Abstract:
A micro light emitting diode (micro LED) display panel includes a carrier substrate layer; a plurality of vias respectively extending into the carrier substrate layer; a plurality of micro LEDs on the carrier substrate layer; and a wavelength conversion layer including a wavelength conversion material filled in the plurality of vias.
Abstract:
An eye-protection display device (1) and method are provided. The device (1) includes; a display screen (10); a distance detection module (20), configured to detect a vertical distance between a location of two eyes of a user and the display screen (10); a control module (30) to send first control information to an execution module (40) when a detection result of the distance detection module (20) includes at least a case that the vertical distance between the location of the two eyes and the display screen (10) is not a set distance; and the execution module (40) configured to control the display screen (10) to move according to the first control information, so that the vertical distance between the location of the two eyes and the display screen (10) is the set distance.
Abstract:
The disclosure discloses a touch display panel, a method for driving the same, and a display device. The touch display panel includes data lines, a source drive circuit, a first signal line, a second signal line, a synchronous signal line, a plurality of first switches, and a plurality of second switches, in a touch stage, the first switches are turned on under the control of a signal output from the first signal line, a signal synchronous with a touch signal is input to the data lines by the synchronous signal line, and the second switches are turned off under the control of a signal output from the second signal line; and in a display stage, the first switches are turned off under the control of a signal output from the first signal line, and the second switches are turned on under the control of a signal output from the second signal line.
Abstract:
The present disclosure provides a depth map generation apparatus, including a camera assembly with at least three cameras, an operation mode determination module and a depth map generation module. The camera assembly with at least three cameras may a first camera, a second camera and a third camera that are sequentially aligned on a same axis. The operation mode determination module may be configured to determine an operation mode of the camera assembly. The operation mode includes at least: a first mode using images of non-adjacent cameras, and a second mode using images of adjacent cameras. Further, the depth map generation module may be configured to generate depth maps according to the determined operation mode.
Abstract:
The present disclosure discloses a display device, a method of manufacturing the same, a display method, and a wearable device. The display includes a first base substrate; a low-temperature polysilicon (LTPS) back plate formed on the first base substrate and provided with a switch control circuit; and a micro-electro-mechanical system (MEMS) microlens array formed at a non-display region of the first base substrate, wherein the MEMS microlens array is configured to reflect light emitted by a light-emitting structure at the display region, and the switch control circuit is configured to control the MEMS microlens array to be turned on and off; and the light-emitting structure formed at the display region of the first base substrate.
Abstract:
Provided is a peep prevention display, wherein a peep prevention film layer is provided on the light exit side of the peep prevention display, and the peep prevention film layer has a mesh structure; meshes of the mesh structure are arranged corresponding to sub-pixel units or pixel units of the display, and the peep prevention film layer comprises a P electrode lead layer, a P type semiconductor layer, an N type semiconductor layer and an N electrode lead layer. Since the peep prevention display has a small display angle of view, it can prevent peep by a person from side angle of view while providing image display for a user viewing from the front, so as to effectively protect personal privacy and business secret. In addition, the light blocked by a peep prevention film layer can be converted to electric energy, thus achieving an effect of self electricity generation.
Abstract:
An image acquisition device and an image processing method and system are provided. The image acquisition device includes a first dual-camera device and a second dual-camera device. The first dual-camera device includes a first camera and a third camera. The second dual-camera device includes the first camera and a second camera. The image acquisition device can acquire depth information of richer information content from more viewing angles and reduce the number of points that cannot be matched.
Abstract:
A display panel, a gate drive circuit, a shift register unit and a driving method thereof. The shift register unit includes: a shift register (1) connected with a signal input end (CR) and a signal output end (OUT), configured to control an electric potential of the signal output end (OUT) under control of an electric potential of the signal input end (CR); a control circuit (2) connected with a start signal end (STV), a control signal end (EN) and the signal input end (CR), configured to control the start signal end (STV) to connect to the signal input end (CR) under control of an electric potential of the control signal end (EN). The present disclosure can achieve independent refreshing of any area on the display panel.
Abstract:
A liquid crystal lens liquid crystal lens includes: a first substrate and a second substrate; a liquid crystal layer including a plurality of liquid crystal lens units; a first electrode including a plurality of independent sub-electrodes, and there are sub-electrodes at adjacent positions of adjacent liquid crystal lens units; a second electrode being a planar electrode, the first electrode and the second electrode are configured to form an electric field to drive liquid crystal molecules of the liquid crystal layer to rotate, and adjust the curvature of the liquid crystal lens units; a first planar layer located on the side of the first electrode facing the liquid crystal layer, the first planar layer being configured to smooth an intensity variation curve of the electric field of the liquid crystal lens units; and a light-shielding layer located between the first substrate and the second substrate.
Abstract:
A display device, including a display panel, a box, a connection frame and a vibration actuator provided on the display panel. The connection frame includes: a frame-shaped member including a first end face and a second end face arranged opposite to each other, the first end face being attached to a top face of the box, a plurality of protrusions being provided on the second end face, a surface of each protrusion away from the first end face forming a support face, and the display panel being fixed on the support face; and a connection member fixedly coupled to the frame-shaped member, and detachably coupled to the box via a fastener.