Implementation challenges and opportunities in beyond-5G and 6G communication

U Gustavsson, P Frenger, C Fager… - IEEE Journal of …, 2021 - ieeexplore.ieee.org
As 5G New Radio (NR) is being rolled out, research effort is being focused on the evolution
of what is to come in the post-5G era. In order to meet the diverse requirements of future …

An overview of the development of antenna-in-package technology for highly integrated wireless devices

Y Zhang, J Mao - Proceedings of the IEEE, 2019 - ieeexplore.ieee.org
Antenna-in-package (AiP) technology, in which there is an antenna (or antennas) with a
transceiver die (or dies) in a standard surface-mounted device, represents an important …

The role of millimeter-wave technologies in 5G/6G wireless communications

W Hong, ZH Jiang, C Yu, D Hou… - IEEE Journal of …, 2021 - ieeexplore.ieee.org
Ever since the deployment of the first-generation of mobile telecommunications, wireless
communication technology has evolved at a dramatically fast pace over the past four …

A 64-element 28-GHz phased-array transceiver with 52-dBm EIRP and 8–12-Gb/s 5G link at 300 meters without any calibration

K Kibaroglu, M Sayginer, T Phelps… - IEEE Transactions on …, 2018 - ieeexplore.ieee.org
This paper presents a 64-element 28-GHz phasedarray transceiver for 5G communications
based on 2× 2 transmit/receive (TRX) beamformer chips. Sixteen of the 2× 2 TRX chips are …

Glide-symmetric fully metallic luneburg lens for 5G communications at K a-band

O Quevedo-Teruel, J Miao, M Mattsson… - IEEE Antennas and …, 2018 - ieeexplore.ieee.org
Here, we propose a fully metallic implementation of a Luneburg lens operating at Ka-band
with potential use for 5G communications. The lens is implemented with a parallel plate that …

A 39-GHz 64-element phased-array transceiver with built-in phase and amplitude calibrations for large-array 5G NR in 65-nm CMOS

Y Wang, R Wu, J Pang, D You… - IEEE Journal of Solid …, 2020 - ieeexplore.ieee.org
This article presents the first 39-GHz phased-array transceiver (TRX) chipset for fifth-
generation new radio (5G NR). The proposed transceiver chipset consists of 4 sub-array …

A 28-GHz CMOS phased-array transceiver based on LO phase-shifting architecture with gain invariant phase tuning for 5G new radio

J Pang, R Wu, Y Wang, M Dome, H Kato… - IEEE Journal of Solid …, 2019 - ieeexplore.ieee.org
This paper presents a 28-GHz CMOS four-element phased-array transceiver chip for the fifth-
generation mobile network (5G) new radio (NR). The proposed transceiver is based on the …

Electronically steerable antennas for future heterogeneous communication networks: Review and perspectives

T Chaloun, L Boccia, E Arnieri… - IEEE Journal of …, 2022 - ieeexplore.ieee.org
Satellite, fifth generation (5G), and sixth generation (6G) mobile communication systems
operating at micro-and millimeter wave frequencies are an essential pillar in advanced …

A 28-GHz CMOS phased-array beamformer utilizing neutralized bi-directional technique supporting dual-polarized MIMO for 5G NR

J Pang, Z Li, R Kubozoe, X Luo, R Wu… - IEEE Journal of Solid …, 2020 - ieeexplore.ieee.org
This article presents a low-cost and area-efficient 28-GHz CMOS phased-array beamformer
chip for 5G millimeter-wave dual-polarized multiple-in-multiple-out (MIMO)(DP-MIMO) …

A Fully Integrated 384-Element, 16-Tile, -Band Phased Array With Self-Alignment and Self-Test

S Shahramian, MJ Holyoak, A Singh… - IEEE Journal of solid …, 2019 - ieeexplore.ieee.org
This paper describes the design and implementation of a scalable W-band phased-array
system, with built-in self-alignment and self-test, based on an RFIC transceiver chipset …