Design and Analysis of Digitally Tunable Transconductance Amplifier (DTTA) Using CNTFETs

Carbon nanotube-FETs (CNTFETs) have become a potential challenger because of their exceptional electrical properties and compatibility with conventional CMOS technology. The design and study of digitally tunable transconductance amplifiers (DTTAs) using CNTFETs are the main topics of this work. By u...

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Main Authors: Shailendra Kumar Tripathi, Sarfraz Hussain, Raj Kumar, Sourabh Sahu
Format: Article
Language:English
Published: Wiley 2024-01-01
Series:The Scientific World Journal
Online Access:http://dx.doi.org/10.1155/2024/2003437
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author Shailendra Kumar Tripathi
Sarfraz Hussain
Raj Kumar
Sourabh Sahu
author_facet Shailendra Kumar Tripathi
Sarfraz Hussain
Raj Kumar
Sourabh Sahu
author_sort Shailendra Kumar Tripathi
collection DOAJ
description Carbon nanotube-FETs (CNTFETs) have become a potential challenger because of their exceptional electrical properties and compatibility with conventional CMOS technology. The design and study of digitally tunable transconductance amplifiers (DTTAs) using CNTFETs are the main topics of this work. By utilizing the special characteristics of CNTFETs, the suggested DTTA design makes transconductance tunable, providing a versatile method of adjusting amplifier settings without requiring modifications to the hardware architecture. This study provides a complete description of the CNTFET modeling techniques utilized for realistic circuit simulations, along with a detailed analysis of the DTTA based on CNTFETs. The circuit is implemented using a 32 nm CNTFET model and verified results with HSPICE.
format Article
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institution DOAJ
issn 1537-744X
language English
publishDate 2024-01-01
publisher Wiley
record_format Article
series The Scientific World Journal
spelling doaj-art-821bce3b6f3243bc90d5a556979487212025-08-20T03:06:46ZengWileyThe Scientific World Journal1537-744X2024-01-01202410.1155/2024/2003437Design and Analysis of Digitally Tunable Transconductance Amplifier (DTTA) Using CNTFETsShailendra Kumar Tripathi0Sarfraz Hussain1Raj Kumar2Sourabh Sahu3Department of Physics and Material ScienceSchool of ECEDepartment of ICTDepartment of ECECarbon nanotube-FETs (CNTFETs) have become a potential challenger because of their exceptional electrical properties and compatibility with conventional CMOS technology. The design and study of digitally tunable transconductance amplifiers (DTTAs) using CNTFETs are the main topics of this work. By utilizing the special characteristics of CNTFETs, the suggested DTTA design makes transconductance tunable, providing a versatile method of adjusting amplifier settings without requiring modifications to the hardware architecture. This study provides a complete description of the CNTFET modeling techniques utilized for realistic circuit simulations, along with a detailed analysis of the DTTA based on CNTFETs. The circuit is implemented using a 32 nm CNTFET model and verified results with HSPICE.http://dx.doi.org/10.1155/2024/2003437
spellingShingle Shailendra Kumar Tripathi
Sarfraz Hussain
Raj Kumar
Sourabh Sahu
Design and Analysis of Digitally Tunable Transconductance Amplifier (DTTA) Using CNTFETs
The Scientific World Journal
title Design and Analysis of Digitally Tunable Transconductance Amplifier (DTTA) Using CNTFETs
title_full Design and Analysis of Digitally Tunable Transconductance Amplifier (DTTA) Using CNTFETs
title_fullStr Design and Analysis of Digitally Tunable Transconductance Amplifier (DTTA) Using CNTFETs
title_full_unstemmed Design and Analysis of Digitally Tunable Transconductance Amplifier (DTTA) Using CNTFETs
title_short Design and Analysis of Digitally Tunable Transconductance Amplifier (DTTA) Using CNTFETs
title_sort design and analysis of digitally tunable transconductance amplifier dtta using cntfets
url http://dx.doi.org/10.1155/2024/2003437
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AT sarfrazhussain designandanalysisofdigitallytunabletransconductanceamplifierdttausingcntfets
AT rajkumar designandanalysisofdigitallytunabletransconductanceamplifierdttausingcntfets
AT sourabhsahu designandanalysisofdigitallytunabletransconductanceamplifierdttausingcntfets