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Astronergy delivers 154.4-MW TOPCon PV modules to Germany

Published on: March 26,2024    Views: 266

Astronergy, a renowned manufacturer of solar PV modules, has successfully supplied 154.4 MWdc of solar module s to the Döllen PV plant located in Brandenburg, Germany. This remarkable project, supported by the CEE Group and developed by Antlike Solar, now stands as the largest TOPCon PV plant in Europe. Once connected to the grid later this year, the plant is projected to generate an impressive annual output of over 150,000 MWh of clean, green electricity.

Astronergy, a leading innovator in n-type TOPCon PV module research and manufacturing, has successfully provided its high-efficiency ASTRO N series modules to the Döllen PV plant. This significant milestone marks another stride in the company’s global introduction of its n-type TOPCon technology, following a recent 355-MWdc deal signed in Australia. Astronergy continues to demonstrate its commitment to advancing and promoting the adoption of n-type TOPCon technology in the global market.

Detlef Schreiber, CEO of the CEE Group, expressed his admiration for the newly established solar park at the Döllen site, which boasts an impressive nominal output of 154.4 MWp. He emphasized that this solar park serves as a remarkable example of the immense potential of renewable energies, solidifying their pivotal role in driving the energy transition.

Through a power purchase agreement (PPA), the Döllen PV plant will actively contribute to the fight against climate change while simultaneously lowering energy costs and promoting energy self-sufficiency. This strategic approach positions the plant as a trailblazer, paving the way for a sustainable future and emphasizing the importance of renewable energy sources.

N-type TOPCon (tunnel oxide passivated contact) PV modules are a cutting-edge solar technology that utilizes n-doped crystalline silicon wafers with passivated contacts. These modules incorporate a thin tunnel oxide layer, enabling them to achieve impressive conversion efficiencies ranging from 22% to 24%. This remarkable advancement in solar module design showcases the potential for significantly higher energy conversion rates, further enhancing the efficiency and effectiveness of photovoltaic systems.

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