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一种新颖的双频六相信号压控振荡器。

A Novel Dual-Band Six-Phase Voltage-Control Oscillator.

机构信息

Department of Electronic Engineering, National Chin-Yi University of Technology, Taiping, Taichung 41170, Taiwan.

Department of Electronic Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.

出版信息

Sensors (Basel). 2018 Nov 19;18(11):4025. doi: 10.3390/s18114025.

Abstract

The paper presents a novel dual-band six-phase voltage-control oscillator. The voltage-controlled oscillator (VCO) with a single-ended delay cell architecture has a lower power consumption, a smaller chip area, and a larger output swing than one with a differential delay cell architecture. However, the conventional even-phase outputs ring-type VCO cannot be implemented using single-ended delay cells. In other words, the VCO with single-ended delay cells meets most of the requirements of a sensor circuit system, except even-phase outputs function. This work presents a dual-band six-phase ring type VCO, which is implemented using the proposed single-ended delay cell. The proposed VCO both exhibits the advantages of single-ended delay cells and differential delay cells. The proposed delay cell has a band-switching function, which improves the jitter performance of a VCO in which it is used. The proposed VCO can be operated at 890⁻1080 MHz. The peak-to-peak jitter and the root mean square jitter are the 35.5 ps and 2.8 ps (at 1 GHz), respectively. The maximal power consumption is approximately 6.4 mW at a supply voltage of 1.8 V in a United Microelectronics Corporation 0.18 μm RF CMOS process. The area of the chip is 0.195 × 0.208 mm².

摘要

本文提出了一种新颖的双频六相信号压控振荡器。与具有差分延迟单元架构的压控振荡器 (VCO) 相比,采用单端延迟单元架构的 VCO 具有更低的功耗、更小的芯片面积和更大的输出摆幅。然而,传统的偶数相输出环形 VCO 无法采用单端延迟单元来实现。换句话说,除了偶数相输出功能外,采用单端延迟单元的 VCO 满足了传感器电路系统的大多数要求。本工作提出了一种采用所提出的单端延迟单元实现的双频六相信号环形 VCO。所提出的 VCO 同时具有单端延迟单元和差分延迟单元的优点。所提出的延迟单元具有带切换功能,可改善其应用中的 VCO 的抖动性能。所提出的 VCO 可在 890-1080 MHz 频率范围内工作。在 1 GHz 时,峰峰值抖动和均方根抖动分别为 35.5 ps 和 2.8 ps。在联华电子 0.18 μm RF CMOS 工艺中,采用 1.8 V 电源时,最大功耗约为 6.4 mW。芯片面积为 0.195×0.208 mm²。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4c1/6263744/5fae801a3550/sensors-18-04025-g001.jpg

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