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High performance printed N and P-type OTFTs enabling digital and analog complementary circuits on flexible plastic substrate

机译:高性能印刷N型和P型OTFT,可在柔性塑料基板上实现数字和模拟互补电路

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摘要

This paper presents a printed organic complementary technology on flexible plastic substrate with high performance N and P-type Organic Thin Film Transistors (OTFTs), based on small-molecule organic semiconductors in solution. Challenges related to the integration of both OTFT types in a common complementary flow are addressed, showing the importance of surface treatments. Stability on single devices and on an elementary complementary digital circuit (ring oscillator) is studied, demonstrating that a robust and reliable flow with high electrical performances can be established for printed organic devices. These devices are used to manufacture several analog and digital building blocks. The design is carried out using a model specifically developed for this technology, and taking into account the parametric variability. High-frequency measurements of printed envelope detectors show improved speed performance, resulting from the high mobility of the OTFTs. In addition, a compact dynamic flip-flop and a low-offset comparator are demonstrated, thanks to availability of both n-type and p-type OTFTs in the technology. Measurement results are in good agreement with the simulations. The circuits presented establish a complete library of building blocks for the realization of a printed RFID tag.
机译:本文基于溶液中的小分子有机半导体,提出了一种具有高性能N和P型有机薄膜晶体管(OTFT)的柔性塑料基板上的印刷有机互补技术。解决了与将两种OTFT类型集成到共同的补充流程中有关的挑战,这表明了表面处理的重要性。对单个设备和基本互补数字电路(环形振荡器)上的稳定性进行了研究,证明可以为印刷有机设备建立具有高电性能的稳健而可靠的流程。这些设备用于制造多个模拟和数字构建块。使用专门为此技术开发的模型进行设计,并考虑到参数可变性。由于OTFT的高迁移率,打印的信封检测器的高频测量显示出提高的速度性能。此外,由于该技术中同时提供了n型和p型OTFT,因此展示了紧凑的动态触发器和低偏移比较器。测量结果与仿真结果吻合良好。展示的电路建立了一个完整的构建模块库,用于实现印刷的RFID标签。

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