集成能量回收逻辑电路的低功耗VLSI高效进位产生技术

K. N. Mishra
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引用次数: 4

摘要

动态功耗是设计各种现代信息系统和计算机的主要问题。低功耗VLSI设计的进步导致了基于电荷恢复的绝热逻辑概念,这被证明是设计各种低功耗CMOS电路的潜在参数。这一领域的研究是由这样一个事实推动的,即电荷不是将负载电容放电到地,而是回流到电源并可以重复使用。考虑到能量恢复逻辑的优点,我们展示了低能量进位中断逻辑,利用基于输入向量中位的进位生成的某些方面。设计已在90nm台积电制程中实现,功耗提高70%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient carry generation technique incorporating energy recovering logic circuitry for low power VLSI
Dynamic power consumption is a major concern for designing various modern age information systems and computers. Advances in low power VLSI design results in charge recovery based adiabatic logic concept, which proves to be a potential parametric to design CMOS circuits for various low power applications. Research in this domain is fueled by the fact that instead of discharging the load capacitance to ground, the charge flows back to power supply and can be reused. Keeping the advantages of energy recovery logic in mind, we demonstrate low energy carry break logic exploiting certain aspects of carry generation based on the bit positions in input vectors. Design has been implemented in 90 nm TSMC process, showing 70% improvement in power.
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