Claims
- 1. An image input device comprising:
- a rare gas cold cathode discharge tube comprising linear tube charged with a rare gas; a pair of spaced main electrodes in said linear tube, one of said main electrodes generating an electron beam when the linear tube is powered; an auxiliary electrode extending along at least a portion of said linear tube in the direction of the length thereof; and a conductive member positioned near said one of said main electrodes for preventing deflections of a positive column extending from said one of said main electrodes essentially parallel to said auxiliary electrode; said cold cathode discharge tube irradiating a picture image along the line defined by said positive column;
- photoelectric transducer means for reading the irradiated picture image; and
- means for intermittently powering said cold cathode discharge tube for the selective illumination of the picture image.
- 2. The image input device, as claimed in claim 1, wherein said rare gas cold cathode discharge tube has at least two different luminous colors.
- 3. The image input device as claimed in claim 2, wherein said rare gas cold cathode discharge tube has the three primary luminous colors, and including filter means intermediate said picture image and said photoelectric transducer means.
- 4. The image input device as claimed in claim 1, and including means for displacing said cold cathode discharge tube anu photoelectric transducer means relative to said picture image between a plurality of positions, said cold cathode discharge tube being powered on and off at each of said positions so that the irradiated picture image may be read by said photoelectric transducer means at each said position.
- 5. The image input device as claimed in claim 1, and including a plurality of said rare gas cold cathode discharge tubes each provided with a different luminous color, and including means for successively powering each of said tubes on and off to successively irradiate said picture image by each of said different colors.
- 6. The image input device as claimed in claim 5, and including means for focusing the positive column of each of said tubes along essentially a single line on said picture image.
- 7. The image input device as claimed in claim 6, wherein each of said cold cathode discharge tubes is one of the primary colors.
- 8. The image input device as claimed in claim 5, when including means for displacing said plurality of tubes and said photoelectric transducer means along said picture image between a plurality of discreet positions and including means for sequentially powering each of said tubes on and off at each of said positions.
- 9. The image input device as claimed in claim 7, including means for displacing said plurality of tubes and said photoelectric transducer means along said picture image between a plurality of discreet positions and including means for sequentially powering each of said tubes on and off at each of said positions.
- 10. The image input device as claimed in claim 9, including means for reading the photoelectric transducer means after the powering of each of said tubes and in an interval between the powering of successive tubes.
- 11. The image input device as claimed in claim 10, and including an afterglow removing interval intermediate the turning off of the tube for the green luminous color and before the reading of the photoelectric transducer means.
- 12. The image input device as claimed in claim 1, wherein the photoelectric transducer means produces an output in proportion to an integrated quantity of the light applied thereto within the reading.
- 13. The image input device as claimed in claim 12, wherein said photoelectric transducer means is a CUD.
- 14. The image input device as claimed in claim 12, wherein said photoelectric transducer means is illuminated so that the output thereof lies between a dark output corresponding to the output when light is not irradiated on the photoelectric transducer means and a saturation output caused by irradiation of light above predetermined level.
- 15. A method for reading a picture image, comprising:
- irradiating an essentially straight line on said picture image by the successive intermittent powering of a rare gas cold cathode discharge tube associated with each of the three primary colors, each said tube being provided with a linearly extending auxiliary electrode for defining a positive column which in turn provides an essentially linear irradiation;
- reading the irradiated picture image by a storage type photoelectric transducer means as to the powering of each or said tubes and reading the contents of said photoelectric transducer means; and
- incrementally displacing said tubes and said photoelectric transducer means between a plurality of positions along the picture image, the foregoing steps being repeated at each of said positions to define a two-dimensional picture image.
- 16. The method of claim 15 and including preventing deflections of the positive column by providing a conductive member positioned near the discharge electrode of each of said tubes.
- 17. The method of claim 16 including the step of color correcting the read picture image from said photoelectric transducer means depending on the color of the immediately proceeding irradiated tube.
- 18. A method for reading a color picture image, comprising:
- repetitively irradiating a line on said image by means of a rare gas cold cathode discharge tube which is successively powered on and off and which has at least the three primary luminous colors;
- successively reading the irradiated line by a storage type photoelectric transducer means through successive filters each associated with one of the three primary colors and reading the successive picture image components from the photoelectric transducer means; and
- successively displacing the tube and the photoelectric transducer means between a plurality of discreet positions along the picture image at each of which said successive irradiations of the picture image and reading by and from said photoelectric transducer device occurs to produce a two-dimensional picture image.
- 19. The method of claim 18, and including the further step of color correcting the picture image read from the photoelectric transducer means in accordance with the color of the filter used to store the picture image inset photoelectric transducer means.
Priority Claims (2)
Number |
Date |
Country |
Kind |
63-118704 |
May 1988 |
JPX |
|
1-65029 |
Mar 1989 |
JPX |
|
Parent Case Info
This is a division of application Ser. No. 07/773,737, filed on Oct. 9, 1991, which is a continuation of application Ser. No. 07/351,633, filed on May 15, 1989, and now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (5)
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0165550 |
Dec 1985 |
EPX |
3718216A1 |
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DEX |
52-44081 |
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JPX |
0094358 |
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Divisions (1)
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Number |
Date |
Country |
Parent |
773737 |
Oct 1991 |
|
Continuations (1)
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Number |
Date |
Country |
Parent |
351633 |
May 1989 |
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