Abstract:
A display panel and a display are provided. The display panel includes a first base-plate and a second base-plate which are oppositely disposed. The first base-plate includes a black matrix and a first spacer. The black matrix has a first black matrix area corresponding to the first spacer. The first base-plate or the second base-plate includes a first light shielding pattern. The projection of at least a part of the first light shielding pattern on the first base-plate is located on at least one of two sides of the projection of the first black matrix area on the first base-plate along a rub alignment direction.
Abstract:
A circuit holding device for a display module and a display device are disclosed. The circuit holding device includes an external circuit terminal component, wherein the external circuit terminal component is disposed external to the display module, and a circuit board is held in the external circuit terminal component, the circuit board and the display module are electrically connected to each other. The circuit holding device can accommodate multiple external circuits in one terminal component, thereby making the connection between the external circuits and the display module easy and convenient.
Abstract:
The disclosure discloses an array substrate, a method for controlling the same, a display panel and a display device. The array substrate includes data lines, a control circuit, a discharge circuit, a control signal terminal and a voltage output circuit; the control circuit is configured to control an operation of the discharge circuit; the voltage output circuit is configured to output a preset voltage signal with a voltage value between grayscale voltage with positive and negative polarities required for the array substrate; and the discharge circuit is configured to be controlled by the control circuit, in a period of time between two adjacent frames of images being displayed, to control the data lines to be electrically connected with the voltage output circuit, and in a period of time of any one frame of image being displayed, to control the data lines to be electrically disconnected with the voltage output circuit.
Abstract:
A device and method for recording and reproducing holographic information, and a display apparatus are disclosed. The device for recording holographic information comprises an electro-optical regulating element, which is arranged in a light path between an object to be reproduced and a recording medium, receives an object beam scattered by the object to be reproduced, and regulates an outgoing direction and a focal distance of the object beam to irradiate the recording medium. The recording medium is configured to receive the reference beam from the light source and the object beam regulated by the electro-optical regulating element. The reference beam and the object beam form information relevant with the object to be reproduced in the recording medium. By regulating the outgoing direction and focal distance of beam with the electro-optical regulating element, it is unnecessary to rotate the recording medium for recording and reproducing the holographic information.
Abstract:
The present disclosure provides an array substrate and a display apparatus. The array substrate comprises at least two groups of signal lines, a common electrode line and at least two common electrode sub-lines, at least one signal line of one group of the at least two groups of signal lines is connected to one common electrode sub-line of the at least two common electrode sub-lines via a first electrostatic discharge circuit, at least one signal line of another group of the at least two groups of signal lines is connected to another common electrode sub-line of the at least two common electrode sub-lines via a second electrostatic discharge circuit, each common electrode sub-line is respectively connected to the common electrode line via a third electrostatic discharge circuit.
Abstract:
A substrate and a photoelectric display device comprising the substrate are provided. The substrate comprises a display region (11) and seal material disposed in a periphery thereof. The substrate further comprises a trapping buffer region (13) which is disposed between the display region (11) and the seal material and receives photoelectric display media. By providing the trapping buffer region, impact on the seal material by the excessive photoelectric display media can be mitigated or eliminated when the photoelectric display device is subjected to an external force or is flexed. The life time of the seal material is prolonged. A leakage of the photoelectric display media is avoided.
Abstract:
The disclosure provides a display substrate and a display device. The display substrate comprises a base, multiple color filters, and multiple spacers formed on the base; at a position corresponding to at least one spacer, at least one of two adjacent color filters has a bending part at an adjacent border close to the other color filter; wherein at least one bending part is a protrusion adapted to cause the spacer to be located inside the border of a corresponding color filter, and projection of the bottom surface of the spacer on the side close to the base on the base does not overlap projection of any of the borders of the two adjacent color filters on the base. The borders of the two color filters are not under the spacer, such that the region corresponding to the spacer is flat, which is conducive to stably arranging the spacer.
Abstract:
Disclosed herein is a fixing structure. The fixing structure comprises a seat and at least a fixing device, the fixing device including a connecting part and a sucking disc, on end of the connecting part being connected to the seat while the other end of the connecting part being connected to the sucking disc, and the sucking disc being used to be sucked on a surface of a mounting base. There is also provided a display device having the fixing structure in the disclosure. With the fixing structure mounted on the display device, the display device can be prevented from toppling down when an external force is applied thereto, thus improving the stability of the display device. Further, the fixing structure according to the disclosure is able not to damage the surface of the mounting base and can be reused.
Abstract:
A display device includes a first substrate and a second substrate, which are disposed opposite to each other, and a display medium layer, which is hermetically disposed between the first substrate and the second substrate. The first substrate is provided with a color filter layer in a first region thereof, and the first or second substrate is provided with a spacer in a second region thereof. In a display area, a projection of the second region where the spacer is disposed in a direction perpendicular to the first substrate is not overlapped with a projection of the first region where the color filter layer is disposed in the direction perpendicular to the first substrate. In the display device, a position of the spacer is not affected by the color filter layer, so that there are more choices for the position of the spacer and the spacer may be more stable.
Abstract:
The present disclosure discloses a reinforcement structure for an optical film and an optical film for application therewith, which relate to the technical field of liquid crystal display modules, so as to solve the problem that the positioning hole in a prior art optical film is easily deformable or damageable. A reinforcement structure for an optical film is disclosed, which is arranged around a positioning hole in the optical film, for enhancing the structural strength of the positioning hole. The present disclosure can be applied in a liquid crystal display module.