Claims
- 1. An electron gun for a cathode ray tube comprising, an object point forming lens region and a principal converging lens region, at least one through hole for said electron beam in a first grid electrode within said object point forming lens region is formed with an oblong shape such that the object point in the vertical direction is formed at a further position from said principal converging lens region than the object point in the horizontal direction, and the shapes of openings of electrodes within said principal converging lens region are determined such that the converging angle of said electron beam in the vertical direction is smaller than the converging angle in the horizontal direction so as to provide a beam spot with substantially no halo at the corners as well as the center of a screen in said cathode ray tube; and which includes a thrid grid and a fourth grid forming said principal lens, there being applied an anode voltage (V.sub.H) to said fourth grid and a focus voltage (V.sub.3) to said third grid wherein the focus voltage (V.sub.3) is less than the anode voltage (V.sub.H), each of said grids having a vertical segment and a horizontal segment, and the distance between the vertical segments of each grid being less than the distance between the horizontal segments, and wherein the end face of at least one of said grids includes a projecting vertical segment extending toward the end face of the other adjacent grid.
- 2. An electron gun as in claim 1, wherein the vertical segments of said thrid and fourth grids include projections extending toward each other.
- 3. An electron gun for a cathode ray tube comprising, an object point forming lens region and a principal converging lens region, at least one through hole for said electron beam in a first grid electrode within said object pont forming lens region is formed with an oblong shape such that the object point in the vertical direction is formed at a further position from said principal converging lens region than the object point in the horizontal direction, and the shapes of openings of electrodes within said principal converging lens region and determined such that the converging angle of said electron beam in the vertical direction is smaller than the converging angle in the horizontal direction so as to provide a beam spot with substantially no halo at the corners as well as the center of a screen in said cathode ray tube, and wherein said gun is of a bipotential type and includes a third gird and a fourth grid forming the principal lens with an anode voltage (V.sub.H) applied to the fourth grid and the focus voltage (V.sub.4) applied to the third grid with the focus voltage being less than the anode voltage (V.sub.3 <V.sub.H), and each of said grids having a vertical segment and a horizontal segment and the distance between the vertical segments being equal to the distance between the horizontal segments, each of said grids having a generally hollow circularly-shaped center and each grid having a vertical distance (D.sub.V) and a horizontal distance (D.sub.H) and wherein the vertical distance (D.sub.V) is greater than the horizontal distance (D.sub.H) for the face of the thrid grid facing the fourth grid.
- 4. An electron gun for a cathode ray tube comprising, an object point forming lens region and a principal converging lens region, at least one through hole for said electron beam in a first grid electrode within said object point forming lens region is formed with an oblong shape such that the object point in the vertical direction is formed at a further position from said principal converging lens region than the object point in the horizontal direction, and the shapes of openings of electrodes within said principal converging lens region and determined such that the converging angle of said electron beam in the vertical direction is smaller than the converging angle in the hozintal direction so as to provide a beam spot with substantially no halo at the corners as well as the center of a screen in said cathode ray tube, and wherein said gun is of a bipotential type and includes a third grid and a fourth grid forming the principal lens with an anode voltage (V.sub.H) applied to the fourth grid and the focus voltage (V.sub.4) applied to the third grid with the focus voltage being less than the anode voltage (V.sub.3 <V.sub.H), and each of said grids having a vertical segment and a horizontal segment and the distance between vertical segments equalling the distance between the horizontal segments, each of said grids having a generally hollow and circularly-shaped center and having a vertical distance (D.sub.V) and a horizontal distance (D.sub.H) and wherein the horizontal distance (D.sub.V) is greater than the vertical dimension (D.sub.V) for the face of the fourth grid facing the third grid.
- 5. An electron gun for a cathode ray tube comprising, an object point forming lens region and a principal converging lens region, at least one through hole for said electron beam in a first grid electrode within said object point forming lens region is formed with an oblong shape such that the object point in the vertical direction is formed at a further position from said principal converging lens region than the object point in the horizontal direction, and the shapes of openings of electrodes within said principal converging lens region are determined such that the converging angle of said electron beam in the vertical direction is smaller than the converging angle in the horizontal direction so as to provide a beam spot with substantially no halo at the corners as well as the center of a screen in said cathode ray tube, and wherein said gun is of the unipotential type having a third grid, a fourth grid and a fifth grid spaced from each other and forming the principal lens, there being an anode voltage (V.sub.H) applied to the third and fifth grids and a focus voltage (V.sub.4) applied to the fourth grid with the focus voltage being greater than the anode voltage (V.sub.4 >V.sub.H), with each of said grids having a vertical segment and a horizontal segments, wherein the distances between the vertical and horizontal segments of the thrid and fourth grids are equal and the distances between the vertical and horizontal segments of the fourth and fifth grids are equal.
- 6. An electron gun for a cathode ray tube comprising, an object point forming lens region and a principal converging lens region, at least one through hole for said electron beam in a first grid electrode within said object point forming lens region is formed with an oblong shape such that the object point in the vertical direction is formed at a further position from said principal converging lens region than the object point in the horizontal direction, and the shapes of openings of electrodes within said principal converging lens region are determined such that the converging angle of said electron beam in the vertical direction is smaller than the converging angle in the horizontal direction so as to provide a beam spot with substantially no halo at the corners as well as the center of a screen in said cathode ray tube, and wherein said gun is of the unipotential type and having a third grid, a fourth grid and a fifth grid spaced from each other and forming the principal lens, there being an anode voltage (V.sub.H) applied to the third and fifth grids and a focus voltage (V.sub.4) applied to the fourth grid with the focus voltage being greater than the anode voltage (V.sub.4 >V.sub.H), with each of said grids having a vertical segment and the horizontal segment, wherein the distances between the horizontal and vertical segments of the third and fourth grids are equal and the distances between the vertical segments is less than the distances between the horizontal segments for the fourth and fifth grids.
- 7. An electron gun for a cathode ray tube comprising, an object point forming lens region and a principal converging lens region, at least one through hole for said electron beam in a first grid electrode within said object point forming lens region is formed with an oblong shape such that the object point in the vertical direction is formed at a further position from said principal converging lens region than the object point in the horizontal direction, and the shapes of openings of electrodes within said principal converging lens region are determined such that the converging angle of said electron beam in the vertical direction is smaller than the converging angle in the horizontal direction so as to provide a beam spot with substantially no halo at the corners as well as the center of a screen in said cathode ray tube, and wherein said gun is of the unipotential type and having a third grid, a fourth grid and a fifth grid spaced from each other and forming the principal lens, there being an anode voltage (V.sub.H) applied to the third and fifth grids and a focus voltage (V.sub.4) applied to the fourth grid with the focus voltage being greater than the anode voltage (V.sub.4 >V.sub.H), with each of said grids having a vertical segment and a horizontal segment, and wherein the distances between the horizontal and vertical segments of the fourth and fifth grids are equal and the distance between the vertical segments is less than the distance between the horizontal segments for the fourth and fifth grids.
- 8. An electron gun as in claim 5, wherein each of the grids has a generally hollow and circularly-shaped center having a vertical distance (D.sub.V) and a horizontal distance (D.sub.H) and in the end face of the third grid facing the fourth grid, the vertical distance is less than the horizontal distance (D.sub.V <D.sub.H).
- 9. An electron gun as in claim 5, wherein each of the grids has a generally hollow and circularly-shaped center having a vertical distance (D.sub.V) and a horizontal distance (D.sub.H) and in the end face of the fourth grid facing the third grid, the vertical distance is greater than the horizontal distance (D.sub.V >D.sub.H).
- 10. An electron gun as in claim 5, wherein each of the grids has a generally hollow and circularly-shaped center having a vertical distance (D.sub.V) and a horizontal distance (D.sub.H) and in the end face of the fourth grid facing the fifth grid, the vertical distance is greater than the horizontal (D.sub.V >D.sub.H).
- 11. An electron gun as in claim 5, wherein each of the grids has a generally hollow and circularly shaped center having a vertical distance (D.sub.V) and a horizontal distance (D.sub.H) and in the end face of the fifth grid facing the fourth grid, the vertical distance is less than the horizontal distance (D.sub.V <D.sub.H).
- 12. An electron gun for a cathode ray tube comprising, an object point forming lens region and a principal converging lens region, at least one through hole for said electron beam in a first grid electrode within said object point forming lens region is formed with an oblong shape such that the object point in the vertical direction is formed at a further position from said principal converging lens region than the object point in the horizontal direction, and the shapes of openings of electrodes within said principal converging lens region are determine such that the converging angle of said electron beam in the vertical direction is smaller than the converging angle in the horizontal direction so as to provide a beam spot with substantially no halo at the corners as well as the center of a screen in said cathode ray tube, and wherein there is further provided a first grid a second grid and a third grid, said first grid defining three oblong-shaped electron beam openings therein and said second grid defining three circularly-shaped electron beam openings therein, and wherein the oblong openings have a height to width ration in the range of 0.7.ltoreq.h/w<1 and the opening in the third grid is an oblong shape having a vertical distance (D.sub.V) to horizontal distance (D.sub.H) ratio in the range in which 0.7.ltoreq.D.sub.V /D.sub.H <1.
- 13. An electron gun for a cathode ray tube comprising, an object point forming lens region and a principal converging lens region, at least one through hole for said electron beam in a first grid electrode within said object point forming lens region is formed with an oblong shape such that the object point in the vertical direction is formed at a further position from said principal converging lens region than the object point in the horizontal direction, and the distances between cylindrical grid electrodes within said principal converging lens region and determined such that the converging angle of said electron beam in the vertical direction is smaller than the converging angle in the horizontal direction so as to provide a beam spot with substantially no halo at the corners as well as the center of a screen in said cathode ray tube, wherein there is further provided a first grid a second grid and a thrid grid, said first grid defining three oblong-shaped electron beam openings therein and said second grid defining three circularly-shaped electron beam openings therein, and wherein the oblong openings have a height to width ratio in the range of 0.7.ltoreq.h/w<1 and the opening in the third grid is an oblong shape having a vertical distance (D.sub.V) to horizontal distance (D.sub.H) ratio in the range in which 0.7.ltoreq.D.sub.V D/.sub.H <1.
Priority Claims (1)
Number |
Date |
Country |
Kind |
60-27726 |
Feb 1985 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 826,836, filed Feb. 6, 1986, now abandoned.
US Referenced Citations (5)
Continuations (1)
|
Number |
Date |
Country |
Parent |
826836 |
Feb 1986 |
|