Digital RF architectures for wireless transceivers (invited)

R. Staszewski
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引用次数: 3

Abstract

One of the most important developments in the wireless industry within the last decade was the digitization of RF circuitry. This was in response to the incredible advancements of the mainstream CMOS technology in both processing speed and circuit density, as well as the relentless push to reduce total solution costs through integration of RF, analog and digital circuitry. Since the digital baseband part of a wireless communication channel has been traditionally implemented in the most advanced CMOS technology available at a given time for mass production, the need for single-chip CMOS integration has forced permanent changes to the way RF circuits are fundamentally designed. In this low-voltage nanometer-scale CMOS environment, the high-performance RF circuits must exploit the time-domain design paradigm and heavily rely on digital assistance. This paper revisits the digitization journey of RF circuits.
无线收发器的数字射频架构(特邀)
在过去十年中,无线行业最重要的发展之一是射频电路的数字化。这是为了响应主流CMOS技术在处理速度和电路密度方面的惊人进步,以及通过RF,模拟和数字电路集成来降低总解决方案成本的不懈努力。由于无线通信信道的数字基带部分传统上是用最先进的CMOS技术实现的,因此对单芯片CMOS集成的需求迫使射频电路的基本设计方式发生了永久性的变化。在这种低电压纳米级CMOS环境下,高性能射频电路必须利用时域设计范式,并严重依赖数字辅助。本文回顾了射频电路的数字化历程。
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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