Electric lamp and discharge devices – Cathode ray tube – Ray generating or control
Reexamination Certificate
1998-06-24
2001-10-30
Day, Michael H. (Department: 2879)
Electric lamp and discharge devices
Cathode ray tube
Ray generating or control
C313S447000, C313S336000, C348S809000
Reexamination Certificate
active
06310434
ABSTRACT:
BACKGROUND OF THE INVENTION
The invention relates to a picture display device provided with a cathode ray tube comprising a base, an electron gun and a cathode, the cathode having electric current conductors which are connected to external electronics via the base. The invention also relates to a cathode ray tube comprising an electron gun with a cathode.
A cathode ray tube for a monochrome picture display device, for example a television or a monitor, has a display screen with a phosphor layer. The cathode ray tube also comprises an electron gun which emits an electron beam during operation. This beam can be controlled by means of deflection coils which generate a given magnetic field towards a given location on the display screen.
The display screen is activated by scanning the electron beam across the screen, which beam is modulated by a video signal. This video signal ensures that the phosphor is excited in accordance with such a pattern that a picture is produced when the phosphor luminesces. When many electrons land on the pixel during the excitation time of a pixel, this pixel lights up more brightly. The video signal is applied to the cathode via electric current conductors each connected to a pin in the base. These electric current conductors are shown, for example in the electron gun depicted in
FIG. 3
of U.S. Pat. No. 4,720,654.
There are many pixels per surface unit. Moreover, the pixels are excited one after the other within a very short time. The viewer thereby experiences a moving image at a normal viewing distance.
In a color display device, for example a color television or a color monitor, each pixel has three phosphor elements each luminescing in a different primary color. As it were, there are three uniform, regular patterns on the display screen, each pattern having a different luminescence color. Instead of one electron beam, three electron beams from three different cathodes in the color electron gun are scanned across the screen during operation. Each of these three beams excites the pixels of a given luminescence color. Since the phosphor elements of a pixel are located close together, the viewer experiences them as a single element instead of separate elements. The color which is experienced is a mixed color of the three elements. By exciting each element at a given intensity, the viewer experiences a given color. For example, if the red element and the blue element are fully excited and the green element is partly excited, the viewer will experience the mixed color of purple. Similarly as in a monochrome cathode ray tube, the pixels are located so close together that the viewer does not see them as separate pixels from a normal viewing distance. This results in a color image.
The known picture display devices have a considerable drawback in that the image is not sharp enough, notably for monitor applications.
It is, inter alia, an object of the invention to obviate the above-mentioned drawback. More particularly, it is an object of the invention to provide a picture display device in which the displayed image is sharp enough for monitor applications.
SUMMARY OF THE INVENTION
This object is achieved with a picture display device provided with a cathode ray tube comprising a base, an electron gun and a cathode, the cathode having electric current conductors between which a video signal is applied and which are connected to external electronics via the base, which picture display device according to the invention is characterized in that over a part of their length the conductors within the cathode ray tube at least partly engage that is, are held close to, each other and are separated by an insulating material. By using this measure, the inductance of the circuit of electric current conductors and cathode decreases and the modulation frequency of the electronic drive unit can be increased. The achievable bandwidth is thereby increased. This provides the possibility of addressing a display screen with more pixels. When the display screen of a picture display device has more pixels per surface unit, the resolution is higher and the image is thus sharper. An additional advantage is that less power is required to drive the cathode.
The picture display device is preferably provided with a cathode having electric current conductors each being band-shaped and partly overlapping each other over a given distance, while the insulating material is a layer located between these two electric current conductors. It is common practice that the electric current conductors of a cathode in an electron gun are band-shaped.
The invention can be implemented easily in this way because it is not necessary to deviate much from the customary design. The lead-throughs in the base can remain as they are in the conventional picture display device.
In accordance with a further preferred embodiment, the electric current conductors have apertures through which the insulating material located between the electric current conductors projects and thus anchors the electric current conductors together. Due to this way of connection, the electric current conductors are secured to each other in an extra tight manner. Due to the projections, the tensile strength rather than the (much smaller) shearing strength is decisive for this tightness.
In accordance with a further preferred embodiment, the electric current conductors are double-folded in the longitudinal direction, at least over a part of their length, so that they have a U-shaped cross-section and are interleaved in such a way that one limb of the U of both electric current conductors extends between the limbs of the U of the other electric current conductor, the electric current conductors being separated from each other by an insulating layer.
In accordance with a further preferred embodiment, at least one electric current conductor has at least one lug which is folded around the other current conductor. One electric current conductor may have, for example two lugs, at the beginning and the end of the piece where both electric current conductors engage each other. The lugs are folded around the other electric current conductor so that shearing is inhibited. The lugs must be insulated from the electric current conductor around which they are folded.
In accordance with a further, favorable preferred embodiment, the cathode is a semiconductor cathode. Such a semiconductor cathode is described in, for example U.S. Pat. No. 5,864,201 issued Jan. 26, 1999. In a picture display device with an electron gun provided with a semiconductor cathode, the advantage of the invention becomes particularly manifest. In fact, a cathode of this type is located closer to the first lens of the electron gun than a cathode of a different type. Consequently, the parts of the electric current conductors located in the envelope of the cathode ray tube are longer than in a different type of cathode. Consequently, the circuit of electric current conductors and cathode has a higher inductance than in other cathodes and its decrease is thus extra important.
These and other aspects of the invention are apparent from and will be elucidated with reference to the embodiments described hereinafter.
REFERENCES:
patent: 3873876 (1975-03-01), Yamauchi
patent: 4002884 (1977-01-01), Weiss
patent: 4604647 (1986-08-01), Peele
patent: 4720654 (1988-01-01), Hernqvist et al.
patent: 5341064 (1994-08-01), Seong
patent: 5548184 (1996-08-01), Choi et al.
patent: 5585689 (1996-12-01), Imura et al.
Stoffels Jacobus
Van Zutphen Tom
Day Michael H.
U.S. Philips Corporation
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