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 (2), a backlight source (6) arranged in the backplane (2), an optic film assembly (8) arranged above the light guide plate (4), and a reflection plate (9) arranged between the backplane (2) and the light guide plate (4). The backlight source (6) includes a PCB (62) and a plurality of LED lights (64) mounted on and electrically connected to the PCB (62). The backplane (2) includes a bottom plate (22) and a plurality of side plates (24) perpendicularly connected to the bottom plate (22). The bottom plate (22) of the backplane (2) includes a snap-engagement structure (220) formed thereon. The PCB (62) is snap-fit into and retained by the snap-engagement structure (220). The reflection plate (9) is directly positioned on and supported by the PCB (62).
Abstract:
The present invention discloses a connector and an LED light bar. The connector includes: an input module and an output module, wherein the input module and the output module being electrically connected; the input module comprising at least two input interfaces, the input interface being for connecting to an external power supply, the output module being for electrical connection to all LEDs in at least two external areas. As such, the present invention realizes the use of a connector to control LEDs in a plurality of areas to increase the utilization of the connector and simplify the LED light bar structure. In the mean time, the improvement of the connector utilization results in the reduction in the number of connectors used so as to reduce the cost of LED light bar.
Abstract:
The present invention provides a backlight module, which includes a backplane, a backlight source arranged inside the backplane, a reflector plate arranged inside the backplane, a light guide plate arranged on the reflector plate, and a mold frame mounted to the backplane. The backplane forms a pawl section. The mold frame forms a retention slot corresponding to the pawl section. The pawl section is receivable in and retained by the retention slot so as to fix the mold frame to the backplane. The backlight module uses a pawl section formed on the backplane and a retention slot formed on the mold frame to engage the pawl section so as to mount the mold frame to the backplane through snap-fitting connection thereby showing a simple structure, being easy to assemble and disassemble, effectively saving time, and thus controlling the cost.
Abstract:
The present invention provides a package cushioning structure for module, which includes a cushioning bottom board and a cushioning band extending through and interlaced with the cushioning bottom board. The cushioning bottom board forms a plurality of spaced hollow sections. A bar is arranged between every two of the hollow sections. The cushioning band includes a plurality of cushioning air columns mounted thereto at interval. The cushioning air columns are arranged alternately on the bars. To package, modules are each positioned on and born by each of the bars between two of the cushioning air columns. An alternate package cushioning structure includes a cushioning bottom board having a surface forming slots and a cushioning band arranged in the cushioning bottom board through a mounting channel extending through the bottom board from a side surface thereof. Air columns of the cushioning band are located in the slots to support modules.
Abstract:
The present invention provides a liquid crystal glass package box, which includes a box body, a plurality of mounting sections mounted inside the box body, and cushioning devices respectively mounted to the mounting sections. The cushioning devices each include a cushioning section and a receiving section connected to the cushioning section. The cushioning section includes an air pocket. The receiving section forms a receiving channel corresponding to the respective mounting section in order to mount the cushioning device in the box body. The liquid crystal glass package box provided by the present invention uses an air pocket to serve as a cushioning section mounted inside the box body to provide effective cushioning to liquid crystal glass for protecting the liquid crystal glass from damage during shipping. The raw material used is economic so as to effectively lower down the material cost. The structure is simple and is easy to manufacture.
Abstract:
A liquid crystal display (LCD) module includes a backplane, a light source support arranged on at least one edge of the backplane, and a frame oppositely fixed to the backplane. An edge of the backplane where the light source support is arranged is not configured with a sidewall. The light source support is configured with at least one insertion slot having insertion an opening facing the frame, and the frame is configured with an insertion bar matching with the insertion slot.
Abstract:
A backlight module, which includes: a backplane; a reflector sheet, a light guide plate, and an optical diaphragm group, which are sequentially stacked on the backplane; and multiple connectors disposed at a border of the backlight module, wherein the connector having a space block and an upper connection portion connected to an upper surface of the spacer block, the spacer block is disposed between the backplane and the reflector sheet, the upper connection portion is relatively fixed simultaneously to the reflector sheet, the light guide plate, and the optical diaphragm group. A display device is also disclosed.
Abstract:
The present invention discloses a curved display device. The curved display device comprises a frame bracket and a flexible towing component. Wherein, at least two fixed components are arranged on the frame bracket, the flexible towing component is connected between the two fixed components and tows the two fixed components, so that a main surface of the frame bracket assumes a curve Through the above way, the present invention can keep the frame bracket being bended so that the curvature of the curved display device can be kept.
Abstract:
A backlight module is disclosed. The backlight module includes a light guide plate, a light source, a back plate, and a positioning component for maintaining a light coupling distance between the light emitting surface of the light source and the light incident surface of the light guide plate. There is a light coupling distance between the light emitting surface of the light source and the light incident surface of the light guide plate. When a temperature change occurs, the positioning component occurs as a first deformation, as well as the light guide plate occurs as a second deformation. The light coupling distance remains unchanged under the influence of the first deformation and the second deformation. The positioning reliability of the light guide plate is improved in the present invention.
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.