Process Design Kit and Design Automation for Flexible Hybrid Electronics

2019 International Symposium on VLSI Design, Automation and Test (VLSI-DAT)(2019)

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摘要
High-performance low-cost flexible hybrid electronics (FHE) are desirable for applications such as internet of things (IoT) and wearable electronics. Carbon-nanotube (CNT) thin-film transistor (TFT) is a promising candidate for high-performance FHE, because of its high carrier mobility, superior mechanical flexibility, and material compatibility with low-cost printing and solution-processes. Flexible sensors and peripheral CNT-TFT circuits, such as decoders, drivers and sense amplifiers, can be printed and hybrid-integrated with thinned (<;50μm) silicon chips on soft, thin, and flexible substrates for a wide range of applications from flexible displays to wearable medical devices. Here we report: 1) process design kit (PDK) to enable FHE design automation for large-scale FHE circuits, and 2) solution-process proven intellectual property (IP) blocks for TFT circuits design, including Pseudo-CMOS [1] flexible digital logic and analog amplifiers shown in Figure 1.
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关键词
FHE design automation,large-scale FHE circuits,TFT circuits design,flexible digital logic,analog amplifiers,process design kit,high-performance low-cost flexible hybrid electronics,wearable electronics,carbon-nanotube thin-film transistor,high-performance FHE,low-cost printing,flexible sensors,peripheral CNT-TFT circuits,thinned silicon chips,soft substrates,flexible substrates,flexible displays,wearable medical devices,mechanical flexibility,thin substrates,Internet of Things,carrier mobility,solution-process proven intellectual property blocks,silicon chips,pseudoCMOS,Si,C
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