Claims
- 1. A cathode ray tube apparatus comprising:
- a vacuum envelope including an axis, a panel section, a funnel section and a neck section, said panel section having a face plate with a substantially rectangular front face and an inner face and a skirt extending from a peripheral edge of said face plate, said funnel section having an outer periphery and being continuous with said skirt of said panel section, and said neck section having an outer periphery and being formed substantially cylindrically and continuous with said funnel section;
- a phosphor screen formed on said inner face of said face plate;
- a shadow mask arranged in said panel section so as to face said phosphor screen on said face plate;
- an in-line electron gun assembly provided in said neck section and comprising an electron beam generator for producing three electron beams constituting a center beam and two side beams, and an electron lens unit for focusing said three electron beams, said electron gun assembly being of an in-line type for emitting said three electron beams in parallel to each other so as to travel on a plane; and
- a deflection device arranged on said outer peripheries of said funnel section and said neck section and comprising two deflection means, the first deflection means for producing mainly a pincushion type deflection magnetic field to deflect said three electron beams in a first direction in which said three electron beams are arranged and the second deflection means for producing mainly a barrel type deflection magnetic field to deflect said three electron beams in a second direction perpendicular to said first direction,
- at least one pair of permanent magnets arranged between the electron lens unit of the electron gun assembly and that end of the deflection device which is closer to the electron gun assembly,
- wherein, defining the tube axis as a Z-axis, the in-line direction of the electron beams as an X-axis, and the direction perpendicular to both the Z-axis and the X-axis as a Y-axis, and where the X-axis and the Z-axis together define an XY plane, said at least one pair of magnets are located in the XY plane and arranged around the Z-axis clockwise when viewed from the phosphor screen, said at least one pair of magnets including a first magnet oriented symmetrical to said Y-axis and such that an N pole thereof is adjacent the Y-axis and a second magnet oriented such that an N pole thereof is directed to an S pole of the first magnet to produce a pincushion type stationary magnetic field for correcting deflection aberrations of said three electron beams by said second deflection means and statically converging said three electron beams, said pair of permanent magnets being arranged symmetrically with respect to said axis of said vacuum envelope, and wherein a length of said permanent magnets is shorter than a distance between said two side beams emitted from said electron gun assembly.
- 2. The apparatus according to claim 1, wherein said permanent magnets are provided in said electron gun assembly.
- 3. The apparatus according to claim 1, wherein coma correcting means is provided at said electron gun assembly and comprises magnetic substances which change an after-leakage of the magnetic field of said deflection device.
- 4. The apparatus according to claim 1, wherein each of said permanent magnets is arranged in parallel to said first direction.
- 5. A deflection device as in claim 1, wherein said at least one pair of permanent magnets is arranged on an end surface of said electron gun assembly and extending from said end surface.
- 6. A color cathode ray tube assembly comprising:
- a vacuum envelope including an axis, a panel section, a funnel section and a neck section, said panel section having a face plate with a substantially rectangular front face, an inner face and a peripheral edge and a skirt extending from said peripheral edge, said funnel section having an outer periphery and being continuous with said skirt of said panel section and said neck section having a substantially cylindrical shape and an outer periphery and being continuous with said funnel section;
- a phosphor screen formed on said inner face of said face plate;
- a shadow mask arranged in said panel section so as to face said phosphor screen on said face plate;
- an in-line electron gun assembly provided in said neck portion and comprising an electron beam generator for generating three electron beams constituting a center beam and a pair of side beams and an electron lens unit for focusing and for emitting said three electron beams such that said three electron beams travel on a plane; and
- a deflection device arranged on said outer peripheries of said funnel section and said neck section and comprising two deflection means, the first deflection means for producing mainly a pincushion type magnetic field to deflect said three electron beams in a first direction in which said three electron beams are arranged and the second deflection means for producing mainly a barrel type deflection field to deflect said three electron beams in a second direction perpendicular to said first direction,
- at least two pairs of permanent magnets which produce stationary magnetic fields for correcting deflection aberrations, arranged between the electron lens unit of the electron gun assembly and that end of the deflection device which is closer to the electron gun assembly,
- wherein, defining the tube axis as a Z-axis, the in-line direction of the electron beams as an X-axis, and the direction perpendicular to both the Z-axis and the X-axis as a Y-axis, and where the X-axis and the Z-axis together define an XY plane, said at least one pair of magnets are located in the XY plane and arranged around the Z-axis clockwise when viewed from the phosphor screen, said at least two pairs of magnets including a first magnet oriented symmetrical to said Y-axis and such that an N pole thereof is adjacent the Y-axis and a second magnet oriented such that an N pole thereof is directed to an S pole of the first magnet, one pair of said at least two pair of permanent magnets that includes said first magnet also including a third magnet, and also arranged symmetrically with respect to said Z axis, said one pair having reverse poles opposed to each other, the other pair of said at least two pair of permanent magnets including said second magnet and also a fourth magnet being arranged in a direction perpendicular to said Z axis direction and symmetrically with respect to said Z-axis and having reverse poles opposed to each other wherein a magnetic flux density of said one pair of said permanent magnets is larger than that of said another pair of said permanent magnets at central portions of pole surfaces thereof, and wherein a length of said permanent magnets is shorter than a distance between the two side beams emitted from said electron gun assembly.
- 7. The apparatus according to claim 6, wherein said permanent magnets are provided in said electron gun assembly.
- 8. The apparatus according to claim 6, wherein coma correction means is provided at said electron gun assembly and comprises magnetic substances which change an after-leakage of the magnetic field of said deflection device.
- 9. A deflection device as in claim 6, wherein said at least one pair of permanent magnets is arranged on an end surface of said electron gun assembly and extending from said end surface.
- 10. A deflection device for use in a color cathode ray tube including an axis, a panel section, a funnel section having an outer periphery and a neck portion having an in-line type electron gun assembly housed therein for producing three electron beams, and having an outer periphery, and being arranged on the outer peripheries of the funnel section and the neck section, comprising:
- first deflection means producing mainly a pincushion type magnetic field to deflect the three electron beams emitted from said electron gun assembly in a first direction in which said three electron beams are arranged; and
- second deflection means producing mainly a barrel type deflection magnetic field to deflect said three electron beams in a second direction perpendicular to said first direction,
- at least one pair of permanent magnets arranged at an electron gun side of the deflection device and symmetrically with respect to said axis and having reverse poles opposed to each other so as to produce a pincushion type stationary magnetic field for correcting deflection aberrations of said three electron beams by the second deflection means and statically converging said three electron beams,
- wherein, defining the tube axis as a Z-axis, the in-line direction of the electron beams as an X-axis, and the direction perpendicular to both the Z-axis and the X-axis as a Y-axis, and where the X-axis and the Y-axis together define an XY plane, said at least one pair of magnets are located in the XY plane and arranged around the Z-axis clockwise when viewed from the panel section, said at least one pair of magnets including a first magnet oriented symmetrical to said Y-axis and such that an N pole thereof is adjacent the Y-axis and a second magnet oriented such that an N pole thereof is directed to an S pole of the first magnet, and wherein a length of said permanent magnets if shorter than a distance between said two side beams emitted from said electron gun assembly.
- 11. The device according to claim 10, wherein said permanent magnets are arranged in parallel to said first direction.
- 12. A deflection device as in claim 10, wherein said at least one pair of permanent magnets is arranged on an end surface of said electron gun assembly and extending from said end surface.
- 13. A deflection device for use in a color cathode ray tube including an axis, a panel section, a funnel section having an outer periphery and a neck section having an in-line type electron gun assembly for producing three electron beams housed therein and having an outer periphery, and being arranged on the outer peripheries of the funnel section and the neck section, comprising:
- first deflection means producing mainly a pincushion type magnetic field to deflect the three electron beams emitted from said electron gun assembly in a first direction in which said three electron beams are arranged; and
- second deflection means producing mainly a barrel type deflection magnetic field to deflect said three electron beams in a second direction perpendicular to said first direction,
- at least one pair of permanent magnets arranged at an electron gun side of the deflection device and which produces stationary magnetic fields for correcting deflection aberrations of said three electron beams by the second deflection means, one pair of said permanent magnets being arranged symmetrically with respect to said axis and having reverse poles opposed to each other, the other pair of said permanent magnets arranged in a direction perpendicular to said first direction and symmetrically with respect to said axis and having reverse poles opposed to each other,
- wherein, defining the tube axis as a Z-axis, the in-line direction of the electron beams as an X-axis, and the direction perpendicular to both the Z-axis and the X-axis as a Y-axis, and where the X-axis and the Y-axis together define an XY plane, said at least one pair of magnets are located in the XY plane and arranged around the Z-axis clockwise when viewed from the panel section, said at least one pair of magnets including a first magnet and a second magnet oriented such that an N pole thereof is directed to an S pole of the first magnet and wherein a length of said permanent magnets is shorter than a distance between said two side beams emitted from said electron gun assembly, and wherein a magnetic flux density of said one pair of said permanent magnets is larger than that of said another pair of said permanent magnets at central portions of pole surfaces thereof.
- 14. The device according to claim 13, wherein said one pair of said permanent magnets are arranged in parallel to said first direction and said another pair of said permanent magnets are arranged in parallel to said second direction.
- 15. A deflection device as in claim 13, wherein said at least one pair of permanent magnets is arranged on an end surface of said electron gun assembly and extending from said end surface.
Priority Claims (1)
Number |
Date |
Country |
Kind |
63-156974 |
Jun 1988 |
JPX |
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Parent Case Info
This is a continuation of application Ser. No. 371,844, filed on Jun. 27, 1989, which was abandoned upon the filing hereof.
US Referenced Citations (3)
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Continuations (1)
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Number |
Date |
Country |
Parent |
371844 |
Jun 1989 |
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