2014•Unpublished venueRequires access

A novel fully differential current mode universal filter

Alok Kumar Singh, Pragati Kumar

Open publisher page 15 citations

Abstract

In this communication, one of the recently proposed active building block namely Current Differencing Current Conveyor (CDCC) has been used to design a current mode universal filters in fully differential form. The proposed universal filter has the property of independently tuneable gain, bandwidth and pole frequency. Workability of the proposed circuit has been verified using PSPICE simulation based CMOS CDCC implemented in 0.35micron CMOS technology.

About this research paper

What this paper is about

In this communication, one of the recently proposed active building block namely Current Differencing Current Conveyor (CDCC) has been used to design a current mode universal filters in fully differential form. The proposed universal filter has the property of independently tuneable gain, bandwidth and pole frequency. Workability of the proposed circuit has been verified using PSPICE simulation based CMOS CDCC implemented in 0.35micron CMOS technology.

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OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this communication, one of the recently proposed active building block namely Current Differencing Current Conveyor (CDCC) has been used to design a current mode universal filters in fully differential form. The proposed universal filter has the property of independently tuneable gain, bandwidth and pole frequency. Workability of the proposed circuit has been verified using PSPICE simulation based CMOS CDCC implemented in 0.35micron CMOS technology.

Key concepts: Current conveyor, CMOS, Computer science, Electronic engineering, Bandwidth (computing), Filter (signal processing), Current (fluid), Differential (mechanical device)

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