Abstract:
A liquid crystal panel and a LCD are provided. The liquid crystal panel comprises an array substrate (1) and a color filter substrate disposed (2) as opposed to each other and a liquid crystal layer (3) disposed therebetween, wherein a first barrier layer (5) is disposed on the array substrate (1), the first barrier layer (5) comprises a first part (11) configured to reflect light and a second part (12) configured to transmit light, the first and second parts (11, 12) are arranged alternately; a second barrier layer (6) is disposed on the color filter substrate (2), the second barrier layer (6) comprises a third part (13) configured to reflect light and a fourth part (14) configured to transmit light, the third and fourth parts (13, 14) are arranged alternately; the first part (11) of the first barrier layer (5) and the fourth part (14) of the second barrier layer (6) are equal in width and aligned to each other, the second part (12) of the first barrier layer (5) and the third part (13) of the second barrier layer (6) are equal in width and aligned to each other, such that light passing through the second part (12) of the first barrier layer (5) is reflected by the third part (13) of the second barrier layer (6), and light passing through the fourth part (14) of the second barrier layer (6) is reflected by the first part (11) of the first barrier layer (5). The liquid crystal panel of the invention realizes dual-side display at a lower cost.
Abstract:
A pixel electrode, an array substrate and a display device are configured to provide a display apparatus with higher transmittance. The pixel electrode includes at least one electrode unit, wherein the electrode unit includes a plurality of strip electrodes and has a non-closed shape.
Abstract:
An array substrate, a method for fabricating the same and a display device are disclosed. The array substrate comprises a plurality of gate lines and a plurality of data lines which intersect each other to define a plurality of pixel regions, each of the pixel regions comprises a thin film transistor and further comprises: a base substrate; more than one protrusion disposed apart from each other on the base substrate; a first electrode layer comprising at least one first electrode strip disposed in a gap between adjacent protrusions; a second electrode layer comprising at least one second electrode strip disposed on the protrusions.
Abstract:
An array substrate includes a GOA circuit area and a display area, the GOA circuit area includes a TFT area and a lead-wire area, the display area includes a data line and a gate line. The GOA circuit area is provided with at least one first via and at least one second via, a data-line metal layer is disposed at the bottom of the at least one first via, and a gate-line metal layer is disposed at the bottom of the at least one second via. The GOA circuit area further includes a first electrode and a second electrode, the data-line metal layer is electrically connected to one electrode through the at least one first via, the gate-line metal layer is electrically connected to the other electrode through the at least one second via, such that a capacitor is formed between the first electrode and the second electrode.
Abstract:
An array substrate comprises: a plurality of flexible cushions; and a plurality of signal lines, wherein the signal lines have ends respectively located on the flexible cushions.
Abstract:
The disclosure relates to the field of liquid crystal display, specifically to a display screen frame eliminating apparatus and a display device. The display screen frame eliminating apparatus comprises a light source, a light tube and a drive module. The light tube comprises an upper surface and a lower surface, and the light source is located within the light tube or under the lower surface of the light tube. The light tube enables the light emitted by the light source to dispersedly exit from the upper surface. The drive module drives the light source to emit light based on the luminous condition of the edge pixels of the display area in the display screen. In this way, the light source emits light rays similar as the edge pixels of the display area in the display screen, and the light rays dispersedly exit from the upper surface of the light tube by means of the layered light tube structure. Therefore, to the human eyes, the display influence of the frame can be eliminated in all directions, and the display effect of the display device can be improved. (FIG. 1(a))
Abstract:
An array substrate includes a GOA circuit area and a display area, the GOA circuit area includes a TFT area and a lead-wire area, the display area includes a data line and a gate line. The GOA circuit area is provided with at least one first via and at least one second via, a data-line metal layer is disposed at the bottom of the at least one first via, and a gate-line metal layer is disposed at the bottom of the at least one second via. The GOA circuit area further includes a first electrode and a second electrode, the data-line metal layer is electrically connected to one electrode through the at least one first via, the gate-line metal layer is electrically connected to the other electrode through the at least one second via, such that a capacitor is formed between the first electrode and the second electrode.
Abstract:
An array substrate, a manufacturing method thereof, and a display device are provided. The array substrate comprise a base substrate (11), a gate line, a data line, and a pixel region defined by intersection of the gate line and the data line, which are formed on the base substrate (11), wherein the pixel region comprises a thin film transistor, and the thin film transistor comprises a gate, a gate insulation layer, an active layer, a source and a drain, the pixel region further comprise: at least one groove (110), formed on a surface of the base substrate (11); a first electrode layer (12) comprising at least one first electrode bar (120), the first electrode bars (120) are disposed in the groove (110) and electrically connected with each other; and a second electrode layer (13) comprising at least one second electrode bar (130), wherein the second electrode bars (130) are disposed outside the groove (110) and electrically connected with each other. No overlapping between the common electrode and the pixel electrode can be achieved, so as to improve display quality of the display device.
Abstract:
The array substrate includes a plurality of gate lines and a plurality of data lines which intersect each other to define a plurality of pixel regions, each of the pixel regions includes a thin film transistor and further includes: a base substrate; more than one protrusion disposed apart from each other on the base substrate; a first electrode layer including at least one first electrode strip disposed in a gap between adjacent protrusions; a second electrode layer including at least one second electrode strip disposed on the protrusions.
Abstract:
The present invention relates to the field of liquid crystal display technology and provides an array substrate and a liquid crystal display device which can solve the problem of low transmissivity of existing liquid crystal display devices. The array substrate of the present invention comprises a plurality of pixel units, each pixel unit is provided with a plate electrode and a slit electrode arranged above the plate electrode, an insulation layer is provided between the plate electrode and the slit electrode, and the plate electrode extends to the periphery region of the pixel unit, the slit electrode extends to the periphery region of the pixel unit; the slit electrode and the plate electrode are both provided in at least part of the peripheral region of the pixel unit. the present invention is applicable to liquid crystal display devices, especially the liquid crystal display devices taking a “dual gate lines” design.