EP0986084A2

Electron emission device and display apparatus using the same

Abstract

An electron emission display device includes an electron-supply layer formed of metal or semiconductor; an insulator layer formed on the electron-supply layer; and a thin-film metal electrode formed on the insulator layer, whereby electrons are emitted when an electric field is applied between the electron-supply layer and the thin-film metal electrode. The insulator layer and the thin-film metal electrode have at least one island-like region where the thicknesses of the insulator layer and the thin-film metal electrode gradually decrease.

EP0986084A2, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 10 September 2019, 7 years ago.

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27 claims: 4 independent, 23 dependent

  1. 1
    An electron emission device comprising:an electron-supply layer made of a semiconductor material, a metal compound or metal;an insulator layer formed on the electron-supply layer;and a thin-film metal electrode formed on the insulator layer, characterized in that the insulator layer and the thin-film metal have a plurality of island-like regions where thicknesses of both the insulator layer and the thin-film metal electrode gradually decrease.
  2. 10
    A method of manufacturing an electron emission device having a plurality of island-like regions where thicknesses of an insulator layer and a thin-film metal electrode gradually decrease, said method comprising the steps of:forming an electron-supply layer on a substrate;spraying a plurality of minute particles onto the electron-supply layer;depositing an insulator material on the electron-supply layer and the minute particles, thereby forming a thin insulator layer;and forming a thin-film metal electrode on the insulator layer and the minute particles, thereby forming island-like regions around a contact surface under the minute particles.
  3. 14
    A method of manufacturing an electron emission device having a plurality of island-like regions where thicknesses of an insulator layer and a thin-film metal electrode gradually decrease, said method comprising the steps of:forming an electron-supply layer on a substrate;forming electrically insulative inverse tapered blocks each protruding in a direction normal to the substrate and each having an overhang portion, at an upper portion thereof, protruding in a direction parallel to the substrate;depositing an insulator on the electron-supply layer, thereby forming a thin insulator layer;and forming a thin-film metal electrode on the insulator layer, thereby forming island-like regions around a contact surface under the inverse tapered blocks.
  4. 19
    An electron emission display device comprising:a pair of a first substrate and an optically transparent second substrate opposing to each other with a vacuum space interposed therebetween;a plurality of electron emission devices formed on said first substrate, each of which including an electron-supply layer made of a semiconductor material, a metal compound or metal formed on ohmic electrodes formed on said first substrate, an insulator layer formed on said electron-supply layer, and a thin-film metal electrode formed on said insulator layer and facing the vacuum space, wherein the insulator layer and the thin-film metal have a plurality of island-like regions where thicknesses of both the insulator layer and the thin-film metal electrode gradually decrease;a collector electrode formed on said second substrate;and a fluorescent material layer formed on said collector electrode and facing the vacuum space.