Jinko Solar-Tiger Neo 3.0

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Winner in Every Side

Efficiency and Reliability Dual Drive

High-Efficiency TOPCon Cells

Tiger Neo 3.0 utilizes high-efficiency TOPCon cells, integrating advanced technologies such as 20BB main bus-less structure, HCP metallization technology, and MAX material systems, achieving a record 670W output and over 24.8% module efficiency.

Optimized Temperature Coefficient

Leveraging the advantages of TOPCon technology, the Tiger Neo 3.0 module boasts a temperature coefficient of -0.29%/°C, significantly outperforming conventional modules and incurring less power loss under high-temperature conditions.

Universal Application Scenarios

With high power output and a high bifacial rate, the 670W module is particularly suitable for centralized utility power station projects in regions with high temperatures and high irradiance, such as the Middle East, Western China, and Latin America. Additionally, thanks to its compatibility with mainstream mounting systems and inverters, this module demonstrates excellent system compatibility and structural adaptability in a variety of complex applications, including Utility, C&I rooftops, concrete sites, and desert photovoltaic bases.

Efficient Bifacial Power Generation

  • Tiger Neo 3.0 Bifacial rate: 85±5%
  • TOPCon bifacial rate is mainstream at 80%+, BC module bifacial rate is mainstream at 70%+
  • Under the same model, due to the higher bifacial rate, the comprehensive power of TOPCon modules is about 1% higher than BC modules across all application scenarios.

*The simplified formula for current bifacial module testing methods: Front Power + Front Power * Bifacial Rate * Back Irradiance

Excellent Low Light Performance

In low-irradiance performance conditions (such as cloudy, foggy, or dawn/dusk), TOPCon modules demonstrate superior performance, with power generation increasing by 2.26-2.49%.

*Calculated per IEC 61215-2:2021 test method.

UV Resistance Performance

  • TOPCon modules demonstrate superior performance in UVID testing.
  • Particularly after UV testing, TOPCon modules exhibit better UV resistance degradation compared to other technologies.
  • The UV60 degradation of TOPCon modules is 1.23%, while that of BC modules is 2.20%.

*Calculated per IEC 61215-2:2021 test method.

Best for Money

Further Breakthrough in LCOE

Tiger Neo 3.0

Reduces LCOE by over 6%

 

Enhances system compatibility, allowing up to 2 more modules per string compared to BC technology. Decreases BOS costs by 0.048 USD/W

(Based on a typical Saudi project calculation)

Proven Performance

Visible Power Generation Gains!

The Tiger Neo series has demonstrated a maximum power generation increase per watt of up to

Data sourced from the TUV Nord test base in Kagoshima, Japan, from October 2024 to March 2025, comparing TOPCon versus BC modules.

Further supported by data from over 30 field tests power station spanning various climates and terrains globally.

12 Stations Completed

18 Stations Planned

*The above comparison is set between Jinko's TOPCon modules and BV modules, encompassing third-party test sites and customer demonstration sites.

Reliability

is in our DNA.

By Q1 2025, JinkoSolar had shipped over 320GW of modules globally.

0GW

Tiger Neo series orders surpassed 220GW worldwide.

0GW

One in every 7 modules installed globally is 1 JinkoSolar module.

Mature Delivery

Global Reach, Immediate Delivery

Current Status

Tiger Neo 3.0 modules have achieved the critical milestone "from launch to deployment" and now possess large-scale global delivery capabilities.

By End-2025

JinkoSolar plans to upgrade over 40% of its TOPCon capacity with advanced process technology, further solidifying this product line's industry leadership.

By End-2025

Total capacity for 640Wp+/Tiger Neo 3.0 products is projected to reach 40–50 GW.Within this, high-power modules (650Wp and above) will constitute 40% to 50%, translating to an estimated capacity of ~20 GW.

Product Documentation

Tiger Neo 3.0

Datasheet

High-Efficiency Monocrystalline Bifacial Half Cell Solar Modules

White Paper

Tunnel Oxide Passivated Contact Technology

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