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Jolywood Solar’s Niwa Max—210 module steals the show in Solar Solutions International Netherland
2021-09-29
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Solar Solutions International Netherland was held on 28-30 September, 2021, which is the largest trade show for solar energy in Northwest Europe. As the leader of NTOPCon technology industrialization, Jolywood Solar introduced its Niwa Max which is equipped with 210mm large wafer cells to the market. Based on J-TOPCon 2.0 technology, Niwa Max has advantages of high efficiency, high reliability, low degradation which can deliver a power output of 700W.



Solar Solutions International is the largest trade show for solar energy in Northwest Europe, which displays more than 500 innovations and over 100 practical seminars concerning the latest in energy storage, smart products, and an ever evolving array of solar panels.



Meanwhile, Jolywood Solar has showed its Niwa Black with all black surface and 182mm large wafer cells to deliver a power output of 420W. It’s all back aesthetic design, and exquisite appearance attracted wide attention and inquiries.



Compare with the regular p-type modules, Niwa modules combine the better performance under light / electric & thermal conditions and with the advantages of low LETID, low coefficient of temperature, which is more suitable for application in extreme environments in the high latitudes of Northern Europe. Jolywood Solar has delivered modules to many MW level utility scale project. Niwa black modules are also very popular in Europe with its high efficiency, high reliability and outstanding appearance, to provide clients with high quality energy solutions and photovoltaic usage experience.



Jolywood Solar’s R&D team engaged in development and revolution of TOPCon technology for many years and broke through in improvements of conversion efficiency. The laboratory conversion efficiency of Jolywood NTOPCon cells equipped with J-TOPCon 2.0 POPAID technology which is based on 182mm wafer has reached 25.4%. We will strenuously to promote industrialization of high efficiency modules and transformation of global energy.