LONGi's Revolutionary Hi-MO 9 Module Sets New Efficiency Standards

LONGi Green Energy Introduces the Hi-MO 9 Module
LONGi Green Energy Technology has recently launched its upgraded Hi-MO 9 module, marking a significant advancement in solar technology. With the integration of their proprietary HPBC 2.0 technology, this new module boasts an impressive 24.8% conversion efficiency and a maximum power output of 670W. This improvement means that Hi-MO 9 outperforms many contemporary TOPCon solar modules, showcasing a competitive edge in mass production.
Revolutionizing Energy Generation with Innovative Technology
The Hi-MO 9 module represents a breakthrough in full-scenario power generation. Utilizing the unique 0BB (0 Busbar) technology, alongside a full-area passivation process, it achieves a remarkable increase in module power output. The result is a peak output of 670W, which is 10W higher than previous models. This technological advancement also elevates the bifaciality of the module to over 80%. Consequently, the overall energy yield is significantly improved compared to traditional models, helping reduce both the cost and land use of photovoltaic power plants.
Outstanding Performance in Diverse Environments
Beyond its impressive specifications, the Hi-MO 9 module has shown exceptional performance in various environmental conditions. In challenging settings like high-temperature humid areas, the module excels, outperforming standard TOPCon modules by a notable margin. For instance, field tests conducted in high-temperature and high-humidity conditions have revealed that the Hi-MO 9 offers a 1.89% energy yield advantage compared to its competitors. Similarly, in arid regions, it still demonstrates remarkable efficiency gains.
Setting New Records in Photovoltaic Conversion
During the recent launch event, LONGi made headlines by achieving a new world record for high-efficiency photovoltaic cells. Achieving an astounding 27.81% conversion efficiency, this record was set for their self-developed HIBC (Heterojunction Interdigitated Back Contact) silicon solar cells. Certified by the Institute for Solar Energy Research Hamelin in Germany, this achievement enhances global excitement in the market for innovative solar solutions.
Aiming for Greater Commercial Value
To further capitalize on advancements in BC technology, LONGi has launched the "Global Optimal BC Solar Power Plant Design Challenge," in collaboration with TÜV Rheinland. This challenge encourages innovative designs for large-scale solar power plant projects across various applications. It aims to gather creative inputs from engineers, consultancies, and investors, all vying for a share of the substantial prize pool. With submissions accepted until the end of November, this initiative promises to drive significant advancements in solar technology integration.
Commitment to a Sustainable Future
Dennis She, Vice President of LONGi, expressed the company's commitment to advancing crystalline silicon solar cells through BC technology. By investing in high-efficiency modules, LIKE the Hi-MO 9, LONGi aims to provide unparalleled value to customers globally. The company’s investments have already yielded over 40GW in global orders for BC modules, highlighting the growing demand and potential for solar energy solutions worldwide.
In conclusion, the Hi-MO 9 module presents a paradigm shift for solar technology, with its leading efficiency and robust design. As LONGi continues to push the boundaries of solar technology with innovations like these, the future of photovoltaics looks more promising than ever.
Frequently Asked Questions
What is the efficiency of the new Hi-MO 9 module?
The Hi-MO 9 module achieves an impressive 24.8% conversion efficiency, setting a new industry standard.
What technology powers the Hi-MO 9 module?
LONGi's proprietary HPBC 2.0 technology powers the Hi-MO 9 module, enhancing its energy generation capabilities.
What environment does the Hi-MO 9 perform best in?
The Hi-MO 9 module demonstrates exceptional performance in high-temperature and high-humidity environments, as well as in areas with low light.
What record did LONGi achieve at the event?
LONGi set a world record for photovoltaic cell conversion efficiency at 27.81% with its HIBC solar cells, announcing a remarkable step forward for solar technology.
What is the Global Optimal BC Solar Power Plant Design Challenge?
It is an initiative launched by LONGi in partnership with TÜV Rheinland, encouraging innovative designs for large solar power installations with a competitive prize.
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