Abstract:
A substrate and a photoelectric display device comprising the substrate are provided. The substrate comprises a display region (11) and seal material disposed in a periphery thereof. The substrate further comprises a trapping buffer region (13) which is disposed between the display region (11) and the seal material and receives photoelectric display media. By providing the trapping buffer region, impact on the seal material by the excessive photoelectric display media can be mitigated or eliminated when the photoelectric display device is subjected to an external force or is flexed. The life time of the seal material is prolonged. A leakage of the photoelectric display media is avoided.
Abstract:
A liquid crystal (LC) display panel and a display device for providing an LC display panel and a display device with broader viewing angle. The LC display panel includes a first substrate (11) and a second substrate (21) oppositely disposed; an LC layer (4) located between the first substrate (11) and the second substrate (21); a color resin layer (23) located on a side of the second substrate (21) close to the LC layer (4); and a common electrode (12) and a pixel array located in different layers on a side of the first substrate (11) close to the LC layer (4), wherein each sub-pixel units in a corresponding area of the pixel array includes a first pixel electrode (1) and a second pixel electrode (2), and a coupling electrode (3) located in an area adjacent to both the first pixel electrode (1) and the second pixel electrode (2) and configured to create a coupling capacitance with the second pixel electrode (3). The LC molecules located above the first pixel electrode (1) and the second pixel electrode (2) have different incline angles, which broaden the viewing angle of the LC display panel. In addition, an electric field is generated between the first pixel electrode (1) and the second pixel electrode (2), so that a horizontal electric field subjected by the LC molecules in the LC layer (4) is strengthened, which reduces the driving voltage of the LC display panel and improves the image display quality.
Abstract:
The present invention provides a display substrate and a manufacturing method thereof, and a flexible display device having the display substrate, which belong to the field of display technology, and can solve the problem of poor reliability of display substrates due to the damage to thin film transistors when the existing display substrates are bent. In the display substrate provided by the present invention, by introducing stress absorption units made of resin material into the display substrate, the stress generated by the display substrate bent is released by the resin material, and thin film transistors on the display substrate are thus less likely to be damaged, so that the reliability of the whole display substrate is improved.
Abstract:
A liquid crystal (LC) display panel and a display device for providing an LC display panel and a display device with broader viewing angle. The LC display panel includes a first substrate (11) and a second substrate (21) oppositely disposed; an LC layer (4) located between the first substrate (11) and the second substrate (21); a color resin layer (23) located on a side of the second substrate (21) close to the LC layer (4); and a common electrode (12) and a pixel array located in different layers on a side of the first substrate (11) close to the LC layer (4), wherein each sub-pixel units in a corresponding area of the pixel array includes a first pixel electrode (1) and a second pixel electrode (2), and a coupling electrode (3) located in an area adjacent to both the first pixel electrode (1) and the second pixel electrode (2) and configured to create a coupling capacitance with the second pixel electrode (3). The LC molecules located above the first pixel electrode (1) and the second pixel electrode (2) have different incline angles, which broaden the viewing angle of the LC display panel. In addition, an electric field is generated between the first pixel electrode (1) and the second pixel electrode (2), so that a horizontal electric field subjected by the LC molecules in the LC layer (4) is strengthened, which reduces the driving voltage of the LC display panel and improves the image display quality
Abstract:
Provided is an array substrate, including: a first conductive wire, a second conductive wire and a first electrostatic protection unit, wherein the first electrostatic protection unit comprises a first thin-film transistor and a first capacitor; wherein a gate of the first thin-film transistor is suspended and is connected to a first electrode of the first thin-film transistor via the first capacitor, the first electrode of the thin-film transistor is connected to the first conductive wire, and a second electrode of the first thin-film transistor is connected to the second conductive wire.
Abstract:
A display substrate has an active area which includes a photosensitive region with a light-transmitting channel. The display substrate includes a base, a pixel circuit layer, a first insulating layer and a conductive light-shielding layer. The pixel circuit layer includes pixel circuits and at least one pixel circuit includes a first thin film transistor and a second thin film transistor. The first insulating layer has a first via hole. The conductive light-shielding layer includes a conductive light-shielding pattern that has a first light-transmitting hole. Orthogonal projections of the first light-transmitting hole and of a gap region between the first thin film transistor and the second thin film transistor have a first overlapping region, which the light-transmitting channel penetrates. The conductive light-shielding pattern is coupled with a source electrode or a drain electrode of the first thin film transistor through the first via hole.
Abstract:
The present disclosure provides an array substrate, including: a base, and at least one lead structure disposed on the base. The lead structure includes a first conductive structure and a conductive semiconductor structure, and an orthographic projection of the conductive semiconductor structure on the base at least partially overlaps an orthographic projection of the first conductive structure on the base.
Abstract:
A display panel and a display device are provided, the display panel includes a gate driving circuit, a first pixel module, and a second pixel module, the first pixel module includes a first pixel circuit, and the second pixel module includes a second pixel circuit; the gate driving circuit respectively provides corresponding gate driving signals for the first pixel circuit and the second pixel circuit; in the first display region, the number of columns of the pixel circuit included by the first pixel module is greater than the maximum number of columns of the pixel circuit included by the second pixel module in the second display region; the display panel further includes a loading structure arranged in a non-display region; the load structure is electrically connected to the gate wiring; the gate wiring is wiring between the gate driving circuit and the second pixel circuit for providing the corresponding gate driving signals to the second pixel circuit.
Abstract:
A pixel structure includes a first sub-pixel that includes a first thin film transistor (T1), a first common electrode (C1), and a first pixel electrode (Pix1) that is coupled to the first thin film transistor (T1); a second sub-pixel that includes a second thin film transistor (T2), a second common electrode (C2), and a second pixel electrode (Pix2) that is coupled to the second thin film transistor (T2); a discharge device that includes a control terminal, an input terminal, and an output terminal; and a gate line (GATE). The first thin film transistor (T1), the second thin film transistor (T2), and the control terminal of the discharge device are coupled to the gate line (GATE).
Abstract:
The present disclosure relates to an array substrate. The array substrate may include a display region comprising a plurality of first pixel regions and a dummy region adjacent to the display region. The dummy region may include a plurality of second pixel regions. At least one of the plurality of first pixel regions may include a first electrode region containing a first electrode and a first open region, at least one of the plurality of second pixel regions may include a second electrode region containing a second electrode and a second open region, and an area of the second open region may be larger than an area of the first open region.