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Wholesale HJT 182mm 490W 500W 505W Bifacial Double Glass Solar Module

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  • 182mm N-type HJT bifacial half-cell modules, 485-505W output, high efficiency, superior durability and enhanced energy yield.
  • N-type HJT Bifacial 182mm half cell panels: 485-505W output, improved bifacial gain, reduced degradation and superior low light performance for optimised ROI.
  • 182mm N-type HJT bifacial half-cell modules deliver 485-505W and feature dual-side generation, high efficiency and thermal stability for utility/commercial systems.
  • N-type HJT 182mm bifacial half-cell modules deliver 485-505W output with improved efficiency, dual-side energy harvest and optimised durability for utility-scale systems.
  • 182mm N-type HJT bifacial half-cell modules, 485-505W output, high efficiency, superior durability and enhanced energy yield.
  • N-type HJT Bifacial 182mm half cell panels: 485-505W output, improved bifacial gain, reduced degradation and superior low light performance for optimised ROI.
  • 182mm N-type HJT bifacial half-cell modules deliver 485-505W and feature dual-side generation, high efficiency and thermal stability for utility/commercial systems.
  • N-type HJT 182mm bifacial half-cell modules deliver 485-505W output with improved efficiency, dual-side energy harvest and optimised durability for utility-scale systems.
  • 1. High Efficiency & Power Output
    Our N-type HJT modules 485W 490W 495W 500W 505W integrate advanced gettering and single-side microcrystalline silicon technology to achieve exceptional cell efficiency. This innovative approach significantly enhances power output, delivering superior performance for large-scale solar installations. The 182mm cell design ensures higher energy yield and improved reliability.

    2. Low Temperature Coefficient (-0.26%/°C)
    Featuring a low temperature coefficient of -0.26%/°C, these bifacial modules maintain stable power generation even under high-temperature conditions. This design minimizes thermal losses and ensures consistent output, making them ideal for projects in warm climates.

    3. SMBB & Half-Cut Design
    With SMBB and half-cut cell technology, the module reduces internal current transmission distance and resistive power loss. This configuration improves overall efficiency and enhances shade tolerance, providing greater flexibility and reliability in system deployment.

    4. 90% Bifaciality & Advanced Sealing
    The symmetrical double-glass structure offers 90% bifaciality, capturing reflected light to increase rear-side energy generation. Coupled with PIB-based edge sealing, the module achieves exceptional waterproofing and long-term durability for harsh environmental conditions.

FAQS

Q :

What technologies are integrated into HJT 2.0 to improve 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 enhance its performance?

A :

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

Q :

What are the benefits of SMBB design and Half-Cut Technology 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 overall performance.

Q :

How does HJT 2.0 achieve higher energy yield and extended module lifespan?

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, ensuring a longer module lifespan.

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