Masking trapped charge in flash memories

A. Wachter-Zeh, Eitan Yaakobi
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Abstract

This paper studies defect memory cells and in particular partially stuck-at memory cells, which occur when charge is trapped in multi-level cells of non-volatile memories such as flash memories. If a cell can store the q levels 0, 1, ..., q - 1, we say that it is partially stuck-at level s, where 1 ≤ s ≤ q - 1, if it can only store values which are at least s. We follow the common setup where the encoder knows the positions and levels of the partially stuck-at cells whereas the decoder does not. In this paper, we study codes for masking u partially stuck-at cells. We derive lower and upper bounds on the redundancy of such codes and present code constructions. Furthermore, we analyze the dual defect model in which cells cannot reach higher levels, and show that codes for partially stuck-at cells can be used to mask this type of defects as well. Lastly, we analyze the capacity of the partially stuck-at memory channel and study how far our constructions are from the capacity.
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掩盖被困在闪存中的电荷
本文研究了非易失性存储器(如快闪存储器)中电荷被困在多层存储单元中的缺陷存储单元,特别是部分卡在存储单元。如果一个单元可以存储q级0,1,…, q - 1,我们说它是部分卡在水平s,其中1≤s≤q - 1,如果它只能存储至少为s的值。我们遵循常见的设置,其中编码器知道部分卡在细胞的位置和水平,而解码器不知道。在本文中,我们研究了掩码部分卡住的单元。我们推导了这类码的冗余度的下界和上界,并给出了码的结构。此外,我们分析了双重缺陷模型,其中细胞不能达到更高的水平,并表明部分卡住的细胞的代码也可以用来掩盖这种类型的缺陷。最后,我们分析了部分卡住的存储通道的容量,并研究了我们的结构离容量有多远。
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