Solar Energy Storage Plus at Brooklyn Public Library Demonstrates Resilient Readiness – pv magazine USA
Brooklyn Public Library Coney Island Branch recently completed a solar storage plus project which consists of 21kW Rooftop Photovoltaic Solar + 19kWh + 19kWh SimpliPhi BOSS.6 that meets the city’s 20kWh limit from New York.
Project developers Solar One and Accord Power selected SimpliPhi’s lithium ferrous phosphate storage solutions for these projects. They have now achieved the highest safety standard in the industry with the results of UL 9540 and UL 9540A fire safety tests at the cell, battery module and large unit level.. Due to the fire safety test results of SimpliPhi Power’s large UL 9540A units, these systems are licensed for use in New York.
SimpliPhi Power recently announced that its complete line of scalable UL 9540 certified energy management and storage solutions – 15.2 kWh to 136 kWh with single-phase, split and three-phase configurations – has met the “performance criteria” of the tests. UL 9540A fire safety rating for residential and commercial applications. PHI batteries and AccESS, BOSS.6 and BOSS.12 integrated systems can be used individually or in combination to achieve multiple and rugged solutions in residential and commercial applications, both on and off grid, AC or DC coupled.
âAs we continue to uphold SimpliPhi Power’s core values ââof protecting our planet and empowering people, it is essential that the energy storage solutions we offer to foster economic recovery and a sustainable future are secure. 100%, âsaid Catherine Von Burg, CEO and President. by SimpliPhi Power. âAlthough we achieved the UL 9540A PHI battery module fire safety tests in June 2021, we were not satisfied with the module level tests alone. We wanted to demonstrate that our larger integrated solutions are both safe and reliable, which is important for customers, installers and project developers as these test results are used by fire departments and authorities. health from a code, compliance and licensing perspective.
SimpliPhi Power’s performance in UL 9540A testing, in which cell, battery, and unit-level equipment was forced into thermal runaway by heaters built into the batteries, has demonstrated propagation limited from cell to cell, decreasing temperatures, no ignition or fire and no explosive or deflagration events. Thermal runaway is an uncontrollable rise in temperature at the cell level and is the most common failure mode of lithium-ion batteries, which can cause fires and explosions.
Von Burg reinforces: âThese test results are critical for deployments such as the recently installed energy storage project at the Brooklyn Public Library in Coney Island, NY, which would not have been possible without our test results at large scale at unit level UL 9540A. “
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