A CMOS Duty-Cycled Coherent RF Front-End IC for IR-UWB Systems

L. Ouvry, G. Masson, F. Hameau, B. Gaillard, B. Caillat
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引用次数: 5

Abstract

Current consumption of an IR-UWB receiver is reduced thanks to duty-cycling techniques applied to the full analog chain, thus benefiting from the impulsive nature of the signal. The coherent architecture performs down conversion by mixing the incoming pulse with a locally generated 2.75ns pulse template and needs only a 1GHz frequency synthesis instead of a power hungry 4 or 8 GHz LO. Duty cycling with sub-ns settling time enables up to 82% current savings for the front-end at a 15.6MHz pulse repetition frequency. To operate in a strong interference environment, an optional 4th order Gm-C filter may be switched on. The receiver for IR-UWB communications and ranging is implemented in CMOS 130nm and measurement results confirm the expectations.
一种用于IR-UWB系统的CMOS占空比相干射频前端IC
由于应用于全模拟链的占空比技术,IR-UWB接收器的电流消耗减少,从而受益于信号的脉冲特性。相干架构通过将输入脉冲与本地生成的2.75ns脉冲模板混合来进行下转换,并且只需要1GHz频率合成,而不是耗电的4或8 GHz LO。在15.6MHz脉冲重复频率下,具有sub-ns稳定时间的占空比可为前端节省高达82%的电流。为了在强干扰环境中工作,可选的4阶Gm-C滤波器可以接通。红外-超宽带通信和测距接收机在CMOS 130nm上实现,测量结果证实了预期。
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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