Significantly higher conversion efficiency at mass production scale, helping reduce LCOE and boost project returns.
Thanks to no boron-oxygen bonds in the N-type silicon substrate, your power output stays consistent over time.
Temperature coefficient of -0.29% delivers higher output in heat — outperforming PERC cells degrading at -0.45%.
Leverages reflected light for 1.1% more generation than PERC cells — ideal for rooftops, deserts, and floating solar.
Involt Energy specializes in the production of high-performance N-Type TOPCon solar cells, engineered with next-generation technology and strict process control.
Every solar cell we produce reflects Involt Energy’s unwavering commitment to precision, reliability, and global quality standards. Our manufacturing lines are fully automated, incorporating advanced robotics and intelligent systems to ensure each cell meets the highest performance benchmarks. From material selection to final inspection, every stage is optimized for accuracy and consistency.
Our rigorous quality control processes, backed by AI-driven inspections and real-time data monitoring, guarantee exceptional efficiency, durability, and long-term stability. With over 500 global partners placing their trust in our products, Involt Energy continues to deliver solar solutions engineered for sustainable, reliable energy — powering the world with confidence.
Our solar cells enhance efficiency through superior rear surface reflection, maximizing photovoltaic conversion and energy utilization. With an average efficiency of 24.5% and a bifaciality factor of 85%, they offer exceptional performance and energy output.
Our cells maintain stable efficiency across diverse lighting conditions, ensuring prolonged lifespan and consistent energy output.
Engineered for high temperatures, our cells maintain efficiency in even harsh environments, making them ideal for regions with intense sunlight or hot climates. With a Power Temperature Coefficient as low as -0.30%/°C, they ensure consistent performance in extreme conditions.
Our technology minimizes efficiency losses caused by electrolyte impurities, ensuring reliable performance in demanding conditions. With exceptional Anti-PID performance, we achieve PID degradation as low as 0.5%.
Relative conversion efficiency of 97% under 200w/m2 low-light conditions.