trina solar moudle
-
Trina High Power Solar Moudle
Half Cut Technology Under the same shadow condition, power loss of half-cell solar panel is less than that of full cell solar panel. Multi Busbar Technology MBB technology improves efficiency of modules, offers a better aesthetic appearance.
Email Details
-
3001-2026
What Makes i-TOPCon Superior,i-TOPCon (industrial Tunnel Oxide Passivated Contact)
TOPCon has rapidly become the mainstream successor to PERC in global PV manufacturing .i-TOPCon (industrial Tunnel Oxide Passivated Contact) technology introduces: An ultra-thin tunnel oxide layer Highly doped polysilicon passivation Reduced recombination losses Higher open-circuit voltage (Voc) This results in: Higher conversion efficiency Improved temperature coefficients Exceptional performance stability over time. 1 N-Type vs. P-Type Cells Traditional P-Type PERC modules suffer from: Light-Induced Degradation (LID) Light- and elevated Temperature-Induced Degradation (LeTID) Faster long-term performance decline By contrast, N-Type cells offer: Near-zero LID and LeTID Higher carrier lifetime Superior low-light and high-temperature performance Higher long-term energy yield
-
1701-2026
Trina Solar High-Efficiency Modules: Engineering for Bankability
Trina Solar High-Efficiency Modules: Engineering for Bankability, Reliability, and Long-Term Value As the global photovoltaic industry advances toward large-scale, investment-driven deployment, the focus has moved beyond nominal wattage to technologies that ensure bankability, operational stability, and predictable lifetime performance. Trina Solar’s latest generation of high-efficiency modules embodies this transition by aligning advanced cell technology with system-leveloptimization.





