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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Millimeter-Wave Sources at 60 and 140 GHz by Magnetic-Plasmon-Waveguide-Based In-Phase Coupled Oscillator Network in 65-nm CMOS
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Millimeter-Wave Sources at 60 and 140 GHz by Magnetic-Plasmon-Waveguide-Based In-Phase Coupled Oscillator Network in 65-nm CMOS

机译:65nm CMOS中基于电磁波波导的同相耦合振荡器网络在60和140 GHz处的毫米波源

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摘要

High output power density millimeter-wave (mm-wave) signal sources are demonstrated at 60 and 140 GHz by a magnetic plasmon waveguide (MPW) based in-phase coupled oscillator network (CON) in 65-nm CMOS. Each oscillator unit-cell is designed by an MPW-based low-loss inter-digital zero-phase coupler (ZPC). With multiple in-phase coupled ZPC unit-cells, a high output power mm-wave signal is generated at the center of the CON by an in-phase power combination. A 60-GHz CON-based signal source is implemented with four in-phase CON unit-cells at 60 GHz in a compact core chip area of . It is measured with 2-mW peak differential output power, 2.2% power efficiency, output power density, phase noise at 10-MHz offset, and 15.8% frequency tuning range (FTR) centered at 63.1 GHz. Moreover, a 140-GHz signal source is implemented by the combination of second-order harmonics of four in-phase coupled ZPC unit-cells at 70 GHz in a compact core chip area of . It is measured with 3.5-mW peak output power, 2.4% power efficiency, output power density, phase noise at 25-MHz offset, and 9.7% FTR centered at 133.5 GHz.
机译:通过基于65纳米CMOS的基于磁等离子体激元波导(MPW)的同相耦合振荡器网络(CON),在60 GHz和140 GHz上证明了高输出功率密度毫米波(mm-wave)信号源。每个振荡器单元均由基于MPW的低损耗数字间零相位耦合器(ZPC)设计。对于多个同相耦合的ZPC单位单元,通过同相功率组合在CON的中心生成高输出功率毫米波信号。在60 GHz的紧凑型核心芯片区域内,通过四个60 GHz的同相CON单位单元实现了基于60 GHz CON的信号源。它以2mW峰值差分输出功率,2.2%的功率效率,输出功率密度,10 MHz偏移处的相位噪声和以63.1 GHz为中心的15.8%频率调谐范围(FTR)进行测量。此外,在70 GHz的紧凑型核心芯片区域中,通过四个70 GHz的同相耦合ZPC单位单元的二次谐波的组合实现了140 GHz信号源。它以3.5mW峰值输出功率,2.4%功率效率,输出功率密度,25MHz偏移处的相位噪声和以133.5 GHz为中心的9.7%FTR进行测量。

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