A Millimeter-Wave CMOS Injection-Locked BPSK Transmitter in 65-nm CMOS

In order to provide gigabit per second wireless communication, various standards have been proposed and implemented in recent years. Since the millimeter-wave (mm-wave) communication enables uncompressed high-speed data transfer with a minimum delay, it is considered to be the most promising technol...

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Main Authors: Jiafu Lin, He Peng, Qichao Yang, Roc Berenguer, Gui Liu
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/10/5/598
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author Jiafu Lin
He Peng
Qichao Yang
Roc Berenguer
Gui Liu
author_facet Jiafu Lin
He Peng
Qichao Yang
Roc Berenguer
Gui Liu
author_sort Jiafu Lin
collection DOAJ
description In order to provide gigabit per second wireless communication, various standards have been proposed and implemented in recent years. Since the millimeter-wave (mm-wave) communication enables uncompressed high-speed data transfer with a minimum delay, it is considered to be the most promising technology to alleviate the pressure of the increasing demand of the spectrum resource. In this paper, a compact and highly efficient mm-wave transmitter is presented. The proposed injection-locked binary phase-shift keying (BPSK) transmitter can deliver a 10.2 dBm output with an efficiency over 10%. The proposed transmitter occupies 0.105 mm<sup>2</sup> chip area in 65 nm CMOS process.
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spelling doaj.art-78b25d511a1246b7aa37b86a155230d62023-12-03T12:32:59ZengMDPI AGElectronics2079-92922021-03-0110559810.3390/electronics10050598A Millimeter-Wave CMOS Injection-Locked BPSK Transmitter in 65-nm CMOSJiafu Lin0He Peng1Qichao Yang2Roc Berenguer3Gui Liu4College of Electrical and Electronic Engineering, Wenzhou University, Wenzhou 310025, ChinaCollege of Electrical and Electronic Engineering, Wenzhou University, Wenzhou 310025, ChinaCollege of Electrical and Electronic Engineering, Wenzhou University, Wenzhou 310025, ChinaDepartment of Electric and Electronics Engineering, School of Engineering, University of Navarra, 31009 Pamplona, SpainCollege of Electrical and Electronic Engineering, Wenzhou University, Wenzhou 310025, ChinaIn order to provide gigabit per second wireless communication, various standards have been proposed and implemented in recent years. Since the millimeter-wave (mm-wave) communication enables uncompressed high-speed data transfer with a minimum delay, it is considered to be the most promising technology to alleviate the pressure of the increasing demand of the spectrum resource. In this paper, a compact and highly efficient mm-wave transmitter is presented. The proposed injection-locked binary phase-shift keying (BPSK) transmitter can deliver a 10.2 dBm output with an efficiency over 10%. The proposed transmitter occupies 0.105 mm<sup>2</sup> chip area in 65 nm CMOS process.https://www.mdpi.com/2079-9292/10/5/598V-bandmillimeter-wavetransmitterinjection-lockedBPSK
spellingShingle Jiafu Lin
He Peng
Qichao Yang
Roc Berenguer
Gui Liu
A Millimeter-Wave CMOS Injection-Locked BPSK Transmitter in 65-nm CMOS
Electronics
V-band
millimeter-wave
transmitter
injection-locked
BPSK
title A Millimeter-Wave CMOS Injection-Locked BPSK Transmitter in 65-nm CMOS
title_full A Millimeter-Wave CMOS Injection-Locked BPSK Transmitter in 65-nm CMOS
title_fullStr A Millimeter-Wave CMOS Injection-Locked BPSK Transmitter in 65-nm CMOS
title_full_unstemmed A Millimeter-Wave CMOS Injection-Locked BPSK Transmitter in 65-nm CMOS
title_short A Millimeter-Wave CMOS Injection-Locked BPSK Transmitter in 65-nm CMOS
title_sort millimeter wave cmos injection locked bpsk transmitter in 65 nm cmos
topic V-band
millimeter-wave
transmitter
injection-locked
BPSK
url https://www.mdpi.com/2079-9292/10/5/598
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