IL70716A

Method of making parallel programming or field programming of electronic matrix arrays

Abstract

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61 claims: 16 independent, 45 dependent

  1. 1
    -1- “ CLAIMS 1. A method of making an electronic matrix array comprising the steps of:forming at least one layer of phase changeable material on a conductive substrate, said 5 phase changeable material having a substantially nonconductive state and a comparatively high conductive state, said layer being formed in one of said states;parallel programming said layer by irradi-10 ating selected areas of said layer to simultane ously convert said selected areas of said layer to the other one of said states to form selected substantially nonconductive portions of said layer and selected comparatively high conductive por- 15 tions of said layer;forming first and second sets of electrically conductive address lines on respective opposite sides of said layer, said address lines of said first and second sets being formed for crossing at 20 an angle to form a plurality of crossover points;and said selected substantially nonconductive layer portions and said selected comparatively high conductive layer portions being.formed be- 25 tween said first and second sets of address lines.
  2. 6
    The method according to any one of claims 1 through 5, wherein said step of forming said address lines includes forming one of said sets of address lines by removing portions of said 5 conductive substrate.
  3. 7
    The method according to any one of claims 1 through 6, wherein said step of forming said address lines includes forming said lines after irradiating said areas and detecting the 5 locations of the layer portions of one of said states and thereafter aligning one of said sets of address lines on said layer according to the detected locations of said layer portions of said one of said states.
  4. 8
    The method according to any one of claims 1 through Ί, wherein said step of forming said layer of phase changeable material includes depositing a layer of amorphous material.
  5. 12
    The method according to any one of claims 1 through 11, wherein said step of forming said phase changeable material includes depositing a plurality of layers of semiconductor material on said substrate to form a continuous diode structure on said substrate.
  6. 13
    The method according to any one of claims 1 through 11, including the further step of forming a continuous diode structure over said substrate and wherein said layer of phase changeable material is formed over said diode structure.
  7. 18
    The method according to any one of claims 1 through 17, further including the step of removing said comparatively high conductive layer portions prior to forming said address lines.
  8. 19
    The method according to any one of claims 1 through 17, wherein said step of forming said address lines includes forming said lines prior to irradiating said areas and forming at 5 least one of said sets of address lines of substantially irradiation transparent material.
  9. 22
    The method according to any one of claims 1 through 21, including testing said selected portions to insure that the portions are in their programmed states.
  10. 30
    A method of making a memory matrix array comprising the steps of:forming a continuous selection means structure;forming a layer of phase changeable material over said selection means structure, said phase changeable material having a substantially noncon-ductive state and a comparatively high conductive state, said layer of phase changeable material being formed in one of said states;parallel programming said layer by converting selected areas of said layer of phase changeable material simultaneously to the other one of said states to form selected substantially nonconduc-tive portions of said layer and selected comparatively high conductive portions of said layer;-6- forming a first set of electrically conductive address lines over said selection means structure;20 forming a second set of electrically conduc tive address lines over said layer with said selection means structure therebetween and crossing said first set of address lines at an angle to form a plurality of crossover points;and 25 said selected comparatively high conductive layer portions and said selected substantially nonconductive layer portions being formed within said crossover points.
  11. 34
    The method according to any one of claims 31 through 33, wherein said selected areas are irradiated through a mask.
  12. 36
    The method according to any one of claims 30 through 35, wherein said continuous -Ί- selection means structure is formed on a conductive substrate and wherein said first set of ad- 5 dress lines is formed by removing portions of said substrate.
  13. 37
    The method according to any one of claims 30 through 35, wherein said second set of address lines is formed after converting said portions by detecting the locations of the layer 5 portions of one of said states and thereafter aligning said second set of address lines on said layer according to the detected locations of said layer portions of said one of said states.
  14. 38
    The method according to any one of claims 30 through 37, wherein said step of forming said layer of phase changeable material includes depositing a layer of amorphous material.
  15. 41
    The method according to any one of claims 38 through 40, wherein said step of converting said selected areas of said layer to the other said state includes converting said amor- 5 phous material in said selected areas to crystalline material.
  16. 53
    The method according to any one of claims 30 through 52, including testing said selected portions to insure that the portions are in their programmed states.
Independent claims16