EP0474474A2

Semiconductor light valve device and process for fabricating the same.

Abstract

The invention provides a semi-conductor light valve device and a process for fabricating the same. The device comprises an insulating substrate (7) having a semi-conductor single crystal thin film (1) over at least a portion thereof and providing a pixel array region and a peripheral circuit region. The pixel array region includes a plurality of switch elements (2) for selectively energising a plurality of pixel electrodes (3), and the peripheral circuit region includes drive circuits (15, 16) for operating the switch elements. At least circuit elements of the drive circuits are formed from the semi-conductor single crystal thin film. In the fabricating process, the semi-conductor single crystal thin film and the insulating substrate are formed as a composite substrate by adhering a semiconductor single crystal plate to the surface of the insulating substrate and by polishing the single crystal plate. The circuit elements of the drive circuits are then formed by treating the single crystal plate.

EP0474474A2, drawing sheet 1
Sheet 1 of 53

Term

Term ended

Projected expiry passed 4 September 2011, 15.1 years ago.

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20 claims: 8 independent, 12 dependent

  1. 1
    A semi-conductor light valve device comprising an insulating substrate (7) having a semi-conductor thin film (1) over at least a portion thereof, and a pixel array region including a plurality of switch elements (2) for selectively energising a plurality of pixel electrodes (3), characterised in that the semi-conductor thin film comprises a semi-conductor single crystal thin film.
  2. 2
    A semi-conductor light valve device comprising an insulating substrate (7) having a semi-conductor thin film (1) over at least a portion thereof, and a pixel array region and a peripheral circuit region, the pixel array region including a plurality of switch elements (2) for selectively energising a plurality of pixel electrodes (3), and the peripheral circuit region including drive means (15, 16) for operating the switch elements for selectively energising the pixel electrodes, characterised in that the semi-conductor thin film comprises a semi-conductor single crystal thin film, and in that at least circuit elements of the peripheral circuit region are formed in the semiconductor single crystal thin film.
  3. 10
    A device according to any of claims 2 to 8 characterised in that the pixel electrodes are made of the semi-conductor single crystal thin film.
  4. 11
    A device according to any of claims 2 to 8 characterised in that the pixel electrodes are made of semi-conductor polycrystal thin film or semi-conductor amorphous thin film.
  5. 12
    A device according to any of claims 2 to 11 characterised in that the pixel electrodes each have their surface shaped to have regular concavities and convexities.
  6. 13
    A process for fabricating a semi-conductor light valve device comprising forming an insulating substrate (7) having a semi-conductor thin film (1) over at least a portion thereof, and forming in a pixel array region of the substrate a plurality of pixel electrodes (3) and a plurality of switch elements (2) for selectively energising the pixel electrodes, characterised in that the semi-conductor thin film and the insulating substrate are wormed as a composite substrate by adhering a semi-conductor single crystal plate to the surface of the insulating substrate and by polishing the single crystal plate.
  7. 14
    A process for fabricating a semi-conductor light valve device comprising forming an insulating substrate (7) having a semi-conductor thin film (1) over at least a portion thereof, forming in a pixel array region of the substrate a plurality of pixel electrodes (3) and a plurality of switch elements (2) for selectively energising the pixel electrodes, forming in a peripheral circuit region of the substrate drive means (15, 16) for operating the switch elements for selectively energising the pixel electrodes, and connecting the elements of the peripheral circuit region and the pixel array region electrically, characterised in that the semi-conductor thin film and the insulating substrate are formed as a composite substrate by adhering a semi-conductor single crystal plate to the surface of the insulating substrate and by polishing the single crystal plate, and in that circuit elements of the peripheral circuit region are formed by treating the single crystal plate.
  8. 20
    A process according to any of claims 14 to 18 characterised in that the step of forming the pixel electrodes comprises depositing and patterning a semi-conductor polycrystal thin film to produce the pixel electrodes from the semi-conductor polycrystal thin film.