Abstract:
A liquid crystal display device 10 in accordance with the present invention includes a liquid crystal panel 11 and a lighting device 12. The liquid crystal panel 11 has a liquid crystal layer 40 provided between a pair of glass substrates 21, 31. The lighting device supplies illumination light to the liquid crystal panel 11. At least a glass substrate 21, which is one of the pair of glass substrates 21, 31 has a photonic crystal 50 formed in a position capable of blocking light toward a luminance point defect occurrence portion X that is a cause of a luminance point defect. The photonic crystal 50 is capable of absorbing light having a color displayable in the luminance point defect occurrence portion X.
Abstract:
A liquid crystal display device 10 of the present invention includes a liquid crystal panel 11 and a lighting device 12. The liquid crystal panel 11 has a liquid crystal layer 50 between a pair of glass substrates 31 and 41. The lighting device 12 provides illumination light to the liquid crystal panel 11. An externally communicable void section 63 is formed in the glass substrate 31 among the pair of glass substrates 31 and 41 in an area that can block light toward a luminance point defect occurrence area X, which is a possible cause of a luminance point defect. The externally communicable void section 63 has a void portion 61 that is formed in the glass substrate 31 and a through portion that penetrates from the void portion 61 through an opposite surface of the glass substrate 31 from the liquid crystal layer 50. A light blocking layer 60 is formed in the externally communicable void section 63.
Abstract:
A scanning signal line (16) includes an opening (29) leading from the outside of a pixel region through below a data signal line (15) into the pixel region, and first and second scanning electrode portions (16a/16b) or two side portions of the opening confronting in a column direction through that opening. The end portion of the first scanning electrode portion (16a) in the pixel region is a first end portion (EP1), and the end portion of the second scanning electrode portion (16b) in the pixel region is a second end portion (EP2). A first transistor has a source electrode (9a) and a drain electrode (8a) individually overlapping the first electrode portion (16a) but not the first end portion (EP1) in the pixel region. A second transistor has a source electrode (9b) and a drain electrode (8b) individually overlapping the second electrode portion (16b) but not the second end portion EP2) in the pixel region. According to the aforementioned constitution, it is possible to realize a pixel split type active matrix substrate capable of easily correcting the short-circuits of the data signal line (15) and the scanning signal line (16).
Abstract:
The present invention is a substrate for a display device comprising an active matrix substrate and an opposed substrate which are opposed to each other with a display medium layer interposed therebetween, said active matrix substrate including a pixel electrode arranged in a matrix shape on the side of the display medium layer and said opposed substrate including a common electrode opposing to the pixel electrode on the side of the display medium layer, wherein said substrate for a display device includes an electrode slit formed in one of the pixel electrode and the common electrode; and at least one of the electrical connecting portions of said electrode slit is provided outside of a light-blocking region.
Abstract:
A liquid crystal display apparatus, includes a liquid crystal display panel including a first substrate provided on a display light receiving side, and a second substrate provided on a display light exiting side so as to oppose the first substrate with a liquid crystal material interposed therebetween, the liquid crystal display panel having a bright dot defect portion therein, wherein: the first substrate includes a light-blocking portion formed in a region thereof corresponding to the bright dot defect portion; and the second substrate includes a light-collecting portion formed in a region thereof corresponding to the bright dot defect portion.
Abstract:
A liquid crystal display device with a planar counter electrode formed on the first substrate in each pixel region, a pixel electrode formed on the counter electrode by way of an insulation layer, the pixel electrode formed of a first pixel electrode and a second pixel electrode in the pixel region, the first pixel electrode and the second pixel electrode have a large number of slits which are arranged in parallel in the electrodes and the extending direction of the slits is different from both extending directions of the gate lines and the drain lines, and the neighboring sides of the first and the second pixel electrodes are arranged to be parallel to each other, and a portion between the neighboring sides of the first and the second pixel electrodes is positioned above the counter electrode.
Abstract:
A liquid crystal display (LCD) device and method for addressing a defective pixel of the liquid crystal display (LCD) device, are discussed. According to an embodiment, the method includes forming a black resin film on at least one LCD panel; operating the LCD panel to selectively harden a portion of the black resin film corresponding to a spot where a defective pixel is present; and removing the black resin film, except for the hardened portion of the black resin film.
Abstract:
A substrate for a display device includes an active matrix substrate and an opposed substrate which are opposed to each other with a display medium layer interposed therebetween. The active matrix substrate includes a pixel electrode arranged in a matrix shape on the side of the display medium layer and the opposed substrate includes a common electrode opposing to the pixel electrode on the side of the display medium layer, wherein the substrate for a display device includes an electrode slit formed in one of the pixel electrode and the common electrode, and at least one of the electrical connecting portions of the electrode slit is provided outside of a light-blocking region.
Abstract:
A liquid crystal display device includes a thin film transistor substrate comprising a plurality of thin film transistors and a plurality of pixel electrodes electrically connected to the plurality of thin film transistors, respectively, to receive a pixel voltage, the pixel electrodes being formed in a pixel region. A second substrate comprising a plurality of sub-common electrodes is positioned in an opposing relationship to the thin film transistor substrate. The sub-common electrodes are positioned opposite the pixel electrodes. A liquid crystal layer interposed between the thin film transistor and the second substrate.
Abstract:
A repairing device for a display device includes a substrate and a color filter disposed on the substrate. The color filter includes a first surface facing the substrate and a second surface disposed opposite to the first surface. The repairing device includes laser equipment illuminating a laser beam focused on the first surface and having a wavelength of greater than about 250 nm.