摘要:
A display apparatus includes a display panel including a plurality of pixels, a plurality of first lines and a plurality of second lines, a plurality of first pads electrically connected to the first lines, respectively, where the first pads are divided into a first group and a second group, a plurality of pads including a second pad, a third pad, a fourth pad and a fifth pad, a first shorting bar configured to be connected to the first group of the first pads and to be connected between the second pad and the fourth pad during a test process of the first lines, and a second shorting bar configured to be connected to the second group of the first pads and to be connected between the third pad and the fifth pad during the test process of the first lines.
摘要:
A liquid crystal display according to an exemplary embodiment of the present invention includes: a substrate; a partition formed on the substrate and defining a pixel; a plurality of protrusion members formed with the same material as the partition on the substrate, and disposed with a linear plane shape inside the pixel defined by the partition; and a color filter filled inside the pixel defined by the partition. Accordingly, in the liquid crystal display according to an exemplary embodiment of the present invention, a plurality of transparent protrusion members are formed in the pixel defined by the partition such that movement of color filter ink dripped through an Inkjet method is controlled such that a color filter may be planarized on the whole surface of the pixel.
摘要:
A polarizing panel includes a first substrate, a second substrate and an interposed first liquid crystal layer. The first substrate includes a plurality of spaced apart and segment electrodes and segments of a first light-blocking member disposed within interval areas between the segment electrodes. The second substrate faces the first substrate to include a common electrode facing the segment electrodes. The first liquid crystal layer is able to selectively apply a first polarizing effect to light rays passing therethrough when in a corresponding first state and to apply a different second polarizing effect to passing through light rays when in a corresponding second state, where the first and second states can be selectively chosen by voltages applied to the segment electrodes. The light-blocking member can reduce image crosstalk lights from being emitted from the interval areas between the segment electrodes, so that a crosstalk component of a formed 3D image may be prevented or reduced due to light-blocking effects.
摘要:
A liquid crystal display according to an exemplary embodiment of the present invention includes: a substrate; a partition formed on the substrate and defining a pixel; a plurality of protrusion members formed with the same material as the partition on the substrate, and disposed with a linear plane shape inside the pixel defined by the partition; and a color filter filled inside the pixel defined by the partition. Accordingly, in the liquid crystal display according to an exemplary embodiment of the present invention, a plurality of transparent protrusion members are formed in the pixel defined by the partition such that movement of color filter ink dripped through an Inkjet method is controlled such that a color filter may be planarized on the whole surface of the pixel.
摘要:
A crosstalk-reducing barrier panel is provided atop of a 3D-capable image panel where the image panel displays 3D imagery by alternatingly projecting left-eye imagery and right-eye imagery and where crosstalk may develop between leaked portions of the left and right-eye light rays produced by the image panel. The barrier panel includes a base substrate, odd-numbered barrier electrodes, even-numbered barrier electrodes, first through fourth signal delivering lines, and one or more signal generators that generate a first signal and a second signal. The first signal is respectively delivered to opposed ends of the odd-numbered barrier electrodes by way of a respective first “short-path” delivery route and also by way of a respective first “long-path” delivery route. The second signal is respectively delivered to opposed ends of the even-numbered barrier electrodes by way of a respective second “short-path” delivery route and also by way of a respective second “long-path” delivery route.
摘要:
A liquid crystal display (LCD), according to an exemplary embodiment of the present invention, includes a first pixel formed between the first and second gate lines, the first and the second data lines, a first subpixel configured to have applied thereto a first data voltage and a second subpixel configured to have applied thereto a second data voltage lower than the first data voltage, a second pixel formed between the second and third gate lines, the first and second data lines, and having a third subpixel configured to have applied thereto a third data voltage and a fourth subpixel configured to have applied thereto a fourth data voltage lower than the third data voltage. The first subpixel and the third subpixel are connected to a first thin film transistor and a third thin film transistor respectively, the first thin film transistor and the third thin film transistor have source electrodes connected to the first data line and the second data line respectively, and each of the source electrodes has an open portion surrounding a portion of a drain electrode, and wherein an open direction of the source electrode of the first thin film transistor is opposite to an open direction of the source electrode of the third thin film transistor.
摘要:
A thin film transistor (“TFT”) substrate includes: gate lines extending along a first direction; data lines extending along a second direction intersecting the first direction; and a pixel electrode formed to extend at an angle from a first gate line toward a second gate line adjacent to the first gate line. A portion of the pixel electrode at least partially overlaps a portion of the second gate line. Each data line includes a source electrode and a drain electrode spaced apart from the source electrode.