Abstract:
The present invention discloses a connector, which includes a male housing and a female housing. The male housing is formed of three side walls surrounding a circumference of a bottom wall and the female housing is formed of three side walls surrounding a circumference of a bottom wall. The male housing and the female housing are mateable with each other through mutual insertion. Practicing the connector of the present invention may reduce the wall thickness of the connector, making the connector thinner so as to enable use in a backlight module arrangement of relatively small space and provide module designing with more flexibility.
Abstract:
The present invention discloses a liquid crystal display module, a backlight module and a back plate thereof. The back plate has a back-plate mainbody disposed on a bottom of the backlight module, and two bent structures integrally and symmetrically arranged on two opposite sides of the back-plate mainbody for supporting an optical film assembly of the backlight module. The present invention is applied to a LCD module with a separate-type backlight module design for saving the used number of housing strips, simplifying the structure of the backlight module, and enhancing the stability thereof.
Abstract:
The present disclosure provides a liquid crystal display (LCD) device. The LCD device includes a front frame, a backplane fixed to the front frame, an optical assembly sandwiched between the front frame and the backplane, and an LCD panel arranged on a light emitting surface of the optical assembly. A side light incident surface of the optical assembly is correspondingly configured with a light source, and a shading member which is used for preventing light from directly entering inside of the LCD panel from the light source is arranged between the light source and the LCD panel. In the present disclosure, because the shading member used for preventing light from directly entering the inside of the LCD panel from the light source is arranged between the light source and the LCD panel, the light emitted by the light source cannot enter the inside of the LCD panel, thereby effectively avoiding hotspot phenomenon. Particularly, in the LCD device without a middle frame or with a sectioned middle frame, an edge of the LCD panel may be partially and directly exposed to the irradiated area of the light source. Thus, light can be effectively prevented from entering the inside of the LCD panel from the edge side by using the shading member of the present disclosure.
Abstract:
The invention relates to the field of LCDs, and more particularly to a frame for an LCD device and an LCD device including the frame. The frame includes four edge frames; at least one pair of mutually parallel edge frames of the four edge frames are separately provided with a ripple structure. The ripple structure of the invention is similar to a telescopic ripple part of a drinking straw. The dimensions of one pair of edge frames provided with the ripple structure in the length direction can be adjusted. When the dimensions of two or more kinds of frames are different but similar, a same frame can be shared to achieve the effect of one object with multiple purposes, thereby reducing the number and development cost of special moulds, shortening the development cycle of the product, and avoiding the problem that a great deal of stagnant materials are inconveniently handled when developing single device. Thus, the aim of reducing cost is achieved.
Abstract:
An easily detachable connector comprises a female connector and a male connector. The female connector has a wall body and a sleeve opening enclosed by the wall body. A through hole is disposed on the wall body. The male connector comprises a protruding body corresponding to the sleeve opening. The protruding body comprises a protruding piece disposed in a position corresponding to that of the through hole. When the connector is connected, the protruding body is inserted inside the sleeve opening and the protruding piece is fitted inside the through hole.
Abstract:
A liquid crystal display unit for narrow framed liquid crystal display and a liquid crystal display using the liquid crystal display unit comprising a liquid crystal panel with a hole disposing on a non-display area; a middle frame with a protruding piece extended vertically to a display surface of the liquid crystal panel, the liquid crystal panel being fixed by inserting the extended protruding piece into the hole of the liquid crystal panel; and a front frame. The front frame, the liquid crystal panel and the middle frame are overlapped each other at where jointed together. The liquid crystal panel, the middle frame and a backlight unit of the narrow framed liquid crystal display are accommodated and fixed by the front frame and a back frame of the narrow framed liquid crystal display.
Abstract:
The invention provides an LCD device, and the LCD device comprises a front frame, a middle frame, and a back frame in sequence from outside to inside. A light guide panel is arranged between the back frame and the middle frame. A cavity is formed by the middle frame, the back frame, and the light guide panel, and a light source assembly is arranged in the cavity. The middle frame is provided with a middle frame through hole communicated with the cavity, and the front frame is provided with a front frame through hole communicated with the middle frame through hole. Because the middle frame and the front frame of the invention are respectively provided with through holes, the heat accumulated in the cavity is directly dissipated to the outside through air convection. Compared with the heat dissipation mode of using conduction and air convection, the heat dissipation mode of the invention has the advantages of directness, simplicity, and convenience, thereby having preferable heat dissipation effect.
Abstract:
A backlight module is provided and it includes a waveguide having an incidence surface and an exiting surface adjacent to the incidence surface, a bottom surface, the exiting surface defined with a slot. A frame defines a space to receive the waveguide, and includes a first sidewall adjacent to the incidence surface. A first extension extends from the first sidewall toward the exiting surface, and a standoff extends from the first standoff toward the exiting surface. The standoff securely wedges into the slot, and presses against onto the exiting surface. By the provision of the present invention, the leakage of light source between the frame and the waveguide can be readily avoided as even the frame is deformed, no gap or slit will be created between the frame and the waveguide.
Abstract:
The present invention discloses a back light module and a liquid crystal display (LCD) thereof. The back light module comprises a light guide plate, an optical sheet laid on the light transmission surface of the light guide plate, wherein the edge of the optical sheet is fixed to the light guide plate by a plurality of positioning structures. With application of the positioning structures, because the expansion coefficient of the optical sheet is not nearly to that of the frame but is close to the thermal expansion rate of the light guide plate, after the optical sheet is fixed to the light guide plate, the light guide plate is expanded along with the expansion of the optical sheet when subject to heating, and shrunk along with the shrinking of the optical sheet when the temperature drops. Thus, the optical sheet is not easy to warp due to the minimum performance change of the optical sheet and the light guide plate, and the temperature environment is also very similar because the optical sheet is near to the light guide plate. Therefore, as compared with the frame, the temperature of the optical sheet is more similar to that of the light guide plate, and the thermal expansion rate of the optical sheet is also similar to that of the light guide plate. Thereby, the warping of the optical sheet is further decreased.