A startup circuit for even-stage differential ring oscillators

L. Benvenuti, P. Bruschi, L. Fanucci, A. Maccioni, G. Pasetti, F. Tinfena
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引用次数: 1

Abstract

If not properly initiated, even-stage ring oscillators may resonate in undesirable ways. When this occurs, their output frequency can be higher than expected and they can no longer be employed as VCOs in PLL designs. In this paper, we analyze this issue and then we propose a novel startup circuit that can be used in differential, even-stage ring oscillators. This design is produced using a 0.30 µm CMOS process. Measurements performed on test chips show that our circuit always prevents spurious oscillation modes from arising. On the contrary, if the proper startup is disabled, unwanted modes may occur, especially at low temperatures or with little bias current. Moreover, consisting of just two MOSFETs per oscillator stage, the proposed circuit is also very simple and efficient in terms of area and power dissipation.
一种用于偶级差动环振荡器的启动电路
如果启动不当,偶数级环形振荡器可能以不希望的方式产生共振。当这种情况发生时,它们的输出频率可能高于预期,并且它们不能再用作锁相环设计中的压控振荡器。本文对该问题进行了分析,提出了一种适用于差动、偶级环形振荡器的新型启动电路。本设计采用0.30µm CMOS工艺生产。在测试芯片上进行的测量表明,我们的电路始终可以防止产生杂散振荡模式。相反,如果正确的启动被禁用,可能会出现不想要的模式,特别是在低温或小偏置电流下。此外,每个振荡器级仅由两个mosfet组成,所提出的电路在面积和功耗方面也非常简单和高效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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