
Tiger Neo 3.0
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Overview
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Neo 3.0 employs 27% efficient, next-generation TOPCon cells, delivering 670W output at 24.8% module efficiency.
The mainstream TOPCon bifacial rates is at 80%, while Tiger Neo 3.0 bifacial rate is at 85±5% , which is significantly higher than the 70~75% of BC bifacial rate. Within the same scenario, its higher bifaciality yields an integrated power output approximately 1.34%~1.94% above that of BC counterparts——equating to an additional 9~13w for 670w modules.
In low-irradiance performance conditions (such as cloudy, or dawn/dusk), TOPCon modules demonstrate superior performance, with power generation increasing by 2.26-2.49%.
By integrating MAX technology and an advanced passivation design, the temperature coefficient is optimized to –0.26%/°C , delivering additional energy yield for high-temperature installations.
TOPCon modules demonstrate superior performance in UVID testing. Particularly after UV testing, TOPCon modules exhibit better UV resistance degradation compared to other technologies.
With its “three highs and three lows” —high power, high efficiency, high bifaciality, low temperature coefficient, low-light performance, and low degradation— Neo 3.0 is engineered for universal deployment. Backed by the proven quality of more than 200GW of Jinko TOPCon technology, it delivers proven reliability, superior performance, and assured investment value.
Tiger Neo 3.0 Neo 3.0 employs 27% efficient, next-generation TOPCon cells, delivering 670W output at 24.8% module efficiency.
Tiger Neo 3.0 Download PDF
The mainstream TOPCon bifacial rates is at 80% , while Tiger Neo 3.0 bifacial rate is at 85±5% , which is significantly higher than the 70~75% of BC bifacial rate. Within the same scenario, its higher bifaciality yields an integrated power output approximately 1.34%~1.94% above that of BC counterparts——equating to an additional 9~13w for 670w modules.
By integrating MAX technology and an advanced passivation design , the temperature coefficient is optimized to –0.26%/°C, delivering additional energy yield for high-temperature installations.
Tiger Neo 3.0 Lowers LCOE by over 1.9% Reduces BOS costs by 0.67 UScents/W
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.
By Q3 2025, JinkoSolar had shipped over 350GW of modules globally 0 GW
Tiger Neo 3.0 modules have achieved the critical milestone "from launch to deployment" and now possess large-scale global delivery capabilities .



