Abstract:
An array substrate and a display device are provided. The array substrate includes a plurality of data lines; a plurality of gate lines; and a plurality of sub-pixel units defined by the gate lines and the data lines intersecting each other. The sub-pixel unit includes a first pixel electrode and a second pixel electrode respectively disposed on two sides of the gate line and a common electrode disposed between the first pixel electrode and the second pixel electrode. At least a first compensation electrode is connected to at least a side of the common electrode, at least a part of projection of it on a plane having the first pixel electrode overlaps the first pixel electrode; and/or at least a second compensation electrode is connected to a side of the first pixel electrode, and at least a part of projection of it on a plane having the common electrode overlaps the common electrode. The display device can have a wide viewing angle.
Abstract:
An array substrate comprising a plurality of pixel units arranged in an array. At least one pixel unit comprises a first pixel electrode and a second pixel electrode. The first pixel electrode is connected with a first thin film transistor and the second pixel electrode is connected with a second thin film transistor; wherein a channel is provided between a source and a drain of the first thin film transistor, the projection of the first pixel electrode on the plane where the channel resides covers at least part of the channel, and the first pixel electrode and the source and drain of the first thin film transistor constitute a top gate thin film transistor. The liquid crystal display panel comprises the array substrate provided by the above technical solution.
Abstract:
An array substrate and a display device are provided. A common electrode line with the same extending direction as a gate line is disposed at one end near a thin film transistor, and forms a storage capacitor with a drain electrode of the thin film transistor. As compared with the case in the prior art that a common electrode line and a thin film transistor in an array substrate are disposed at both ends of a pixel, respectively, and it is necessary to separately provide a storage capacitance electrode useful for forming a storage capacitor with the common electrode line, the pixel region occupied by the thin film transistor and the common electrode line can be effectively decreased. Thus, the aperture ratio is increased, and the display brightness of an IPS liquid crystal display device is enhanced.
Abstract:
The present invention provides an anti-peeping device comprising: a plate-shaped substrate; a magnetic field generating device disposed on the plate-shaped substrate for generating a magnetic field; a plurality of light blocking walls deflectably connected to the plate-shaped substrate and configured to be changeable in its deflecting direction and/or deflecting angle in response to a change in a direction and/or an intensity of the magnetic field; a magnetic field control device; and a user input device for receiving an instruction from a user. The magnetic field control device is configured to control the magnetic field generating device to adjust the direction and/or the intensity of the magnetic field based on an instruction received from the user input device, so as to change the deflecting direction and/or the deflecting angle of the light blocking walls. The present invention further comprises a control method for an anti-peeping device.
Abstract:
A display device being switchable between a normal display mode and an anti-peeping display mode and a display system comprising the display device are disclosed. The display device comprises: a housing; a display panel mounted within the housing and provided with a polarizer only on a light incidence side thereof, the polarizer being configured to polarize light to be incident into the display panel; and a polarization analyzing structure fitted onto the housing, and configured to selectively analyze light emitted out from an active display area of the display panel so as to achieve a normal display mode, in which a user is able to directly view an image displayed in the display device, and anti-peeping display mode, in which the user is able to view the image displayed in the display device only by means of an additional polarization analyzer, of the display device.
Abstract:
The present invention relates to the technical field of polarizer, and discloses a circular polarizer and a fabricating method thereof, as well as a display panel. The circular polarizer comprises a substrate, as well as a linear grating structure layer and a quarter-wave plate which are located on one side of the substrate. In specific implementations, the quarter-wave plate is a quarter-wave plate formed from a photo-polymerized liquid crystal material. The above circular polarizer may be directly integrated on an upper substrate and/or a lower substrate of a display panel, thereby simplifying the structure of the display panel.
Abstract:
The embodiments of the present invention provide a substrate and a manufacturing method thereof, as well as a display device. The substrate comprises: a base substrate, a plurality of gate lines arranged in parallel, a first insulating layer that covers the gate lines, a plurality of data lines located on the first insulating layer and perpendicular to the gate lines, a second insulating layer that covers the data lines, and pixel electrodes of sub-pixel areas enclosed by the data lines and the gate lines; polarizing films that cover the pixel electrodes; and first auxiliary gate lines arranged on the second insulating layer and parallel to the gate lines, at least two portions on each of the first auxiliary gate lines being electrically connected with at least two corresponding portions on the gate line through via holes that penetrate the first insulating layer and the second insulating layer, the first auxiliary gate lines and the polarizing films are formed by performing a same patterning process to a same layer of transparent conductive material. The embodiments of the present invention can reduce signal delay in a display device, and can be used for manufacture of a display.
Abstract:
The present invention discloses a light valve device, an infrared display apparatus, dedicated spectacles and a system, to realize with naked eyes, only a black picture plane without any information can be seen on a display screen, but with spectacles, effective image information can be seen on the display screen; as a result, the image display is more concealed. The light valve device comprises a first liquid crystal cell and a second liquid crystal cell that are oppositely disposed to each other; the first liquid crystal cell and the second liquid crystal cell are both formed by two substrates that are oppositely arranged, and alignment films with parallel or antiparallel alignment directions are formed on the inside the two substrates respectively; cholesteric liquid crystals with opposite arrangement and rotation directions are filled in the first liquid crystal cell and the second liquid crystal cell respectively.
Abstract:
A Gate Driver on Array (GOA) circuit is disclosed. The GOA circuit comprising: a drive line scan control signal generation unit operative to generate a drive line scan clock signal and a drive line scan pulse signal; multiple GOA groups operative to acquire the drive line scan clock signal, to generate GOA group output signals sequentially according to GOA group input signals, wherein the GOA group output signal generated by one of the GOA groups is the GOA group input signal of a next GOA group to realize a shift register function of the multiple GOA groups; multiple drive line scan signal generation modules operative to acquire GOA group output signals and drive line scan pulse signal, and to generate drive line scan signals sequentially; multiple gate line groups operative to be applied with the drive line scan signals, to complete drive line scan for the multiple gate line groups sequentially.
Abstract:
Provided are an electronic apparatus, an electronic system and a control method thereof. The electronic apparatus is used for controlling a multi-field-of-view display apparatus, wherein the multi-field-of-view display apparatus has multiple view areas each of which covers the entire display area of the multi-field-of-view display apparatus and displays one picture respectively, and the electronic apparatus controls the multi-field-of-view display apparatus such that at least two pictures among the pictures simultaneously displayed in the view areas are based on different angles of view. The electronic apparatus is applicable to multi-person games, and enables multiple players to view pictures with different game scenes through the same screen, and would not reduce visual experience due to reduction of screen area that needs to be viewed by each player.