Abstract:
An embodiment of by the present disclosure provides a display device including a display panel, an anti-blue-light layer and a backlight module, the anti-blue-light layer is positioned between the display panel and the backlight module, and the anti-blue-light layer is capable of reflecting high-energy shortwave blue light incident from a direction of the backlight module and high-energy shortwave blue light incident from a direction of the display panel.
Abstract:
The present invention relates to the field of display technology, and discloses virtual reality goggles and a display method thereof. The virtual reality goggles comprise: a shell, a display screen and an optical lens, wherein the display screen and the optical lens are located within the shell, a buffer layer is formed on a side of the shell facing towards viewing eyes, the optical lens is located between the buffer layer and the display screen, for projecting a picture of the whole display screen only to the left eye or the right eye at a time. The virtual reality goggles of the present invention, by controlling the optical lens to project the picture of the whole display screen only to one eye at a time, enables a single eye to see the picture of the whole display screen. And compared to the conventional goggles through which a single eye can only see half of the picture of the display screen, the picture resolution of the goggles of the present invention is doubled.
Abstract:
The present invention involves a display panel and a display device. The display panel includes a display surface for displaying images, and the display surface is concave when being viewed in front of the display surface. The display panel can provide a good sense of presence when displaying images.
Abstract:
A display panel and a display device are provided. The display panel comprises an upper substrate (10) and a lower substrate (20) cell-assembled, the lower substrate (20) including a base substrate (200), the base substrate (200) including an upper surface (202) close to the upper substrate (10) and a lower surface (203) opposite to the upper surface (202), scattering microstructures (205) being arranged on the lower surface (203) of the base substrate, and a display functional layer being arranged on the upper surface (202) of the base substrate. The display panel can solve a problem that a display device in the prior art cannot meet requirements of ultra-thinning and low cost.
Abstract:
The invention relates to the display technology field, and particularly to a wire grid polarizer, a manufacturing method thereof, a display panel and a display device. The wire grid polarizer comprises a substrate, in which wire grid structures are arranged at intervals in an array, to allow light to penetrate from the grid pitches thereof, with the other area except the wire grid structures of the substrate being a continuous opaque area. Due to the wire grid polarizer being provided with the wire grid structures arranged at intervals in a array, local light transmitting areas can be formed, and light emergence can be controlled more flexibly. A display panel using the wire grid polarizer can effectively lower the light absorption rate, also avoid peripheral light leakage in a non-subpixel area, and prevent the light leakage of the pixels themselves; correspondingly, a display device using the display panel can improve the light utilization rate, and achieve a good display effect.
Abstract:
The embodiments of present invention disclose a circuit board and a manufacturing method thereof and a display apparatus comprising the circuit board. The circuit board comprises a base substrate, a device to be soldered, a bonding pad and a support, wherein the bonding pad and the support are provided on the base substrate, and the device to be soldered is provided on the support and is connected with the bonding pad. By providing the device to be soldered on the support, the embodiments of present invention can effectively prevent the short circuit of the device to be soldered during the process of soldering and thus improve product yield.
Abstract:
The present disclosure discloses a display substrate and a display panel, a method for manufacturing the same and a display device. The method for manufacturing the display substrate includes a step of form an optical grating. The step of forming the optical grating includes: forming an intermediate layer on an outer surface of a transparent base substrate in such a manner that the intermediate layer includes stripe patterns arranged at intervals; forming a display film layer on an inner surface of the transparent base substrate where the intermediate layer is formed; and applying an opaque material onto a surface of the intermediate layer or between the stripe patterns of the intermediate layer on the transparent base substrate, to form light-shielding stripes and light-transmitting stripes which are arranged alternately.
Abstract:
The present invention discloses an exposure device for three-dimensional printer, a three-dimensional printer and a three-dimensional printing method. The exposure device comprises a backlight source and a pixel panel disposed at a light-exiting side of the backlight source, the pixel panel including a plurality of pixel units arranged in an array and a plurality of switching elements in one-to-one correspondence with the plurality of pixel units and used to control the corresponding pixel units to be light transmissive or non-light-transmissive so as to enable the pixel panel to display an image to he displayed. The exposure device further comprises an outer frame for constraining a moving range of the pixel panel. The concepts of the present invention can efficiently reduce the volume of three-dimensional printer. Moreover, the pixel panel of the present invention can slightly move within the outer frame, thereby improving uniformity of exposure and printing effect.
Abstract:
A dual view-field display and a fabricating method and a driving method thereof are provided. The dual view-field display includes a color filter substrate and an array substrate which are oppositely disposed. A slit grating is disposed on a side of the color filter substrate or the array substrate, and the color filter substrate includes a plurality of pixel units and a first black matrix surrounding each pixel unit. The slit grating includes light-shielding regions and light-transmitting regions, which are arranged at intervals in a matrix. The dual view-field display further comprises a light blocking portion configured for preventing light rays from leaking out of an upper-edge region and/or a lower-edge region of the light-transmitting region, which solves a problem that a viewing angle of a user of the dual view-field display is limited.
Abstract:
The present disclosure provides a display apparatus. The display apparatus includes a 2D display panel, and a grating arranged above a light-exiting surface of the 2D display panel. A first supporting layer is further arranged between the 2D display panel and the grating, and it includes a plurality of first support members with an identical height. The first support member partially covers a black matrix fringe in the 2D display panel in a direction of the black matrix fringe.