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Neighbor-A-Posteriori Information Assisted Cell-State Adaptive Detector for NAND Flash Memory

机译:用于NAND闪存的邻居后验信息辅助单元状态自适应检测器

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摘要

Cell-to-Cell interferences (CCIs), which arise from adjacent cells through parasitic coupling-capacitance, severely degrade the performance of threshold voltage detection. Pre-processing and post-processing methods have been proposed to mitigate the effect of CCIs on threshold voltage variation. The performance of the aforementioned methods heavily depends on the accuracy of the threshold voltages adjacent to the victim cells. However, to obtain high accuracy, these methods requires multi-sensing operations, thus significantly resulting in high detection latency. In this letter, a novel non-uniform detection scheme based on the threshold voltage of cell states, which is referred to as the cell-state adaptive detection (CSAD), is proposed to adapt the shifts of the threshold voltages. Then, the neighbor-a-posteriori information is exploited to mitigate the overcompensation phenomenon and further improve the performance of the CSAD under the block read mode scenario. Simulation results show that the proposed CSAD scheme and its improved version not only achieve better bit-error-rate performance but also keep lower detection latency compared with the existing detection schemes.
机译:通过寄生耦合电容从相邻单元产生的单元间干扰(CCI)严重降低了阈值电压检测的性能。已经提出了预处理和后处理方法来减轻CCI对阈值电压变化的影响。前述方法的性能在很大程度上取决于邻近受害者细胞的阈值电压的准确性。然而,为了获得高精度,这些方法需要多感测操作,从而显着导致高检测等待时间。在这封信中,提出了一种新的基于单元状态阈值电压的非均匀检测方案,称为单元状态自适应检测(CSAD),以适应阈值电压的偏移。然后,利用后邻居信息来减轻过度补偿现象,并进一步提高在块读取模式情况下CSAD的性能。仿真结果表明,与现有的检测方案相比,所提出的CSAD方案及其改进版本不仅实现了更好的误码率性能,而且保持了较低的检测时延。

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