DESIGN AND IMPLEMENTATION OF CMOS BASED FIR FILTERS

The Finite Impulse Response (FIR) filters are integral components in the digital signal processing system, improving signal quality and reducing unwanted noise levels. Hardware implementation of high-order FIR filters involves intensive arithmetic calculations, which increase chip area, power dissipation, and execution time. Therefore, this work presents a CMOS-based FIR filter implemented in 90 nm technology using Cadence Virtuoso. A Wallace tree multiplier is adopted to accelerate the calculation process, and the structure is compared with existing FIR structures designed using normal array multipliers. The simulation shows that the proposed structure consumes only 27.84 µW of power and offers rapid computation and hardware resource utilization.

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Publication Details

Journal
Degrés
Published
2026-10-05
DOI
https://doi.org/10.5281/zenodo.23154898
Primary Topic
Digital Filter Design and Implementation
Type
article
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article

DESIGN AND IMPLEMENTATION OF CMOS BASED FIR FILTERS

Smt. D. Rohini Polimera Lakshmi Bhanu
Degrés
Digital Filter Design and Implementation
article

DESIGN AND IMPLEMENTATION OF CMOS BASED FIR FILTERS

Smt. D. Rohini Polimera Lakshmi Bhanu
article en

Abstract

The Finite Impulse Response (FIR) filters are integral components in the digital signal processing system, improving signal quality and reducing unwanted noise levels. Hardware implementation of high-order FIR filters involves intensive arithmetic calculations, which increase chip area, power dissipation, and execution time. Therefore, this work presents a CMOS-based FIR filter implemented in 90 nm technology using Cadence Virtuoso. A Wallace tree multiplier is adopted to accelerate the calculation process, and the structure is compared with existing FIR structures designed using normal array multipliers. The simulation shows that the proposed structure consumes only 27.84 µW of power and offers rapid computation and hardware resource utilization.

Degrés
G Pulla Reddy Dental College & Hospital (IN)
Openalex Percentile: Top 10%
Digital Filter Design and Implementation
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