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Three Steps to the Thermal Noise Death of Moore's Law

机译:摩尔定律导致热噪声死亡的三个步骤

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The purpose of this paper is to estimate the limits imposed on the computations made by logic gates fabricated in CMOS technology. It is assumed that the most rigorous constraints on computations originate from the thermodynamically irreversible processes that the computations consist of. In this paper, a model of CMOS logic gate is given based on the additive white Gaussian noise (AWGN) channel. It is found that the ultimate limit on energy spent to process one bit of data estimated by the proposed model of a CMOS logic gate is equal to the famous Landauer limit. This limiting energy cannot be obtained without sophisticated coding of the processed data. If one wants to avoid the processing of coded data, then much more energy has to be used to process one bit. In this paper, three limiting energies were estimated based on the proposed model of a logic gate. The limiting energies found in this study can be used, with Moore's law, to predict time after which development of CMOS technology is not possible.
机译:本文的目的是估计由CMOS技术制造的逻辑门所施加的计算所受到的限制。假定对计算最严格的约束源自计算所组成的热力学不可逆过程。本文基于加性高斯白噪声(AWGN)通道,给出了CMOS逻辑门模型。已发现,由所提出的CMOS逻辑门模型估算的处理一位数据所消耗的能量的最终极限等于著名的Landauer极限。如果不对处理的数据进行复杂的编码,就无法获得这种限制的能量。如果要避免处理编码数据,则必须使用更多的能量来处理一位。在本文中,基于提出的逻辑门模型估算了三个极限能量。这项研究中发现的极限能量可以根据摩尔定律用于预测无法开发CMOS技术的时间。

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