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A novel versatile CMOS operational floating current conveyor amplifier

Nowadays, current mode devices are used as active elements at the circuits that work at high frequencies. A novel integrated CMOS based the operational floating current conveyor (OFCC) is proposed. OFCC is a five port general purpose analog building block which combines all the features of different...

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Main Author: Edward, Nermine Maher
Format: Thesis
Published: AUC Knowledge Fountain 2016
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access_status_str Open Access
author Edward, Nermine Maher
author_browse Edward, Nermine Maher
author_facet Edward, Nermine Maher
author_sort Edward, Nermine Maher
collection Thesis
dc_rights_str_mv The author retains all rights with regard to copyright. The author certifies that written permission from the owner(s) of third-party copyrighted matter included in the thesis, dissertation, paper, or record of study has been obtained. The author further certifies that IRB approval has been obtained for this thesis, or that IRB approval is not necessary for this thesis. Insofar as this thesis, dissertation, paper, or record of study is an educational record as defined in the Family Educational Rights and Privacy Act (FERPA) (20 USC 1232g), the author has granted consent to disclosure of it to anyone who requests a copy.
description Nowadays, current mode devices are used as active elements at the circuits that work at high frequencies. A novel integrated CMOS based the operational floating current conveyor (OFCC) is proposed. OFCC is a five port general purpose analog building block which combines all the features of different current mode devices such as the second generation current conveyor (CCII), the current feedback operational amplifier (CFA), and the operational floating conveyor (OFC). The OFFC is modeled and simulated using UMC 130nm technology kit in Cadence and the supply voltage of the proposed OFCC is 1.2V. Non-inverting voltage amplifier, current mode instrumentation amplifier (CMIA), universal filter and electrocardiogram read out circuit (ECG) are the applications based on OFCC that are designed to check the circuit’s validity. ECG is used in diagnosing heart diseases. It is designed as integration between current-mode instrumentation amplifiers (CMIA) and low pass filter (LPF). Normal heart behavior can be identified simply by normal ECG that consists of signal while heart disorder can be recognized by having differences in the features of their corresponding ECG waveform. The main advantage of the proposed OFCC that it provides a wide bandwidth compared to other work. In addition, the applications based on OFCC shows good results compared to others.
format Thesis
id oai:fount.aucegypt.edu:etds-1558
institution American University in Cairo (Egypt)
last_indexed 2026-06-10T12:35:42.290Z
license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from AUC Knowledge Fountain — bepress
publishDate 2016
publishDateRange 2016
publishDateSort 2016
publisher AUC Knowledge Fountain
publisherStr AUC Knowledge Fountain
record_format dspace
source_str AUC Knowledge Fountain — bepress
spelling oai:fount.aucegypt.edu:etds-1558 A novel versatile CMOS operational floating current conveyor amplifier Edward, Nermine Maher Nowadays, current mode devices are used as active elements at the circuits that work at high frequencies. A novel integrated CMOS based the operational floating current conveyor (OFCC) is proposed. OFCC is a five port general purpose analog building block which combines all the features of different current mode devices such as the second generation current conveyor (CCII), the current feedback operational amplifier (CFA), and the operational floating conveyor (OFC). The OFFC is modeled and simulated using UMC 130nm technology kit in Cadence and the supply voltage of the proposed OFCC is 1.2V. Non-inverting voltage amplifier, current mode instrumentation amplifier (CMIA), universal filter and electrocardiogram read out circuit (ECG) are the applications based on OFCC that are designed to check the circuit’s validity. ECG is used in diagnosing heart diseases. It is designed as integration between current-mode instrumentation amplifiers (CMIA) and low pass filter (LPF). Normal heart behavior can be identified simply by normal ECG that consists of signal while heart disorder can be recognized by having differences in the features of their corresponding ECG waveform. The main advantage of the proposed OFCC that it provides a wide bandwidth compared to other work. In addition, the applications based on OFCC shows good results compared to others. 2016-06-01T07:00:00Z thesis text/html https://fount.aucegypt.edu/etds/559 https://fount.aucegypt.edu/context/etds/article/1558/type/native/viewcontent/4658.html The author retains all rights with regard to copyright. The author certifies that written permission from the owner(s) of third-party copyrighted matter included in the thesis, dissertation, paper, or record of study has been obtained. The author further certifies that IRB approval has been obtained for this thesis, or that IRB approval is not necessary for this thesis. Insofar as this thesis, dissertation, paper, or record of study is an educational record as defined in the Family Educational Rights and Privacy Act (FERPA) (20 USC 1232g), the author has granted consent to disclosure of it to anyone who requests a copy. Theses and Dissertations AUC Knowledge Fountain integrated operational floating current conveyor
spellingShingle integrated
operational floating current conveyor
Edward, Nermine Maher
A novel versatile CMOS operational floating current conveyor amplifier
title A novel versatile CMOS operational floating current conveyor amplifier
title_full A novel versatile CMOS operational floating current conveyor amplifier
title_fullStr A novel versatile CMOS operational floating current conveyor amplifier
title_full_unstemmed A novel versatile CMOS operational floating current conveyor amplifier
title_short A novel versatile CMOS operational floating current conveyor amplifier
title_sort novel versatile cmos operational floating current conveyor amplifier
topic integrated
operational floating current conveyor
url https://fount.aucegypt.edu/etds/559
https://fount.aucegypt.edu/context/etds/article/1558/type/native/viewcontent/4658.html
work_keys_str_mv AT edwardnerminemaher anovelversatilecmosoperationalfloatingcurrentconveyoramplifier
AT edwardnerminemaher novelversatilecmosoperationalfloatingcurrentconveyoramplifier