Abstract:
A display device for displaying an image on a display surface includes a liquid crystal panel having the display surface, the liquid crystal panel with a first through hole formed in the display surface, a backlight disposed oppositely to the liquid crystal panel, the backlight with a second through hole formed at a position overlapping with the first through hole, and a cap inserted into the first through hole and the second through hole. The cap includes a tube portion with a third through hole formed, the third through hole parallel to the first through hole and the second through hole, and a flange portion formed at least one end of the tube portion, the flange portion having an outer diameter larger than a diameter of the first through hole, and larger than a diameter of the second through hole.
Abstract:
A curved liquid crystal display including a first substrate having a curved shape; a plurality of gate lines and data lines on the first substrate; a plurality of thin film transistors connected to the gate lines and data lines; a plurality of color filters on the thin film transistors; a plurality of pixel electrodes and common electrodes on the plurality of color filters, the plurality of pixel electrodes and common electrodes overlapping with each other with a first insulating layer therebetween; a second substrate having a curved shape, the second substrate facing the first substrate; vertical alignment layers on inner sides of the first substrate and the second substrate; and a liquid crystal layer between the vertical alignment layers, wherein liquid crystal molecules of the liquid crystal layer are aligned to be vertical to surfaces of the first substrate and the second substrate when an electric field is not formed.
Abstract:
A curved display device includes a display substrate which is curved in a first direction in a plan view and includes a display area including a plurality of pixels configured to display an image, and a peripheral area disposed adjacent to the display area, an opposite substrate which faces the display substrate, the opposite substrate coupled to the display substrate and curved in the first direction along the display substrate, a grayscale control layer interposed between the display substrate and the opposite substrate, and a coupling member which is disposed in the peripheral area, interposed between the display substrate and the opposite substrate, and configured to couple the display substrate to the opposite substrate, and includes a first sealing portion which extends in the first direction and includes a light blocking material.
Abstract:
A liquid crystal display includes: a substrate including a plurality of pixel areas; a TFT disposed on the substrate; a pixel electrode connected with the TFT and disposed on the TFT; a common electrode positioned on the pixel electrode and separated from the pixel electrode by a microcavity; a roof layer disposed on the common electrode; an injection hole disposed in the common electrode and the roof layer along a long-axial direction of the substrate to expose a part of the microcavity; a liquid crystal layer filling the microcavity; a first polarizer having a polarization axis in a short-axial direction of the substrate on the roof layer; and a second polarizer having a polarization axis in a long-axial direction of the substrate below the substrate, in which heights of edges in the long-axial and short-axial directions of the substrate are larger than a height of the center of the substrate.
Abstract:
The present invention relates to a display panel and a display module, the display panel comprises a display region and a non-display region, and boundaries between the display region and the non-display region comprise at least one arc structure. The technical effects of the present invention are that it is beneficial to design a display module with an arc and narrow frame, which greatly reduces the range of the frame, increases the area that can be displayed, it is more consistent with the natural display contour of the human eye's physiology, with more comfortable, natural and fantastic display effect.
Abstract:
A curved display panel and a curved display device curved display panel are provided. The curved display panel includes a color filter substrate, a liquid crystal layer, and a thin film transistor array substrate. The color filter substrate includes a first substrate, a color resist array layer, a black matrix layer, a first protective layer, and a common electrode. The thin film transistor array substrate includes a second substrate and a pixel array layer. Light leakage from the curved display panel can be effectively prevented.
Abstract:
In an aspect, a display device comprising a panel having a circular surface and a pad unit which is disposed adjacent to an outer circumference of the panel and receives an external signal, wherein the pad unit is divided into a plurality of sub-pads, and the sub-pads are separated from each other is provided.
Abstract:
A display includes a plurality of pixels in a non-quadrangular display area and a plurality of first driving circuits and a plurality of second driving circuits in a peripheral area of the display area. Each of the pixels is connected to a first signal line in a first direction and a second signal line in a second direction crossing the first direction. Each of the first driving circuits outputs a first signal to the first signal line of a corresponding one of the pixels. Each of the second driving circuits outputs a second signal to the second signal line of a corresponding one of the pixels. The number of second driving circuits between neighboring first driving circuits is different depending on a position in the peripheral area.
Abstract:
The present invention provides a TFT (Thin-Film Transistor) array substrate structure, which includes a plurality of sub-pixels (4) arranged to correspond to a black matrix (2). Each of the sub-pixels (4) includes a main zone (42) and a sub zone (44). A data line (6) is arranged between the sub-pixels and a gate scan line (8) is arranged between the main zones (42) and the sub zones (44). Pixel electrode trunks (10) are arranged between two sub-pixels (4) and pixel electrode branches (12) are respectively set in the main zones (42) and the sub zones (44) of the two sub-pixels (4). The pixel electrode branches (12) are respectively in electrical connection with the pixel electrode trunks (10). When the TFT array substrate structure undergoes a relative displacement during a process of curving a liquid crystal display panel, the pixel electrode trunk (10) is still kept within an area covered by the black matrix so that an influence on an electric field is extremely small to thereby effectively improve electric characteristics, prevent the occurrence of dark patterns, and thus enhance the quality of the liquid crystal display panel.
Abstract:
A display panel (10) includes a pair of substrates (11, 12) a display medium layer (14) held between the pair of substrates and has a display region (RA) and a frame region (RF) outside the display region and a hole (10A) on an inner side of the frame region penetrating the pair of substrates and the display medium layer. The display panel further includes a hole-periphery sealing part (13A) disposed between the pair of substrates so as to surround the hole, in which the hole-periphery sealing part includes an angled portion or a protrusion (13P).