CIS thin-film solar efficiency record of 19.7% set by Solar Frontier

Jan. 9, 2013
Tokyo, Japan--In joint research with NEDO, Solar Frontier achieved record-breaking energy conversion efficiency of 19.7% for cadmium-free, thin-film CIS-based solar cells.

Tokyo, Japan--In joint research with Japan's New Energy and Industrial Technology Development Organization (NEDO; Kawasaki, Japan), Solar Frontier achieved record-breaking energy conversion efficiency of 19.7% (exceeding its previous 17.8% record) for cadmium-free, thin-film copper-indium-gallium-selenide or CIS-based solar cells measuring approx. 0.5 square centimeters, as measured by the National Institute of Advanced Industrial Science and Technology (AIST). Solar Frontier says it has been ten years since the previous CIS thin-film solar efficiency record of 18.6% was surpassed.

This world record was achieved using cells cut from a 30 cm x 30 cm substrate, rather than specifically-developed small area cells, demonstrating high potential for further increases. Moreover, the formation method used by Solar Frontier to achieve the result is the same method it uses for thin-film solar cell mass production, a process of sputtering followed by selenization. Solar Frontier has chosen this method over co-evaporation due to greater efficiencies in mass production.

"This new achievement in energy conversion efficiency indicates the high level of Solar Frontier's technology and the high potential of CIS technology," said Satoru Kuriyagawa, CTO, Solar Frontier. "The CIS thin-film modules currently available from Solar Frontier have gained a reputation for high performance in actual power generation, as they are not easily affected by shadows or high temperatures. Now, even higher real-world performance can be expected by applying this new basic technology. We will continue working to further enhance our technological capabilities with the aim of setting a world record for thin-film solar cells overall."

Solar Frontier's CIS modules are manufactured at the company's Kunitomi Plant, which has steadily increased production efficiency since the plant started commercial production in February 2011. Currently, the CIS thin-film solar modules produced at Kunitomi have a conversion efficiency that exceeds 13%, and the amount of electricity generated (kWh) per installed capacity (kW) exceeds that of other solar modules. Showa Shell Sekiyu and Solar Frontier intend to contribute even further to the expansion of Japan's energy industry and local production and consumption using environmentally-friendly CIS thin-film solar modules made in Japan.

Solar Frontier K.K. is a 100% subsidiary of Showa Shell Sekiyu K.K. and operates gigawatt-scale production facilities in Miyazaki, Japan.

SOURCE: Solar Frontier; www.solar-frontier.com

About the Author

Gail Overton | Senior Editor (2004-2020)

Gail has more than 30 years of engineering, marketing, product management, and editorial experience in the photonics and optical communications industry. Before joining the staff at Laser Focus World in 2004, she held many product management and product marketing roles in the fiber-optics industry, most notably at Hughes (El Segundo, CA), GTE Labs (Waltham, MA), Corning (Corning, NY), Photon Kinetics (Beaverton, OR), and Newport Corporation (Irvine, CA). During her marketing career, Gail published articles in WDM Solutions and Sensors magazine and traveled internationally to conduct product and sales training. Gail received her BS degree in physics, with an emphasis in optics, from San Diego State University in San Diego, CA in May 1986.

Sponsored Recommendations

Brain Computer Interface (BCI) electrode manufacturing

Jan. 31, 2025
Learn how an industry-leading Brain Computer Interface Electrode (BCI) manufacturer used precision laser micromachining to produce high-density neural microelectrode arrays.

Electro-Optic Sensor and System Performance Verification with Motion Systems

Jan. 31, 2025
To learn how to use motion control equipment for electro-optic sensor testing, click here to read our whitepaper!

How nanopositioning helped achieve fusion ignition

Jan. 31, 2025
In December 2022, the Lawrence Livermore National Laboratory's National Ignition Facility (NIF) achieved fusion ignition. Learn how Aerotech nanopositioning contributed to this...

Nanometer Scale Industrial Automation for Optical Device Manufacturing

Jan. 31, 2025
In optical device manufacturing, choosing automation technologies at the R&D level that are also suitable for production environments is critical to bringing new devices to market...

Voice your opinion!

To join the conversation, and become an exclusive member of Laser Focus World, create an account today!