首页> 外文期刊>IEEE Journal of Solid-State Circuits >Analysis and Design of a 2.9-mW 53.4–79.4-GHz Frequency-Tracking Injection-Locked Frequency Divider in 65-nm CMOS
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Analysis and Design of a 2.9-mW 53.4–79.4-GHz Frequency-Tracking Injection-Locked Frequency Divider in 65-nm CMOS

机译:在65nm CMOS中的2.9mW 53.4–79.4-GHz频率跟踪注入锁定分频器的分析和设计

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摘要

A frequency-tracking technique is proposed to enhance the locking range of millimeter-wave (mmW) injection-locked frequency dividers (ILFDs). An improved model is introduced for direct-injection ILFDs, based on which both the phase and gain conditions are analyzed and discussed. Moreover, a method of admittance locus is applied to obtain the design intuition for optimization and to predict the locking range accurately. Finally, with the proposed model and design methodology, a frequency-tracking ILFD is designed and fabricated in a 65-nm CMOS process, which measures a locking range of 39.2% from 53.4 to 79.4 GHz while consuming 2.9 mW from an 0.8-V power supply, which corresponds to an FoM of 8.97 GHz/mW.
机译:提出了一种频率跟踪技术来增强毫米波(mmW)注入锁定分频器(ILFD)的锁定范围。介绍了一种用于直接注入ILFD的改进模型,在此基础上分析并讨论了相位和增益条件。此外,采用导纳轨迹的方法来获得设计直觉以进行优化并准确地预测锁定范围。最后,利用提出的模型和设计方法,采用65 nm CMOS工艺设计和制造了频率跟踪ILFD,该器件在53.4 GHz至79.4 GHz范围内可测量39.2%的锁定范围,而从0.8V电源消耗2.9mW电源,对应的FoM为8.97 GHz / mW。

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