摘要:
An UV curing mask plate, comprising: a mask layer, wherein: the mask layer is arranged on the substrate, and has a position corresponding to alignment marks, selection marks and an area not covered by the sealing frame glue to be cured; the material of the mask layer is a material with the function of blocking UV light.
摘要:
Embodiments of the present disclosure provide a GOA unit and a method for producing the same and a gate driver circuit, which are directed to a field of display technique. The GOA unit includes: a TFT module and a capacitor structure formed on a substrate. The TFT module includes a gate electrode, a source electrode and a drain electrode, and the capacitor structure includes a first electrode and a second electrode configured to form a first capacitor. The gate of the TFT module is located in a same layer as the first electrode of the capacitor structure, the source electrode and the drain electrode of the TFT module are located in a same layer as the second electrode of the capacitor structure, and the second electrode has a groove. Embodiments of the present application are used for a display apparatus.
摘要:
A method for manufacturing an array substrate comprises: forming a pixel electrode and a gate of a thin film transistor on a substrate; forming a gate insulating layer; forming an active layer and a source and a drain, which are provided on the active layer, of the thin film transistor by a patterning process; forming a passivation layer; forming a main via penetrating through the gate insulating layer and the passivation layer and a main-via extension portion under a portion of the drain by a patterning process, wherein the main via is connected to the main-via extension portion; removing a portion of the drain which protrudes above the main-via extension portion so as to form a final via; and forming a connection electrode and a common electrode, wherein the connection electrode electrically connects the drain to the pixel electrode through the final via.
摘要:
An array substrate includes a pixel circuit and a light-emitting diode. The pixel circuit includes a driving transistor including a first active medium made of polysilicon, and a switching transistor including a second active medium made of polysilicon. The first active medium has a first grain size. The second active medium has a second grain size larger than the first grain size. The light-emitting diode is coupled to the pixel circuit.
摘要:
The present application discloses a shift register unit for outputting a gate driving signal to control image display in an operation cycle including sequentially an input phase, an output phase, an output-suspending phase, the shift register unit including a first node-control circuit connected to a pull-up node and a first pull-down node; a second node-control circuit connected to a pull-down control node and the pull-up node; a pull-up circuit connected to the pull-up node, a first input terminal for receiving a first clock signal, and an output terminal for outputting the gate driving signal, and configured to control the first clock signal to be passed from the first input terminal to the output terminal when the pull-up node is at a first potential level; a third node-control circuit connected to the pull-up node, the first pull-down node, the pull-down control node, and a second input terminal for receiving a second clock signal; and configured to control the first pull-down node to receive the second clock signal from the second input terminal when the pull-down control node is at the first potential level; a first pull-down circuit connected to the first pull-down node and the output terminal to control a second potential level to be passed to the output terminal when the first pull-down node is at the first potential level; a fourth node-control circuit connected to a second pull-down node and the pull-down control node to control the second pull-down node at the second potential level during the input phase and the output phase and to maintain an inverted potential level between the second pull-down node and the first pull-down node during the output-suspending phase; and a second pull-down circuit connected to the second pull-down node and the output terminal to yield a second potential level at the output terminal when the second pull-down node is at the first potential level, the first node-control circuit being further connected to the second pull-down node to control the pull-up node at the second potential level when the second pull-down node is at the first potential level.
摘要:
A color film substrate comprises: a basal substrate, a plurality of color filters of at least one color formed on the basal substrate, and a black matrix formed on the basal substrate. The black matrix has a plurality of openings one-to-one corresponding to the plurality of color filters of at least one color. In a cross section perpendicular to the basal substrate, an edge of the color filter and an opening edge of the black matrix have an overlapping region. According to the color film substrate, manufacturing method thereof and display device provided by the embodiments of the present disclosure, by applying the technology of halftone mask plate and positive/negative photoresist, the patterns for the plurality of color filters of the at least one color and the pattern of the black matrix can be formed with one filter mask plate.
摘要:
A discharge device and a display panel preparation system based thereon are disclosed. The discharge device includes a conductive contact terminal electrically connected with an electrostatic discharge contactor of a substrate to be processed; and a voltage controller electrically connected to the contact terminal for adjusting a voltage on the contact terminal. The discharge device is able to eliminate (e.g., neutralize) the static electricity on the substrate to be processed.
摘要:
A touch display panel, a manufacturing method thereof, a driving method and a touch display device are disclosed. The touch display panel comprises an array substrate and a color film substrate, wherein the array substrate comprises a first thin film transistor and a first detection line formed on a first substrate, and the color film substrate comprises a main spacer, an auxiliary spacer, a reference signal line and a second detection line formed on a second substrate. The bottom of the main spacer is connected to the reference signal line, the top of the main spacer is connected to a first source, the bottom of the auxiliary spacer is connected to the second detection line, and a projection of the top of the auxiliary spacer on the array substrate connects a first drain with the first detection line.
摘要:
The present invention provides a substrate dry device and a method for drying the substrate, the substrate dry device comprises a cavity, dry bars and a sensor disposed on the top of the cavity, liquid immerging the substrate is accommodated within the cavity, with the dry bars comprising a first dry bar and a second dry bar arranged parallel to each other, with a gap is formed therebetween and with the sensor disposed on one end or on two ends of the gap for monitoring a position in which the substrate is moved away from the liquid. By use of the above arrangement, the gas is ejected through the dry bars to the surface of the substrate which has moved away from the liquid, the tension of the surface of the liquid film on the substrate is changed by marangori effect under the action of the gas and the surface tension gradient of the liquid film makes the liquid film shrink so that the surface of the substrate becomes dry.
摘要:
The present invention provides a substrate dry device and a method for drying the substrate, the substrate dry device comprises a cavity, dry bars and a sensor disposed on the top of the cavity, liquid immerging the substrate is accommodated within the cavity, with the dry bars comprising a first dry bar and a second dry bar arranged parallel to each other, with a gap is formed therebetween and with the sensor disposed on one end or on two ends of the gap for monitoring a position in which the substrate is moved away from the liquid. By use of the above arrangement, the gas is ejected through the dry bars to the surface of the substrate which has moved away from the liquid, the tension of the surface of the liquid film on the substrate is changed by marangori effect under the action of the gas and the surface tension gradient of the liquid film makes the liquid film shrink so that the surface of the substrate becomes dry.