Abstract:
The present disclosure provides a display panel, its driving method, and a display device. The display panel includes a first substrate and a second substrate arranged opposite to each other to form a cell, a liquid crystal layer arranged between the first substrate and the second substrate, and a pixel electrode arranged on the second substrate. A sensing electrode to which an external voltage is to be applied is arranged at a region of the first substrate corresponding to the liquid crystal layer. At a display stage, an electric field is generated between the sensing electrode to which the external voltage is applied and the pixel electrode to which a data voltage is applied, so as to drive liquid crystal molecules in the liquid crystal layer to deflect. The sensing electrode is a black matrix and/or color filter made of a conductive material and arranged on the first substrate.
Abstract:
The present disclosure discloses a message display method and apparatus. The method comprises: receiving unlock information and authenticating the unlock information; and selecting one message from at least one received messages and displaying content of a selected message if it is determined that authentication of the unlock information is passed. That is, in the technical solution as described in the embodiments of the present disclosure, if it is determined that authentication of the unlock information is passed, then one message would be selected directly and its content is displayed, so that flows of displaying the message are simplified and steps of manual operation are reduced, which enables that the message display method as described in the embodiment of the present disclosure become more user-friendly and user experience would be better.
Abstract:
A transfer plate and an orientation film generation system are provided. The transfer plate includes a bottom plate and a plurality of relief plates, wherein, the bottom plate is disposed on a printing cylinder and is distributed with a plurality of engagement holes, each of the engagement holes has a plurality of stopper locations configured to provide different engagement depths; and the plurality of relief plates and the plurality of engagement holes are disposed in one-to-one correspondence, and each of the relief plates is provided with an engagement pin cooperated with the stopper locations of a corresponding engagement hole, wherein the relief plate is made of permeable materials. The orientation film generation system includes the above transfer plate.
Abstract:
The present invention provides array substrate, manufacturing method thereof, and display device, relating to manufacturing technology field of liquid crystal display. The array substrate of the present invention includes: a base substrate, on which a plurality of gate lines and a plurality of data lines are provided; shielding electrodes, which are provided above and electrically insulated from the data lines, and the shielding electrodes at least partially cover the data lines; first electrodes, which are provided in the same layer as the shielding electrodes and are electrically insulated from the shielding electrodes; second electrodes, which are provided above and electrically insulated from the first electrodes, wherein, the shielding electrodes are applied with a shielding voltage signal, the second electrodes are applied with a stable voltage signal, and no electric field or weak electric filed is formed between the shielding electrodes and the second electrodes.
Abstract:
A display panel and a display device are provided, and the display panel comprises a GOA circuit; a first conducting wire and a second conducting wire are disposed in a region outside the GOA circuit; an insulating layer is disposed between the first conducting wire and the second conducting wire; and the first conducting wire, the insulating layer and the second conducting wire form a first capacitor. The display panel can protect the internal signal lines of the GOA circuit and the display panel, and increase the antistatic ability of the display panel and the yield of products.
Abstract:
The present invention relates to the field of display technology, and provides an array substrate, a method for manufacturing an array substrate, and a display device. The array substrate comprises a substrate, a data line, and a gate line and a pixel electrode formed sequentially on the substrate. The data line includes a fixed segment arranged on a same layer as, and spaced from, the gate line or the pixel electrode, and a connection segment electrically connected to the fixed segment. The present disclosure is possible to prevent the data line from being too close to the pixel electrode at the shift side, thereby to prevent a charging voltage for the pixel electrode from being affected by the capacitance effect and ensure the display quality of an image. In addition, no additional resistor is required, so it is able to reduce the power consumption.
Abstract:
A display substrate includes: a base substrate (300), a circuit structure layer (400) and an electronic paper film (500) sequentially disposed on the base substrate (300). The circuit structure layer (400) includes: a plurality of first signal lines (21) extending along a first direction (X), a plurality of second signal lines (22) extending along a second direction (Y), a plurality of drive units, and at least one near field communication coil. The plurality of first signal lines (21) and the plurality of second signal lines (22) intersect to form a plurality of sub-pixel areas. The drive units are located in the sub-pixel area and electrically connected with the first signal lines (21) and the second signal lines (22), and are configured to control the display patterns of the electronic paper film corresponding to the sub-pixel areas.
Abstract:
This invention provides an OLED display substrate, a method for manufacturing the same, and a display device, which belongs to the technical field of displays. The OLED display substrate includes: a drive substrate, the drive substrate being provided with a light-emitting unit; and an encapsulation structure covering the light-emitting unit. The encapsulation structure comprises a first inorganic structure, an organic layer and a second inorganic structure arranged in sequence along a direction away from the drive substrate. A refractive index of the first inorganic structure is higher than a refractive index of the organic layer, the first inorganic structure comprises at least one inorganic layer, and a thickness of one inorganic layer of the at least one inorganic layer is not larger than 500 nm. With the technical solution of this invention, the display effect of the OLED display substrate can be improved.
Abstract:
A Near Field Communication (NFC) tag and a control system for the NFC tag are provided. The NFC tag includes: a NFC coil, a control circuit, an energy acquisition circuit, and an energy storage circuit, wherein the NFC coil is configured to detect a magnetic field signal transmitted by a card reader when a distance between the NFC tag and the card reader is within a predetermined distance range; the energy acquisition circuit is configured to convert the magnetic field signal into an electrical signal when the NFC coil detects the magnetic field signal; and the control circuit is configured to control the energy acquisition circuit to transmit the electrical signal to the energy storage circuit, and control to charge the energy storage circuit through the electrical signal.
Abstract:
A control method of an electronic ink display apparatus, which is applied to a terminal equipment. The method includes: charging the electronic ink display device; outputting charging state prompt information, and after the terminal device establishes a wireless communication connection with the electronic ink display device, receiving a data update instruction and sending target update content to the electronic ink display device. Outputting the charging state prompt information includes: outputting charging completion prompt information in response to a completion of the charging of the electronic ink display device.