Nova Patents
EP1501098A2

A memory

Abstract

An electrically programmable non-volatile memory cell comprises a first electrode, a second electrode and an inter-electrode layer, such as ultra-thin oxide, between the first and second electrodes which is characterized by progressive change in resistance in response to program stress of relatively low voltages. A programmable resistance representing stored data is established by stressing the inter-electrode layer between the electrodes. Embodiments of the memory cell are adapted to store multiple bits of data per cell and/or adapted for programming more than one time without an erase process.

EP1501098A2, drawing sheet 1
Sheet 1 of 23

Term

Term ended

Projected expiry passed 15 January 2024, 2.7 years ago.

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68 claims: 11 independent, 57 dependent

  1. 1
    An integrated circuit, comprising:an array of memory cells, memory cells in the array comprising a first electrode, a second electrode and an inter-electrode layer between the first and second electrodes, the inter-electrode layer characterized by progressive change in a property in response to stress;logic to program the memory cells in the array by causing said stress;andsense circuitry to sense an amount of progressive change in the property in the memory cells in the array.
  2. 11
    The integrated circuit of any preceding claim, wherein the sense circuitry includes circuits to apply a read voltage across the first and second electrodes of selected memory cells in the array, and to sense said property.
  3. 12
    The integrated circuit of any one of claims 1 to 10, wherein the sense circuitry includes circuits to apply a read voltage of less than 2 volts across the first and second electrodes of selected memory cells in the array, and to sense said property.
  4. 13
    The integrated circuit of any one of claims 1 to 10, wherein the sense circuitry includes circuits to apply a read voltage across the first and second electrodes of selected memory cells in the array, and to sense four levels of said property indicating two bits of data.
  5. 14
    The integrated circuit ofany one of claims 1 to 10, wherein the sense circuitry includes circuits to apply a read voltage across the first and second electrodes of selected memory cells in the array, and to sense eight amounts of said property indicating three bits of data.
  6. 15
    The integrated circuit of any one of claims 1 to 10, wherein the sense circuitry includes circuits to apply a read voltage across the first and second electrodes of selected memory cells in the array, and to sense sixteen amounts of said property indicating four bits of data per cell.
  7. 16
    A memory cell, comprising:a first electrode;a second electrode;andan inter-electrode layer between the first and second electrodes, the inter-electrode layer characterized by progressive change in a property in response to stress.
  8. 36
    A memory cell, comprising:a first electrode;a second electrode;andan inter-electrode layer comprising silicon oxide, less than 15 Angstroms thick, between the first and second electrodes, the inter-electrode layer characterized by progressive change in resistance in response to voltage less than 5 volts across the first and second electrode.
  9. 37
    A memory cell, comprising:a first electrode comprising a semiconductor having a first conductivity type;a second electrode comprising a semiconductor having a second conductivity type;andan inter-electrode layer comprising silicon oxide, less than 15 Angstroms thick, between the first and second electrodes, the inter-electrode layer characterized by progressive change in resistance in response to voltage less than 5 volts across the first and second electrode.
  10. 38
    An integrated circuit on a single substrate, comprising:an array of memory cells comprising a plurality of rows and columns of memory cells, memory cells in the array comprising a first electrode, a second electrode and an inter-electrode layer between the first and second electrodes, the inter-electrode layer characterized by progressive change in a property in response to stress;a plurality of word lines in the array contacting the first electrodes of memory cells in respective rows in the array;a plurality of bit lines in the array contacting the second electrodes of memory cells in respective columns in the array;an address decoder coupled to the plurality of word lines and the plurality of bit lines to address selected memory cells in the array;logic, coupled to the plurality of word lines and the plurality of bit lines, to program the memory cells in the array by causing said stress in selected memory cells;andsense circuitry, coupled to the plurality of bit lines, to sense an amount of progressive change in the property in selected memory cells in the array.
  11. 49
    The integrated circuit of any one of claims 38 to 48, including a negative voltage generator on said substrate.