments: ion-migration-resistant electrical connections preserve insulation and voltage tolerance after five years; 120 % overload capability is supported by three-phase four-leg dynamic balancing for complex grid conditions (380/400 V ± 15 %); and full-node autonomy enables system-wide single-point fault recovery in zero seconds.

03

Intelligent O & M

Zero-touch scalability and self-healing intelligence streamline operations: up to 20 grid-tied units can run in parallel with decentralized autonomous network reconfiguration; OTA firmware updates include breakpoint recovery and real-time strategy deployment to eliminate manual intervention; and high-voltage direct power supply plus dual backups for auxiliary systems meet stringent ESG standards.

04

Compact efficiency

Maximize energy density while minimizing space and losses: an ultra-compact 1.45 m² footprint lets you install over 1 MWh of battery storage in a single parking space; liquid-cooling maintains DC-side temperature variation within ± 1.5 °C for consistent performance; and 88 % system-wide efficiency (including auxiliaries) is achieved through dual energy-saving modes using four-quadrant regulation and low-order harmonic mitigation.