Abstract:
A three-dimensional (3D) liquid crystal display (LCD) device is provided, comprises: an LCD panel (10), configured to display an image and comprising a plurality of first pixel units; a liquid crystal light-splitting device (100), disposed on a light exiting side of the LCD panel (10) and comprising a plurality of second pixel units; and a first polarizer (200), disposed on a light exiting side of the liquid crystal light-splitting device (100), wherein the second pixel units are in one-to-one correspondence with the first pixel units; in a condition that the 3D LCD device is in a 3D operating mode, the liquid crystal light-splitting device (100) has a light-splitting function; and in a condition that the 3D LCD device is in a 2D operating mode, an operating state of each of the plurality of second pixel units of the liquid crystal light-splitting device (100) is consistent with that of a corresponding first pixel unit.
Abstract:
A backlight module and an anti-peeping display device are provided. The backlight module comprises a light guide plate, a lens and a light source. The lens is provided between the light source and the light guide plate, and light emitted from the light source is incident upon the light guide plate through the lens at a same incident angle; a light emission surface of the light guide plate is provided with protrusions, the light emission surface of the light guide plate is a total reflection surface except the regions where the protrusions are provided; a light emission surface of the protrusion is parallel with that of the light guide plate, a surface for performing a first reflection on light incident upon the protrusion is a total reflection surface, and the light incident upon the protrusion exit perpendicularly to the light emission surface of the protrusion after being totally reflected once.
Abstract:
A display device is provided, the display device comprising a display panel, the display panel including an opposed substrate (1) and an array substrate (2) arranged opposite to each other, and a liquid crystal layer (3) arranged therebetween, the display panel being divided into a central region (61) and a peripheral region (62) surrounding the central region (61), and an additional polarizer (6) being arranged in a region between the array substrate (2) and the liquid crystal layer (3) and corresponding to the peripheral region (62). The display device can effectively prevent the peripheral region (62) of the display panel from light leakage.
Abstract:
A liquid crystal display device, including a liquid crystal panel and a backlight module located on a light incident side of the liquid crystal panel; the liquid crystal panel including a plurality of subpixels distributed in array, and the backlight module includes a light guide plate and a light source, wherein the light source which is a monochromatic light source, and a grating is provided on the light guide plate, a ratio of a period of the grating to a peak wavelength of light emitted by the light source is greater than or equal to and less than or equal to 1, so that an angle of incidence of a light incident to the liquid crystal panel is restricted in a set range; and the liquid crystal display device further includes a light conversion module provided on a light emitted side of the liquid crystal panel configured to convert the color of a light.
Abstract:
A backlight module, and a manufacturing method thereof, and a display device are provided. The backlight module includes a backlight source, a light guide plate, at least one optical film, and a multilayer coating; the multilayer coating is provided at at least one side of the at least one optical film; the multilayer coating is configured for decreasing light transmittance of at least one given wavelength; the backlight source is provided at a side of the light guide plate, and configured for providing white light, the light guide plate is configured for guiding the white light toward the optical film, and the white light is emitted out after transmitting through the optical film.
Abstract:
A color filter substrate comprises: a substrate and a color filter formed on the substrate; and a color conversion layer, a first refractive index film layer, a second refractive index film layer and a third refractive index film layer formed in turn on a side of the color filter facing away from the substrate. The second refractive index film layer has a refractive index larger than that of the third refractive index film layer, larger than that of the first refractive index film layer under a condition of powering down, and smaller than that of the first refractive index film layer under a condition of powering up. The color filter is configured to absorb a portion of outside light, which creates photoluminescence reaction with the color conversion layer, thereby to avoid white color caused by the photoluminescence reaction, and to allow the display color brighter.
Abstract:
An array substrate and a display device are disclosed. A coating layer (8) is disposed between a base substrate (1) and a first transparent conductive oxide film layer (2), a refractive index of the coating layer (8) is bigger than that of the base substrate (1) and smaller than that of the first transparent conductive oxide film layer (2). A multi-layer reflection phenomenon caused by the relatively big difference between the refractive indexes of the base substrate 1 and the first transparent conductive oxide film layer 2 can be weakened, thereby the light transmission rate of the array substrate may be improved.