In this paper, a design methodology to implement low-power and high-speed 2nd order recursive digital Infinite Impulse Response (IIR) filter has been proposed. Since IIR filters suffer from a large number of constant multiplications, the proposed method replaces the constant multiplications by using addition/subtraction and shift operations. The proposed new 6T adder cell is used as the Carry-Save Adder (CSA) to implement addition/subtraction operations in the design of recursive section IIR filter to reduce the propagation delay. Furthermore, high-level algorithms designed for the optimization of the number of CSA blocks are used to reduce the complexity of the IIR filter. The DSCH3 tool is used to generate the schematic of the proposed 6T...
In order to transform and analyse signals that have been sampled from analogue sources, digital sign...
[[abstract]]The authors present an algorithmic and architectural extension to an existing CAD tool t...
In this work, we optimally solve the problem of multiplierless design of second-order Infinite Impul...
In this paper, a design methodology to implement low-power and high-speed 2nd order recursive digita...
Infinite impulse response IIR filter designs mainly aims on either low area cost or high speed or re...
Active filters today represent the crucial element in electronic devices, especially the ones that t...
This paper determines coefficients of infinite-impulse response (IIR) using Simulated Annealing (SA)...
Low Multipliers and Adders are used to reduce dynamic power consumption of a Digital Finite Impulse ...
The implementation of recursive infinite impulse response (IIR) digital filters suffers from two pro...
In Digital Signal Processing (DSP) , there two types of filters are used to perform the filtering op...
International audienceIn this work we optimally solve the problem of multiplierless design of second...
In this work we optimally solve the problem of multiplierless design of second-order Infinite Impuls...
The implementation of recursive infinite impulse response (IIR) digital filters suffers from two pro...
This Paper describes a simple computer-aided design approach for designing Infinite impulse response...
In order to transform and analyse signals that have been sampled from analogue sources, digital sign...
In order to transform and analyse signals that have been sampled from analogue sources, digital sign...
[[abstract]]The authors present an algorithmic and architectural extension to an existing CAD tool t...
In this work, we optimally solve the problem of multiplierless design of second-order Infinite Impul...
In this paper, a design methodology to implement low-power and high-speed 2nd order recursive digita...
Infinite impulse response IIR filter designs mainly aims on either low area cost or high speed or re...
Active filters today represent the crucial element in electronic devices, especially the ones that t...
This paper determines coefficients of infinite-impulse response (IIR) using Simulated Annealing (SA)...
Low Multipliers and Adders are used to reduce dynamic power consumption of a Digital Finite Impulse ...
The implementation of recursive infinite impulse response (IIR) digital filters suffers from two pro...
In Digital Signal Processing (DSP) , there two types of filters are used to perform the filtering op...
International audienceIn this work we optimally solve the problem of multiplierless design of second...
In this work we optimally solve the problem of multiplierless design of second-order Infinite Impuls...
The implementation of recursive infinite impulse response (IIR) digital filters suffers from two pro...
This Paper describes a simple computer-aided design approach for designing Infinite impulse response...
In order to transform and analyse signals that have been sampled from analogue sources, digital sign...
In order to transform and analyse signals that have been sampled from analogue sources, digital sign...
[[abstract]]The authors present an algorithmic and architectural extension to an existing CAD tool t...
In this work, we optimally solve the problem of multiplierless design of second-order Infinite Impul...