Claims
- 1. A cathode ray tube comprising:
a vacuum envelope comprising a panel portion, a neck portion, a funnel portion having a large-diameter end thereof connected to said panel portion and a small-diameter end thereof connected to said neck portion, and a stem having conductive pins embedded therein and closing off an open end of said neck portion on a side thereof opposite from said funnel portion; a phosphor screen formed on an inner surface of said panel portion; an electron gun housed within said neck portion; and a deflection yoke mounted externally of said vacuum envelope in a vicinity of a transition region between said neck portion and said funnel portion; wherein said electron gun comprises a cathode, a beam control electrode, an accelerating electrode, a first electrode, a focus electrode and an anode arranged in the order named with specified spacings therebetween, wherein said anode is formed of a large-diameter cylinder portion disposed on a phosphor screen side thereof and a small-diameter cylinder portion disposed on a cathode side thereof, said large-diameter cylinder portion and said small-diameter cylinder portion being connected together in a direction of an axis of said cathode ray tube, wherein said focus electrode is formed of a large-diameter cylinder portion disposed on a phosphor screen side thereof and having a diameter larger than a diameter of said small-diameter cylinder portion of said anode, and a small-diameter cylinder portion disposed on a cathode side thereof and having a diameter smaller than a diameter of said small-diameter cylinder portion of said anode, said large-diameter cylinder portion and said small-diameter cylinder portion of said focus electrode being connected together in the direction of the axis of said cathode ray tube, said large-diameter cylinder portion of said focus electrode being disposed concentrically with and within said large-diameter cylinder portion of said anode, wherein said anode and said first electrode are electrically connected together within said cathode ray tube, and wherein the following inequalities are satisfied: −LP+184.9≧LG4≧0.0004 LP3−0.1571 LP2+21.006 LP−922.41, where LG4 (mm) is an axial length of said focus electrode, and LP (mm) is a distance from a phosphor screen side end of said focus electrode to a center of said phosphor screen.
- 2. A cathode ray tube according to claim 1, wherein said LG4 and said LP satisfy the following inequality:
- 3. A cathode ray tube according to claim 1, wherein an outside diameter of said neck portion is equal to or smaller than 29.1 mm.
- 4. A cathode ray tube according to claim 2, wherein a distance from an outer face of said panel portion to an outer face of said stem is equal to or smaller than 255 mm.
- 5. A cathode ray tube according to claim 1, wherein an effective diagonal dimension of said phosphor screen is about 139.7 mm.
- 6. A cathode ray tube according to claim 1, wherein an inside diameter of said large-diameter cylinder portion of said anode is about 22 mm, an inside diameter of said large-diameter cylinder portion of said focus electrode is about 15.8 mm, and an inside diameter of said small-diameter cylinder portion of said focus electrode is about 9.9 mm.
- 7. A cathode ray tube according to claim 1, wherein a voltage applied to said focus electrode is in a range of 25% to 28% of a voltage applied to said anode.
- 8. A cathode ray tube according to claim 1, wherein a voltage applied to said anode is about 30 kV.
- 9. A cathode ray tube according to claim 1, wherein an axial length of said first electrode is no greater than 20.5 mm.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This is a continuation of U.S. application Ser. No. 09/769,281, filed Jan. 26, 2001, the subject matter of which is incorporated by reference herein.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09769281 |
Jan 2001 |
US |
Child |
10338853 |
Jan 2003 |
US |