Sunwoda Energy Showcases 4.17MWh/5MWh Liquid Cooling BESS NoahX 2.0 at RE+2023
The new product marks a significant leap forward in system energy, cycle life, smart management, and safety, solidifying the company's position at the forefront of the energy storage industry.
September 13, 2023. By News Bureau
Sunwoda Energy announced the official launch of its high-capacity liquid cooling energy storage system named NoahX 2.0 at RE+2023. The new product marks a significant leap forward in system energy, cycle life, smart management, and safety, solidifying the company's position at the forefront of the energy storage industry.
The NoahX 2.0 system is built around Sunwoda's 314Ah battery cell, which boasts an impressive cycle life exceeding 12,000 cycles and a lifespan of more than 20 years, resulting in a 10% increase in overall economic benefits.
The 314Ah cell features a thinner top cover and mortise and tenon structure to optimize space utilization by 4%. By integrating Sunwoda's liquid cooling CTP 2.0 grouping technology, the system achieves capacities of 4.17MWh/5MWh in a 20ft container. It is a 52% increase in system energy compared to its predecessor NoahX 1.0 and a 21% increase compared to the 3.44MWh products in the market.
The cell adopts an "LFP + Graphite" system and an olivine crystal structure, ensuring unparalleled safety with a double insulation design that remains effective even when immersed in seawater. With a fire suppression system at the PACK level, the NoahX 2.0 can effectively prevent thermal runaway. Sunwoda's BMS algorithm can proactively identify sudden internal short circuits and the system incorporates a combustible gas emission and explosion venting design. These safety designs enable the battery system to achieve an IP54 protection level.
At the new product launch event, the Shenzhen-based company also highlighted NoahX 2.0's advanced intelligent management and control system. This sophisticated system enables intelligent monitoring, managing, and optimization of the energy storage system. The series-connected solution also allows cluster-level management to avoid circulation and achieve active balancing.
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