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Best 210mm 630W 640W 650W HJT Bifacial Double Glass Solar Panel For Sale

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  • High-efficiency 182mm N-type HJT bifacial half-cell modules delivering 485-505W output with improved energy yield and reliability.
  • 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.
  • High-efficiency 182mm N-type HJT bifacial half-cell modules delivering 485-505W output with improved energy yield and reliability.
  • 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
    This 210mm N-type HJT 630W 635W 640W 645W 650W bifacial dual-glass module utilizes advanced gettering and single-side microcrystalline silicon technology to significantly boost cell efficiency and overall power generation. Reaching up to 650W, it delivers superior energy yield and performance for large-scale commercial and utility solar projects, maximizing return on investment.

    2. Low Temperature Coefficient (-0.26%/°C)
    Engineered for reliability, this solar panel features an exceptionally low temperature coefficient of -0.26%/°C. This ensures stable and consistent power output even in high-temperature environments, reducing energy losses and providing dependable performance in hot climates for enhanced long-term energy production.

    3. SMBB & Half-Cut Cell Design
    Incorporating Smart Multi-Busbar (SMBB) and half-cut cell technology, this module effectively minimizes internal current transmission distance and resistive energy loss. This innovative design lowers operating temperature and increases cell efficiency, resulting in higher overall reliability and optimized power output under various conditions.

    4. High Bifaciality (Up to 90%) & Advanced Sealing
    With a bifaciality rate of up to 90%, the module's symmetrical double-glass structure captures significant reflected light from the rear side, greatly boosting energy yield. Its robust PIB-based sealant provides superior waterproofing and UV resistance, ensuring extended operational lifespan and long-term durability in diverse environmental conditions.

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 designs high-efficiency solar panels and energy storage systems for homes, businesses, and industries. Our integrated solutions—featuring lithium-ion batteries, smart inverters, and real-time monitoring—cut costs and boost energy independence.

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