JinkoSolar claims to have broken the world record for Bifacial Modules conversion efficiency

JinkoSolar says the maximum conversion efficiency of its bifacial solar modules reached 22.49%


KEY POINTS
  • JinkoSolar says the maximum conversion efficiency of its bifacial solar modules reached 22.49%.
  • Results were verified during testing conducted by an independent provider of technical services for testing.
  • High-efficiency modules help reduce the Levelized cost of electricity (LCOE).

Shanghai — JinkoSolar announced that the maximum conversion efficiency of its bifacial solar modules reached 22.49%, breaking the previous world record and setting a new industry standard for efficiency of mass-produced solar cells.

The company says the results were verified during testing conducted by TÜV Rheinland, an independent provider of technical services for testing, inspection, certification, consultation, and training.



JinkoSolar says it was able to significantly improve efficiency for its mass-produced modules by applying newly developed ARC and advanced metallization technologies and proven proprietary technologies to high-efficient cell design.

New Tiling Ribbon (TR) technology was also incorporated into the cell design which eliminates any inter-cell gap, ensuring high-efficiency and high-reliability, while significantly improving the module’s appearance.

The high-efficiency modules also help reduce the Levelized cost of electricity (LCOE) as the industry approaches grid parity globally.

Dr. Jin Hao, Vice President of JinkoSolar commented, “We are committed to providing high-quality modules that will efficiently and reliably operate under the toughest conditions. This new world record will pave the way for a new round of technological and industry upgrades in module efficiency with JinkoSolar leading the way. Going forward, we will accelerate the application of the latest and most advanced technologies to the mass production of our solar products which will drive an increase in cost-effectiveness and promote grid parity on a global scale.”

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