摘要:
A liquid crystal display panel includes an active matrix substrate, a counter substrate, a liquid crystal layer, and a sealant. The counter electrode is opposed to the active matrix substrate. The liquid crystal layer is provided between the active matrix substrate and the counter substrate. The sealant, which surrounds the liquid crystal layer between the active matrix substrate and the counter substrate, joins the active matrix substrate and the counter substrate and seals the liquid crystal layer. A portion of the surface on the liquid crystal layer side of the active matrix substrate which is located at the periphery of the liquid crystal display panel is flat.
摘要:
A liquid crystal display panel includes an active matrix substrate, a counter substrate, a liquid crystal layer, and a sealant. The counter electrode is opposed to the active matrix substrate. The liquid crystal layer is provided between the active matrix substrate and the counter substrate. The sealant, which surrounds the liquid crystal layer between the active matrix substrate and the counter substrate, joins the active matrix substrate and the counter substrate and seals the liquid crystal layer. A portion of the surface on the liquid crystal layer side of the active matrix substrate which is located at the periphery of the liquid crystal display panel is flat.
摘要:
A liquid crystal display device includes a TFT substrate and a CF substrate arranged to face each other and a liquid crystal layer sandwiched therebetween, wherein a plurality of first supports are arranged to extend from one of the substrates to reach the other substrate and a plurality of second supports, which are shorter than the first supports, are arranged to extend from one of the substrates to the other substrate.
摘要:
The transmission type liquid crystal display device of this invention includes: gate lines; source lines; and switching elements each arranged near a crossing of each gate line and each source line, a gate electrode of each switching element being connected to the gate line, a source electrode of the switching element being connected to the source line, and a drain electrode of the switching element being connected to a pixel electrode for applying a voltage to a liquid crystal layer, wherein an interlayer insulating film formed of an organic film with high transparency and having a plurality of microscopic hollows formed in each pixel is provided above the switching element, the gate line, and the source line, and wherein the pixel electrode formed of a transparent conductive film is provided on the interlayer insulating film.
摘要:
A transmissive liquid crystal display apparatus includes a liquid crystal layer interposed between a first substrate and a second substrate. The first substrate includes gate lines, source lines and switching devices provided in a vicinity of intersectional portions of the gate lines and the source lines. The switching devices include gate electrodes connected to the gate lines, source electrodes connected to the source lines and drain electrodes connected to pixel electrodes for applying a voltage to the liquid crystal layer. An interlayer insulating film having high transparency is provided above the switching devices, the gate lines and the source lines. The interlayer insulating film has roughness on its surface. A height difference of the roughness is 50 nm or less. The pixel electrode formed of a transparent conductive material is provided on the interlayer insulating film.
摘要:
On an active matrix substrate having a TFT in the vicinity of the intersection of a gate line and a source line and a pixel electrode connected to the TFT, an inter-layer insulating film is formed by an acrylic resin, for example, between the pixel electrode and the gate line, source line and TFT. The pixel electrode does not overlap a self gate line, but overlaps a gate line adjacent to the self gate line. At least one of the gate line and the source line has a redundant structure including ring-shaped sections connected in a longitudinal direction so as to provide redundancy as a measure to counter the disconnection of lines.
摘要:
A flat type display device is assembled compactly with high reliability. The flat type display device has a liquid crystal panel having electrode terminals on a peripheral portion of one face of the liquid crystal panel, a flexible wiring board having a drive IC mounted thereon for driving the liquid crystal panel, and a common wiring board having electrode terminals on one face thereof. The flexible wiring board is electrically connected to the electrode terminals of the liquid crystal panel. The common wiring board is electrically connected to the flexible wiring board so as to transmit an input signal, which has been received by the electrode terminals from external, to the drive IC. The liquid crystal panel and the common wiring board are mounted on each other so as to overlap each other in a state that their faces on which their respective electrode terminals are provided are opposed to each other and that the electrode terminals of the common wiring board are located outside of a peripheral portion of the liquid crystal panel. The flexible wiring board is provided in a clearance between the liquid crystal panel and the common wiring board.
摘要:
A display device includes unit cells, each including a thin film transistor and a pixel, arrayed in a matrix form on a display board. First switching elements are provided at intersections between signal conductor lines and scanning conductor lines, scanning conductor line drive elements driving the scanning conductor lines. Finally, second switching elements are included, one provided between each scanning conductor line and scanning conductor line drive element. Each second switching element is put into an open state in synchronization with a fall in level of an input video signal provided to a signal conductor line to electrically disconnect the corresponding scanning conductor line from the scanning conductor line drive element. Thus, the scanning conductor line drive element is not affected by instantaneous voltage drop on the corresponding scanning conductor line.
摘要:
A flexible wiring board is adapted to be connected with a circuit board by means of an anisotropic conductive film. A flexible substrate of the flexible wiring board is mounted with an integrated circuit and has a generally rectangular connection portion. The connection portion includes a first edge of the substrate and parts of second and third edges adjoining the first edge of the substrate. A plurality of connection terminals are provided in the connection portion of the substrate. These connection terminals extend perpendicular to and arranged along the first edge of the substrate. Opposite end parts including the parts of the second and third edges of the connection portion do not extend beyond the connection terminals located closest to the second and third edges, respectively.
摘要:
In a liquid crystal display apparatus, in order to reduce the size and weight, an integrated circuit for driving a liquid crystal is mounted on the glass substrate including the liquid crystal panel either directly or by way of a tape carrier. That is, two glass substrates of liquid crystal panel are mutually overlapped with an offset, and a liquid crystal material is injected into the overlapping regions of the two glass substrates, and liquid crystal display is effected in this region. Further, in the non-overlapping region of the two glass substrates, the integrated circuit is connected either directly or by way of a tape carrier. On the glass substrates, electrodes for varying the optical characteristics of the liquid crystals are provided, and the integrated circuit drives the liquid crystal by controlling the voltage applied to the electrodes. Further transparent insulation films are formed usually formed on the electrodes. The transparent insulation films are also formed in the non-overlapping region of the glass substrates. Since the transparent insulation films are finely patterned by photolithography, they may be selectively formed on the portions where defective insulation is likely to occur between the wiring conductors following the integrated circuit from the electrodes, or between the integrated circuit and the peripheral portion of the connecting part.