EP1555673B1

Nonvolatile semiconductor memory and operating method of the memory

Abstract

This record has no abstract on file.

EP1555673B1, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Expired 27 September 2024, 2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

22 claims: 2 independent, 20 dependent

  1. 1
    A method of operating a memory cell (10) that comprises a first junction region (100, 101), a second junction region (100, 101), a base (106), a non-conducting charge trapping layer (104) and a gate (102), the method being characterized by :performing a process sequence including: applying a first voltage pulse (V b ) to the base (106) and a second voltage pulse (V g ) to the gate (102) that synchronizes with the first voltage bias pulse to cause electrons to migrate towards and be retained in the trapping layer, wherein one or the first voltage pulse (V b ) and the second voltage pulse (V g ) is kept at a constant magnitude value ;evaluating a read current generated in response to the voltage pulse to determine whether a level of gate threshold voltage is reached;and repeating the processing sequence a number of times by varying another one of the first voltage pulse (V b ) and the second voltage pulse (V g ) one or more time until the level of gate threshold voltage is reached and the memory cell (10) is in an erase state, wherein the another one of the first and second voltage pulse is varied in a manner such that the magnitude of each pulse increases by a constant amount.
  2. 13
    A method of operating a memory cell (10) that comprises a first junction region (101), a second junction region (100), a base (106), a non-conducting charge trapping layer (104) and a gate (102), the method comprising:setting the memory cell (10) to an initial state of a first gate threshold voltage;characterized by performing a processing sequence including: applying a first voltage pulse (V g ) to the gate (102) and a second voltage pulse (V d ) to the first junction (101) that synchronizes with the first voltage pulse (V g ) to cause electric hole to migrate towards and be retained in the trapping layer, wherein one of the first voltage pulse (V g ) and the second voltage pulse (V d ) is kept at a constant magnitude value;evaluating a read current generated in response to the voltage pulse to determine whether a second gate threshold voltage is reached, wherein the second gate threshold voltage is lower than the first gate threshold voltage;and repeating the processing sequence a number of time by varying another one of the first voltage pulse (V g ) and the second voltage pulse (V d ) one or more time until the second gate threshold voltage is reached and the memory cell (10) is in a program state, wherein the another one of the first and second voltage pulse is varied in a manner such that the magnitude of each pulse increases by a constant amount.