Abstract:
A plasma display for causing a stable discharge at all lines and eliminating a side abnormal discharge is disclosed. In the plasma display, a width of at least one of electrodes at a first scan line selected firstly of scan lines is different from a width of electrodes provided at other scan lines excluding the first scan line.
Abstract:
The present invention relates to a plasma display apparatus. The plasma display apparatus includes a PDP, and a filter formed at the front of the panel. The filter includes an external light shielding sheet including a first base unit, and first pattern units formed in the first base unit, and an EMI shielding sheet including second pattern units. A thickness of the external light shielding sheet is 1.01 to 2.25 times greater than a height of each of the first pattern units, and an angle formed by the first pattern units and the second pattern units is set in the range of 20 to 65 degrees. Thereby, external light can be shielded and an EMI shielding effect can be improved.
Abstract:
The present invention relates to a plasma display apparatus including an external light blocking sheet which blocks and absorbs the external light injected from the outside, in particular, in which a pattern portion having a predetermined gap and width on a base portion prevents the external light from injecting into the inside of a panel inside, in addition, and permits to efficiently radiate a light emitted from the inside of the panel, thereby, the bright room contrast of PDP can be improved.
Abstract:
A plasma display panel is disclosed, which prevents luminance from being reduced, prevents error discharge from occurring due to crosstalk, and improves exhaust ability. Auxiliary barriers or projections are formed in a boundary portion between respective cells in a stripe type barrier structure. Alternatively, a predetermined groove is formed in a predetermined position of a dielectric layer in a lattice shaped barrier structure. In addition to these barriers, second barriers are formed at a greater width or at constant intervals. Thus, exhaust ability can be improved, and error discharge due to crosstalk can be prevented from occurring. Also, luminance in corner portions of the cell can be improved, and contrast can be improved even if a black matrix is not formed.
Abstract:
The present invention relates to a plasma display apparatus. The plasma display apparatus includes a PDP, and a filter formed at the front of the panel. The filter includes an external light shielding sheet including a first base unit, and first pattern units formed in the first base unit, and an EMI shielding sheet including second pattern units. A thickness of the external light shielding sheet is 1.01 to 2.25 times greater than a height of each of the first pattern units, and an angle formed by the first pattern units and the second pattern units is set in the range of 20 to 65 degrees. In accordance with the plasma display apparatus constructed above according to the present invention, the external light shielding sheet configured to absorb and shield externally incident light to the greatest extent is disposed at the front of the panel. It is thus possible to effectively implement a black image, and to improve bright and dark room contrast. Patterns of the external light shielding sheet are formed with inclination. It can reduce the occurrence of the Moire phenomenon. The EMI shielding sheet of a mesh fashion is attached to the external light shielding sheet. External light can be shielded and an EMI shielding effect can be improved.
Abstract:
The present invention relates to a plasma display apparatus including an external light blocking sheet which blocks and absorbs the external light injected from the outside, in particular, in which a pattern portion having a predetermined gap and width on a base portion prevents the external light from injecting into the inside of a panel inside, in addition, and permits to efficiently radiate a light emitted from the inside of the panel, thereby, the bright room contrast of PDP can be improved.
Abstract:
A plasma display panel is disclosed, which prevents luminance from being reduced, prevents error discharge from occurring due to crosstalk, and improves exhaust ability. Auxiliary barriers or projections are formed in a boundary portion between respective cells in a stripe type barrier structure. Alternatively, a predetermined groove is formed in a predetermined position of a dielectric layer in a lattice shaped barrier structure. In addition to these barriers, second barriers are formed at a greater width or at constant intervals. Thus, exhaust ability can be improved, and error discharge due to crosstalk can be prevented from occurring. Also, luminance in corner portions of the cell can be improved, and contrast can be improved even if a black matrix is not formed.
Abstract:
A plasma display panel wherein sustain discharge spaces can be arranged at an equal distance. In the plasma display panel, each of a plurality of first electrode groups includes first and second electrodes formed adjacently to each other and third electrodes spaced at a large distance from the second electrodes. A plurality of second electrode groups are adjacent to the first electrode groups and have the first electrodes, the second electrodes and the third electrodes arranged in a mirror type. One sides of the first electrode groups and the second electrode groups are set to a first distance including widths of the third electrodes being adjacent to each other. Other sides of the first electrode groups and the second electrode groups are set to a second distance equal to the first distance including widths of the second electrodes.
Abstract:
A plasma display panel that is capable of minimizing a brightness difference. In the plasma display panel, a driving waveform supply applies a driving waveform to electrodes provided at an effective display part. Pads apply the driving waveform from the driving waveform supply to the electrodes and have a different length depending on their location. Connecting parts are provided between the pads and the electrodes to electrically connect the pads to the electrodes.
Abstract:
A plasma display panel is disclosed, which prevents luminance from being reduced, prevents error discharge from occurring due to crosstalk, and improves exhaust ability. Auxiliary barriers or projections are formed in a boundary portion between respective cells in a stripe type barrier structure. Alternatively, a predetermined groove is formed in a predetermined position of a dielectric layer in a lattice shaped barrier structure. In addition to these barriers, second barriers are formed at a greater width or at constant intervals. Thus, exhaust ability can be improved, and error discharge due to crosstalk can be prevented from occurring. Also, luminance in corner portions of the cell can be improved, and contrast can be improved even if a black matrix is not formed.