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.
Abstract:
The present invention discloses a display device and a backlight module. The display device includes a display panel and a backlight module. The display panel is used for displaying images and passing light rays. The backlight module includes a light source and a light source providing board. The light source providing board is used for providing first light rays and passing second light rays. The light source providing board includes a light ray input interface, a light ray providing unit, and a light ray transmittance channel. The present invention can make a viewer see an object behind the display device.
Abstract:
This invention discloses a backlight module comprises a light guide plate, a middle frame, a quantum strip, and a light source disposed approximate to a light input surface of the light guide plate. The middle frame comprises a supporting portion and a containing portion connecting to the supporting portion, the supporting portion is disposed on a light output surface of the light guide plate, and the containing portion is disposed between the light source and the light input surface. The containing portion comprises a containing space, the quantum strip is disposed in the containing space, the a light transmitting hole is disposed on a first sidewall and a second sidewall of the containing portion for transmitting light from the light source via the quantum strip to radiate the light input surface of the light guide plate. This invention also discloses a liquid crystal display device comprises the above mentioned backlight module. The display device and backlight module in this invention is easy for assembly and reduces the risk of broking the quantum strip. The production yield is improved.
Abstract:
The present disclosure relates to the technical field of display, and particularly relates to a display with an improvide4d frame structure. The present disclosure proposes a narrow frame display, including a display panel having a protruding portion on at least one side edge thereof, a back plate located on one side of the display panel, and a frame including a plate body with a through slot. The frame is arranged vertical to the display panel and fixed on the back plate, and the protruding portion is inserted into the through slot. With this structure of the frame, a hook member used in the prior art can be omitted, so that the shadows caused by shielding of the hook member would be generated no longer. Therefore, the display of the present disclosure can effectively eliminate shadows caused by shielding of the hook member in the prior art. Meanwhile, it is unnecessary to occupy the space of the rear side of the display panel, so that the frame of the display can be further narrowed.
Abstract:
A display device and a backlight module are provided. The display device includes a display panel and a backlight module. The display panel is configured to display images and illuminated by a first light and a second light. A light source providing plane of the backlight module is configured to receive the first light and is illuminated by the second light. Thus, viewers can see objects in back of a display panel through the display panel.
Abstract:
The present invention relates to a technology of displaying device, and more particularly to a heat-dissipating device of a backlight module, and which is arranged between a backframe and a waveguide of the backlight module for dissipating heat generated from a light source disposed adjacent to the waveguide, wherein the heat dissipating device includes a master heatsink, and an auxiliary heatsink; and wherein the master heatsink has a sidewall extending from an end thereof to in connection to the waveguide, and the auxiliary heatsink is arranged between the master heatsink and the waveguide. The present invention further provides a backlight module incorporated with such a heat-dissipating device. With the combination of the master heatsink and the auxiliary heatsink, a novel heat-dissipating device is created and which effectively upgrades the heat-dissipating performance under the high power density, prolonging the service life of the light source, and the increases the optical characteristic of the displaying device.
Abstract:
A narrow bezel structure of a LCD is disclosed. The narrow bezel structure of the LCD comprises a liquid crystal module, a front cover, a middle cover, and a back cover. An external layer of the liquid crystal module is a polarizer film, and the polarizer film is spaced apart from an edge of the liquid crystal module to form a step. The front cover comprises a first horizontal part, a first perpendicular part, a second horizontal part, and a second perpendicular part that are integrally formed and sequentially connected. The first horizontal part is attached to the step. The second horizontal part and the second perpendicular part form a second step. The second perpendicular part is fixedly connected to the back cover. The present invention further provides a LCD utilizing the narrow bezel structure.
Abstract:
A transparent liquid crystal display device is provided including a transparent liquid crystal cell disposed on a transparent luminous plate. The transparent luminous plate includes a first transparent electrode plate, phosphor layer, and an electron-generating plate, which are sequentially disposed on a second transparent electrode plate. Since the liquid crystal cell and the luminous plate are transparent, a viewer can not only see an image to be displayed by a screen of the display panel, but can also see an object or a scene behind the display panel through the screen.
Abstract:
The present invention provides a backlight module and a liquid crystal display device using the backlight module. The backlight module includes a backplane (2), a light guide plate (4) arranged in the backplane, a backlight source (6) arranged in the backplane, and a plurality of mounting member (8) in the backplane to position and fix the light guide plate (4). The light guide plate (4) includes a main body (42) and a plurality of mounting sections (44) extending outwards from sides of the main body. Each of the mounting sections (44) includes a first lug (442) and a second lug (444) that are spaced from each other. The mounting members (8) each include a base (82) and first, second, and third positioning pillars (84, 86, 88) extending upwards from the base (82) and arranged sequentially to space from each other. The main body (42) is positioned against the base (82) and the second positioning pillar (86). The first lug (442) is positioned against the base (82) and the first positioning pillar (84). The second lug (444) is positioned against the base (82) and the third positioning pillar (88).
Abstract:
The present invention provides a curvature-adjustable backplane and a liquid crystal display device having the backplane. The curvature-adjustable backplane includes a bottom plate (1). The bottom plate (1) is made of a material of thermal bimetal. The bottom plate (1) includes a plurality of openings (11) formed therein to extend in a lengthwise direction or a widthwise direction thereof, whereby the plurality of openings (11) helps increase a localized length-to-width ratio (L1/W1) of the bottom plate (1) so that when the curvature-adjustable backplane undergoes curving deformation, the extent of curving thereof in a lengthwise direction of the openings is far greater than the extent of curving thereof in a widthwise direction of the openings to realize precise adjustment of the curvature of the backplane and help release the stress of the backplane resulting from deformation and thus making the deformation of the backplane easy.