Abstract:
A touch display panel is provided. The touch display panel includes a first substrate, and a second substrate opposite to the first substrate. The first substrate includes a base substrate, and an anode, an organic light emitting layer and a cathode formed on the base substrate. The cathode includes a plurality of first sub-electrodes, each of the plurality of first sub-electrodes is used as a touch electrode and applied with a touch scanning signal during a touch scanning stage and is used as a common electrode and applied with a common electrode signal during a display stage. The first substrate further includes a driving electrode layer disposed between the anode and the base substrate, the driving electrode layer is applied with the touch scanning signal during the touch scanning stage.
Abstract:
A method for manufacturing an array substrate comprises forming a pattern including an active layer, a gate insulating layer and a gate on a base substrate, and forming a pattern including an interlayer dielectric layer, a source, a drain and a pixel electrode through a single patterning process on the base substrate formed with the pattern of the active layer, the gate insulating layer and the gate. An array substrate and a display device are further provided.
Abstract:
A head health care device and a head care system are provided. The head health care device includes: a body; a plurality of sensing components provided and projected on an outer surface of the body, in which each sensing component is configured to sense head information of a user; and a plurality of health care components provided and projected on the outer surface of the body, in which the health care components are configured to perform health care operations on a head of the user according to a control signal.
Abstract:
Disclosed is a fingerprint detection circuit and a display device. The fingerprint detection circuit comprises at least one fingerprint detection unit, the fingerprint detection unit comprising a switch transistor and a sensor capacitor, the fingerprint detection unit further comprising an output amplification element and a data input terminal for receiving a data signal, wherein a control terminal of the output amplification element is coupled with a terminal of the sensor capacitor, an output terminal of the output amplification element functions as an output terminal of the fingerprint detection unit, an input terminal of the output amplification element is coupled with the data input terminal, the output amplification element is configured for amplifying and outputting a current input to the output amplification element via the data input terminal.
Abstract:
The present disclosure discloses a touch screen and a method of determining a touch position. The touch screen includes: a plurality of first touch electrodes; and a plurality of horizontal scanning lines, each of the plurality of horizontal scanning line connecting the first touch electrodes in a same row.
Abstract:
Provided are a touch display circuit and driving method thereof, and a display apparatus. The touch display circuit comprises: a reset module connected to a reset signal terminal, a first level terminal and a first node; a charging module connected to a gate signal terminal, a data signal terminal and a second node; a pull-up module connected to a second level terminal, a first scan signal terminal, the first node and the second node; a driving module connected to the second level terminal, the gate signal terminal, the first node and a third node; and an electroluminescent module connected to the third node, a second scan signal terminal and a third level terminal. The touch display circuit outputs stable driving current and avoids or reduces the influence of the opposite electrodes on the touch driving.
Abstract:
The present disclosure provides an array substrate, an in-cell touch screen and a display device. The array substrate includes a plurality of touch electrodes arranged at an identical layer and separated from each other, and a plurality of wires arranged at a layer different from the touch electrodes and configured to connect the touch electrodes to a touch detection circuit. A difference in overlapping areas between each touch electrode and the wires corresponding to the other touch electrodes in a coverage region of the touch electrode is less than a predetermined threshold.
Abstract:
There are provided an organic light emitting display device, a driving method thereof and a display apparatus. The organic light emitting display device includes an underlay substrate, and organic light emitting pixel units arranged in a matrix on the underlay substrate; wherein the respective organic light emitting units comprise at least two organic light emitting structures which have different light emitting colors, are disposed in cascades and insulated from each other, and a pixel circuit connected corresponding to the organic light emitting structures and configured to drive the organic light emitting structures to emit light. Since the respective organic light emitting pixel units comprise at least two organic light emitting structures which have different light emitting colors, are disposed in cascades, and are insulated from each other, when displaying, each organic light emitting pixel unit can display, in different frame pictures, grey scale effects of at least two colors according to applied signals. The display effect can be raised because each organic light emitting pixel unit can display more colors.
Abstract:
A TFT, a TFT array substrate, a manufacturing method thereof and a display device are disclosed. A source of the TFT includes a first source portion (51). A drain of the TFT includes a first drain portion (52). The first source portion (51) and the first drain portion (52) are disposed in the same layer as an active layer and respectively at opposite sides of the active layer (5). The first source portion (51) and the first drain portion (52) are in direct contact to the active layer (5) respectively. The capacitance will not be generated between the first source/drain portion (51, 52) and the gate (2), because the first source/drain portion (51,52) and the gate (2) are disposed without overlapping with each other or with a small-area overlapping region. The breakdown of a gate insulation layer caused by too large voltage of the source/drain or too many charges accumulated on the source/drain can be also avoided.
Abstract:
A composite foam structure is provided. The composite foam structure includes a foam layer, a metal layer, and a first adhesive layer, the first adhesive layer being disposed between the foam layer and the metal layer and configured to bond g the foam layer and the metal layer; wherein the composite foam structure further includes a fiber structure, wherein the fiber structure is disposed in at least one of the foam layer or the first adhesive layer and configured to increase a tensile strength of at least one of the foam layer or the first adhesive layer.