Design of novel hybrid - digitally controlled oscillator for ADPLL

Mohd Ziauddin Jahangir , Paidimarry Chandra Sekhar
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Abstract

Digitally Controlled Oscillators (DCOs) are an integral part of All Digital Phase Locked Loops (ADPLLs). It is used to generate output frequency corresponding to the applied digital input. But, due to practical limitations in circuit design, DCOs resolution will be highly limited. Delta Sigma Modulator (DSM) is generally used in DCOs/ADPLLs to obtain a greater resolution. However, using DSM will lead to introduction of frequency spurs in the output spectrum. In this work we propose an alternate method to increase the frequency resolution of DCO without introducing frequency spurs. Novel Hybrid DCO architecture is proposed in this work to increase the resolution. Hybrid DCO proposed in this work has both digital and analog control for tuning frequency. Digital control input of the proposed DCO provides coarse frequency control and the analog control input provides fine frequency control. It has been demonstrated in this work that by integrating Hybrid DCO and DSM with an analog low pass filter (LPF), resolution can be greatly increased, without introducing spurs in the spectrum. As a proof of concept, two Hybrid Digitally controlled Ring Oscillators (DCROs) are designed in 90 nm CMOS process, and their period Jitter performance is compared.

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一种用于ADPLL的新型混合数字控制振荡器的设计
数字控制振荡器(DCO)是全数字锁相环(ADPLL)的组成部分。它用于生成与所施加的数字输入相对应的输出频率。但是,由于电路设计中的实际限制,DCO的分辨率将受到高度限制。德尔塔-西格玛调制器(DSM)通常用于DCO/ADPLL以获得更高的分辨率。然而,使用DSM将导致在输出频谱中引入频率杂散。在这项工作中,我们提出了一种在不引入频率杂散的情况下提高DCO频率分辨率的替代方法。为了提高分辨率,本文提出了一种新的混合DCO结构。本工作中提出的混合DCO具有数字和模拟两种频率调谐控制。所提出的DCO的数字控制输入提供粗略频率控制,而模拟控制输入提供精细频率控制。这项工作已经证明,通过将混合DCO和DSM与模拟低通滤波器(LPF)集成,可以大大提高分辨率,而不会在频谱中引入杂散。作为概念验证,在90nm CMOS工艺中设计了两个混合数字控制环形振荡器,并比较了它们的周期抖动性能。
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