Claims
- 1. A color cathode ray tube comprising:an evacuated envelope comprising a panel portion, a neck portion and a funnel portion for connecting said panel portion and said neck portion; a three-color phosphor screen formed on an inner surface of said panel portion; a shadow mask having a multiplicity of apertures therein and spaced from said phosphor screen; a three-beam in-line type electron gun housed in said neck portion; said three-beam in-line type electron gun including an electron beam generating section for generating three electron beams and a main lens section for focusing said three electron beams on said three-color phosphor screen; and a deflecting device mounted in a vicinity of a transition region between said funnel portion and said neck portion for scanning said three electron beams on said three-color phosphor screen; said main lens section comprising a focus electrode and an anode facing said focus electrode; each of said focus electrode and said anode comprising an electrode having a single opening common for said three electron beams in an end thereof facing each other and a plate electrode disposed therein which is set back from an end thereof facing another of said focus electrode and said anode and for forming three beam apertures for passing said three electron beams respectively; said focus electrode comprising at least one first sub-electrode adapted to be supplied with a first focus voltage and at least one second sub-electrode adapted to be supplied with a second focus voltage; one of said at least one first sub-electrode and said at least one second sub-electrode facing said anode, said second focus voltage being a fixed voltage superposed with a dynamic voltage varying with deflection of said three electron beams; an electrostatic quadrupole lens being formed between facing ends of a first one of said at least one first sub-electrode and a first one of said at least one second sub-electrode facing said first one of said at least one first sub-electrode; and a following inequality being satisfied: V1>H−2×S where V1 is a vertical diameter of said single opening, H is a horizontal diameter of said single opening, S is P×L/Q, P is a horizontal center-to-center spacing between adjacent phosphor elements at a center of said three-color phosphor screen, Q is an axial spacing between said three-color phosphor screen and said shadow mask at the center of said three-color phosphor screen, and L is an axial distance between said shadow mask and said single opening in said focus electrode.
- 2. A color cathode ray tube according to claim 1, wherein said electrostatic quadrupole lens is configured such that said three electron beams are vertically focused and horizontally diverged when said three electron beams are not deflected.
- 3. A color cathode ray tube according to claim 1, wherein at least one of said at least one first sub-electrode and said at least one second sub-electrode is plural in number.
- 4. A color cathode ray tube according to claim 3, wherein an electrostatic lens is formed between facing ends of a second one of said at least one first sub-electrode and a second one of said at least one second sub-electrode facing said second one of said at least one first sub-electrode; anda focusing strength of said electrostatic lens decreases with an increasing deflection angle of said three electron beams for correcting a curvature of an image field.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9-241290 |
Sep 1997 |
JP |
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CROSS REFERENCE TO RELATED APPLICATION
This is a continuation of U.S. application Ser. No. 09/145,884, filed Sep. 2, 1998, the subject matter of which is incorporated by reference herein.
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Continuations (1)
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Number |
Date |
Country |
Parent |
09/145884 |
Sep 1998 |
US |
Child |
09/645606 |
|
US |