Abstract:
A backlight module and a display device are disclosed, which relate to the field of display technology and overcome the problem of poor heat dissipation effect of the whole display device. The backlight module comprises a backplane, a light source component fixed to the backplane, and a first heat dissipation layer at least arranged in part of the overlapping zone for the backplane and the light source component. The display device comprises a display panel and the backlight module mentioned above, and the backlight module provided by the embodiment is applied in the display device.
Abstract:
A switchable anti-peeping device and a manufacturing method thereof, and a display device are provided. The switchable anti-peeping device, including a first substrate and a second substrate provided opposed to each other and a light control layer therebetween, wherein the first substrate includes a first base substrate, and a first light orientation layer and a first electrode layer which are provided on the first base substrate, and the second substrate includes a second base substrate, and a second electrode layer provided on the second base substrate, and the first light orientation layer defines an angle of emergence of light passing through the first light orientation layer, and the light control layer is capable of switching between a transparent state and a scattering state. The switchable anti-peeping device can achieve switching between a wide viewing angle and a narrow viewing angle, thereby meeting real-time requirements of people in different situations.
Abstract:
The present disclosure provides a display system which includes an electronic device and a user-side auxiliary viewing module. The electronic device may include a device-side display module, which includes an array substrate, a color filter substrate, a liquid crystal layer arranged between the array substrate and the color filter substrate, and a first polarizer adhered onto a surface of the array substrate away from the liquid crystal layer. A second polarizer may be arranged on the user-side auxiliary viewing module, and have a polarization axis in a direction substantially perpendicular to a polarization axis of the first polarizer.
Abstract:
A liquid crystal display includes a liquid crystal display panel including a thin film transistor (TFT) array substrate, an opposed substrate, and a liquid crystal layer between the TFT array substrate and the opposed substrate. A lower polarizer is disposed on a side of the TFT array substrate facing away from the liquid crystal layer, and the opposed substrate is provided with a polarization analyzer. The polarization analyzer includes a plurality of polarization regions and a plurality of non-polarization regions. A portion of the polarization analyzer corresponding to the polarization region is a polarization device, and the polarization regions and non-polarization regions are arranged alternately. The LCD can improve the security and confidentiality of the information displayed on the LCD when a user views the information. And special eyeglasses and display apparatus are also provided.
Abstract:
An embodiment of the present invention provides a touch circuit, a method for driving a touch circuit and a touch display apparatus, which may achieve a touch display apparatus with a narrower frame. The touch circuit includes: a touch signal input module having a first output end for outputting a touch drive triggering signal and a second output end for outputting a touch clock signal; a plurality of touch control sub-circuits cascaded to each other, each of which has a first input end for inputting the touch drive triggering signal and a second input end for inputting the touch clock signal; and a plurality of touch electrodes, wherein the first output end and the second output end of the touch signal input module are connected to at least one cascade of the touch control sub-circuits and configured to output the touch drive triggering signal and the touch clock signal to the at least one cascade of the touch control sub-circuits, and wherein the touch control sub-circuits are configured to drive the touch electrodes when they are triggered by the touch drive triggering signal and the touch clock signal.
Abstract:
A 3D display device and LC barrier are disclosed. The 3D display device comprises a non-polarized light display unit and an LC barrier. The LC barrier comprises a liquid crystal cell arranged at one side of the non-polarized light display unit, and the liquid crystal cell comprises an upper substrate, a lower substrate and a cholesteric liquid crystal layer between the substrates; a first quarter-wave plate provided on the upper substrate; a polarizer provided on the first quarter-wave plate; an absorption axis of the polarizer forms a predetermined angle with a fast axis of the first quarter-wave plate.
Abstract:
A lighting display device is disclosed in embodiments of the present invention. The lighting display device includes a surface light source type display lamp having a backlight source, a first transparent substrate and a second transparent substrate laminated in sequence in a direction away from the backlight source, a liquid crystal layer disposed between the first transparent substrate and the second transparent substrate, a polarizer disposed on a side of the first transparent substrate facing the backlight source, and pixel units disposed on one of the first transparent substrate and the second transparent substrate, the pixel units being arranged in a matrix and being configured to control rotation of liquid crystal molecules in the liquid crystal layer, and a display unit spaced from the surface light source type display lamp by a set distance, wherein the display unit has a polarization and reflection structure which is configured to cooperate with the polarizer, and is configured to reflect light emitted by the surface light source type display lamp to display.
Abstract:
A three-dimension (3D) printing imaging system, including: a liquid crystal display device; the liquid crystal display device includes a plurality of pixel modules; each pixel module includes at least one sub-pixel; the at least one sub-pixel is integrally manufactured; and light passing through the at least one sub-pixel is of a same color. A 3D printing imaging method includes: displaying an image of a product through the liquid crystal display device, and performing 3D printing by taking the image displayed on the liquid crystal display device as a template. A 3D printing device includes the imaging system.
Abstract:
The present disclosure relates to a display substrate, a display device and a method for manufacturing the display substrate. The display substrate comprises a substrate, and a plurality of gate lines, a plurality of data lines and a plurality of common electrode lines which are formed above the substrate. The plurality of gate lines and the plurality of data lines are crossed to form a plurality of pixel units. Each of the plurality of pixel units comprises a thin film transistor and a pixel electrode electrically connected to the thin film transistor. The display substrate further comprises connection electrodes located above the substrate. Each of the connection electrodes connects two adjacent common electrode lines.
Abstract:
The present invention discloses an array substrate, a display panel, and a display device, for solving a problem of tip discharge a comb pixel electrode comprised in a sub-pixel unit in the prior art, which produces discharge to surrounding data lines, gate lines, and neighboring pixel electrodes, so that neighboring sub-pixel units are subject to interference and display effect is influenced. The array substrate comprises a base plate, the base plate is further provided with a plurality of sub-pixel units, each of the sub-pixel units comprises a pixel electrode of a comb structure, and the base plate is further provided with a shielding electrode which is electrically connected with the pixel electrode.