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210mm Cellule Solaire Double Verre N-type HJT Panneau Solaire 630W 650W

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  • Modules à demi-cellules bifaciales HJT de type N à haut rendement de 182 mm offrant une puissance de 485 à 505 W avec un rendement énergétique et une fiabilité améliorés.
  • 210mm N-type dual glass solar modules delivering 630-650W output with high efficiency and durability for industrial applications.
  • 210mm TOPCon N-type bifacial solar panels, 630W-650W output, durable double-glass design for high efficiency & reliability.
  • 630-650W 210mm N-type bifacial modules with anti-corrosion coating, high efficiency, and superior energy yield for demanding environments.
  • Modules à demi-cellules bifaciales HJT de type N à haut rendement de 182 mm offrant une puissance de 485 à 505 W avec un rendement énergétique et une fiabilité améliorés.
  • 210mm N-type dual glass solar modules delivering 630-650W output with high efficiency and durability for industrial applications.
  • 210mm TOPCon N-type bifacial solar panels, 630W-650W output, durable double-glass design for high efficiency & reliability.
  • 630-650W 210mm N-type bifacial modules with anti-corrosion coating, high efficiency, and superior energy yield for demanding environments.
  • 1.Enhanced Efficiency & Power Output
    Integrates gettering and single-side uc-Si technology for higher cell efficiency and increased module power.

    2.Low Temperature Coefficient (-0.26%/°C)
    Delivers stable power generation with superior performance in high-temperature environments.

    3.SMBB & Half-Cut Cell Design
    Minimizes current transmission distance and resistive losses, optimizing cell efficiency.

    4.High Bifaciality (Up to 90%) & Advanced Sealing
    Features a symmetrical bifacial structure for enhanced rear-side energy yield, coupled with PIB-based sealant for improved water resistance and extended module durability.

FAQS

Q :

What technologies are integrated into HJT 2.0 to enhance cell efficiency and module power?

A :

HJT 2.0 combines the gettering process and single-side uc-Si technology to achieve higher cell efficiency and increased module power output.

Q :

How does the -0.26%/°C temperature coefficient of HJT 2.0 benefit its performance?

A :

The low temperature coefficient ensures stable power generation, particularly in hot climates, with minimal efficiency loss as temperatures rise.

Q :

What advantages do SMBB design and Half-Cut Technology provide in HJT 2.0?

A :

SMBB design and Half-Cut Technology reduce current transmission distance and resistive losses, resulting in higher cell efficiency and improved performance.

Q :

How does HJT 2.0 achieve higher energy yield and durability?

A :

HJT 2.0 features up to 90% bifaciality for increased rear-side energy yield and uses PIB-based sealant for stronger water resistance and greater air impermeability, extending module lifespan.

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Mate Solar conçoit des panneaux solaires à haut rendement et des systèmes de stockage d'énergie pour les particuliers, les entreprises et les industries. Nos solutions intégrées, comprenant des batteries lithium-ion, des onduleurs intelligents et une surveillance en temps réel, réduisent les coûts et renforcent l'indépendance énergétique.

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