Shadow filters based on DDCC

This study presents a new realisation of voltage‐mode shadow filters based on low‐voltage low‐power differential difference current conveyor (DDCC). Thanks to the attractive features of the DDCC, including its capability of performing arithmetic operations, the proposed filters offer the advantage o...

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Main Authors: Fabian Khateb, Winai Jaikla, Tomasz Kulej, Montree Kumngern, David Kubánek
Format: Article
Language:English
Published: Hindawi-IET 2017-11-01
Series:IET Circuits, Devices and Systems
Subjects:
Online Access:https://doi.org/10.1049/iet-cds.2016.0522
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author Fabian Khateb
Winai Jaikla
Tomasz Kulej
Montree Kumngern
David Kubánek
author_facet Fabian Khateb
Winai Jaikla
Tomasz Kulej
Montree Kumngern
David Kubánek
author_sort Fabian Khateb
collection DOAJ
description This study presents a new realisation of voltage‐mode shadow filters based on low‐voltage low‐power differential difference current conveyor (DDCC). Thanks to the attractive features of the DDCC, including its capability of performing arithmetic operations, the proposed filters offer the advantage of circuit simplicity, minimum number of active and passive elements, and no need for additional summing circuit, compared to the previous available shadow filter designs. The DDCC was designed and fabricated in Cadence platform using 0.35 μm CMOS AMIS process with supply voltage and power consumption of 1 V and 37 µW, respectively. The presented simulation and experimental results using a real chip validate the functionality of the proposed filters.
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spelling doaj.art-b3bad5af2c0541d29ccf72d48b7feb8a2024-11-02T04:13:37ZengHindawi-IETIET Circuits, Devices and Systems1751-858X1751-85982017-11-0111663163710.1049/iet-cds.2016.0522Shadow filters based on DDCCFabian Khateb0Winai Jaikla1Tomasz Kulej2Montree Kumngern3David Kubánek4Department of MicroelectronicsBrno University of TechnologyTechnická 10BrnoCzech RepublicDepartment of Engineering Education, Faculty of Industrial EducationKing Mongkut's Institute of Technology LadkrabangBangkok10520ThailandDepartment of Electrical EngineeringTechnical University of Częstochowa42‐201CzęstochowaPolandDepartment of Telecommunications Engineering, Faculty of EngineeringKing Mongkut's Institute of Technology LadkrabangBangkok10520ThailandDepartment of TelecommunicationsBrno University of TechnologyTechnická 12BrnoCzech RepublicThis study presents a new realisation of voltage‐mode shadow filters based on low‐voltage low‐power differential difference current conveyor (DDCC). Thanks to the attractive features of the DDCC, including its capability of performing arithmetic operations, the proposed filters offer the advantage of circuit simplicity, minimum number of active and passive elements, and no need for additional summing circuit, compared to the previous available shadow filter designs. The DDCC was designed and fabricated in Cadence platform using 0.35 μm CMOS AMIS process with supply voltage and power consumption of 1 V and 37 µW, respectively. The presented simulation and experimental results using a real chip validate the functionality of the proposed filters.https://doi.org/10.1049/iet-cds.2016.0522DDCCvoltage-mode shadow filter designlow-voltage low-power differential difference current conveyorpassive elementsactive elementsCadence platform
spellingShingle Fabian Khateb
Winai Jaikla
Tomasz Kulej
Montree Kumngern
David Kubánek
Shadow filters based on DDCC
IET Circuits, Devices and Systems
DDCC
voltage-mode shadow filter design
low-voltage low-power differential difference current conveyor
passive elements
active elements
Cadence platform
title Shadow filters based on DDCC
title_full Shadow filters based on DDCC
title_fullStr Shadow filters based on DDCC
title_full_unstemmed Shadow filters based on DDCC
title_short Shadow filters based on DDCC
title_sort shadow filters based on ddcc
topic DDCC
voltage-mode shadow filter design
low-voltage low-power differential difference current conveyor
passive elements
active elements
Cadence platform
url https://doi.org/10.1049/iet-cds.2016.0522
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AT tomaszkulej shadowfiltersbasedonddcc
AT montreekumngern shadowfiltersbasedonddcc
AT davidkubanek shadowfiltersbasedonddcc