Abstract:
A liquid crystal display panel and a method for manufacturing the same are disclosed. The liquid crystal display panel comprises a data driving module; data lines arranged in an active area in parallel with one another; and data wirings arranged in a fanout area, one end of each data wiring being connected with an output end of said data driving module, the other end thereof being connected with a data line of said active area, wherein the data lines in said active area are arranged to have different widths.
Abstract:
Disclosed here is the technical field of liquid crystal display, and in particular to a color filter and a liquid crystal display with the color filter. The color filter has a plurality of diaphragm groups, each diaphragm group consists of at least one red diaphragm, at least one green diaphragm and at least one blue diaphragm, wherein the diaphragms of at least one of said diaphragm groups are configured in such a sequence that color cast caused by a RC delay of a pixel signal can be compensated.
Abstract:
An array substrate and a manufacturing method thereof are disclosed. The present disclosure relates to the technical field of display, whereby the qualified rate of the array substrate can be improved, and the manufacturing cost thereof can be reduced significantly. The array substrate includes a first wiring, a first insulating layer, and a second wiring from bottom up in sequence. The second wiring crosses over the first wiring. A crossed-over part of the second wiring consists of a plurality of branches, with an interspace formed between every two adjacent branches, so as to obtain a comb structure. At least one of the branches is nearer to the first wiring relative to other branches. The array substrate of the present disclosure can be used in liquid crystal TV, liquid crystal display, mobile phone, tablet personal computer, and other display devices.
Abstract:
A display module and a display device are provided. The display module includes a display panel and a front frame. The display panel includes a display region and a non-display region both located at a side of a light emitting surface, wherein, the non-display region disposed at a peripheral area of the display panel and provided with a test pad electrically connected to wiring a of the display region. The front frame includes a front plate disposed opposite to at least a portion of the non-display region, and having an electric conduction portion for conducting away a current and an insulation portion for insulating the electric conduction portion from the test pad on the display panel. The present invention can avoid LCD screen noise and flicker because the test pad of the display panel contact with the front frame.
Abstract:
An LCD panel includes a gate driving module, a display unit, and multiple COF packaging units. An output lead wire of the multiple COF packaging units is connected with a gate lead wire of the display unit. The multiple COF packaging units are sequentially connected in series through a signal lead wire and are connected to the gate driving module. A first insulating pattern layer is disposed on the gate lead wire. The first insulating pattern layer is provided with a through-hole structure. The output lead wire is connected with the gate lead wire by utilizing a metal lead wire passing through the through-hole structure. A first through-hole structure connected with a first COF packaging unit has a smaller contacting area comparing to a second through-hole structure connected with a second COF packaging unit. The present invention also discloses a LCD device including the above LCD panel.
Abstract:
The present invention discloses a liquid crystal panel and a color filter substrate thereof. By providing at least one separation line perpendicular to a scan direction of horizontal source signals, a transparent conductive layer of the color filter substrate is divided into a plurality of transparent conductive layer sections, each of which is not connected with the others. When a horizontal crosstalk (H-crosstalk) phenomenon is generated, an adjacent horizontal area is not influenced, so that it can lower the H-crosstalk phenomenon of the liquid crystal panel, so as to increase the display quality of the liquid crystal panel.
Abstract:
A thin-film transistor liquid crystal display device and a signal line therefor are disclosed. The signal line has a structure including a metal layer and a transparent electrical conductive layer stacked on the metal layer. The transparent electrical conductive layer is electrically connected to the metal layer. The multi-layered structure formed by the metal line and the transparent electrical conductive layer can effectively lower the resistance of the signal line, reduce the RC delay effect in electric circuits, and then further increase charging rate.
Abstract:
The present invention provides a liquid crystal panel which has a plurality of data lines, a plurality of scan lines and a plurality of display units. Each of the scan lines has a second metal wiring layer, a third metal wiring layer located above the second metal wiring layer, and two transparent conductive lines. The transparent conductive lines are spaced apart from each other and located between the second and third metal wiring layers. The second and third metal wiring layers can form a parallel connection by electrically connecting the second metal wiring layer with the third metal wiring layer, so that the impedance of the scan lines can be reduced.
Abstract:
The present invention discloses a liquid crystal panel and a color filter substrate thereof. By providing at least one separation line perpendicular to a scan direction of horizontal source signals, a transparent conductive layer of the color filter substrate is divided into a plurality of transparent conductive layer sections, each of which is not connected with the others. When a horizontal crosstalk (H-crosstalk) phenomenon is generated, an adjacent horizontal area is not influenced, so that it can lower the H-crosstalk phenomenon of the liquid crystal panel, so as to increase the display quality of the liquid crystal panel.
Abstract:
A liquid crystal display panel and a method for manufacturing the same are disclosed. The liquid crystal display panel comprises a data driving module; data lines arranged in an active area in parallel with one another; and data wirings arranged in a fanout area, one end of each data wiring being connected with an output end of said data driving module, the other end thereof being connected with a data line of said active area, wherein the data lines in said active area are arranged to have different widths.