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Hithium Partners with Perfect Power to Boost Energy Storage in Texas and California

The Memorandum of Understanding (MOU) between Hithium and Perfect Power was formalised at Hithium’s headquarters in Xiamen, China.

November 10, 2023. By News Bureau

Hithium, a stationary battery manufacturer, has entered into a cooperation agreement with Perfect Power LLC. The collaboration aims to supply 1GWh of advanced battery products, set to be deployed across the energy markets in Texas and California.

Perfect Power, led by CEO Anthony Maselli, is an energy storage project developer with a track record of over 2,000 MWhs of ESS projects in operation across the United States. Focusing on the second-highest installed solar capacity state, Texas, and the energy market in California, Perfect Power seeks to contribute to a more flexible grid and ensure reliable clean energy. 

Maselli emphasized the importance of battery performance and durability in their projects, stating, “Battery performance and durability are crucial for us, with our focus on facilitating a more flexible grid and reliable clean energy for the neighbourhoods and regions our projects serve. Having a supplier like Hithium gives both our investors and our end-consumers’ confidence that they can depend on our projects.”

The Memorandum of Understanding (MOU) between Hithium and Perfect Power was formalised at Hithium’s headquarters in Xiamen, China. Hithium Chairman Jeff Wu expressed his excitement about the collaboration, saying, “Cooperating with Perfect Power is an exciting step for us in the US, allowing us to support projects in two of the country’s largest energy markets, California and Texas. Through this collaborative endeavour, we aim to further the penetration and deployment of advanced energy storage products into the NetZero transition in the US.”

Hithium, founded in 2019, has already delivered 11GWh of battery products. Notably, its 314 Ah cell, with an 11,000 cycle life, forms the basis for its innovative 5MWh ∞block container system. This system's design reduces the required surface area by 20%, contributing to more efficient and space-saving energy storage.

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