Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges

This paper presents a fully differential CMOS active inductor with a cascoded current mirror for 2-5 GHz frequency ranges applications. The proposed active inductor is designed using CMOS 0.18-mu m process. The circuit is realized by a fully differential cross-coupled pair of transistors to provide...

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Published in:PROCEEDINGS OF THE 12TH INTERNATIONAL CONFERENCE ON COMMUNICATIONS, CIRCUITS, AND SYSTEMS, ICCCAS 2023
Main Authors: Ali, Hussein Anes AlShaikh; Murad, Sohiful Anuar Zainol; Abu Bakar, Faizah; Hasan, Ahmad Fariz; Karim, Jamilah
Format: Proceedings Paper
Language:English
Published: SPRINGER-VERLAG SINGAPORE PTE LTD 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001315671700013
author Ali
Hussein Anes AlShaikh; Murad
Sohiful Anuar Zainol; Abu Bakar
Faizah; Hasan
Ahmad Fariz; Karim
Jamilah
spellingShingle Ali
Hussein Anes AlShaikh; Murad
Sohiful Anuar Zainol; Abu Bakar
Faizah; Hasan
Ahmad Fariz; Karim
Jamilah
Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges
Engineering; Telecommunications
author_facet Ali
Hussein Anes AlShaikh; Murad
Sohiful Anuar Zainol; Abu Bakar
Faizah; Hasan
Ahmad Fariz; Karim
Jamilah
author_sort Ali
spelling Ali, Hussein Anes AlShaikh; Murad, Sohiful Anuar Zainol; Abu Bakar, Faizah; Hasan, Ahmad Fariz; Karim, Jamilah
Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges
PROCEEDINGS OF THE 12TH INTERNATIONAL CONFERENCE ON COMMUNICATIONS, CIRCUITS, AND SYSTEMS, ICCCAS 2023
English
Proceedings Paper
This paper presents a fully differential CMOS active inductor with a cascoded current mirror for 2-5 GHz frequency ranges applications. The proposed active inductor is designed using CMOS 0.18-mu m process. The circuit is realized by a fully differential cross-coupled pair of transistors to provide negative feedback for high-quality factor (Q). The cascoded current mirror is employed as a biasing circuit for controlling the current source to vary the negative feedback and tuning the Q factor. Meanwhile, the two resistors at the differential structure help to control the frequency ranges. According to the simulation results, the higher Q factor of 12,580 k with an inductance of 11.4 nH is achieved at 3.6 GHz frequency. The frequency range from 2.6 GHz to 4.4 GHz can be obtained by tuning the value of the resistor. Moreover, it is observed that the supply voltage and current source can be varied to tune the Q factor values from 100 to 900 k. It is proved through a performance comparison with previously published research that the suggested active inductor is appropriate for RF in gigahertz frequency range applications.
SPRINGER-VERLAG SINGAPORE PTE LTD
1876-1100
1876-1119
2024
1193

10.1007/978-981-97-2636-3_13
Engineering; Telecommunications

WOS:001315671700013
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001315671700013
title Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges
title_short Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges
title_full Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges
title_fullStr Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges
title_full_unstemmed Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges
title_sort Design of Quality High Factor Fully Differential CMOS Active Inductor with Cascode Current Mirror for 2-5 GHz Frequency Ranges
container_title PROCEEDINGS OF THE 12TH INTERNATIONAL CONFERENCE ON COMMUNICATIONS, CIRCUITS, AND SYSTEMS, ICCCAS 2023
language English
format Proceedings Paper
description This paper presents a fully differential CMOS active inductor with a cascoded current mirror for 2-5 GHz frequency ranges applications. The proposed active inductor is designed using CMOS 0.18-mu m process. The circuit is realized by a fully differential cross-coupled pair of transistors to provide negative feedback for high-quality factor (Q). The cascoded current mirror is employed as a biasing circuit for controlling the current source to vary the negative feedback and tuning the Q factor. Meanwhile, the two resistors at the differential structure help to control the frequency ranges. According to the simulation results, the higher Q factor of 12,580 k with an inductance of 11.4 nH is achieved at 3.6 GHz frequency. The frequency range from 2.6 GHz to 4.4 GHz can be obtained by tuning the value of the resistor. Moreover, it is observed that the supply voltage and current source can be varied to tune the Q factor values from 100 to 900 k. It is proved through a performance comparison with previously published research that the suggested active inductor is appropriate for RF in gigahertz frequency range applications.
publisher SPRINGER-VERLAG SINGAPORE PTE LTD
issn 1876-1100
1876-1119
publishDate 2024
container_volume 1193
container_issue
doi_str_mv 10.1007/978-981-97-2636-3_13
topic Engineering; Telecommunications
topic_facet Engineering; Telecommunications
accesstype
id WOS:001315671700013
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001315671700013
record_format wos
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