Claims
- 1. A self convergent color display tube comprising:
- a. an envelope having a display window supporting a luminescent screen;
- b. an electron gun disposed in the envelope for producing along respective axes central and first and second outer electron beams directed toward the luminescent screen, said electron gun including electrode means for cooperatively effecting focusing of the individual electron beams and convergence of said electron beams to a common point at said luminescent screen; and
- c. deflection means for producing a deflection field within the envelope between the electron gun and the luminescent screen for deflecting the electron beams across said screen, said deflection field having an electron beam defocusing astigmatic component of predetermined strength for maintaining said convergence as said electron beams are deflected away from a central region of said screen;
- characterized in that;
- (1) the deflection means is configured to reduce the strength of the beam defocusing astigmatic component of the deflection field, thereby causing a predetermined overconvergence of the outer electron beams when deflected away from the central region of the screen; and
- (2) the electron gun includes convergence correction electrode means for responding to a signal applied to the electron gun by dynamically deflecting the outer electron beams away from the central electron beam to the extent necessary to compensate for the predetermined overconvergence in the deflection field.
- 2. A color display tube as in claim 1 where the convergence correction electrode comprises an astigmatic beam focusing element.
- 3. A color display tube as in claim 1 or 2 including means for dynamically varying the strength of the convergence correction with variations in the strength of the deflection field.
- 4. A color display tube as in claim 1 where the convergence correction electrode means is configured to produce a quadrupolar field for each of the electron beams, characterized in that said quadrupolar field for each of the outer electron beams has a center which is further from the axis of the central electron beam than is the axis of the respective outer electron beam.
- 5. A color display tube as in claim 4 where center of each of the quadrupolar fields for the outer electron beams is disposed at least 0.10 mm from the axis of the respective outer electron beam.
- 6. A color display tube as in claim 1 where the convergence correction electrode means is configured to produce a quadrupolar field for each of the electron beams, characterized in that said quadrupolar field for each of the outer electron beams is symmetrically disposed around an axis which diverges from the axis of the central electron beam with decreasing distance to the luminescent screen.
- 7. A color display tube as in claim 1 where the electrode means comprises first and second electrode systems arranged successively along the electron beam axes, said first electrode system including in succession a first electrode, an auxiliary electrode and a second electrode, said auxiliary electrode having central and first and second outer apertures located for passing the respective electron beams and shaped for producing respective quadrupolar fields for the electron beams, characterized in that each of the outer apertures has a center which is further from the axis of the central electron beam than is the axis of the respective outer electron beam.
- 8. A color display tube as in claim 7 where the outer apertures of the auxiliary electrode lie in respective plains facing outwardly from a center of the luminescent screen.
- 9. A color display tube as in claim 7 or 8 where the beam axes lie in a common plane and where the apertures in the auxiliary electrode are elongated in a direction substantially perpendicular to said common plane.
- 10. A color display tube as in claim 7 where the auxiliary electrode is electrically connected to the first electrode.
- 11. A color display tube as in claim 7 including means for varying the strength of the convergence correction by applying a control voltage to the second electrode which varies synchronously with the deflection field.
- 12. A color display tube as in claim 10 where the first electrode system includes an intermediate electrode disposed between the auxiliary electrode and the second electrode, said intermediate electrode having at least one aperture which is elongated in a direction substantially parallel to the common plane.
- 13. A color display tube as in claim 12 where the intermediate electrode is electrically connected to the second electrode.
- 14. A color display tube as in claim 13 where the intermediate electrode has central and first and second outer apertures which are elongated in a direction substantially parallel to the common plane, each of said outer apertures having a center which is closer to the axis of the central electron beam than is the axis of the respective outer electron beam.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8702631 |
Nov 1987 |
NLX |
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Parent Case Info
This is a continuation of application Ser. No. 07/265,631, filed Nov. 1, 1988, now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4172309 |
Chiodi |
Oct 1979 |
|
4771216 |
Blacker et al. |
Sep 1988 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
265631 |
Nov 1988 |
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