Design of a 20–80 GHz Down-Conversion Mixer for 5G Wireless Communication with 22nm CMOS

Henri Hurskainen, Rehman Akbar, K. Stadius, A. Pärssinen
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引用次数: 2

Abstract

This paper proposes a 20 – 80 GHz RF double-balanced mixer utilizing a hybrid down-conversion scheme. To achieve the down-conversion over the entire range, two mixers are operating in double-down-conversion for fixed IF of 3 GHz and RF is divided into low-band 20–44GHz and high-band 44 – 80GHz. For the low-band, the first mixer is bypassed and the second mixer used for down-conversion. For the high-band, both mixers are used for down-conversion. This results in reducing the LO tuning range by over 50% as compared to a regular sliding IF scheme. The design is evaluated using simulations of the designed mixer in 22nm CMOS technology, achieving a conversion gain of over 5 dB throughout the RF bandwidth, a minimum IIP3 of 4.9 dBm and minimum noise figure of 5.1 dB.
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基于22nm CMOS的5G无线通信20 - 80ghz下变频混频器设计
本文提出了一种采用混合下变频方案的20 - 80 GHz射频双平衡混频器。为了实现整个范围的下变频,两个混频器在3ghz的固定中频下进行双下变频,RF分为低频段20-44GHz和高频段44 - 80GHz。对于低频段,绕过第一混频器,并且第二混频器用于下变频。对于高频段,两个混频器都用于下变频。与常规滑动中频方案相比,这将导致本LO调谐范围减少50%以上。采用22nm CMOS技术对设计的混频器进行仿真评估,在整个RF带宽内实现了超过5db的转换增益,最小IIP3为4.9 dBm,最小噪声系数为5.1 dB。
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Towards 6G: Evolution of Key Performance Indicators and Technology Trends Cellular and Wi-Fi in Unlicensed Spectrum: Competition leading to Convergence Design of a 20–80 GHz Down-Conversion Mixer for 5G Wireless Communication with 22nm CMOS A Measure of Personal Information in Mobile Data Ultra-Reliable Low-Latency Control Signaling in a Factory Environment
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