Thursday, 8 October 2026

A TECHNIQUE FOR DESIGNING HIGH SPEED NOISE IMMUNE CMOS DOMINO HIGH FAN-IN CIRCUITS IN 16nm TECHNOLOGY

 International journal of VLSI design & Communication Systems (VLSICS)


ISSN : 0976 - 1357  (Online); 0976 - 1527(print)


A TECHNIQUE FOR DESIGNING HIGH SPEED NOISE IMMUNE CMOS DOMINO HIGH FAN-IN CIRCUITS IN 16nm TECHNOLOGY


P. Koti Lakshmi1 and Prof. Rameshwar Rao2


ABSTRACT

Dynamic logic circuits provide more compact designs with faster switching speeds and low power consumption compared with the other CMOS design styles. Domino logic overcomes the difficulties in dynamic circuits such as charge sharing and cascading. In this paper we are proposing a wide f
an-in circuit with increased switching speed and noise immunity. Speed is achieved by quickly removing the charge on the dynamic node during evaluation phase, compared to the other circuits. The design also offers less Power Delay Product (PDP). The design is exercised for 20% variation in supply voltage. The design shows a 1.83% improvement in Average Noise Threshold Energy (ANTE). Using the proposed technique an Octal-to-binary encoder is designed and simulated.


KEYWORDS

Low PDP design, High speed OR gate, Octal-binary Encoder, Domino OR gate, Low power design, ANTE. 


Article URL : https://aircconline.com/vlsics/V6N5/6515vlsi05.pdf


For More details visit here : http://airccse.org/journal/vlsi/vlsics.html


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