A 0.380-THz frequency quadrupler based on Constructive Wave Oscillator in 130-nm SiGe BiCMOS

Goker Ariyak, Monique Kirkman-Bey, N. Dogan, Zhijian Xie, M. Ketel
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引用次数: 2

Abstract

The first Constructive Wave Oscillator (CWO) based frequency quadrupler has been demonstrated in 130-nm SiGe BiCMOS. Proposed architecture efficiently generates a 0.380 THz signal using a strong fundamental CWO operating at W-band. Eight-section CWO produces 95 GHz signals that are distributed along the ring with 45 degree phases. Frequency quadrupler combines the signals from the CWO, fo, and produces a signal at 4fo. The frequency quadrupler circuit dissipates 76 mW of DC power from 2V supply. The CWO based frequency quadrupler operating at 380 GHz has a −28 dBm output power into 50 ohms load with a phase noise of −85 dBc per Hz at 1 MHz offset.
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基于130-nm SiGe BiCMOS的0.380-THz频率四倍器
第一个基于构造波振荡器(CWO)的四倍频器在130纳米SiGe BiCMOS上得到了验证。所提出的架构利用工作在w波段的强基态CWO有效地产生0.380 THz信号。八段CWO产生95 GHz的信号,这些信号沿环分布,相位为45度。频率四倍器将来自CWO, fo的信号组合,并在4fo产生信号。频率四倍器电路从2V电源中耗散76 mW的直流功率。基于CWO的频率四倍器工作在380 GHz,在50欧姆负载时输出功率为- 28 dBm,在1 MHz偏移时相位噪声为- 85 dBc / Hz。
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