A low-noise FBAR-CMOS frequency/phase discriminator for phase noise measurement and cancellation

A. Imani, H. Hashemi
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引用次数: 3

Abstract

A sensitive low-noise frequency/phase discriminator and its applications in phase noise measurement and phase noise cancellation are presented. The discriminator uses a high quality factor thin Film Bulk Acoustic Resonator (FBAR) in a notch filter configuration with common-mode traps to reduce the low-frequency noise up-conversion. The performance of the notch filter, the discriminator transfer function, output noise, and phase noise floor are measured and compared with simulations. A feed-back feed-forward phase noise cancellation scheme is proposed based on the frequency/phase discriminator. Two chips were fabricated in 0.13 μm CMOS technology integrating the discriminator and the phase noise cancellation schemes, respectively. The 1.5 GHz discriminator shows phase noise floor of -128 dBc/Hz at 20 kHz,-142 dBc/Hz at 100 kHz, -162 dBc/Hz at 1 MHz and-166 dBc/Hz at 4 MHz, while consuming 26 mW of power. The measured phase noise of the feedback cancellation circuitry reaches the phase noise floor of the discriminator, verifying the proposed concepts.
一种用于相位噪声测量和消除的低噪声FBAR-CMOS鉴频器
介绍了一种灵敏的低噪声频相鉴别器及其在相位噪声测量和相位噪声消除中的应用。鉴别器采用高质量因数薄膜体声谐振器(FBAR)在陷波滤波器配置与共模陷阱,以减少低频噪声上转换。测量了陷波滤波器、鉴别器传递函数、输出噪声和相位底噪声的性能,并与仿真结果进行了比较。提出了一种基于鉴频/鉴相器的反馈前馈相位噪声消除方案。采用0.13 μm CMOS工艺制作了两个芯片,分别集成了鉴别器和相位噪声消除方案。1.5 GHz鉴频器的相位本底噪声在20 kHz时为-128 dBc/Hz,在100 kHz时为-142 dBc/Hz,在1 MHz时为-162 dBc/Hz,在4 MHz时为166 dBc/Hz,功耗为26 mW。测量的反馈抵消电路的相位噪声达到鉴别器的相位噪声底,验证了所提出的概念。
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