Realization of Electronic OTA Amplifiers with Linear and Tunable Transconductance and its Usages in Continuous - Filters

The aim of this paper is the introduction of a CMOS OTA basic block that its transconductance gain can be electronically and linearly tuned. This transconductance is proportional to the square root of the bias current. To achieve the maximum output voltage and create a wide range of linear transcon...

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Main Authors: Ebrahim Borzabadi, Hamid Reza Taghva, Homayoun Mahdavi-Nasab
Format: Article
Language:English
Published: Najafabad Branch, Islamic Azad University 2012-01-01
Series:Journal of Intelligent Procedures in Electrical Technology
Subjects:
Online Access:http://jipet.iaun.ac.ir/pdf_4420_172aa280afb09291350fa3ccfed2b731.html
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spelling doaj-39c0cd545a344826ac90cc2da4c61e292020-11-24T22:30:01ZengNajafabad Branch, Islamic Azad UniversityJournal of Intelligent Procedures in Electrical Technology2322-38712345-55942012-01-01283946Realization of Electronic OTA Amplifiers with Linear and Tunable Transconductance and its Usages in Continuous - FiltersEbrahim Borzabadi0Hamid Reza Taghva1Homayoun Mahdavi-Nasab2Najafabad Branch, Islamic Azad UniversityResearch Center of Shahed Industrial, Sepah Air ForceNajafabad Branch, Islamic Azad UniversityThe aim of this paper is the introduction of a CMOS OTA basic block that its transconductance gain can be electronically and linearly tuned. This transconductance is proportional to the square root of the bias current. To achieve the maximum output voltage and create a wide range of linear transconductance the CMOS OTA has been used.Then the variation of the transconductance and its effects on the performance of Continuous-time filters has been considered. The novelty of this paper is to show that how the transconductance of a first-Order filter is transformed to high pass and low pass filters and the transfer function of a second-order filter is transformed into high pass, low pass , band pass and band rejection filters. The performance of the proposed circuit is discussed and confirmed through MATLAB and PSPICE-simulation results.http://jipet.iaun.ac.ir/pdf_4420_172aa280afb09291350fa3ccfed2b731.htmlCMOSOTA–active filters
collection DOAJ
language English
format Article
sources DOAJ
author Ebrahim Borzabadi
Hamid Reza Taghva
Homayoun Mahdavi-Nasab
spellingShingle Ebrahim Borzabadi
Hamid Reza Taghva
Homayoun Mahdavi-Nasab
Realization of Electronic OTA Amplifiers with Linear and Tunable Transconductance and its Usages in Continuous - Filters
Journal of Intelligent Procedures in Electrical Technology
CMOS
OTA–active filters
author_facet Ebrahim Borzabadi
Hamid Reza Taghva
Homayoun Mahdavi-Nasab
author_sort Ebrahim Borzabadi
title Realization of Electronic OTA Amplifiers with Linear and Tunable Transconductance and its Usages in Continuous - Filters
title_short Realization of Electronic OTA Amplifiers with Linear and Tunable Transconductance and its Usages in Continuous - Filters
title_full Realization of Electronic OTA Amplifiers with Linear and Tunable Transconductance and its Usages in Continuous - Filters
title_fullStr Realization of Electronic OTA Amplifiers with Linear and Tunable Transconductance and its Usages in Continuous - Filters
title_full_unstemmed Realization of Electronic OTA Amplifiers with Linear and Tunable Transconductance and its Usages in Continuous - Filters
title_sort realization of electronic ota amplifiers with linear and tunable transconductance and its usages in continuous - filters
publisher Najafabad Branch, Islamic Azad University
series Journal of Intelligent Procedures in Electrical Technology
issn 2322-3871
2345-5594
publishDate 2012-01-01
description The aim of this paper is the introduction of a CMOS OTA basic block that its transconductance gain can be electronically and linearly tuned. This transconductance is proportional to the square root of the bias current. To achieve the maximum output voltage and create a wide range of linear transconductance the CMOS OTA has been used.Then the variation of the transconductance and its effects on the performance of Continuous-time filters has been considered. The novelty of this paper is to show that how the transconductance of a first-Order filter is transformed to high pass and low pass filters and the transfer function of a second-order filter is transformed into high pass, low pass , band pass and band rejection filters. The performance of the proposed circuit is discussed and confirmed through MATLAB and PSPICE-simulation results.
topic CMOS
OTA–active filters
url http://jipet.iaun.ac.ir/pdf_4420_172aa280afb09291350fa3ccfed2b731.html
work_keys_str_mv AT ebrahimborzabadi realizationofelectronicotaamplifierswithlinearandtunabletransconductanceanditsusagesincontinuousfilters
AT hamidrezataghva realizationofelectronicotaamplifierswithlinearandtunabletransconductanceanditsusagesincontinuousfilters
AT homayounmahdavinasab realizationofelectronicotaamplifierswithlinearandtunabletransconductanceanditsusagesincontinuousfilters
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