1995•International Journal of ElectronicsRequires access

Theorem relating a class of op.-amp. and current conveyor circuits

Ahmed M. Soliman

Open publisher page 18 citations

Abstract

The generation of active circuits using the second-generation current conveyor (CCII) as the active building block instead of the operational amplifier can be easily achieved in some cases. A useful theorem which illustrates this conversion method and identifies the class of circuits that can be converted by replacing the op.-amp. by a CCII is given. Applications of the theorem to realize differential voltage amplifiers, first-order transfer functions and the generation of two integrator loop filters using CCII are given.

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What this paper is about

The generation of active circuits using the second-generation current conveyor (CCII) as the active building block instead of the operational amplifier can be easily achieved in some cases. A useful theorem which illustrates this conversion method and identifies the class of circuits that can be converted by replacing the op.-amp. by a CCII is given. Applications of the theorem to realize differential voltage amplifiers, first-order transfer functions and the generation of two integrator loop filters using CCII are given.

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Available abstract

The generation of active circuits using the second-generation current conveyor (CCII) as the active building block instead of the operational amplifier can be easily achieved in some cases. A useful theorem which illustrates this conversion method and identifies the class of circuits that can be converted by replacing the op.-amp. by a CCII is given. Applications of the theorem to realize differential voltage amplifiers, first-order transfer functions and the generation of two integrator loop filters using CCII are given.

Key concepts: Current conveyor, Electronic circuit, Integrator, Operational amplifier, Current-feedback operational amplifier, Amplifier, Operational amplifier applications, Class (philosophy)

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