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This book proposes new transformation algorithms to transform op-amp circuit into equivalent circuit utilizing other active blocks.The first part proposes a genetic methodology based on genetic algorithm (GA) and symbolic analysis to transform op-amp circuits into Second Generation Current Conveyor (CCII) and Transconductance Amplifier (TA) ones. This methodology is applied on op-amp-Gyrator circuit. It is also applied on KHN and TT circuits.The second part of the book introduce a modified version of differential difference current conveyor transconductance amplifier (DDCCTA) block. This active block is used to realize the TT and KHN circuits.…mehr

Produktbeschreibung
This book proposes new transformation algorithms to transform op-amp circuit into equivalent circuit utilizing other active blocks.The first part proposes a genetic methodology based on genetic algorithm (GA) and symbolic analysis to transform op-amp circuits into Second Generation Current Conveyor (CCII) and Transconductance Amplifier (TA) ones. This methodology is applied on op-amp-Gyrator circuit. It is also applied on KHN and TT circuits.The second part of the book introduce a modified version of differential difference current conveyor transconductance amplifier (DDCCTA) block. This active block is used to realize the TT and KHN circuits.
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Autorenporträt
Nariman A. KhalilAssistant Teacher, Electrical Engineering Department,Fayoum University, Egypt. Ahmed M. Soliman, professor, Cairo University, Egypt.