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Analysis and Modeling of Internal State Variables for Dynamic Effects of Nonvolatile Memory Devices

机译:非易失性存储设备动态效应的内部状态变量的分析和建模

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Hybrid integration of CMOS and nonvolatile memory (NVM) devices has become the foundation for emerging nonvolatile memory-based computing. The primary challenge to validate hybrid memory system with both CMOS and NVM devices is to develop a SPICE-like simulator that can simulate the dynamic behavior accurately and efficiently. Since memristor, spin-transfer-toque magnetic-tunneling-junction (STT-MTJ) and phase-change-memory (PCM) devices are the most promising candidates of next generation of NVM devices, it is under great interest in including these new devices in the standard CMOS design flow. The previous approaches either ignore dynamic effect without consideration of internal states for dynamic behavior, or need complex equivalent circuits to represent those devices. This paper proposes a new modified nodal analysis for NVM devices with identified internal state variables for dynamic behavior. As such, compact SPICE-like implementation can be derived for all three new NVM devices in the design of large-scale memory circuits. As demonstrated by a number of examples on hybrid memory circuits with both CMOS and NVM devices, our newly developed SPICE-like simulator can capture dynamic behaviors of memristor, STT-MTJ and PCM devices, and can also reduce CPU runtime by 20–69 times when compared to the previous equivalent circuit based approaches.
机译:CMOS与非易失性存储器(NVM)设备的混合集成已成为新兴的基于非易失性存储器的计算的基础。验证同时具有CMOS和NVM器件的混合存储系统的主要挑战是开发一种类似于SPICE的模拟器,该模拟器可以准确而有效地模拟动态行为。由于忆阻器,自旋转移转矩磁隧道结(STT-MTJ)和相变存储器(PCM)器件是下一代NVM器件的最有希望的候选者,因此对包含这些新器件的兴趣很大在标准CMOS设计流程中。先前的方法要么忽略动态效应而不考虑动态行为的内部状态,要么需要复杂的等效电路来表示那些设备。本文针对具有动态行为的已识别内部状态变量,为NVM设备提出了一种新的改进的节点分析方法。这样,可以在大规模存储电路的设计中为所有三个新的NVM设备推导出类似于SPICE的紧凑实现。正如同时具有CMOS和NVM器件的混合存储电路上的许多示例所证明的那样,我们新开发的类似SPICE的模拟器可以捕获忆阻器,STT-MTJ和PCM设备的动态行为,还可以将CPU运行时间减少20-69倍。与以前的基于等效电路的方法相比时。

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