Abstract:
There is provided a touch substrate, including a base substrate and at least one touch unit on the base substrate. Each touch unit includes capacitive touch electrodes including a first electrode and a second electrode and electromagnetic touch electrodes including a third electrode and a fourth electrode. An insulating layer is between the first and second electrodes. A resistance of a material of each of the electromagnetic touch electrodes is changed when a magnetic field where the electromagnetic touch electrode is located is changed. The insulating layer further extends between the third and fourth electrodes. The third and first electrodes are spaced apart from each other and are side by side on a same side of the base substrate, and the fourth and second electrodes are spaced apart from each other and are side by side on a side of the insulating layer distal to the base substrate.
Abstract:
Embodiments of the present disclosure relate to an electrically conductive particle and a manufacturing method thereof as well as an electrically conductive adhesive comprising the electrically conductive particle and a manufacturing method thereof. The electrically conductive particle comprises: a core microsphere; an electrically conductive macromolecular layer encapsulating the core microsphere; and a 3D graphene layer and a metal layer encapsulating the electrically conductive macromolecular layer.
Abstract:
A touch display module, a manufacturing method thereof and a display device are provided. The touch display module includes a display panel and a touch module attached to the display panel; the touch module includes a touch region provided with a touch electrode and a border region provided with a black matrix, and the touch module includes a base substrate and includes a first anti-shadow layer and a second anti-shadow layer which are at a side, close to the display panel, of the base substrate; the first anti-shadow layer is between the touch electrode and the base substrate; the second anti-shadow layer is at a side, away from the base substrate, of the touch electrode; and in a dark state display mode, a color difference between the touch region and the border region is smaller than a preset value.
Abstract:
The disclosure relates to An electronic device, an input/output apparatus and an input/output method therefor are disclosed. The electronic device includes an input/output controller, a first projector component, a second projector component and a detector component. The input/output controller generates a first projection signal for an output interface and a second projection signal for an input interface. The first projector component projects the output interface according to the first projection signal. The second projector component projects the input interface according to the second projection signal. The detector component detects an input signal in the projected input interface, and transmits the detected input signal to the input/output controller as an input signal for the electronic device. By implementing input/output in a manner of projection, an input/output interface of a desired size is provided while the input/output apparatus of the electronic device is miniaturized.
Abstract:
The present application discloses a touch panel having a touch area and a non-touching area at a side of the touch area. The touch panel includes: a base substrate having a first surface and a second surface opposite to each other; a touch sensing electrode provided on the first surface of the base substrate and corresponding to the touch area; a first connection wire on the second surface of the base substrate; and a touch control circuit in the non-touching area. The base substrate is provided with a first through hole, the touch sensing electrode is electrically connected with the first connection wire through the first through hole, and the first connection wire is electrically connected with the touch control circuit. The present application further discloses a manufacturing method for the touch panel and a display apparatus having the touch panel.
Abstract:
Disclosed are a method for manufacturing a touch panel, a touch panel and a touch display device. The method includes: forming signal lines and multiple connection bridges disposed in a matrix on a substrate; forming multiple isolation films on the substrate provided with the signal lines and the multiple connection bridges, where the multiple isolation films are in one-to-one correspondence with the multiple connection bridges and each isolation film covers a portion of one corresponding connection bridge; and forming multiple first touch electrodes and multiple second touch electrodes made of nano-silver on the substrate provided with the multiple isolation films. The first touch electrodes and the second touch electrodes are connected to the signal lines. Each first touch electrode includes multiple first sub-electrodes. Adjacent first sub-electrodes are bridged through corresponding connection bridges. The second touch electrodes are insulated from the connection bridges through the isolation films.