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Technology

From Cell
to Cloud.

The Management & Intelligence Stack

Integrated Control Layers.
Maximum Safety & Efficiency.

Our control stack integrates three critical layers: multi-layer BMS, intelligent EMS, and cloud-based monitoring to ensure the safe and optimized operation of your energy storage assets.

Technical Service Team

LFP Cell Technology

Advanced Lithium Iron Phosphate (LFP) Cell Technology

Our LFP cell platform for stationary energy storage is designed to deliver high capacity, long cycle life, and strong thermal stability. Based on the ST314P050A cell platform, the system is built around 314 Ah LiFePO₄ cells with nominal energy of 1,004.8 Wh per cell and cycle life of ≥ 11,000 cycles under specified test conditions. The chemistry is cobalt-free and optimized for long-duration stationary storage applications.

314 Ah Capacity1,004.8 Wh Energy≥ 11,000 CyclesLiFePO4 (LFP)Cobalt-Free Chemistry0.5P Charge / Discharge

Technical Specifications

Technical Data

Industry-leading energy density and ultra-long cycle life, optimized for utility-scale energy storage systems.

Basic Specifications

Basic Specifications

Electrical Characteristics

Electrical Characteristics

Mechanical Characteristics

Mechanical Characteristics

Temperature Range

Temperature Range

Certifications
& Standards

Category

Standards & Reports

Product Certifications / Reports

IEC 62619, UL 9540A, UL 1973, GB/T 36276, UN 38.3

Environmental Compliance

RoHS, REACH, Battery Directive

Company Certifications

ISO 9001, ISO 14001, ISO 45001

Technical Notes

1.Charge / discharge rate: 0.5P / 0.5P
2.Test temperature: 25°C ± 2°C
3.End of life definition: 70% SOH
4.Reference SOC: 27% SOC
World Map

Battery Management System

The SSK BMS monitors and protects the battery system across cell, module, and pack / rack levels.

Energy Management System

The SSK EMS coordinates operating logic across the energy storage system, supporting battery dispatch, renewable integration, and site-level power optimization.

Cloud-Based O&M Platform

SSK systems can be connected to a cloud-based monitoring platform that provides operational visibility.

Chemistry Choice

Why Lithium Iron Phosphate

LFP is widely used in stationary energy storage due to its strong cycle life, thermal stability, cobalt-free chemistry, and suitability for frequent charge-discharge operation. It is well suited for utility-scale and commercial & industrial energy storage applications where safety, durability, and operating efficiency are critical.

LFP Technology