基于CMOS逆变器的无电感数字控制振荡器的设计与实现

I. Ghorbel, F. Haddad, H. Barthélemy, W. Rahajandraibe, M. Loulou, H. Mnif
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引用次数: 2

摘要

本文介绍了一种适用于多标准射频工作的数字控制振荡器(DCO)的结构。该振荡器采用基于CMOS可控逆变器的有源电感的LC拓扑结构。通过改变应用于逆变器控制电压的数字字来保证振荡器频率的可调性。通过改变数字四逆变器的顺序,振荡器可以覆盖1.23 GHz到2.46 GHz的不同频段。在1.1 V供电电压下,功耗小于4.4 mW。在130 nm CMOS工艺中,芯片面积为(54 × 59) μm2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and implementation of an inductorless digitally controlled oscillator based on CMOS inverters
This paper presents the architecture of a digitally controlled oscillator (DCO) suitable for multi-standard radio frequency (RF) operation. The presented oscillator has an LC topology using an active inductor based on CMOS controllable inverters. The tunability of the oscillator frequency is ensured by varying the digital word applied to the inverters control voltages. The oscillator can cover different frequency bands from 1.23 GHz to 2.46 GHz by varying digitally four inverters sequence. It consumes less than 4.4 mW under 1.1 V supply voltage. It occupies a chip area of (54 × 59) μm2 in 130 nm CMOS technology.
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