Abstract:
A method for manufacturing an array substrate includes (S1) forming a pattern including a gate electrode and a gate line, (S2) forming an insulating layer, (S3) forming a pattern including an active layer, where the region where the active layer is arranged includes a first region corresponding to the gate electrode and second regions arranged on both sides of the first region, (S4) forming a mask pattern including a hollowed-out portion, a first portion and a second portion, wherein the second portion has a thickness smaller than the first portion, (S5) etching the insulating layer to form a via hole for exposing a portion of the gate line, and (S6) ashing a portion of the mask pattern corresponding to the second region to remove the portion of the mask pattern corresponding to the second region, and implanting ions into the active layer.
Abstract:
A panel function test circuit is able to perform a function test when a display panel is in a first state and is able to perform electrostatic protection when the display panel is in a second state, whereby the display panel requires fewer components and less wiring space.
Abstract:
An in-cell touch panel and a display device are disclosed. The in-cell touch panel includes an array substrate provided with a plurality of sub-pixels, and a plurality of gate lines and a plurality of data lines that are disposed on the array substrate, intersected with each other and insulated from each other, a plurality of self capacitive electrodes which are disposed in a same layer and independent of each other, and a plurality of touch lines connecting the self capacitive electrodes to the touch detection chip; the plurality of gate lines and the plurality of data lines are intersected with each other to define the plurality of sub-pixels; each of the sub-pixels includes a pixel electrode and is configured with a long side and a short side; and the touch lines are disposed along the direction of short sides of the sub-pixels.
Abstract:
The present disclosure relates to the technical field of display. Provided are a shift register unit, a gate driving circuit and a display apparatus, the shift register unit includes an inputting module, a first outputting module and a second outputting module. As compared with the prior art, the structure of the shift register unit can be simplified effectively, and the number of use of the transistors can be further reduced. Embodiments of the present disclosure are used to implement scanning and driving.
Abstract:
An array substrate, a display device and a control method thereof are disclosed. The array substrate includes a plurality of gate lines and a plurality of data lines which are intercrossed to define pixels arranged in an array. The gate lines include n gate line groups and n+1 main gate lines; each gate line group includes a first gate line and a second gate line which are adjacent to each other; the first gate line is provided corresponding to a first transistor, and the second gate line is provided corresponding to a second transistor and a switching element; both the first gate line and the second gate line in the ith gate line group are connected with the ith main gate line; a gate electrode of the first transistor is connected with the first gate line, a source electrode connected with a corresponding data line, a drain electrode connected with a pixel electrode; a gate electrode of the second transistor is connected with one end of the switching element in a pixel unit, a source electrode connected with a corresponding data line, a drain electrode connected with a pixel electrode; and the other end of the switching element is connected with a main gate line in the (i+1)th row and configured to control on/off operation of the second transistor.