////// Flexible PV Module Mfr
HG solar modules combine the best features of cell technologies to achieve best performance levels at your service, which ensures HG solar modules achieve maximum luminous efficiency under real, day to day conditions, even under cloudy skies.
Know MoreWith proven track record of reliability, durability, and cost-effectiveness, HG solar modules provide with over 25 years effective working time; HG solar modules have paved the way for a sustainable and cleaner future for commercial usage.
Know MoreHG solar module, stand through extreme weather conditions and acid-base climate, due to its incredible durability and intelligent design; HG solar modules are packed with features that have rapidly made them a favorite for solar modules around the globe utility projects.
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Factory Location: Chongqing, China
360-460W
HG group redefined the high-efficiency module series by integrating 166mm silicon wafers with PERC and half-cut technologies.HG group panel acmbined creative technology effectively and extremely improved the module efficiency and power out.
The wear resistance, insulation, water resistance and bearing capacity of the glass are better than those of the backsheet, which reduces the problems of partial cracks in the module and makes the power generation of the module more stable and reliable. In addition, the fire rating of double-glass modules has been upgraded from Class C of traditional modules to Class A, and the fire performance has been significantly improved.
The water permeability of the double-glass module is zero, and the attenuation rate, efficiency, and life are simultaneously optimized.
The zero water permeability reduces the power loss of the module, improves the power generation efficiency, reduces the attenuation rate by about 0.2 percentage points, and extends the life span to about 30 years.
The low attenuation rate contributes to a 3% increase in power generation, which is about 0.2 percentage points lower than that of single-glass modules. Under the same power generation conditions, the power generation of double-glass modules will increase by 3% compared with traditional modules.