A novel ultra-low phase noise, programmable frequency multiplier-by-30 architecture. Application to 60-GHz frequency generation

C. Jany, A. Siligaris, J. L. Jiménez, C. Bernier, P. Vincent, P. Ferrari
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引用次数: 7

Abstract

This paper presents an original mmW frequency multiplier that provides a 58.32 GHz to 62.64 GHz LO starting from a much lower and fixed frequency of 2.16 GHz. It is composed of a pulsed VCO, which generates equally spaced harmonics in the 60 GHz band, and an injection locked oscillator (ILO) that selects the harmonic of interest. The CMOS 40nm circuit consumes 32 mW and occupies only 0.07 mm2. This novel programmable multiplication technique requires a unique fixed low frequency reference to perform multi-channel mmW LO generation. The phase noise of the output LO signal is only limited by the input low frequency reference phase noise and the frequency ratio between output and input signals. Thus, a 60 GHz signal has been generated with this technique with a record phase noise of -104 dBc/Hz @ 1MHz offset.
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一种新颖的超低相位噪声、可编程倍频器结构。应用于60ghz频率的产生
本文提出了一种原始的毫米波倍频器,它从2.16 GHz的低得多的固定频率开始提供58.32 GHz到62.64 GHz的本LO。它由一个脉冲压控振荡器和一个注入锁定振荡器组成,前者在60 GHz频段产生等间隔的谐波,后者选择感兴趣的谐波。CMOS 40nm电路的功耗为32mw,占地面积仅为0.07 mm2。这种新颖的可编程乘法技术需要一个独特的固定低频基准来产生多通道毫米波本振。输出LO信号的相位噪声仅受输入低频参考相位噪声和输出与输入信号的频率比的限制。因此,用这种技术产生了一个60 GHz的信号,记录相位噪声为-104 dBc/Hz @ 1MHz偏移。
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