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Design and Analysis of CMOS-Based Terahertz Integrated Circuits by Causal Fractional-Order RLGC Transmission Line Model

机译:基于因果分数阶RLGC传输线模型的基于CMOS的太赫兹集成电路的设计和分析

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摘要

A causal and compact fractional-order model is developed for complementary metal–oxide–semiconductor (CMOS) on-chip transmission line (T-line) at Terahertz (THz) frequencies. With consideration of the loss from frequency-dependent dispersion and nonquasi-static effects at THz, good agreement of characteristic impedance is observed between the proposed fractional-order model and the measurement up to 110 GHz, while traditional integer-order model can only match up to 10 GHz. The developed fractional-order model is further deployed in the design and analysis of CMOS-based THz integrated circuits that utilize T-line, such as standing-wave oscillator, which has significantly improved accuracy with causality.
机译:针对太赫兹(THz)频率的互补金属氧化物半导体(CMOS)片上传输线(T-line)开发了因果关系紧凑的分数阶模型。考虑到由于频率相关的色散和在THz处的非准静态效应造成的损耗,建议的分数阶模型与高达110 GHz的测量结果之间的特性阻抗具有良好的一致性,而传统的整数阶模型只能匹配至10 GHz。所开发的分数阶模型被进一步部署到利用T线的基于CMOS的THz集成电路的设计和分析中,例如驻波振荡器,其因果关系大大提高了精度。

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