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A low-phase noise injection-locked quadrature voltage-controlled oscillator

机译:低相位噪声注入锁定正交压控振荡器

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This article presents a low-phase noise quadrature voltage-controlled oscillator (QVCO) in which the re-filtering technique of the side-band noise is adopted. In the proposed QVCO, besides using re-filtering technique, the passive elements replaced the noisy and lossy active coupling devices. Therefore, due to the elimination of the associate noise sources of the active coupling devices and re-filtering of side-band noise of the circuit, the proposed QVCO shows an excellent phase-noise and FOM. The proposed QVCO was implemented and simulated in TSMC 0.18 μm RF-CMOS technology. The phase noise of the proposed QVCO at 3 MHz offset frequency from the 3 GHz center frequency is -144 dBc/Hz, for a current consumption of 11.5 mA at a power supply of 1.8-V. Simulation results show the proposed QVCO can operate with power supply as low as 0.6 V. Monte-Carlo analyses for, 3% device mismatch and process variation, result in phase error lower than 0.8°. Generalizing the proposed coupling technique to several core VCOs very low-phase noise multiphase signals can be generated.
机译:本文提出了一种低相位噪声正交压控振荡器(QVCO),其中采用了边带噪声的重新滤波技术。在提出的QVCO中,除了使用重新滤波技术外,无源元件还替代了有噪声和有损耗的有源耦合装置。因此,由于消除了有源耦合器件的相关噪声源,并且对电路的边带噪声进行了重新滤波,因此所提出的QVCO具有出色的相位噪声和FOM。拟议的QVCO在台积电0.18μmRF-CMOS技术中实现和仿真。建议的QVCO在偏离3 GHz中心频率的3 MHz偏移频率处的相位噪声为-144 dBc / Hz,在1.8V电源下的电流消耗为11.5 mA。仿真结果表明,所提出的QVCO可以在低至0.6 V的电源下运行。蒙特卡洛分析得出3%的器件失配和工艺变化,导致相位误差低于0.8°。将提出的耦合技术推广到几个核心VCO,可以生成非常低相位的噪声多相信号。

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