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Rank Determination by Winner-Take-All Circuit for Rank Modulation Memory

机译:获胜者通吃电路确定等级调制存储器的等级

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Multilevel-cell (MLC) memory technologies have achieved a great improvement in increasing demand for a high-density memory. As the memory cells utilize a higher number of bits per cell, they have been faced with some problems, such as accurate charge placement and measurement, which slow down programming processes. To overcome these problems, the new data representation technology, rank modulation coding, is employed for MLC memories. For rank modulation memory, a fast and accurate rank reading among multiple cells is one of the most important functions to be achieved to serve an efficient nonvolatile memory. The existing rank determination methods that compare two currents (memory current and ramp down current) and an array of winner-take-all (WTA) rank determination showed their own limitation in terms of mismatch impacts and area consumption. If the rank determination speed can be improved and the circuits are not affected by the possible impact of mismatch, the rank modulation memory will be a more practical memory as a next-generation memory. This brief presents a new rank read circuitry with much faster rank read time. The read time for 16 cells' ranks is 600 ns, which is much faster than the existing ways. This rank determinator adopted an advanced WTA circuit for the rank read circuitry.
机译:多级单元(MLC)存储器技术在对高密度存储器的日益增长的需求方面取得了很大的进步。由于存储单元每个单元使用更多位数,因此它们面临一些问题,例如精确的电荷放置和测量,这会减慢编程过程。为了克服这些问题,MLC存储器采用了新的数据表示技术,即秩调制编码。对于秩调制存储器,在多个单元之间进行快速准确的秩读取是为有效的非易失性存储器提供服务所要实现的最重要功能之一。现有的比较两个电流(内存电流和下降电流)和一系列获胜者通吃(WTA)等级确定方法的等级确定方法在失配影响和面积消耗方面显示出自己的局限性。如果可以提高秩确定速度并且电路不受失配的可能影响,则秩调制存储器将成为下一代存储器更实用的存储器。本简介提供了一种新的秩读取电路,具有更快的秩读取时间。 16个单元格的读取时间为600 ns,比现有方法快得多。该等级确定器为等级读取电路采用了高级WTA电路。

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