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    • 1. 发明申请
    • BIT SCAN CIRCUIT AND METHOD IN NON-VOLATILE MEMORY
    • 非易失性存储器中的位扫描电路和方法
    • WO2012177368A1
    • 2012-12-27
    • PCT/US2012/040145
    • 2012-05-31
    • SANDISK TECHNOLOGIES INC.LIU, BoPARK, JongminCHEN, ChenKUO, Tien-Chien
    • LIU, BoPARK, JongminCHEN, ChenKUO, Tien-Chien
    • G11C29/40G11C29/44
    • G11C29/40G11C29/44
    • A circuit (150) for counting in an N-bit string (10) a number of bits M, having a first binary value includes N latch circuits in a daisy chain (100) where each latch circuit has a tag bit that controls each to be either in a no-pass or pass state. Initially the tag bits are set according to the bits of the N-bit string where the first binary value corresponds to a no-pass state. A clock signal having a pulse train is run through the daisy chain to "interrogate" any no-pass latch circuits. It races right through any pass latch circuit. However, for a no-pass latch circuit, a leading pulse while being blocked also resets after a pulse period the tag bit from "no-pass" to "pass" state to allow subsequent pulses to pass. After all no-pass latch circuits have been reset, M is given by the number of missing pulses from the pulse train.
    • 用于以N位串(10)计数具有第一二进制值的位M的电路(150)包括菊花链(100)中的N个锁存电路,其中每个锁存电路具有一个标签位, 要么是没有通过,要么是通过状态。 最初,标签位根据N位串的位进行设置,其中第一个二进制值对应于无通状态。 具有脉冲串的时钟信号通过菊花链运行以“询问”任何无通路锁存电路。 它可以通过任何通过锁存电路进行比赛。 然而,对于无通路锁存电路,被阻塞的前导脉冲也在标签位从“无通”状态到“通过”状态的脉冲周期之后复位,以允许随后的脉冲通过。 在所有无通路锁存电路复位之后,M由脉冲序列的丢失脉冲数给出。