Publication: Comparative Analysis of Millimeter-Wave Transceivers for 5G Applications
Дата
2022
Авторы
Usachev, N.
Sotskov, D.
Zhidkov, N.
Elesin, V.
Жидков, Никита Михайлович
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© 2022 IEEE.High data rate and low latency are the key parameters of a fifth-generation (5G) mobile network. Millimeter-wave transceiver integrated circuits (IC) are the important building blocks of a remote radio unit that determine the commination distance and consume the significant value of power. Transceiver ICs include beamformer and frequency converter paths. Active phased antenna arrays with a size of up to 256 elements are employed to improve radio channel efficiencies such as data rate and operating range. In this work, a brief review of the 5G beamformer millimeter-wave transceivers ICs implemented in SiGe BiCMOS and CMOS processes is presented. A variety of examples of transceivers IC with a frequency range from 24 to 30 GHz are compared in terms of the Figure of merit (FOM). It's shown that the CMOS transceiver ICs has a maximum FOM of 1.2 ċ 1018Hz/W.
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Comparative Analysis of Millimeter-Wave Transceivers for 5G Applications / Usachev, N. [et al.] // Moscow Workshop on Electronic and Networking Technologies, MWENT 2022 - Proceedings. - 2022. - 10.1109/MWENT55238.2022.9802316