Abstract:
In a method of manufacturing a backlight assembly, a light reflective and heat-radiating sheet including a light reflective sheet layer to reflect light and a heat-radiating sheet layer are prepared. The heat-radiating sheet layer includes a coupling layer integrally formed with a surface of the light reflective sheet layer and heat-diffusing particles are dispersed in the coupling layer to diffuse heat provided from the exterior. The light reflective and heat-radiating sheet is disposed so that the coupling layer is adhered to a bottom plate of a receiving container. Thus, impurities may be prevented and/or reduced, and assembling efficiency may be improved.
Abstract:
A lamp socket includes a body receiving a lamp, and a power supplying member disposed inside the body, the power supplying member a conductive elastomer, the power supplying member electrically interconnecting the lamp and an inverter substrate on which an inverter is mounted. The power supplying member includes a lamp connector receiving a lead wire of the lamp, and an inverter connector formed integrally with the lamp connector, wherein the inverter connector receives a protrusion of the inverter substrate to encircle the protrusion.
Abstract:
Disclosed is an LCD apparatus including a receiving container for receiving a light guide plate and a lamp assembly, a first chassis for fixing the light guide plate and an LCD panel, and a second chassis for fixing the first chassis and the LCD panel. The receiving container and the first and second chassis are made of metal material so that the LCD apparatus may have reduced size and weight.
Abstract:
Provided are a hollow mold for receiving a liquid crystal panel and a diffuser plate, the hollow mold capable of automating an assembling process of a liquid crystal display (LCD) and fixing a reflective sheet, and an LCD including the hollow mold. The hollow mold includes an outer side surface; a top surface; an inner side surface comprising a first step which is formed in a stepped shape, defines an upper receiving space and performs a supporting function, a second step which defines a lower receiving space and performs the supporting function, and an inclined surface which slopes downward from the second step; and a bottom surface.
Abstract:
A backlight assembly with reduced thickness, a reduced number of parts and a reduced probability of causing environmental contamination includes lamps, each lamp including a lamp tube and a pair of lamp electrodes disposed at ends of the lamp tube, respectively, a lamp-driving printed circuit board (“PCB”) which includes a plurality of conductive pads and a plurality of pairs of first socket-fixing grooves and provides a driving voltage to each of the lamps, sockets, each socket including a conductive body which includes a first guide groove, into which each of the lamp electrodes is inserted, and a pair of first fixing protrusions which is inserted into each pair of the first socket-fixing grooves, and a lower case which accommodates the lamp-driving PCB, the sockets, and the lamps, wherein each of the sockets is surface-mounted on a corresponding conductive pad.
Abstract:
A liquid crystal display equipped with a backlight assembly having a lamp socket comprising, a lamp lead seating portion on which a lamp lead is seated, and a contact terminal fastened to the lamp lead seating portion to fix the lamp lead.
Abstract:
A backlight assembly includes a receiving container, a first light source module and a first light source cover. The receiving container includes a bottom portion, a first sidewall and a second sidewall connected to the bottom portion. The first light source module is supported by the bottom portion and adjacent to the first side wall. The first light source cover makes contact with an exterior surface of the first sidewall. The first light source cover surrounds the second sidewall so that a first end portion of the first light source cover covers the first light source module.
Abstract:
Provided is a backlight assembly which can be assembled with increased efficiency and has improved reliability. The backlight assembly includes a fluorescent lamp which includes a fluorescent lamp tube and a pair of lamp leads formed at each end of the fluorescent lamp tube, end caps which surround each end of the fluorescent lamp tube and fix the lamp leads in place, and a power supply terminal units which supply power to the lamp leads, wherein an end cap exposes at least part of each of the lamp leads corresponding thereto.
Abstract:
A first lamp electrode supporter includes a first terminal having a first lamp electrode fixing hole through which a lamp electrode is inserted, and a second terminal connected to an inverter connector. A second lamp electrode supporter is disposed opposite to the first lamp electrode supporter. The second lamp electrode supporter has a second lamp electrode fixing hole through which the lamp electrode is inserted. A peripheral portion corresponding to the second lamp electrode fixing hole is formed closely to the first lamp electrode supporter. A connecting part connects the first lamp electrode supporter and the second lamp electrode supporter. An elastic guide part is extended from the connecting part to a spacing between the first and second lamp electrode supporters. The elastic guide part supports the lamp electrode when the lamp electrode contacts the first and second lamp electrode fixing holes.
Abstract:
Disclosed is an LCD apparatus including a receiving container for receiving a light guide plate and a lamp assembly, a first chassis for fixing the light guide plate and an LCD panel, and a second chassis for fixing the first chassis and the LCD panel. The receiving container and the first and second chassis are made of metal material so that the LCD apparatus may have reduced size and weight.