Printed, Flexible and Organic Electronics

Printed, Flexible and Organic Electronics

Printed Electronics, being thin film silicon or inorganic or organic semiconductors, can be used to form Thin Film Transistor Circuits (TFTCs), such as replacing the functionality of simple silicon chips. TFTCs also employ thin film conductors and dielectrics and the ultimate objective is to make many different components at the same time - such as displays, batteries, sensors, microphones etc using the same materials or at least the same deposition techniques thus saving cost and improving reliability. Some TFTCs will be capable of covering large areas to affordably form electronic billboards, smart shelves and so on. They will be lightweight, rugged and mechanically flexible. Often they will be made by rapid, high-volume reel-to-reel processing even forming a part of regular printing processes for graphics. These circuits will be cheap enough to permit electronics where envisaged silicon chips are always or almost always too expensive, where multiple components and needed, and where silicon is impracticle (e.g. not flexible, brittle, thick etc).
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Printed, Flexible and Organic Electronics
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2013
20 Nov 2013

Third Generation Solar Technology: Transforming Buildings into Power Plants with DSC

Dyesol Inc, United States
20 Nov 2013

Printed Electronics, from Prototyping to Volume Production

PragmatIC Printing Limited, United Kingdom
20 Nov 2013

High Efficiency, High Performance Organic Semiconductors for Display and Sensing Applications

EMD Chemicals, United States
20 Nov 2013

Progress with all Printed Flexible OLED Displays

Cambridge Display Technology Ltd, United Kingdom
20 Nov 2013

Wearable and Non-Invasive Patches for the Next Leap in Digital Heath: Multi-Biomarker Access and Sensing

University of Cincinnati, United States
20 Nov 2013

A Novel Highly Conductive Printed Electrode for Large-area OLED Lighting

Konica Minolta Inc, Japan
20 Nov 2013

Solution Processing of Inorganic and Organic Solar Cells

CSIRO, Australia
20 Nov 2013

LEDs and OLEDs Coexist and Excel in Different Applications

Cree Components, United States
20 Nov 2013

OPV, an Industrial Reality

Armor Sustainable Energies (ASE), France
20 Nov 2013

Conducting Polymer Devices for Neural Interfacing

Microelectronics Center of Provence, France
20 Nov 2013

Commercial Printed Electronic Device for Flow Cytometry

GSI Technologies, LLC, United States
20 Nov 2013

The LEC, a Low-Cost Alternative to the OLED

LunaLEC, Sweden
20 Nov 2013

High-Efficiency White OLED with Build-up Light Extraction Substrate Technology (BLES) for Lighting Application

Panasonic, Japan
20 Nov 2013

Printed Electronics Use in Wearable Products

Flextronics/Multek, United States
20 Nov 2013

Research with Printed Metals and PV Materials

IDTechEx, United Kingdom
20 Nov 2013

Carbon Nanotube Based Printed Electronics

NASA, United States
20 Nov 2013

OLED Development at OSRAM: Achievements, Trends and Perspectives

OSRAM Opto Semiconductors GmbH, Germany
20 Nov 2013

End User Forum

End User Forum
20 Nov 2013

Chances of Success for Organic PV in the Dominancy of Crystalline Silicon

TOTAL S.A. - Gas & Power, France
20 Nov 2013

New Developments in OLED Lighting

Acuity Brands Lighting Inc, United States