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From silicon to printed electronics: A coherent modeling and design flow approach based on printed electrolyte gated FETs

机译:从硅片到印刷电子产品:一种基于印刷电解质门控FET的相干建模与设计流动方法

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摘要

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.
机译:印刷电子产品提供了通过基于硅的对应物的某些技术优势,例如机械灵活性,低处理温度,无掩模和添加剂制造过程,导致极低的成本制造。但是,要在智能传感器,物联网和可穿戴物等应用中进行开发,因此印刷设备必须在低电源电压下操作。电解质门控场效应晶体管(EGFET)使用在低温下使用喷墨打印机完全印刷的溶液加工的无机材料是非常有前途的候选者,以提供这种解决方案。在本文中,我们讨论了基于EGFET的电路的技术,过程,建模,制造和设计方面。我们展示了如何准确地建模实验室中进行的测量值,以便以过程设计套件(PDK)的形式集成在设计自动化刀具流中。我们还审查了这项技术中的一些留下挑战,并讨论了我们未来的方向来解决这些问题。

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