Abstract:
A liquid crystal display device and a liquid crystal display panel based on three-dimensional transistor thereof are provided. The liquid crystal display panel includes an array substrate, a printed circuit board, a first chip on film with an integrated circuit, and At least one connector connected between the array substrate and the printed circuit board. The first chip on film is attached between the array substrate and the printed circuit board. The array substrate and the printed circuit board can be supported by the connectors effectively. The connectors share gravity of the printed circuit board with the first chip on film attached between the array substrate and the printed circuit board. Therefore, the present disclosure can avoid damage to lines of the first chip on film and improve the yield rate of the quality of the liquid crystal display panel based on three-dimensional transistor.
Abstract:
The present invention provides a backlight module comprises a waveguide, a reflector, and elastic members. Wherein the elastic members are used to arranged on corners of the waveguide, and the reflector is arranged on a side of the waveguide facing the elastic members. And wherein each of the elastic members is provided with a slot in a surface facing the reflector, and the reflector is provided with tabs corresponding to each of the slots so as to be securely received within the slots. The present invention further provides a liquid crystal display device incorporated with such a backlight module. By this arrangement, the backlight module become more reliable, and more suitable for narrow-boarder design. The utilization of the reflector is also enhanced.
Abstract:
The present invention discloses a backlight module and an LCD having a positioning structure for fixing an optical film and a frame. The frame includes a side frame having an assembling hole. The optical film is placed on the side frame and includes a protruded ear having a positioning hole. The positioning structure includes: a magnetic member installed inside the assembling hole; an attracted member including a compression part and a positioning pillar, wherein the positioning pillar is connected to the compression part and gets inside the assembling hole through the positioning hole such that the positioning pillar is connected to an attraction hole due to a magnetic effect to make the compression part compress and fix the optical film on the side frame. The positioning structure can fix the optical film in X, Y, and Z directions to raise the positioning reliability, assembling speed, and capacity.
Abstract:
The present invention discloses a double side display frame, comprising a top, a first side part, a bottom and a second side part which are connected end to end and jointly surround a backlight cavity, and the bottom and the top are oppositely located between the first side part and the second side part; the first side part comprises a first window and a first installation slot, and the first window penetrates a middle part of the first side part and communicates with the backlight cavity, and the first installation slot is located at periphery of the first window; the second side part comprises a second window and a second installation slot, and the second window penetrates a middle part of the second side part and communicates with the backlight cavity, and the second installation slot is located at periphery of the second window.
Abstract:
An edge-type backlight source assembly includes at least one quantum bar (QD) tube bracket, at least one QD tube fixed within the QD tube bracket, a plurality of LED lamp bars, and a connector. The LED lamp bar includes a substrate and a plurality of LED lamps on the substrate, and the LED lamps emit blue light. The substrate is attached to a bottom of the QD tube bracket. The LED lamps are received within the QD tube bracket and are arranged to be opposite to the QD tube. The connector electrically connects with the adjacent two LED lamp bars and is fixed on a sidewall of the QD tube bracket. A backlight module is also disclosed. The connector, which is fixed on the sidewall of the QD tube bracket, electrically connects to the two adjacent LED lamps to ensure the wiring connection between the lamp bars.
Abstract:
A transparent display device is provided herein, which comprises a display module and a backlight module. The display module includes a liquid crystal display panel, polarizers and an optical film. The backlight module includes a light source and a light guide plate, wherein the light guide plate includes a first light incident plane, a second light incident plane and a light emitting plane. The first light incident plane is disposed opposite to a light emitting plane of the light source. A plurality of caves are disposed on the second light incident plane to enhance the environmental light. The present invention raises an incident amount of the environmental light.
Abstract:
A method of forming a front frame of an LCD includes: providing a rectangle frame; disposing bending lines on the side frames of the rectangle frame; adhering a layer of buffering material to the part of the side frame that is on the inner side of the bending line, where the part of the side frame that is on the inner side of the bending line refers to the part of the side frame that is between the bending line and the inner edge of the side frame; and stamping and bending the rectangle frame along the bending line. The present invention can align the layer of buffering material with the inner edge of the side frame so that the layer of buffering material does not extend to the open area of the front frame, therefore does not affect the display of the liquid crystal panel.
Abstract:
A liquid crystal display includes a backlight module that includes a waveguide, a backboard, and a light source. The waveguide is disposed onto the backboard. The light source is arranged adjacent to a light incident surface of the waveguide. The backlight module includes a limiter securely attached to the backboard and abuts the light source so as to ensure a preset distance between the light source and the incident surface of the waveguide. With the limiter of the backlight module arranged to abut the light source, the coupling distance between the light source and the incident surface of the waveguide can be effectively kept constant without being compromised to zero (0) as resulting from expansion under heat or moisture or the accuracy during installation.
Abstract:
A liquid crystal module includes a back bezel (1), a side-in backlight source (3), a light guide plate (2) having a light-in side opposite to the side-in backlight source (3), a quantum bar (5) between the side-in backlight source (3) and the light guide plate (2), a first support (6) having first windows (60) on top, and a second support (7) having second windows (70) on top. The quantum bar (5) is placed in a room formed by the first support (6) and the second support (7). The present invention also proposes a liquid crystal display. The liquid crystal module is assembled easily and reduces breakage risk for the quantum bar glass tubes.
Abstract:
The present invention relates to a curvature-adjustable curved display device including: a base, a curved display device and an adjusting assembly. The curved display device is disposed on the base. The adjusting assembly is disposed between the curved display device and the base to connect the curved display device with the base. The adjusting assembly is slidable with respect to the base to thereby adjust the curvature of the curved display device. Accordingly, by disposing the adjusting assembly between the curved display device and the base, the curvature of the curved display device can be adjusted in a preset range of curvature by sliding the adjusting assembly with respect to the base.