IP Library Granted Patent US 6,885,143
Granted Patent B2
US 6,885,143 · App. 10/391,789 · Granted Apr 26, 2005

Cathode ray tube with offset deflection center

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Quick Facts
Patent No.
US 6,885,143
App. No.
10/391,789
Granted
Apr 26, 2005
Kind
B2
Abstract

A cathode ray tube is provided, and more particularly, a cost-effective cathode ray tube effective for minimizing deterioration of color purity and obtaining a sufficient margin for a beam strike neck (BSN) phenomenon by moving a ½ center (deflection center) closer to a panel without changing the curvature of a funnel or the thickness of a glass inside the funnel.

Claims (38)

1. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen; and

a ratio of a length, ‘a’, of a ferrite core to a distance, ‘b’, from a holder opening part of the deflection yoke to a rear end of the ferrite core satisfies a relation of 0.2≦a/b≦0.7 and a ratio of a distance, OAH, between a center of an outer surface of the panel to an extended plane of a skirt seal edge part to a distance, TOR, between a Top Of Round of the funnel and an extended plane of a seal edge part satisfies a relation of 0.44<OAH/TOR≦0.56.

2. The cathode ray tube according to claim 1 , wherein the cathode ray tube is for a color television.

3. The cathode ray tube according to claim 1 , wherein the ratio of the length, ‘a’, of the ferrite core to the distance, ‘b’, from the holder opening part of the deflection yoke to the rear end of the ferrite core satisfies a relation of 0.46≦a/b≦0.57.

4. The cathode ray tube according to claim 3 , wherein the cathode ray tube is for a color television.

5. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen; and

a ratio of a length, ‘a’, of a ferrite core to a distance, ‘b’, from a holder opening part of the deflection yoke to a rear end of the ferrite core satisfies a relation of 0.2≦a/b≦0.7; wherein a ratio of the distance, OAH, between a center of an outer surface of the panel to an extended plane of a skirt seal edge part to a distance, RL, between a reference line of the funnel and the extended plane of the seal edge part satisfies a relation of 0.35<OAH/(RL)≦0.43.

6. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen; and

a ratio of a length, ‘a’, of a ferrite core to a distance, ‘b’, from a holder opening part of the deflection yoke to a rear end of the ferrite core satisfies a relation of 0.2≦a/b≦0.7; wherein a ratio of a half of a diagonal length, USD/2, of an effective surface of the panel to the distance, TOR, between the Top Of Round of the funnel and the extended plane of the seal edge part satisfies a relation of 1.47<(USD/2)/TOR≦1.58.

7. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen; and

a ratio of a length, ‘a’, of a ferrite core to a distance, ‘b’, from a holder opening part of the deflection yoke to a rear end of the ferrite core satisfies a relation of 0.2≦a/b≦0.7; wherein a ratio of the half of the diagonal length, USD/2, of the effective surface of the panel to the distance, RL, between the reference line of the funnel and the extended plane of the seal edge part satisfies a relation of 1.16<(USD/2)/(RL)≦1.23.

8. The cathode ray tube according to claim 7 , wherein a ratio of a distance, OAH, between a center of an outer surface of the panel to an extended plane of a skirt seal edge part to a distance, TOR, between a Top Of Round of the funnel and an extended plane of a seal edge part satisfies a relation of 0.44<OAH/TOR≦0.56.

9. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen; wherein a ratio of the distance, OAH, between a center of an outer surface of the panel to an extended plane of a skirt seal edge part to a distance, RL, between a reference line of the funnel and the extended plane of the seal edge part satisfies a relation of 0.35<OAH/(RL)≦0.43.

10. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen; wherein a ratio of a half of a diagonal length, USD/2, of an effective surface of the panel to the distance, TOR, between the Top Of Round of the funnel and the extended plane of the seal edge part satisfies a relation of 1.47<(USD/2)/TOR≦1.58.

11. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen; wherein a ratio of the half of the diagonal length, USD/2, of the effective surface of the panel to the distance, RL, between the reference line of the funnel and the extended plane of the seal edge part satisfies a relation of 1.16<(USD/2)/(RL)≦1.23.

12. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen, and an outer surface of the panel is substantially flat and an inner surface of the panel has a predetermined curvature; and

a ratio of a length, ‘a’, of a ferrite core to a distance, ‘b’, from a holder opening part of the deflection yoke to a rear end of the ferrite core satisfies a relation of 0.46≦a/b≦0.57 and a ratio of a distance, OAH, between a center of an outer surface of the panel to an extended plane of a skirt seal edge part to a distance, TOR, between a Top Of Round of the funnel and an extended plane of a seal edge part satisfies a relation of 0.44<OAH/TOR≦0.56.

13. The cathode ray tube according to claim 12 , wherein the curvature radius of the inner surface of the panel ranges from 1.2R to 8R, given R=1.767×diagonal length of an effective surface of the panel.

14. The cathode ray tube according to claim 12 , wherein a curvature radius of the outer surface of the panel is equal to or greater than 30,000 mm.

15. The cathode ray tube according to claim 14 , wherein the curvature radius of the inner surface of the panel ranges from 1.2R to 8R, given R=1.767×diagonal length of an effective surface of the panel.

16. The cathode ray tube according to claim 12 , wherein the cathode ray tube is for a color television.

17. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen, and an outer surface of the panel is substantially flat and an inner surface of the panel has a predetermined curvature; and

a ratio of a length, ‘a’, of a ferrite core to a distance, ‘b’, from a holder opening part of the deflection yoke to a rear end of the ferrite core satisfies a relation of 0.46≦a/b≦0.57; wherein a ratio of the distance, OAH, between a center of an outer surface of the panel to an extended plane of a skirt seal edge part to a distance, RL, between a reference line of the funnel and the extended plane of the seal edge part satisfies a relation of 0.35<OAH/(RL)≦0.43.

18. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen, and an outer surface of the panel is substantially flat and an inner surface of the panel has a predetermined curvature; and

a ratio of a length, ‘a’, of a ferrite core to a distance, ‘b’, from a holder opening part of the deflection yoke to a rear end of the ferrite core satisfies a relation of 0.46≦a/b≦0.57; wherein a ratio of a half of a diagonal length, USD/2, of an effective surface of the panel to the distance, TOR, between the Top Of Round of the funnel and the extended plane of the seal edge part satisfies a relation of 1.47<(USD/2)/TOR≦1.58.

19. A cathode ray tube, comprising:

a panel and a funnel tightly sealed up together, in which the panel is mounted with a fluorescent screen and a shadow mask and the funnel is mounted with an electron gun and a deflection yoke, and a predetermined color image is displayed on a the fluorescent screen as electron beams emitted from the electron gun are deflected by the deflection yoke and collided with the fluorescent screen, and an outer surface of the panel is substantially flat and an inner surface of the panel has a predetermined curvature; and

a ratio of a length, ‘a’, of a ferrite core to a distance, ‘b’, from a holder opening part of the deflection yoke to a rear end of the ferrite core satisfies a relation of 0.46≦a/b≦0.57; wherein a ratio of the half of the diagonal length, USD/2, of the effective surface of the panel to the distance, RL, between the reference line of the funnel and the extended plane of the seal edge part satisfies a relation of 1.16<(USD/2)/(RL)≦1.23.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2009
From: LG PHILIPS DISPLAYS KOREA CO., LTD
To: MERIDIAN SOLAR & DISPLAY CO., LTD.
Reel/Frame 023103/0903 →
LIEN Recorded Aug 11, 2009
From: LP DISPLAYS KOREA CO., LTD. F/K/A LG.PHILIPS DISPLAYS KOREA CO., LTD.
To: BURTCH, CHAPTER 7 TRUSTEE, JEOFFREY L.
Reel/Frame 023079/0588 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2003
From: KIM, KYUK DONG
To: LG.PHILIPS DISPLAYS KOREA CO., LTD.
Reel/Frame 013891/0641 →