Energy Storage Application Solutions
The energy storage series products of SVOLT achieved full-category coverage, providing a full-stack solution for cells, PACK, systems, and intelligent applications.
Craftsmanship and Perseverance for the Basic Technology
Advanced staking process is adopted for SVOLT products and all series products have undergone penetration test to ensure safety.
Penetration test
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Short Blade Cell
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Energy Storage System
350Ah specialized cell for electric energy storage
Extremely safe, long-life energy storage short blade cells
325Ah specialized cell for electric energy storage
Extremely safe, long-life energy storage short blade cells
730Ah specialized cell for household energy storage
Extremely safe, long-life energy storage short blade cells
Energy density
>171 Wh/Kg
Efficiency
>94%
Ultimate safety
Staking technology
High cycle
8000
Energy density
>165 Wh/Kg
Efficiency
>94%
Ultimate safety
Staking technology
High cycle
9000
Energy density
>185 Wh/Kg
Efficiency
>94%
Ultimate safety
Staking technology
High cycle
8000
3.46/3.3Wh liquid cooled container-0.5P
Equipped with short blade cells of SVOLT, innovative in five major fields and globally certified.
318kWh energy storage cabinet
Equipped with short blade cells of SVOLT, innovative in five major fields and globally certified.
3.34MWh liquid cooled container-1P
Equipped with short blade cells of SVOLT, innovative in five major fields and globally certified.
6.9MWh liquid cooled container-0.5P
Equipped with short blade cells of SVOLT, innovative in five major fields and globally certified.
Safety innovation
Design and production of automotive-grade cells, AI smart factory standards, safety (+15%).
Technology innovation
Stacking process increases density by 5%, cycle life by 10%, and cost by 15%.
Material innovation
Advanced LFP and nanoscale chemical systems, with high rate and high capacity, as well as ultra long cycle life (over 9,000 cycles).
Intelligent innovation
Advanced BMS and EMS with self-learning and artificial intelligence technology, full lifecycle management (recycling supported).
Safety innovation
Design and production of automotive-grade cells, AI smart factory standards, safety (+15%).
Technology innovation
Stacking process increases density by 5%, cycle life by 10%, and cost by 15%.
Material innovation
Advanced LFP and nanoscale chemical systems, with high rate and high capacity, as well as ultra long cycle life (over 9,000 cycles).
Intelligent innovation
Advanced BMS and EMS with self-learning and artificial intelligence technology, full lifecycle management (recycling supported).
Safety innovation
Design and production of automotive-grade cells, AI smart factory standards, safety (+15%).
Technology innovation
Stacking process increases density by 5%, cycle life by 10%, and cost by 15%.
Material innovation
Advanced LFP and nanoscale chemical systems, with high rate and high capacity, as well as ultra long cycle life (over 9,000 cycles).
Intelligent innovation
Advanced BMS and EMS with self-learning and artificial intelligence technology, full lifecycle management (recycling supported).
Safety innovation
Design and production of automotive-grade cells, AI smart factory standards, safety (+15%).
Technology innovation
Stacking process increases density by 5%, cycle life by 10%, and cost by 15%.
Material innovation
Advanced LFP and nanoscale chemical systems, with high rate and high capacity, as well as ultra long cycle life (over 9,000 cycles).
Intelligent innovation
Advanced BMS and EMS with self-learning and artificial intelligence technology, full lifecycle management (recycling supported).
Application Scenarios
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Electricity scenario
Specialized products for large-capacity electric energy storage are linked with photovoltaic, thermal power, wind power, grid dispatch and other systems through energy management systems.
The big data platform and energy management system can quickly and accurately adjust energy storage charging and discharging strategies based on power generation and grid scheduling needs.
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Commercial scenarios
High-quality commercial energy storage products can achieve real-time monitoring of remaining capacity and load size of power lines with the support of energy management systems, and can interact with energy units such as distributed photovoltaics and charging equipment.
The big data platform and energy management system can quickly and accurately adjust the energy storage charging and discharging strategies based on the different energy consumption conditions monitored.
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Family scenario
Diversified home energy storage products that support DIY appearance and achieve self-sufficiency in household energy and effectively store renewable energy such as solar and wind energy.
In the event of a power outage or sudden malfunction in the power grid, household energy storage can be put into standby mode to ensure basic electricity consumption.
Energy replenishment can be achieved during peak electricity consumption to supplement insufficient power supply in the power grid and avoid grid overload and faults.
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Electricity scenario
Smoothing fluctuations, improving forecasting accuracy, enhancing new energy generation capacity, conducting joint frequency regulation, participating in auxiliary services, achieving large-scale flexible peak-shaving, and improving power factor and other functions.
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Commercial scenarios
Conducting peak load shifting to alleviate the energy burden during peak hours, providing emergency power supply, and coordinating with charging piles to alleviate capacity shortages, which can participate in auxiliary services.
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Family scenario
Household energy supply, balancing grid load, emergency backup, optimizing electricity consumption and management, and reducing energy costs.