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Ballard and Vertiv announce strategic technology partnership to support alternative energy usage for data centers
VertivVertiv(US:VRT) Prnewswireยท2024-06-18 12:30

Core Viewpoint - The strategic partnership between Ballard Power Systems and Vertiv aims to address the increasing power demands of data centers by providing scalable, zero greenhouse gas emission fuel cell backup power solutions, which are essential for achieving net-zero targets in the energy-intensive sector [1][12]. Company Overview - Ballard Power Systems focuses on delivering zero-emission PEM fuel cells for various applications, including mobility and stationary power, contributing to a sustainable planet [10]. - Vertiv provides critical digital infrastructure and continuity solutions, integrating hardware, software, and services to support data centers and commercial facilities globally [5][12]. Product Details - The Vertiv Power Module H2 is designed to meet the rising energy demands of future data centers, offering a prefabricated, factory-tested system that can be rapidly deployed and scaled [2][6]. - The Power Module H2 integrates Ballard's 200kW fuel cell cabinets with Vertiv's energy management systems, providing a complete solution for decarbonized backup power [6][7]. Industry Context - The increasing adoption of artificial intelligence and high-performance computing is driving the demand for eco-friendly power solutions, emphasizing the need for zero-carbon and low-carbon energy alternatives [8]. - The partnership and the Power Module H2 solution align with the industry's shift towards sustainable practices and the "One Vertiv, One World" plan, which aims to foster a more sustainable future [9]. Demonstration and Validation - Vertiv and Ballard will showcase their fuel cell-powered standby power applications at Smarter E Europe 2024, highlighting the technical feasibility and customer benefits of hydrogen-powered solutions [3][8]. - Initial tests have confirmed the successful operation of zero GHG emission backup power integrated into an uninterruptible power architecture, demonstrating the viability of this technology [13].