栅极扩散输入技术-应用和修改:综述

Anuja Askhedkar, G. Agrawal
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引用次数: 0

摘要

本文主要研究用于实现数字逻辑电路的门扩散输入(GDI)技术。详细讨论了基本GDI技术的局限性和改进之处。最初,GDI是一种用于低功耗数字组合电路设计的新技术。该方法降低了数字电路的功耗、传播延迟和面积,同时逻辑设计复杂性小。GDI方法允许实现范围广泛的复杂逻辑功能,仅使用两个晶体管。GDI是一种新的数字电路实现技术,与现有技术相比具有许多优点。本文还分析了GDI技术的最新应用,即用于Sigma Delta dac的mash1 -1和mod2调制器的实现以及用于高效算术运算的全加法器的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gate Diffusion Input Technique-Applications and Modifications: An Overview
This paper primarily focuses on Gate Diffusion Input (GDI) technique used for the implementation of digital logic circuits. It also discusses in detail the limitations and modifications of the basic GDI technique. Initially, GDI was a new technique used for low power digital combinational circuit design. This approach provides a reduction in power consumption, propagation delay, and area of digital circuits while the logic design complexity is small. GDI methodology allows implementation of a wide range of complex logic functions using only two transistors. GDI is a new technique for digital circuits implementation with a lot of advantages over existing ones. This paper also analyzes the recent applications of GDI technique which are the implementation of MASH 1-1 and MOD 2 modulator for Sigma Delta DACs and development of full adders for efficient arithmetic operations.
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