Claims
- 1. A miniature flat panel picture element array image intensifier tube comprising:
- a video picture signal generator for providing a video signal;
- a radiation source, said radiation source being modulated by said video signal for creating a generally uniform flow of photons therefrom with said radiation source mounted on the front of a transparent input faceplate;
- a photocathode layer on the inside of said input faceplate;
- a first microchannel plate electron multiplier having a continuous input electrode in proximity focus with said photocathode layer and having as an output electrode an array of electrically isolated parallel output electrode metallic stripes;
- a second microchannel plate electron multiplier have as an input electrode an array of electrically isolated parallel input electrode metallic stripes that are positioned close to the array of first microchannel plate output electrode metallic stripes and are orthogonal to each other and having a continuous output electrode;
- a metallized phosphor screen mounted on the inside of a transparent output faceplate wherein said metallized phosphor screen is adjacent said second microchannel plate continuous output electrode and in proximity focus therewith;
- a first bias voltage means connected across said photocathode layer and said first microchannel plate continuous input electrode for accelerating photoelectrons emitted from said photocathode layer to said first microchannelplate;
- a second bias voltage means connected across said second microchannel plate continuous output electrode and said metallized phosphor screen for providing proximity focus between said second microchannel plate and said metallized phosphor screen; and
- an array switching electronic means for switching bias voltages in some selected scan mode over said first microchannel plate array of output electrode metallic stripes and said second microchannel plate array of input electrode metallic stripes for selectively providing accelerating voltages between crossover stripes that have forward bias voltages applied thereto wherein repressive bias voltages exist on all other cross-over stripes that have reverse bias voltages applied thereto whereby electrons multiplied in said first microchannel plate enter the channels of said second microchannel plate in a charge pattern determined by said scan mode whereby the electrons that exit said channels of said second microchannel plate are converted into visible energy on said metallized phosphor screen for producing a visible image of said video signal according to said scan mode.
- 2. An image intensifier tube as set forth in claim 1 wherein said radiation source is a plurality of light emitting diodes electrically connected together.
- 3. An image intensifier tube as set forth in claim 2 wherein said array switching electronic means is solid state circuitry that controls a solid state first microchannel plate switching means and a solid state second microchannel plate switching means that sequentially switch said bias voltages in said scan mode on all cross-over pixels between said first microchannel plate array of output electrode metallic stripes and said second microchannel plate array of input electrode metallic stripes.
- 4. An image intensifier tube as set forth in claim 3 wherein said solid state circuitry comprises a charge coupled device having an input thereto from said video signal and seven outputs therefrom wherein a first output controls the brightness level of said radiation source according to the brightness level of said video signal and second and third outputs provide bias voltages of said first bias voltage means to said photocathode and to said first microchannel plate continuous input electrode and fourth and fifth outputs provide bias voltages of said second bias voltage means to said second microchannel plate continuous output electrode and to said metallized phosphor screen and sixth and seventh outputs control said solid state first microchannel plate switching means and said solid state second microchannel plate switching means and the bias voltages provided thereto for selectively accelerating electrons from said first microchannel plate into a charge pattern entering said channels of said second microchannel and for converting said charge pattern into visible energy on said metallized phosphor screen.
- 5. An image intensifier as set forth in claim 4 wherein said solid state first and second microchannel plate switching means are shift registers.
Government Interests
The invention described herein may be manufactured, used, and licensed by or for the Government for governmental purposes without the payment of any royalty thereon.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3769539 |
Catchpole |
Oct 1973 |
|
3885180 |
Carts, Jr. |
May 1975 |
|