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A Gravure-Printed Organic TFT Technology for Active-Matrix Addressing Applications

机译:适用于有源矩阵寻址应用的凹版印刷有机TFT技术

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In this work is presented a gravure-printed unipolar Organic Thin-Film Transistor (OTFT) technology able to achieve state-of-the-art yield performance. A multilayer cross-linked dielectric is printed to reduce gate-leakage defects, which have been found to be one of the main failure mechanisms in previous printed OTFTs. The defectivity analysis performed at transistor level reveals 99.8% defect-free devices in a sample of 540 OTFTs, manufactured on 6 successive foils. A novel row driver circuit for matrix-addressing applications has been designed and fabricated using the improved technology. The experimental characterization of the proposed 8-stage row drivers reveals a circuit yield as high as 100%, over 15 samples in 5 successive foils, corresponding to a total number of 2085 fully functional OTFTs. The availability of a printed organic technology compatible with mass production is expected to enable innovative Internet of Things (IoT) applications characterized by extremely low production cost.
机译:在这项工作中,提出了一种凹版印刷单极性有机薄膜晶体管(OTFT)技术,该技术能够实现最先进的良率性能。印刷多层交联的电介质以减少栅极漏电缺陷,这已被发现是先前印刷OTFT中的主要失效机理之一。在晶体管级进行的缺陷率分析显示,在6个连续的箔片上制造的540个OTFT样品中,有99.8%的器件无缺陷。使用改进的技术已经设计和制造了一种用于矩阵寻址应用的新型行驱动器电路。所提出的8级行驱动器的实验特性表明,在5个连续箔中的15个样本中,电路成品率高达100%,对应于总数为2085个全功能OTFT。有望实现与批量生产兼容的印刷有机技术,以实现具有极低生产成本的创新物联网(IoT)应用。

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