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A multi-phase sub-harmonic injection locking technique for bandwidth extension in silicon-based THz signal generation

机译:基于硅的太赫兹信号生成中用于带宽扩展的多相亚谐波注入锁定技术

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This paper presents a multi-phase sub-harmonic injection locking technique to significantly extend the locking range of a multi-phase injection locking oscillator (ILO). Leveraging this technique, a scalable and cascadable “active frequency multiplier” chain architecture is proposed, which achieves THz signal generation from a low mm-wave frequency tone. We also propose a multi-ring topology to facilitate the design and the high-frequency routing. As a proof-of-concept, a cascaded 3-stage 3-phase 2nd-order sub-harmonic ILO chain is implemented in a SiGe BiCMOS process. It achieves 504 GHz signal generation from a 42 GHz tone with a 4.4% frequency tuning range, which is the largest tuning range among all the reported Si-based THz harmonic oscillator sources at the 0.5 THz band.
机译:本文提出了一种多相子谐波注入锁定技术,以大大扩展多相注入锁定振荡器(ILO)的锁定范围。利用这种技术,提出了一种可扩展且可级联的“有源倍频器”链架构,该架构可从低毫米波频率音调实现THz信号生成。我们还提出了一种多环拓扑,以简化设计和高频布线。作为概念验证,在SiGe BiCMOS工艺中实现了级联的3级三相2阶次谐波ILO链。它从42 GHz音调产生504 GHz信号,具有4.4%的频率调谐范围,这是在0.5 THz频段上所有已报道的基于Si的THz谐波振荡器源中最大的调谐范围。

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