Discover the innovative combination of aesthetics, efficiency, and sustainability with the FuturaSun FU 390 M Silk® Nova Green , a state-of-the-art solar module specifically designed for seamless integration into green roofscapes, gardens, and historic buildings. With a power output of 390 watts and an efficiency rate of 19.97% , this module is the ideal choice for anyone looking to reduce their energy costs while actively contributing to climate protection.
1. Stylish Green Design (similar to RAL 6000)
The green-tinted glass and matching frame ensure seamless integration into green roofscapes, gardens, or natural landscapes. Perfect for historic buildings or modern architecture where design and environmental harmony are paramount.
2. High-Performance Half-Cut Cells
Thanks to the innovative half-cut cell design , performance under partial shading is maximized. The cells reduce energy loss and ensure higher overall efficiency – ideal for residential homes and commercial applications.
3. High Efficiency Rate of 19.97%
With an impressive efficiency rate of 19.97% , the module maximizes energy production on limited space. This allows you to benefit from maximum efficiency even on smaller roof areas.
4. Robust and Durable Design
The high-quality aluminum frame and tempered glass surface provide maximum resistance to weather influences such as hail, rain, or strong wind loads. The module withstands snow loads of up to 5400 Pa and wind loads of 2400 Pa , making it ideal for various climate zones.
5. Temperature Coefficient of -0.29%/°C
Thanks to the low temperature coefficient , the module’s performance remains stable even at high temperatures. This ensures reliable energy production even on hot summer days.
The FuturaSun FU 390 M Silk® Nova Green is the perfect choice for modern solar systems that combine high efficiency, durability, and an appealing look. Whether for private homes, historic buildings, or commercial projects – this module meets all requirements and more.
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Please note that all technical data and specifications are based on the latest available information. Technical changes and errors reserved.