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首页> 外文期刊>IEICE Transactions on fundamentals of electronics, communications & computer sciences >Write Control Method for Nonvolatile Flip-Flops Based on State Transition Analysis
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Write Control Method for Nonvolatile Flip-Flops Based on State Transition Analysis

机译:基于状态转移分析的非易失性触发器写控制方法

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Nonvolatile flip-flop enables leakage power reduction in logic circuits and quick return from standby mode. However, it has limited write endurance, and its power consumption for writing is larger than that of conventional D flip-flop (DFF). For this reason, it is important to reduce the number of write operations. The write operations can be reduced by stopping the clock signal to synchronous flip-flops because write operations are executed only when the clock is applied to the flip-flops. In such clock gating, a method using Exclusive OR (XOR) of the current value and the new value as the control signal is well known. The XOR based method is effective, but there are several cases where the write operations can be reduced even if the current value and the new value are different. The paper proposes a method to detect such unnecessary write operations based on state transition analysis, and proposes a write control method to save power consumption of nonvolatile flip-flops. In the method, redundant bits are detected to reduce the number of write operations. If the next state and the outputs do not depend on some current bit, the bit is redundant and not necessary to write. The method is based on Binary Decision Diagram (BDD) calculation. We construct write control circuits to stop the clock signal by converting BDDs representing a set of states where write operations are unnecessary. Proposed method can be combined with the XOR based method and reduce the total write operations. We apply combined method to some benchmark circuits and estimate the power consumption with Synopsys NanoSim. On average, 15.0% power consumption can be reduced compared with only the XOR based method.
机译:非易失性触发器可降低逻辑电路的功耗,并能快速从待机模式返回。然而,它具有有限的写耐久性,并且其写功耗大于常规的D触发器(DFF)。因此,减少写入操作的数量很重要。因为仅在将时钟施加到触发器时才执行写操作,所以可以通过停止同步触发器的时钟信号来减少写操作。在这种时钟门控中,使用当前值和新值的异或(XOR)作为控制信号的方法是众所周知的。基于XOR的方法是有效的,但是在某些情况下,即使当前值和新值不同,也可以减少写操作。本文提出了一种基于状态转移分析的方法来检测这种不必要的写操作,并提出了一种节省非易失性触发器功耗的写控制方法。在该方法中,检测冗余位以减少写操作的数量。如果下一个状态和输出不取决于某个当前位,则该位是冗余的,不需要写入。该方法基于二进制决策图(BDD)计算。我们构造了写控制电路,通过转换表示一组不需要写操作的状态的BDD来停止时钟信号。提议的方法可以与基于XOR的方法结合使用,并减少总的写操作。我们将组合方法应用于一些基准电路,并使用Synopsys NanoSim估算功耗。与仅基于XOR的方法相比,平均可以减少15.0%的功耗。

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