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Cambrios ClearOhm: Solution Coated and Printed Transparent Conductor for Printed Electronics

Dr Rahul Gupta, Sr. Director Business Development
Cambrios Technologies Corporation
United States
 
 
This presentation was given at Printed Electronics and Photovoltaics USA 2011 on Dec 01, 2011.
 

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Presentation Summary

  • ClearOhm™ is the only commercially available solution processed transparent conducting material with performance similar to or better than ITO
  • ClearOhm is commercially used in the touch panels of andriod smartphones
  • ClearOhm shows improved performance for OLED displays and Lighting
  • ClearOhm is in pilot qualification for OPV applications
  • ClearOhm can be printed and printed OLED's and OPV's have been demonstrated

Speaker Biography (Rahul Gupta)

Dr. Rahul Gupta is the Senior Director of Business Development at Cambrios. Prior to joining Cambrios, Rahul has over 11 years of experience developing new technologies and products such as lasers for optical telecommunications at Lucent, full color OLED displays and OLED lighting at OSRAM and a Generation 8 inkjet printing equipment for making color filters for LCD's at AKT (Applied Materials). Rahul received his PhD from the University of California at Santa Barbara (Advisor Nobel Laureate Prof Alan Heeger) and an MBA from the Hass School of Business at the University of California at Berkeley.

Company Profile (Cambrios Technologies Corp)

Cambrios is an electronic materials company that develops proprietary, competitive products using nanotechnology. Cambrios implements its novel technology to simplify electronics manufacturing processes, improve end-product performance and identify ways to satisfy unmet industry needs. The company's first product is ClearOhmTM coating material that produces a transparent, conductive film by wet processing. ClearOhmTM films have improved properties by comparison to currently used materials such as indium tin oxide and other transparent conductive oxides. Applications of ClearOhmTM coating material include transparent electrodes for touch screens, liquid crystal displays, e-paper, OLED devices, and thin film photovoltaics.

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