A low insertion loss, wideband and compact Wilkinson power divider/combiner with lumped components in 65 nm CMOS

ABSTRACT In this article, a new design of a Wilkinson power divider is presented that offers substantially improved amplitude and reduced size characteristics over a broad frequency range compared to a conventional Wilkinson power divider. The improvement in bandwidth is obtained by reducing inducta...

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Veröffentlicht in:Microwave and optical technology letters 2017-01, Vol.59 (1), p.128-131
Hauptverfasser: Oh, Hyun‐Myung, Lee, Eun‐Gyu, Lim, Jeong‐Taek, Lee, Jae‐Eun, Woo Byeon, Chul, Son, JuHo, Ho Lee, Jeong, Kim, Choul‐Young
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container_issue 1
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container_title Microwave and optical technology letters
container_volume 59
creator Oh, Hyun‐Myung
Lee, Eun‐Gyu
Lim, Jeong‐Taek
Lee, Jae‐Eun
Woo Byeon, Chul
Son, JuHo
Ho Lee, Jeong
Kim, Choul‐Young
description ABSTRACT In this article, a new design of a Wilkinson power divider is presented that offers substantially improved amplitude and reduced size characteristics over a broad frequency range compared to a conventional Wilkinson power divider. The improvement in bandwidth is obtained by reducing inductance and number of lumped components in even mode. The analytical design equations for this proposed power divider are obtained using even and odd mode analysis. This power divider with a compact size is fabricated using 65 nm 1P9M CMOS technology. The measurement results show an operation bandwidth 26–40 GHz with 15 dB input, output return loss, and 0.7 dB insertion loss. © 2016 Wiley Periodicals, Inc. Microwave Opt Technol Lett 59:128–131, 2017
doi_str_mv 10.1002/mop.30244
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subjects 65 nm CMOS
Bandwidth
CMOS
Design analysis
Inductance
Insertion loss
lumped components
Mathematical analysis
Microwaves
Power dividers
Wilkinson Power Divider/Combiner
title A low insertion loss, wideband and compact Wilkinson power divider/combiner with lumped components in 65 nm CMOS
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