Abstract:
An illumination device, dedicated glasses thereof, an analyzer thereof and an illumination system are provided. The illumination device includes a support member and a liquid crystal display panel mounted on the support member. The liquid crystal display panel includes a display area and a light emitting area, the liquid crystal display panel is provided with a first polarization sheet at its light incoming side in areas corresponding to the display area and the light emitting area, and is provided with a second polarization sheet at its light outgoing side only in area corresponding to the display area. The illumination device emits white light and can be used as an ordinary lamp because its light emitting area cannot be observed in the naked eye state, and when observed through the dedicated glasses or the analyzer, the content of the secret information displayed by the liquid crystal display panel can be seen.
Abstract:
A device for generating electricity by friction and a manufacturing method thereof. The device comprises a first substrate and a second substrate arranged oppositely, and a plurality of elastic columns arranged between the first substrate and the second substrate to support them. A surface of the first substrate facing the second substrate is provided with a first conductive electrode and an insulating polymeric membrane layer which are stacked. A surface of the second substrate facing the first substrate is provided with a second conductive electrode. At least one surface of the two opposite surfaces of the second conductive electrode and the insulating polymeric membrane layer is formed into a surface with a concave-convex structure. The friction area between the second conductive electrode and the insulating polymeric membrane layer can be increased upon relative movement between the first substrate and the second substrate.
Abstract:
A display apparatus is provided. It comprises a display panel and a switching assembly comprising a transparent light guide plate located at the light incidence side of the display panel and a light source, the transparent light guide plate located at the light incidence side of the display panel and provided with a plurality of mesh points on the surface of the transparent light guide plate facing away from the display panel, the transparent light guide plate having a light incidence face, the light source being located at one side of the light incidence face of the transparent light guide plate and being switchable between one state in which the light is emitted towards the light incidence face of the transparent light guide plate and the other state in which the light is not emitted towards the light incidence face of the transparent light guide plate.
Abstract:
Embodiments of the invention disclose a color filter substrate comprising: an underlying substrate; a semi-transparent and semi-reflecting layer formed on the underlying substrate; and a black matrix and a color filter layer formed on the semi-transparent and semi-reflecting layer. The black matrix and the color filter layer are formed on a side of the semi-transparent and semi-reflecting layer opposite from the underlying substrate. Other embodiments of the invention further disclose a method for manufacturing the color filter substrate, and a display device comprising the color filter substrate.
Abstract:
The embodiments of the present invention provide a display panel, a method for manufacturing the display panel, a display device, and a method for manufacturing the display device, relating to the technical field of display, thereby solving the problem that the anti-reflection effect of AR film is poor, since attaching an AR film can only achieve a zero reflection within a narrow wavelength range. The method for manufacturing a display panel comprises forming a black matrix on a first surface of a base substrate, and defining a plurality of display units with the criss-cross black matrix; forming a photoresist on a second surface of the base substrate; performing a curing process for the photoresist corresponding to the position of the display units; removing the photoresist corresponding to the position of the black matrix; and performing a texturing process for a portion of the second surface of the base substrate corresponding to the position of the black matrix.
Abstract:
Embodiments of the present invention provide a 3D display device and a manufacturing method thereof, which can reduce production costs. The display device comprises a grating layer and an array substrate; the array substrate comprises a plurality of pixel-units, each pixel-unit comprising a pixel-electrode and a control-circuit; the pixel-electrode of each pixel-unit comprises mutually-spaced at least two left-viewing-field pixel-electrodes and at least two right-viewing-field pixel-electrodes; the control-circuit of each pixel-unit comprises a first sub-control-circuit connected with the left-viewing-field pixel-electrodes and a second sub-control-circuit connected with the right-viewing-field pixel-electrodes.
Abstract:
Embodiments of the present invention disclose a depth of field maintaining apparatus, a 3D display system and a display method. The depth of field maintaining apparatus comprises: a 3D video signal input device; a position measuring device; an image processing device; and a 3D video signal output device, wherein the 3D video signal input device, the position measuring device and the 3D video signal output device are connected to the image processing device, the 3D video signal input device transmits an acquired 3D video signal to the image processing device, the position measuring device transmits detected position information of the viewer and the display screen to the image processing device, and the image processing device adjusts a space between corresponding object points in left and right eye images in a 3D video signal in accordance with the position information, such that a depth of field remains unchanged, and transmits a adjusted 3D video signal to the 3D video signal output device.
Abstract:
The present invention discloses a display system, comprising at least one jointed screen which is composed of a plurality of liquid crystal display panels jointed with each other, in which, each liquid crystal display panel is provided with a first polarizer only at a light entering side thereof, so that a visible angle at which contents displayed by the liquid crystal display panel can be seen from a light exiting side thereof is an obtuse angle; two adjacent jointed liquid crystal display panels are jointed with each other at their adjacent sides, and a joint angle formed at the light exiting side is greater than a right angle, such that the light exiting side of each display panel is located in a region covered by an angle range of the visible angle of at least one display panels other than said display panel.
Abstract:
A lighting display device is disclosed in embodiments of the present invention. The lighting display device comprises: a surface light source type display lamp comprising 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:
An apparatus is disclosed for aligning a to-be-aligned display panel by self-alignment exposure, a first and second groups of pixels are distributed at intervals on the to-be-aligned display panel which includes a first and second substrates, a first polarizer is provided on the first substrate, and a light alignment layer is provided on the first polarizer, wherein the apparatus includes a base platform for placing the to-be-aligned display panel; a display panel driving system connected to the to-be-aligned display panel; light irradiating toward the first substrate from the second substrate is linearly polarized light; a first exposure light source located to be closer to the second substrate; a second exposure light source located to be closer to the first substrate, light emitted from the second exposure light source is linearly polarized light, the polarization direction of which is orthogonal to the transmission axis direction of the first polarizer.