In this paper, we propose a new multiplier-and-accumulator (MAC) architecture for low power and high speed arithmetic. High speed and low power MAC units are required for applications of digital signal processing like Fast Fourier Transform, Finite Impulse Response filters, convolution etc. For improving the speed and reducing the dynamic power, there is a need to reduce the glitches (1 to 0 transition) and spikes (0 to 1 transition). Adder designed using spurious power suppression technique (SPST) avoids the unwanted glitches and spikes, thus minimizing the switching power dissipation and hence the dynamic power. Radix -2 modified booth algorithm reduces the number of partial products to half by grouping of bits from the multiplier term, w...
The progress of high-speed, low-power, and regular-layout multipliers is a latest in research. The m...
Abstract- High–speed multiplication has always been a fundamental requirement of high performance pr...
Abstract- The MAC provides high speed multiplication with accumulative addition. In this paper, we s...
In this paper, we proposed a new architecture of multiplier-and-accumulator (MAC) for high-speed ari...
High speed and low power Multiplier and Accumulator (MAC) unit is at most requirement of today’s VLS...
Now a day the multimedia communication and digital signal processing systems are increasing which de...
In this paper, we proposed a new architecture of multiplier-and-accumulator (MAC) for high-speed ari...
In this paper, a low power delay multiplier design is proposed. Aiming to achieve high performance, ...
Abstract—Multiplier is one of the essential element for all digital systems such as digital signal p...
The design of optimized 64 bit multiplier and accumulator (MAC) unit is implemented in this paper. M...
As an important part of the digital signal processor, the speed of the multiplier directly determine...
The radix-4 Booth algorithm is widely used to improve the performance of multiplier because it can r...
This paper presents the performance of Radix-4 Modified Booth Algorithm. Booth algorithm is a multip...
Modern IC Technology focuses on the design of ICs considering more area optimization and low power t...
Abstract—The Booth multiplier has been widely used for high performance signed multiplication by enc...
The progress of high-speed, low-power, and regular-layout multipliers is a latest in research. The m...
Abstract- High–speed multiplication has always been a fundamental requirement of high performance pr...
Abstract- The MAC provides high speed multiplication with accumulative addition. In this paper, we s...
In this paper, we proposed a new architecture of multiplier-and-accumulator (MAC) for high-speed ari...
High speed and low power Multiplier and Accumulator (MAC) unit is at most requirement of today’s VLS...
Now a day the multimedia communication and digital signal processing systems are increasing which de...
In this paper, we proposed a new architecture of multiplier-and-accumulator (MAC) for high-speed ari...
In this paper, a low power delay multiplier design is proposed. Aiming to achieve high performance, ...
Abstract—Multiplier is one of the essential element for all digital systems such as digital signal p...
The design of optimized 64 bit multiplier and accumulator (MAC) unit is implemented in this paper. M...
As an important part of the digital signal processor, the speed of the multiplier directly determine...
The radix-4 Booth algorithm is widely used to improve the performance of multiplier because it can r...
This paper presents the performance of Radix-4 Modified Booth Algorithm. Booth algorithm is a multip...
Modern IC Technology focuses on the design of ICs considering more area optimization and low power t...
Abstract—The Booth multiplier has been widely used for high performance signed multiplication by enc...
The progress of high-speed, low-power, and regular-layout multipliers is a latest in research. The m...
Abstract- High–speed multiplication has always been a fundamental requirement of high performance pr...
Abstract- The MAC provides high speed multiplication with accumulative addition. In this paper, we s...