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ISSCC 2020Session 4 · mm-WAVE WIRELESS FOR COMMUNICATION & RADARWireless

A 39GHz-Band CMOS 16-Channel Phased-Array Transceiver IC with a Companion Dual-Stream IF Transceiver IC for 5G NR Base-Station Applications

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📋 论文概要

本文提出了一款用于5G NR基站的39GHz频段CMOS 16通道相控阵收发器IC及其伴生双流中频收发器IC。该芯片旨在满足毫米波5G通信对高数据速率和低延迟的需求,提供了高性能、低成本的射频解决方案。

💡 主要创新点

重要性
发表年份
ISSCC 2020

🏷 关键词

39GHz5G NR相控阵收发器IC毫米波CMOS

📄 原文摘要

S. Lee, D. Lee, D. Kwon, S. Kim, J. Kim, W. Lee, C. Kim, S. Park, J. Park, B. Suh, J. Jang, M. Kim, D. Minn, I. Park, S. Kim, K. Min, J. Park, S. Jeon, A.-S. Ryu, Y. Cho, S. T. Choi, K. H. An, Y. Kim, J. H. Lee, J. Son, S.-G. Yang Samsung Electronics, Suwon, Korea Increasing demands on high-data-rate and low-latency cellular communications are accelerating the developments of millimeter-wave (mm-wave) systems for 5G NR in 28 and 39GHz bands. In order to provide the 5G communication systems worldwide, high-performance and low-cost RF chipset solutions are required. Recently, 5G mm-wave CMOS/BiCMOS RF phased-array transceivers for the 28GHz band have been reported [1-5]. However, there are very limited reports for the 39GHz band [6], which is one of the main frequency bands in the US, Canada, China and other countries. In this paper, we present both a 39GHz 16channel RF phased-array transceiver IC in 28nm CMOS and a dual-stream IF

👥 作者与机构

H.-C. Park, D. Kang, S. M. Lee, B. Park, K. Kim, J. Lee, Y. Aoki, Y. Yoon,

分类:Wireless · 年份:ISSCC 2020