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A novel approach for power reduction in asynchronous circuits by using AFPT

机译:通过步骤使用AFPT的电力降低的新方法

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In this paper, a novel approach for power reduction in asynchronous circuits by using Asynchronous Fine-Grain Power-Gated Technique (AFPT) introduced. An AFPT developed by Improved Efficient Charge Recovery Logic (IECRL), which gives logic function to the next succeeding stage. In the AFPT circuit, IECRL gates attains power from hand shake controller and become active only when executing required calculations. In active mode the leakage currents are reduced by providing high resistance path through the NMOS transistor in pull-up network. In inactive mode IECRL gates are not taken any amount of power, this gives insignificant leakage power dissipation. Its maximum power saving against ECRL is up to 89.35%. In AFPT circuit handshake controller used to provide power to the IECRL gate and which handles the hand shaking with the neighboring stages. In the AFPT circuit PCR mechanism is used to transfer the charge of discharging phase of IECRL gate to evaluate phase of the another IECRL gate, to reduce the energy dissipation. Early discharging of IECRL gate can be achieved by using modified C-element called C?-element.
机译:本文采用异步微晶动力门控技术(AFPT)引入了一种用于异步电路的功率降低的新方法。通过改进的有效充电恢复逻辑(IECRL)开发的AFPT,它为下一个后续阶段提供了逻辑功能。在步骤电路中,IECRL栅极才能从手动抖动控制器获得电源,并且仅在执行所需的计算时变为有效。在主动模式下,通过在上拉网络中提供通过NMOS晶体管的高电阻路径来降低漏电流。在非活动模式下,IECRL盖茨没有任何功率,这使得微不足道的泄漏功耗。其对ECRL的最大省电高达89.35%。在备线电路握手控制器中,用于为IECRL门提供电力,并且用相邻阶段处理手抖动。在余下电路PCR机构中用于将IECRL栅极的放电阶段的电荷转移以评估另一个IECRL栅极的阶段,以降低能量耗散。通过使用称为C -Element的改进的C元素,可以实现IECRL门的早期放电。

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