Plastic Logic Presents Latest Advances in Organic Thin-Film Transistor Technology at ICFPE2012

At the 2012 International Conference on Flexible and Printed Electronics (ICFPE2012) in Tokyo, Japan, Plastic Logic, a key player in the plastics electronics field, will present its advanced flexible display technology for applications, including smart phones and e-readers.

Plastic Logic’s Principal Research Engineer, Guillaume Fichet will demonstrate the latest developments in organic thin-film transistor (OTFT) backplane technology at the event. The company will also discuss key findings on organic thin-film transistors’ enhanced reliability and the impact of certain production process steps on long term electrical stability and initial transistor performance.

Plastic Logic's flexible plastic display technology is based on organic thin-film transistors, which are processed over a flexible plastic substrate for driving an electrophoretic display media supplied by E Ink, thus producing a fully plastic-based display. It is possible to manufacture this display in color, monochrome and in a broad range of sizes and shapes.

Plastic Logic's displays are very light in weight, ultra thin and consume less power. Moreover, the flexible display technology is daylight readable and shatterproof. The presentation will not only cover transistor development and latest technologies under development using the same OTFT technology but will also discuss issues related to scaling a transistor production process from a laboratory to a plant. The company established the first-of-its-kind plastic electronics factory in 2008 in Dresden, Germany. It will present some of the process learnt and developed at the conference.

Plastic Logic's flexible display technology facilitates a variety of applications for larger and smaller plastic display solutions, ranging from smart phones to companion products, e-readers and paper replacement. The company is also exploring the possibility to integrate its technology in non-imaging applications.

Will Soutter

Written by

Will Soutter

Will has a B.Sc. in Chemistry from the University of Durham, and a M.Sc. in Green Chemistry from the University of York. Naturally, Will is our resident Chemistry expert but, a love of science and the internet makes Will the all-rounder of the team. In his spare time Will likes to play the drums, cook and brew cider.

Citations

Please use one of the following formats to cite this article in your essay, paper or report:

  • APA

    Soutter, Will. (2019, February 11). Plastic Logic Presents Latest Advances in Organic Thin-Film Transistor Technology at ICFPE2012. AZoNano. Retrieved on November 22, 2024 from https://www.azonano.com/news.aspx?newsID=25520.

  • MLA

    Soutter, Will. "Plastic Logic Presents Latest Advances in Organic Thin-Film Transistor Technology at ICFPE2012". AZoNano. 22 November 2024. <https://www.azonano.com/news.aspx?newsID=25520>.

  • Chicago

    Soutter, Will. "Plastic Logic Presents Latest Advances in Organic Thin-Film Transistor Technology at ICFPE2012". AZoNano. https://www.azonano.com/news.aspx?newsID=25520. (accessed November 22, 2024).

  • Harvard

    Soutter, Will. 2019. Plastic Logic Presents Latest Advances in Organic Thin-Film Transistor Technology at ICFPE2012. AZoNano, viewed 22 November 2024, https://www.azonano.com/news.aspx?newsID=25520.

Tell Us What You Think

Do you have a review, update or anything you would like to add to this news story?

Leave your feedback
Your comment type
Submit

While we only use edited and approved content for Azthena answers, it may on occasions provide incorrect responses. Please confirm any data provided with the related suppliers or authors. We do not provide medical advice, if you search for medical information you must always consult a medical professional before acting on any information provided.

Your questions, but not your email details will be shared with OpenAI and retained for 30 days in accordance with their privacy principles.

Please do not ask questions that use sensitive or confidential information.

Read the full Terms & Conditions.