首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Low-Voltage, Full-Swing Voltage-Controlled Oscillator With Symmetrical Even-Phase Outputs Based on Single-Ended Delay Cells
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Low-Voltage, Full-Swing Voltage-Controlled Oscillator With Symmetrical Even-Phase Outputs Based on Single-Ended Delay Cells

机译:基于单端延迟单元的具有对称偶相输出的低压,全摆幅压控振荡器

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Implementing a symmetrical even-phase ring-type voltage-controlled oscillator (VCO) is difficult when using a full-swing single-ended delay cell; however, the full-swing characteristic of this architecture improves the signal-to-noise ratio. Conventional symmetrical even-phase output VCOs require tail current circuits to implement differential delay stages. Therefore, full-swing requirements make conventional symmetrical even-phase output VCOs impractical. This paper proposes a new CMOS VCO. In addition, it can achieve wide tuning range, full-swing, even-phase outputs, and less supply voltage using the proposed single-ended delay stage. Moreover, its simple topology features multiple output phases and linear frequency-voltage characteristics. The proposed topology was validated in a four-stage VCO operated at 12.6–48 MHz, which yielded −109.38 dBc/Hz phase noise (at 1 MHz). Maximal power consumption approximated 1.2 mW in low-frequency mode and 1.8 mW in high-frequency mode at 1.2 V of the supply voltage in a Taiwan Semiconductor Manufacturing Company 0.18-m RF CMOS process.
机译:当使用全摆幅单端延迟单元时,很难实现对称的偶数相环型压控振荡器(VCO)。但是,这种架构的全摆幅特性改善了信噪比。传统的对称偶数相输出VCO需要尾电流电路来实现差分延迟级。因此,全摆幅要求使常规的对称偶数相输出VCO变得不切实际。本文提出了一种新的CMOS VCO。此外,使用建议的单端延迟级,它可以实现宽调谐范围,全摆幅,偶相输出以及更少的电源电压。此外,其简单的拓扑具有多个输出相位和线性频率-电压特性。拟议的拓扑在工作于12.6–48 MHz的四级VCO中得到了验证,该相位产生了-109.38 dBc / Hz的相位噪声(在1 MHz时)。在台湾半导体制造公司的0.18米RF CMOS工艺中,在电源电压为1.2 V的情况下,低频模式下的最大功耗约为1.2 mW,高频模式下的约为1.8 mW。

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