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 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:
The present invention provides a backplane and a backlight module and a liquid crystal display device using the backplane. The backplane includes: a bottom plate (2) and multiple side plates (4) connected to the bottom plate (2). The bottom plate (2) includes a base section (22) and a mounting section (24) connected to a lateral edge of the base section (22). The base section (22) has two ends that are each provided with a stepwise structure (222) for mounting a curved light guide plate to an inner side thereof. The mounting sections (24) has an outside surface that is curved for mounting a circuit board. The base section (22) has an outside surface on which first reinforcement ribs (226) and second reinforcement ribs (228) perpendicularly connected thereto are formed. The backplane and the backlight module and the liquid crystal display device using the backplane of the present invention help make the backplane simple in structure and easy to manufacture and simplifies the assembling operation and reduces the manufacturing cost.
Abstract:
The present disclosure relates to the field of production of liquid crystal displays, in particular to a light guide plate assembly, comprising: a light guide plate which includes a first side edge for introducing light and a second side edge through which no light can be introduced, and a frame for fixing the light guide plate, the frame at least partially surrounding the second side edge of the light guide plate, wherein a buffer member that is at least partially deformable in an elastic manner is disposed between the frame and the second side edge of the light guide plate.
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:
A transparent display device includes a first display panel system, a second display panel system, a first multi-mode panel, a light source, a front display panel, and a back display panel. The multiple display panel system and the multi-mode panel are adopted by the present transparent display device so the front and back display panels of the present transparent display device can show different images at the same time. Owing to the present transparent display device, the technical problem that the front and back display panels of the conventional transparent display device cannot show different images at the same time is successfully settled.
Abstract:
The present invention discloses a display frame, comprising a main frame body and a front frame body, and a plurality of magnets are separately adhered at edges of the main frame body, and front frame body is connected with the main frame body with magnetic attractive forces among the front frame body and the plurality of magnets; the main frame body and the front frame body jointly enclosure a first storage cavity, and the main frame body comprises a backlight window right opposite to a position of the first storage cavity, and the front frame body comprises a display window right opposite to a position of the first storage cavity. The display frame of the present invention can quickly change the display panel. The present invention further discloses a display applied with the display frame.
Abstract:
A quantum dot glass plate includes a first glass substrate, a second glass substrate correspondingly parallel with the first glass substrate, and a glue layer arranged between the first glass substrate and the second glass substrate, where the glue layer includes at least one glue frame arranged in a line. A shape of the first glass substrate is same as a shape as the second glass substrate, and edges of the glue layer correspond to edges of the first glass substrate and the second glass substrate.
Abstract:
A liquid crystal display screen, wherein the liquid crystal display screen includes a liquid crystal panel which includes a display region and line connection regions located in the periphery of the display region; wherein the line connection regions located at an upper side surface and a lower side surface of the display region are connected to a source driving module, respectively, and two source driving modules may independently provide data signals to the liquid crystal panel; and a line connection region located at a left side surface of the display region is connected to a gate driving module to provide scan signals to the liquid crystal panel. The liquid crystal display screen is mainly applied to manufacturing a long strip liquid crystal display screen and improves utilization ratio of the liquid crystal display screen through improvement on structure of the liquid crystal display screen.
Abstract:
A driving circuit board fixing structure is disclosed. The structure includes a main body portion having a plate shape and multiple protrusion portions disposed on a surface of the main body portion. The multiple protrusion portions are disposed at intervals at the main body portion, and protrusion heights of the protrusion portions are gradually increased one by one from a first terminal of the main body portion to a second terminal of the main body portion. A liquid crystal display device is also provided. The driving circuit board fixing structure can fix COF substrates having different lengths with driving circuit boards having different sizes such that different backlight modules can be compatible with different liquid crystal panels in order to reduce the development cost of the backlight module.