Comparison of design styles for top-gate bottom-contact OTFTs

M. Mashayekhi, S. Ogier, T. Pease, L. Terés, J. Carrabina
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引用次数: 5

Abstract

Process yield, variability and scalability have always been a critical issue for scaling-up circuits in printed electronics. The organic materials and fabrication process as well as physical layout design play a significant role in controlling the performance of Organic Thin Film Transistors (OTFT). In order to design a robust and reliable organic circuit, designers are interested in having stable and predictable OTFTs. In this work, we study the electrical characteristics of OTFTs and digital logic cells for different layout design styles, and provide the statistical analysis of their variability and scalability. Arrays of OTFTs and cells have been designed by using parameterized cells (PCells) and python scripts in order to facilitate design parameters sweep. Very high yield and uniform OTFTs have been fabricated with excellent electrical characteristics. Finally some ring oscillator circuits have been demonstrated as a proof of concept.
顶栅底接触otft设计风格比较
工艺良率、可变性和可扩展性一直是印刷电子放大电路的关键问题。有机薄膜晶体管的材料和制作工艺以及物理布局设计对其性能起着重要的控制作用。为了设计一个鲁棒可靠的有机电路,设计者对具有稳定和可预测的otft感兴趣。在这项工作中,我们研究了不同布局设计风格的otft和数字逻辑单元的电特性,并提供了其可变性和可扩展性的统计分析。为了便于设计参数扫描,使用参数化单元(PCells)和python脚本设计了OTFTs和单元阵列。制备出了具有优异电学特性的产率高、均匀的OTFTs。最后,对一些环形振荡器电路进行了概念验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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