Abstract:
A light guide structure (10), a backlight module (20) and a display device are disclosed, which can reduce loss of light in travelling and increase utilization rate of light. The light guide structure (10) including: a light guide plate (1) including a light-exiting surface (11) and a reflection surface (12) that are opposite to each other and a side surface (13) connecting the light-exiting surface (11) with the reflection surface (12), a material of the light guide plate (1) being an isotropic material; a reflection type brightness enhancement film (2) that is disposed at a side where the light-exiting surface (11) of the light guide plate (1) is located; a quarter wavelength plate (3) that is disposed between the light-exiting surface (11) of the light guide plate (1) and the reflection type brightness enhancement film (2), with an angle of 45 degree existing between a slow axis of the quarter wavelength plate (3) and a transmission axis of the reflection type brightness enhancement film (2); and a reflection film (4) that is disposed at a side where the reflection surface (12) of the light guide plate (1) is located.
Abstract:
A liquid crystal cell and method for fabricating the same, a liquid crystal display panel, and a display device are disclosed. The liquid crystal cell comprises an active area and a dummy area, and comprises a first and second substrate which are arranged oppositely and separated by spacers, and liquid crystal arranged between the first and second substrate. The liquid crystal cell further comprises a volume variation compensating component which is arranged in the active area, and the volume variation compensating component comprises a material with a thermal expansion coefficient opposite to that of the liquid crystal, so as to compensate variation in the volume of liquid crystal when temperature varies. Not only defects of gravity mura at high temperature and bubbles at low temperature are eliminated to spread LC Margin, but also the scope of application environment for the liquid crystal display panel is expanded.
Abstract:
A liquid crystal display panel and a liquid crystal display are disclosed. The liquid crystal display panel comprises: a first substrate and a second substrate, disposed opposite to each other to form a cell, as well as a liquid crystal layer between the two substrates. On the first substrate, there is formed with a first common electrode and a pixel electrode, arranged at an interval; on the second substrate, there is formed with a set of layers, the set of layers comprising: a second common electrode, and a dielectric layer covering one side of the second common electrode facing the first substrate; and the structure of the set of layers is different at a position directly opposite to the first common electrode from that at a position directly opposite to the pixel electrode.
Abstract:
A liquid crystal panel and a display device are provided. The liquid crystal panel comprises a liquid crystal layer and a pixel region. The pixel region comprises a plurality of pixel units. Each of the pixel units comprises a first subsidiary region (310) and a second subsidiary region (320). In an initial state, a major axis direction of liquid crystal molecules in the liquid crystal layer corresponding to the first subsidiary region (310) forms an angle of 90 degrees with respect to a major axis direction of the liquid crystal molecules in the liquid crystal layer corresponding to the second subsidiary region (320). The first subsidiary region (310) comprises two subsidiary sub-regions, and the second subsidiary region (320) comprises one or two subsidiary sub-regions. At least two electrodes for applying an In-plane electric field to the liquid crystal layer are disposed in the subsidiary sub-regions of the first and second subsidiary regions (310) and (320), respectively. At least one of the two electrodes comprises a strip electrode. The strip electrodes of the two subsidiary sub-region of the first subsidiary region (310) form an angle larger than 0 degree and less than 180 degrees with respect to each other. The liquid crystal panel and the display device alleviate the problems of poor viewing angle characteristics and severe color shift at different viewing angles of the conventional liquid crystal panel.
Abstract:
Embodiments of the present invention relate to a Color filter substrate and a transflective liquid crystal display device. The color filter substrate comprises: a base substrate; a plurality of pixel regions each of which is divided into a transmissive region and a reflective region and comprises a color filter formed on the base substrate, wherein, the boundary region of each pixel region adjacent to a neighboring pixel region comprises at least one light hole which corresponds to the reflective region of the pixel region where it is located.
Abstract:
An array substrate and a liquid crystal display device are provided. The array substrate (11) comprises a first substrate (110) and a switch element (112) disposed on an inner side of the first substrate (110), and further comprises a polarizing light-emitting layer (111), the polarizing light-emitting layer (111) has an EL mode. In the liquid crystal display device (1), the polarizing light-emitting layer (111) with an EL mode is disposed in the array substrate (11), therefore, no backlight is required and the power consumption of the liquid crystal display device (1) is further reduced
Abstract:
The present disclosure provides a liquid crystal display panel and a liquid crystal display device. The liquid crystal display panel includes a first substrate and a second substrate disposed opposite to the first substrate. The first substrate includes a first common electrode and a dielectric layer. The second substrate includes a second common electrode and a pixel electrode. The dielectric layer includes at least two dielectric sub-layers in a region corresponding to each pixel unit. Dielectric constants of the at least two dielectric sub-layer are different from each other.
Abstract:
The present invention provides a display device and a display control method of the display device, so as to improve transmittance of the light emitted from the display device itself in an indoor environment. A display device provided by the present invention includes a display panel and a quarter-wave layer disposed at a light outgoing side of the display panel, the display device further includes: a liquid crystal structure disposed at a side of the quarter-wave layer away from the display panel, the liquid crystal structure presenting a polarization state or a transparent state under different ambient light intensity conditions.
Abstract:
The present disclosure provides a display panel and a display device. The display panel includes a pixel unit including first and second sub-unit regions. Liquid crystal molecules in the liquid crystal layer corresponding to the first sub-unit region have a first initial alignment direction, and liquid crystal molecules in the liquid crystal layer corresponding to the second sub-unit region have a second initial alignment direction. The pixel unit further includes a third sub-unit region arranged between the first and second sub-unit regions. Liquid crystal molecules in the liquid crystal layer corresponding to the third sub-unit region have a third initial alignment direction, which is an alignment direction in a rotation from the first initial alignment direction towards the second initial alignment direction along a first rotation direction. An angle difference between the first and second initial alignment directions is greater than 0° and less than or equal to 90°.
Abstract:
The present disclosure provides a display panel and a display device. The display panel includes a pixel unit including first and second sub-unit regions. Liquid crystal molecules in the liquid crystal layer corresponding to the first sub-unit region have a first initial alignment direction, and liquid crystal molecules in the liquid crystal layer corresponding to the second sub-unit region have a second initial alignment direction. The pixel unit further includes a third sub-unit region arranged between the first and second sub-unit regions. Liquid crystal molecules in the liquid crystal layer corresponding to the third sub-unit region have a third initial alignment direction, which is an alignment direction in a rotation from the first initial alignment direction towards the second initial alignment direction along a first rotation direction. An angle difference between the first and second initial alignment directions is greater than 0° and less than or equal to 90°.