Cargando…

A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications

A 24 GHz highly-linear upconversion mixer, based on a duplex transconductance path (DTP), is proposed for automotive short-range radar sensor applications using the 65-nm CMOS process. A mixer with an enhanced transconductance stage consisting of a DTP is presented to improve linearity. The main tra...

Descripción completa

Detalles Bibliográficos
Autores principales: Delwar, Tahesin Samira, Siddique, Abrar, Biswal, Manas Ranjan, Behera, Prangyadarsini, Choi, Yeji, Ryu, Jee-Youl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8781878/
https://www.ncbi.nlm.nih.gov/pubmed/35062561
http://dx.doi.org/10.3390/s22020594
_version_ 1784638186063921152
author Delwar, Tahesin Samira
Siddique, Abrar
Biswal, Manas Ranjan
Behera, Prangyadarsini
Choi, Yeji
Ryu, Jee-Youl
author_facet Delwar, Tahesin Samira
Siddique, Abrar
Biswal, Manas Ranjan
Behera, Prangyadarsini
Choi, Yeji
Ryu, Jee-Youl
author_sort Delwar, Tahesin Samira
collection PubMed
description A 24 GHz highly-linear upconversion mixer, based on a duplex transconductance path (DTP), is proposed for automotive short-range radar sensor applications using the 65-nm CMOS process. A mixer with an enhanced transconductance stage consisting of a DTP is presented to improve linearity. The main transconductance path (MTP) of the DTP includes a common source (CS) amplifier, while the secondary transconductance path (STP) of the DTP is implemented as an improved cross-quad transconductor (ICQT). Two inductors with a bypass capacitor are connected at the common nodes of the transconductance stage and switching stage of the mixer, which acts as a resonator and helps to improve the gain and isolation of the designed mixer. According to the measured results, at 24 GHz the proposed mixer shows that the linearity of output 1-dB compression point (OP(1)dB) is 3.9 dBm. And the input 1-dB compression point (IP(1)dB) is 0.9 dBm. Moreover, a maximum conversion gain (CG) of 2.49 dB and a noise figure (NF) of 3.9 dB is achieved in the designed mixer. When the supply voltage is 1.2 V, the power dissipation of the mixer is 3.24 mW. The mixer chip occupies an area of 0.42 mm [Formula: see text].
format Online
Article
Text
id pubmed-8781878
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87818782022-01-22 A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications Delwar, Tahesin Samira Siddique, Abrar Biswal, Manas Ranjan Behera, Prangyadarsini Choi, Yeji Ryu, Jee-Youl Sensors (Basel) Article A 24 GHz highly-linear upconversion mixer, based on a duplex transconductance path (DTP), is proposed for automotive short-range radar sensor applications using the 65-nm CMOS process. A mixer with an enhanced transconductance stage consisting of a DTP is presented to improve linearity. The main transconductance path (MTP) of the DTP includes a common source (CS) amplifier, while the secondary transconductance path (STP) of the DTP is implemented as an improved cross-quad transconductor (ICQT). Two inductors with a bypass capacitor are connected at the common nodes of the transconductance stage and switching stage of the mixer, which acts as a resonator and helps to improve the gain and isolation of the designed mixer. According to the measured results, at 24 GHz the proposed mixer shows that the linearity of output 1-dB compression point (OP(1)dB) is 3.9 dBm. And the input 1-dB compression point (IP(1)dB) is 0.9 dBm. Moreover, a maximum conversion gain (CG) of 2.49 dB and a noise figure (NF) of 3.9 dB is achieved in the designed mixer. When the supply voltage is 1.2 V, the power dissipation of the mixer is 3.24 mW. The mixer chip occupies an area of 0.42 mm [Formula: see text]. MDPI 2022-01-13 /pmc/articles/PMC8781878/ /pubmed/35062561 http://dx.doi.org/10.3390/s22020594 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Delwar, Tahesin Samira
Siddique, Abrar
Biswal, Manas Ranjan
Behera, Prangyadarsini
Choi, Yeji
Ryu, Jee-Youl
A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications
title A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications
title_full A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications
title_fullStr A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications
title_full_unstemmed A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications
title_short A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications
title_sort 65 nm duplex transconductance path up-conversion mixer for 24 ghz automotive short-range radar sensor applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8781878/
https://www.ncbi.nlm.nih.gov/pubmed/35062561
http://dx.doi.org/10.3390/s22020594
work_keys_str_mv AT delwartahesinsamira a65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT siddiqueabrar a65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT biswalmanasranjan a65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT beheraprangyadarsini a65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT choiyeji a65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT ryujeeyoul a65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT delwartahesinsamira 65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT siddiqueabrar 65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT biswalmanasranjan 65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT beheraprangyadarsini 65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT choiyeji 65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications
AT ryujeeyoul 65nmduplextransconductancepathupconversionmixerfor24ghzautomotiveshortrangeradarsensorapplications