基于新型低寄生电阻CCII的射频CMOS电流控制振荡器

D. Masmoudi, S. Ben Salem, M. Loulou, L. Kamoun
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引用次数: 19

摘要

本文设计了一种0.35pm CMOS工艺的电流控制振荡器。由于其高度的可控性,我们采用了第二代线性电流输送器作为振荡器的基本模块。因此,我们设计的第一步是改善第二代电流输送机的静态和动态性能。首先研究了在CMOS技术上的跨线性实现。然后,通过提出一种新的结构,大大提高了X端口上的寄生串联电阻。观察到RX降低了近10倍,从而显著改善了所提出的振荡器的频率特性。作为应用实例,提出了一种覆盖[IOOMHz600MHzI]频率范围的电流控制振荡器。采用CMOS 0.35 pm工艺进行Pspice仿真。
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A radio frequency CMOS current controlled oscillator based on a new low parasitic resistance CCII
In this paper we present a design of a current controlled oscillator in 0.35pm CMOS process. Owing to their high degree of controllability, the translinear second generation current conveyer is used as a basic block for our oscillator. Thus, the first step in our design was to improve static and dynamic behaviour of second generation current conveyors. The translinear implementation in CMOS technology was first studied. Then a considerable improvement of the parasitic series resistance on port X is done by proposing a new structure. A reduction of RX by nearly a factor of 10 is observed leading to a notable improvement of the frequency behaviour of the proposed oscillator. As an application example, a current controlled oscillator covering [IOOMHz600MHzI frequency range is proposed. Pspice simulation results are performed using CMOS 0.35 pm process of AMs.
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