A 148-GHz regenerative sampling oscillator

Hatem Ghaleb, M. El-Shennawy, C. Carta, F. Ellinger
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引用次数: 7

Abstract

This paper presents a regenerative sampling oscillator for the simultaneous regeneration of phase and amplitude, which enables highly efficient QAM schemes in the mm-wave range to reach multi-Gb/s data rates. A nonlinear model is derived to study the phase regeneration and the startup behavior of the oscillator and is simulated in CADENCE. A cross-coupled circuit is fabricated in a 0.13-μm SiGe BiCMOS technology with an oscillation frequency of 147.6 GHz, which is higher than any published regenerative oscillator capable of phase regeneration to date. It achieves a regenerative gain of 36 dB and a free-running output power of −6 dBm with only 48 mW dc power including buffers. This provides a viable solution to the problem of high-frequency gain without compromising the dc power consumption.
一种148ghz再生采样振荡器
本文提出了一种相位和振幅同步再生的再生采样振荡器,使毫米波范围内的高效QAM方案能够达到多gb /s的数据速率。推导了一个非线性模型来研究振荡器的相位再生和启动行为,并在CADENCE中进行了仿真。采用0.13 μm SiGe BiCMOS技术制作了交叉耦合电路,振荡频率为147.6 GHz,比迄今为止发表的任何能够相位再生的再生振荡器都要高。它实现了36 dB的再生增益和- 6 dBm的自由运行输出功率,只有48 mW的直流功率,包括缓冲器。这为不影响直流功耗的高频增益问题提供了可行的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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