Claims
- 1. A streak tube comprising:
- converting means for converting an optical image into first and second divided micro-incident electronic spots, which are separated from one another by a predetermined space, said optical image being formed on said converting means by a light beam from a target object, and each electronic spot being treated as a point;
- a first focusing electron lens comprising a plurality of focusing electrode plates, each having an aperture, said focusing electrode plates being joined with one another in a state where said apertures of said focusing electrode plates are aligned, and said first focusing electron lens focuses electrons from said first divided micro-incident electronic spot by making the electrons pass through the apertures;
- a second focusing electron lens comprising a plurality of focusing electrode plates each having an aperture, said focusing electrode plates being joined with one another in a state where said apertures of said focusing electrode plates are aligned, and said second focusing electron lens focuses electrons from said second divided micro-incident electronic spot by making the electrons pass through the apertures;
- deflecting means comprising first and second deflecting electrodes, said first and second deflecting electrodes both have a comb-like shape, with teeth parts of said first deflecting electrode respectively facing teeth parts of said second deflecting electrode, with voltage between said first and second deflecting electrodes changing with the lapse of time, and said deflecting means deflecting a direction of movement of electrons from said first and second focusing electron lenses simultaneously by transmitting the electrons between the teeth of said first and second deflecting electrodes; and
- an output plane for imaging electrons passing through said deflecting means, image points on said output plane being formed by said electrons passing through said deflecting means, said electrons being swept by said deflecting means within an area that corresponds to said predetermined space.
- 2. A streak tube according to claim 1, wherein said converting means comprises dividing means for dividing the optical image of the object into a plurality of divided micro-optical images, and a photocathode for converting each divided micro-optical image divided by said dividing means into a corresponding divided micro-incident electronic spot.
- 3. A streak tube according to claim 2, wherein said dividing means comprises a plurality of fiber cables placed near said object and a fiber plate to which emitting ends of said fiber cables are connected.
- 4. A streak tube according to claim 2, wherein said dividing means comprises micro-optical lenses formed at an entrance window of the streak tube.
- 5. A streak tube according to claim 2, wherein said dividing means comprises fiber groups bedded into an entrance window of the streak tube.
- 6. A streak tube according to claim 2, wherein said dividing means comprises metal plates bedded into an entrance window of the streak tube having mirrored surfaces of which to reflect the light multiple times.
- 7. A streak tube according to claim 2, wherein said dividing means comprises a plate adhered to an entrance window of the streak tube in which micro-lenses are formed.
- 8. A streak tube according to claim 2, wherein said dividing means comprises a plate adhered to an entrance window of the streak tube into which fiber groups are embedded.
- 9. A streak tube according to claim 1, wherein said converting means comprises a photocathode for converting the optical image of the object into photoelectrons, and dividing means for dividing the photoelectrons emitted from said photocathode into a plurality of divided micro-incident electronic spots.
- 10. A streak tube according to claim 9, wherein said dividing means comprises an electron lens including a collimating electrode placed behind said photocathode and a mask electrode placed behind said collimating electrode.
- 11. A streak tube according to claim 10, further comprising a transparent electron multiplying dynode adjacent a surface of said mask electrode.
- 12. A streak tube according to claim 9, wherein said dividing means comprises a microchannel plate placed in the rear of said photocathode.
- 13. A streak tube according to claim 12, further comprising a transparent electron multiplying dynode placed behind said microchannel plate.
- 14. A streak tube according to claim 1, wherein a number of spaces between the teeth of said two deflecting electrodes is less than a number of rows of apertures of said focusing electron lens.
- 15. A streak tube according to claim 1, wherein a region of said output plane equivalent to the location of each divided micro-output electronic spot standing by for sweep is covered by aluminum.
- 16. A streak tube according to claim 1, further comprising stripe-shaped electrodes placed between said deflecting means and said output plane, said stripe-shaped electrodes being positioned at a location of each divided micro-output electronic spot standing by for sweep.
- 17. A streak tube according to claim 1, wherein said first focusing electron lens is formed by serially depositing a first metal layer, a first insulating layer, a second metal layer, a second insulating layer and a third metal layer.
Priority Claims (1)
Number |
Date |
Country |
Kind |
5-064113 |
Mar 1993 |
JPX |
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Parent Case Info
This is a continuation of application Ser. No. 08/633,005, filed on Apr. 16, 1996, which was abandoned upon the filing hereof and which was an FWC of application Ser. No. 08/210,760, filed Mar. 22, 1994, which was abandoned upon the filing thereof.
US Referenced Citations (25)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2172740 |
Sep 1986 |
GBX |
Continuations (2)
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Number |
Date |
Country |
Parent |
633005 |
Apr 1996 |
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Parent |
210760 |
Mar 1994 |
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