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3SUNModel B60 -Double-sided Modules

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The Double-sided 3SUN B60 modules set a new benchmark in solar technology, embodying the latest advancements in bifacial solar energy harvesting. With a leading bifaciality factor of 95%, these modules maximize energy yield by efficiently capturing sunlight on both sides, outperforming traditional solar technology. The 3SUN CORE-H solar cells within these modules feature a transparent conductive coating optimized for peak sunlight transmission and electrical charge conduction. Additionally, ultra-thin n-type crystalline silicon wafers decrease environmental impact while enhancing performance. Our amorphous silicon layers boost energy conversion and reduce electrical recombination losses, further elevating efficiency. Equipped with narrow grid multi-busbar technology, the modules minimize resistive losses, thus ensuring superior energy collection and stability. Meticulously designed with robust mechanical resistance, 3SUN B60 modules thrive against environmental stressors and exhibit minimal conversion losses related to overheating. Our technology eliminates issues such as PID, LID, or LeTID degradation, assuring long-term sustainability and reliability in large-scale installations.
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High performance
3SUNCORE-H technology converts the highest amount of sunlight in any installation condition.

Guaranteed
Our modules leverage decades of experience by Enel Green Power and ensure maximum reliability and resistance.

European
We manufacture our products in Italy with fully automated processes according to the strictest quality criteria.

A solution that
looks to the future
Our B60 double-sided module was developed using 3SUN CORE-H technology, which has been tested by the industry's leading international investors.

680Wp
of maximum power

thanks to 3SUN CORE-H heterojunction innovative technology.

95%
bifaciality factor

Highest sunlight conversion made possible thanks to a 100% symmetrical solar cell structure.

0%
photoinduced degradation

with total protection technologies against PID, LID and LeTID, and maximum mechanical resistance.

Up to 24%
efficiency

in a 2.172 x 1.303 m format: perfect for large-scale plants.

30 Years
Performance guarantee

max 1% first year degradation, 0.25% yearly degradation for the following years.

-0,24 %/°C
P.Max temperature coefficient

excellent performance even in hot environments and at high operating temperatures.

Zero compromises on quality to secure long lasting products.

Outstanding energy yields
More energy compared to mainstream alternatives.

Bifacial architecture
95% bifaciality factor: the best value on the market.

Minimum energy losses
Extremely low conversion losses caused by overheating and elevated operating temperatures.

Protection over time
No electrical degradation caused by PID, LID or LeTID and market-leading mechanical resistance.

The very best in solar energy conversion and technology development.

3SUN CORE-H technology converts the highest amount of sunlight on both sides of the module, elevating solar energy beyond the limits of the PERC, PERT and TOPCon.

Nothing is left to chance with our solar cells.

TCO - Transparent conductive coating

Innovative transparent and conductive anti-reflection coating, optimized to improve sunlight transmission and convey the generated electrical charges towards the metal conducting grid.

Amorphous silicon (p/n a-Si:H)

P and N amorphous silicon layers applied to maximize the conversion of energy and the conduction of electrical charges by preventing losses and avoiding recombination at the interfaces.

N-type crystalline silicon

Ultra-thin, n-type silicon wafers allow excellent performance and stability while lowering the environmental impact.

Metal conducting grids

Narrow grid multi-busbar technology adopted to minimize resistive losses through improved collection and conduction of electrical charges.

Amorphous silicon (a-Si:H)

Micro-layers deposited to improve output voltage. Using a quantum tunnelling mechanism to create a perfect junction with the crystalline silicon, giving rise to the term “hetero-junction”.