Nova Patents
EP0903749A2

Nonvolatile semiconductor memory device

Abstract

A nonvolatile memory increases the number of times that data can be written and the length of time that data can be stored through use of architectural and addressing features. A principal feature lies in setting as a high reliability region a specific memory sector (first sector) among a plurality of memory sectors. Within the high reliability sector, two or more memory cells are written with the same data. During reading, the simultaneously written memory cells are read simultaneously, increasing current flow through the parallel current paths. This nonvolatile memory allows the size of the high reliability sector to be adjusted using signals supplied from external to the nonvolatile memory.

EP0903749A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 11 September 2018, 8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

21 claims: 6 independent, 15 dependent

  1. 1
    A nonvolatile semiconductor memory device, comprising:a first memory sector comprising first memory cells, the first memory cells characterized by a first data storage time characteristic and a first data rewrite number characteristic;and a second memory sector comprising second memory cells, the second memory sector set as a high reliability region so that data stored in the second memory is characterized by a second data storage time characteristic greater than the first data storage time characteristic and a second data rewrite number characteristic greater than the first data rewrite characteristic, the second memory sector having a size that is externally adjustable.
  2. 6
    A nonvolatile semiconductor memory device, comprising:at least one first memory sector comprising first memory cells;and at least one second memory sector comprising second memory cells, the second memory sector set as a high reliability region, wherein writing operations to the second memory sector are performed so that at least two of the second memory cells are written simultaneously, and wherein reading operations from the second memory sector are performed so that at least two of the second memory cells are read simultaneously, the second memory sector having a size that is externally adjustable.
  3. 9
    A nonvolatile semiconductor memory device, comprising:at least one first memory sector comprising first memory cells, the first memory cells addressed by a signal including a first address signal generated from at least one address bit, the first address signal including an inversion signal and a non-inversion signal complementary to the inversion signal;and at least one second memory sector comprising second memory cells, the second memory sector set as a high reliability region, the second memory cells addressed by a signal including a second address signal generated from the at least one address bit, the second address signal including an inversion signal and a non-inversion signal identical to the inversion signal, wherein writing operations to the second memory sector are performed so that at least two of the second memory cells are written simultaneously, and wherein reading operations from the second memory sector are performed so that at least two of the second memory cells are read simultaneously, whereby a number of second memory sectors within the device is externally adjustable.
  4. 13
    A nonvolatile semiconductor memory device, comprising:at least one first memory sector comprising first memory cells;at least one second memory sector comprising second memory cells, the second memory sector set as a high reliability region, wherein writing operations to the second memory sector are performed so that at least two of the second memory cells are written simultaneously, and wherein reading operations from the second memory sector are performed so that at least two of the second memory cells are read simultaneously;a latch circuit for latching an inversion signal and a non-inversion signal corresponding to one bit of address data;and a plurality of selector circuits for supplying the inversion signal and the non-inversion signal from the latch circuit to the first and second memory sectors, wherein the selector circuits are selectively set to provide the inversion signal and the non-inversion signal to the first and second memory sectors, the selector circuits set in accordance with an externally supplied control signal, and wherein one of the selector circuits provides at least two identical signals to the second sector, thereby simultaneously selecting two or more second memory cells.
  5. 15
    A nonvolatile semiconductor memory device, comprising:at least one first memory sector comprising first memory cells, the first memory cells addressed by a signal including a first address signal generated from at least one address bit, the first address signal including an inversion signal and a non-inversion signal complementary to the inversion signal;and at least one second memory sector comprising second memory cells, the second memory sector set as a high reliability region, the second memory cells addressed by a signal including a second address signal generated from the at least one address bit, the second address signal including an inversion signal and a non-inversion signal identical to the inversion signal, wherein writing operations to the second memory sector are performed so that at least two of the second memory cells are written simultaneously, and wherein reading operations from the second memory sector are performed so that at least two of the second memory cells are read simultaneously.
  6. 19
    A nonvolatile semiconductor memory device, comprising:at least one first memory sector comprising first memory cells;at least one second memory sector comprising second memory cells, the second memory sector set as a high reliability region, wherein writing operations to the second memory sector are performed so that at least two of the second memory cells are written simultaneously, and wherein reading operations from the second memory sector are performed so that at least two of the second memory cells are read simultaneously;a latch circuit for latching an inversion signal and a non-inversion signal corresponding to one bit of address data;and a plurality of selector circuits for supplying the inversion signal and the non-inversion signal from the latch circuit to the first and second memory sectors, wherein the selector circuits provide the inversion signal and the non-inversion signal to the at least one first memory sector, the selector circuits providing at least two identical signals to the at least one second sector, thereby simultaneously selecting two or more second memory cells.