
At the International Photovoltaic Power Generation and Smart Energy Conference & Exhibition (SNEC 2026) in Shanghai, SVOLT Energy Storage unveiled a complete range of energy storage solutions spanning residential, commercial and industrial (C&I), and utility-scale applications.
On the opening day, the company signed several strategic cooperation and supply agreements with a combined capacity exceeding 8 GWh. These agreements highlight the growing market confidence in SVOLT’s latest advances in storage safety, system integration, and operational efficiency.
During the exhibition, SVOLT displayed multiple variants of its flagship 122 Ah stacked residential energy storage cell, a product that has already entered the global Top 5 supply chains and reached GWh-level shipments. The platform now includes a Fast-Charging Edition and a Low-Temperature, Long-Life Edition, each tailored to distinct residential needs — higher charging performance and reliable cold-climate operation, respectively.
SVOLT’s 285 kWh C&I all-in-one system is built around its 371 Ah thermal-composite stacked cells. By adopting a module-free CTR (cell-to-rack) integration architecture, the system cuts structural components by 36%, delivering clear gains in structural rigidity and system stability.
The system features advanced dual-side liquid cooling, which tightens cell-to-cell temperature differences and extends the overall system lifecycle by roughly 10%. Its AI-BMS (artificial intelligence battery management system) dynamically optimizes charge and discharge strategies and can boost O&M (operations and maintenance) efficiency by up to 60%, under applicable operating and evaluation conditions. With an ambient operating range of -30°C to 55°C, the system is designed for industrial and commercial facilities, time-of-use arbitrage, peak-demand management, and demand-charge reduction.
For utility-scale applications, SVOLT’s flagship 6.29 MWh ESS container relies on its 371 Ah stacked short-blade cells, each delivering 1,187 Wh of nominal energy. These cells are engineered for more than 10,000 cycles under specified operating and test conditions. The module-free cell-to-rack design reduces the number of structural components by 36% and improves space utilization by 20% compared with conventional module-based architectures.
The container employs a three-compartment isolation layout that physically separates the battery, electrical equipment, and liquid-cooling sections. Thermal-electrical separation, directed gas venting, and a three-tier fire protection system together provide multiple layers of protection from the cell level up to the complete system. Under the specified operating conditions, the thermal-management design reduces the maximum cell temperature spread from 7°C to 15°C. This improvement supports more consistent operation, longer system life, and a lower levelized cost of storage.
Collectively, the 122 Ah residential cell platform, the 285 kWh C&I system, and the 6.29 MWh utility-scale container demonstrate SVOLT’s strategy of deploying stacked-electrode technology and highly integrated system design across the full spectrum of energy storage scenarios.
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