Paper Title
Electronically tunable First Order Filter Using CCDDCC
Article Identifiers
Authors
Abhinav Yadav , Aaryan Garg , Aalekh Agnihotri
Keywords
ccddcc
Abstract
Electronic filters are circuits that selectively pass or reject specific frequencies from an input signal. They are commonly used in electronic systems to eliminate unwanted noise or extract desired signals. Analog filters use passive components such as resistors, capacitors, and inductors and can be implemented with operational amplifiers (op amps) to provide gain and filter control. However, analog filters have some drawbacks such as frequency drift, limited dynamic range, non-linear behaviour, component variations, size, and complexity. While op amps are versatile, they can introduce noise, have limited bandwidth, high cost, power consumption, and complexity. To address these limitations, active element CCDDCC (current controlled differential difference current conveyer) is used to replace op amps in filter design and implementation. These active filters offer the ability to easily adjust cut-off frequency and filter response with electronic controls. Tunable first-order filters using CCDDCC provide a flexible and effective solution for filtering applications in various electronic systems.
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How To Cite (APA)
Abhinav Yadav, Aaryan Garg, & Aalekh Agnihotri (May-2023). Electronically tunable First Order Filter Using CCDDCC. INTERNATIONAL JOURNAL OF NOVEL RESEARCH AND DEVELOPMENT, 8(5), h315-h320. https://ijnrd.org/papers/IJNRD2305740.pdf
Issue
Volume 8 Issue 5, May-2023
Pages : h315-h320
Other Publication Details
Paper Reg. ID: IJNRD_196944
Published Paper Id: IJNRD2305740
Downloads: 000121978
Research Area: Electronics & Communication Engg.Â
Country: NOIDA, UTTAR PRADESH, India
Published Paper PDF: https://ijnrd.org/papers/IJNRD2305740.pdf
Published Paper URL: https://ijnrd.org/viewpaperforall?paper=IJNRD2305740
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Journal Name: INTERNATIONAL JOURNAL OF NOVEL RESEARCH AND DEVELOPMENT(IJNRD)
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This work is licensed under a Creative Commons Attribution 4.0 International License and The Open Definition


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