This article presents two area/latency optimized gate level asynchronous full adder designs which correspond to early output logic. The proposed full adders are constructed using the delay-insensitive dual-rail code and adhere to the four-phase return-to-zero handshaking. For an asynchronous ripple carry adder (RCA) constructed using the proposed early output full adders, the relative-timing assumption becomes necessary and the inherent advantages of the relative-timed RCA are: (1) computation with valid inputs, i.e., forward latency is data-dependent, and (2) computation with spacer inputs involves a bare minimum constant reverse latency of just one full adder delay, thus resulting in the optimal cycle time. With respect to different 32-bi...
New asynchronous adder structures with high performances and low cost have been designed. Previous w...
Addition is a specifically used indispensable computation used for most of the applications includin...
By introducing a mathematical programming technique, we detail the full-custom design of a minimum-d...
This article presents two area/latency optimized gate level asynchronous full adder designs which co...
Asynchronous circuits employing delay-insensitive codes for data representation i.e. encoding and fo...
This paper presents a new early output hybrid input encoded asynchronous full adder designed using d...
Adder is an important datapath unit of a general-purpose microprocessor or a digital signal processo...
This paper presents the designs of asynchronous early output dual-bit full adders without and with r...
Adder is an important datapath unit of a general-purpose microprocessor or a digital signal processo...
Approximate computing is emerging as an alternative to accurate computing due to its potential for r...
Abstract. This article presents a biased implementation style weak-indication self-timed full adder ...
We present a new asynchronous quasi-delay-insensitive (QDI) block carry lookahead adder with redunda...
Abstract: This paper presents a comparative research of low-power and high-speed 4-bit full adder ci...
Addition is a fundamental computer arithmetic operation that is widely performed in microprocessors,...
Ripple-carry adder (RCA) is among the most common type of adder. However, it is not preferred in man...
New asynchronous adder structures with high performances and low cost have been designed. Previous w...
Addition is a specifically used indispensable computation used for most of the applications includin...
By introducing a mathematical programming technique, we detail the full-custom design of a minimum-d...
This article presents two area/latency optimized gate level asynchronous full adder designs which co...
Asynchronous circuits employing delay-insensitive codes for data representation i.e. encoding and fo...
This paper presents a new early output hybrid input encoded asynchronous full adder designed using d...
Adder is an important datapath unit of a general-purpose microprocessor or a digital signal processo...
This paper presents the designs of asynchronous early output dual-bit full adders without and with r...
Adder is an important datapath unit of a general-purpose microprocessor or a digital signal processo...
Approximate computing is emerging as an alternative to accurate computing due to its potential for r...
Abstract. This article presents a biased implementation style weak-indication self-timed full adder ...
We present a new asynchronous quasi-delay-insensitive (QDI) block carry lookahead adder with redunda...
Abstract: This paper presents a comparative research of low-power and high-speed 4-bit full adder ci...
Addition is a fundamental computer arithmetic operation that is widely performed in microprocessors,...
Ripple-carry adder (RCA) is among the most common type of adder. However, it is not preferred in man...
New asynchronous adder structures with high performances and low cost have been designed. Previous w...
Addition is a specifically used indispensable computation used for most of the applications includin...
By introducing a mathematical programming technique, we detail the full-custom design of a minimum-d...