JinkoSolar Signs An Order of 45.69MW of Tiger Neo 3.0 Module with French Distributor JinkoSolar
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JinkoSolar Signs An Order of 45.69MW of Tiger Neo 3.0 Module with French Distributor

JinkoSolar, a global leader in the photovoltaic industry, signed another supply agreement with a French distributor for 45.69MW of Tiger Neo 3.0 high-efficiency PV modules

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Recently, JinkoSolar, a global leader in the photovoltaic industry, signed another supply agreement with a French distributor for 45.69MW of Tiger Neo 3.0 high-efficiency PV modules. This collaboration will precisely target core distributed scenarios such as French commercial and industrial distributed projects. Leveraging its all-scenario adaptability and strong alignment with French energy policies, it will inject robust momentum into accelerating the local energy transition and achieving energy autonomy goals in the distributed market.

JinkoSolar Signs An Order of 45.69MW of Tiger Neo 3.0 Module with French Distributor

The diverse landscape of France's distributed scenarios presents comprehensive challenges to PV module performance. Residential projects in the rainy northern regions often face low-light challenges, while industrial and commercial buildings in central France are prone to partial shading due to architectural obstructions. In the high-temperature southern areas, modules must demonstrate outstanding thermal stability. Additionally, distributed projects demand stringent requirements for high power density and long-term reliability. JinkoSolar's Tiger Neo 3.0 modules, with their core advantage of all-scenario adaptability, emerge as an optimal choice for meeting France's diverse distributed deployment needs.

 Tiger Neo 3.0 modules precisely address France's core distributed challenges—low-light performance. Equipped with next-generation N-type TOPCon cell technology, Tiger Neo 3.0 maintains 95%-98% relative power output under 200W/m² low irradiance, delivering significant early/late-day power gains over competitors to solve residential efficiency issues in rainy northern regions; For commercial and industrial rooftops plagued by shading, its superior anti-shading and anti-hot-spot capabilities ensure stable power generation even under long-edge shading scenarios. Addressing southern high temperatures, the module's optimized technology reduces the temperature coefficient to -0.26%/℃, effectively suppressing high-temperature losses and ensuring stable operation for outdoor distributed projects.

 In terms of space utilization and investment returns—key considerations for distributed scenarios—the Tiger Neo 3.0 module demonstrates outstanding advantages. With mass production efficiency exceeding 24.8% and peak power reaching 670W, it enables higher installed capacity in space-constrained distributed settings like French residential rooftops and commercial/industrial facilities. Field testing demonstrates an annual power generation gain of 1%-3% compared to conventional modules, with each module contributing approximately 28 kWh of additional electricity annually, significantly shortening the payback period. An ultra-high bifaciality rate of 85±5% enhances reflected light generation gains, while a linear degradation rate of -0.35% ensures long-term stable returns for distributed projects.

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