Asia and South Pacific Design Automation Conference · 2018 · 11 citations · 31 references
EngineeringAdditive Manufacturing ProcessElectronic DesignPrinted ElectrolytePhysical Design (Electronics)Wafer Scale ProcessingAdvanced Packaging (Semiconductors)NanoelectronicsMechanical FlexibilityPrinted ElectronicsElectronic PackagingDesign Flow ApproachDevice ModelingInkjet PrintersElectrical EngineeringCoherent ModelingComputer EngineeringMicroelectronics3D PrintingMicrofabrication
Printed electronics offers certain technological advantages over its silicon based counterparts, such as mechanical flexibility, low process temperatures, maskless and additive manufacturing process, leading to extremely low cost manufacturing. However, to be exploited in applications such as smart sensors, Internet of Things and wearables, it is essential that the printed devices operate at low supply voltages. Electrolyte gated field effect transistors (EGFETs) using solution-processed inorganic materials which are fully printed using inkjet printers at low temperatures are very promising candidates to provide such solutions. In this paper, we discuss the technology, process, modeling, fabrication, and design aspect of circuits based on EGFETs. We show how the measurements performed in the lab can accurately be modeled in order to be integrated in the design automation tool flow in the form of a Process Design Kit (PDK). We also review some of the remaining challenges in this technology and discuss our future directions to address them.
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Organic Field-Effect Transistors
Gilles Horowitz · Advanced Materials · 1998 · 2.4K citations
Organic Charge-transfer Compound, Operating Mode, Electrical Engineering +15
General observation of n-type field-effect behaviour in organic semiconductors
Lay-Lay Chua, Jana Zaumseil, Jui-Fen Chang et al. · Nature · 2005 · 2.2K citations
Semiconductors, Organic Charge-transfer Compound, Engineering +4
Large-scale complementary integrated circuits based on organic transistors
B. K. Crone, A. Dodabalapur, Y.-Y. Lin et al. · Nature · 2000 · 1.3K citations
Electrolyte‐Gated Transistors for Organic and Printed Electronics
Se Hyun Kim, Kihyon Hong, Wei Xie et al. · Advanced Materials · 2012 · 933 citations