Abstract:
A backlight assembly and a method of assembling the backlight assembly that includes a plurality of lamps having first and second electrodes, a receiving container and a lamp ground member. The receiving container has a bottom plate over which the lamps are disposed, and a side wall extending from the bottom plate to form a receiving space. The lamp ground member includes a ground plate grounded to the bottom plate, and a plurality of electrode ground portions protruded from the ground plate and making contact with the first electrode thereby eliminating the need for a separate part for grounding the first electrode of the lamp and permitting easier assembly of the backlight assembly.
Abstract:
A backlight assembly includes a plurality of lamps, a power supply unit, a receiving container and an adhesive member. The power supply unit applies a driving voltage to a first electrode part of each of the lamps. The lamps are disposed parallel to the bottom plate of the receiving container. A ground part makes contact with a second electrode part of each of the lamps. The adhesion member secures the second electrode part to the ground part.
Abstract:
A lamp fixing unit capable of simplifying the manufacture of a backlight assembly by eliminating the need for manual procedures is presented. The lamp fixing unit includes a fixing member and a lamp holder. The fixing member includes a fixing body and at least one receiving portion. The lamp holder includes a holder body and a conductive socket. The holder body includes a board insertion portion, a power supply member, and a lamp fixing member. Thus, the power supply member may be easily coupled to and uncoupled from the lamp holder, and the lamp may be easily grounded.
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:
An inverter driving apparatus for driving a plurality of lamp units is provided. The inverter driving apparatus includes a plurality of inverter boards for generating driving signals for driving respective lamp units based on a control signal and a voltage signal. Each lamp unit includes at least one lamp, and the plurality of inverter boards are connected in series and include a first outer inverter board receiving the control signal and a second outer inverter board located opposite the first outer inverter board receiving the voltage signal. Each of the plurality of inverter boards transmits the control signal and/or the voltage signal to at least one of the plurality of inverter boards adjacent thereto.
Abstract:
Disclosed are a liquid crystal display (LCD) device and a method for assembling the LCD device. The LCD device has a display section for displaying images, a receiving container for receiving the display section, a power supplying section for supplying a power source to the display section, a signal converting section for converting signals from the display section and a securing section for securing the power supplying section and the signal converting section to the receiving container. The power supplying section and the signal converting section are disposed between the display section and the securing section that is directly facing to a rear surface of the receiving container. Accordingly, a total thickness and weight of the LCD device can be minimized and an assembly facility of the LCD device can be improved.
Abstract:
A lamp fixing member includes a first body part and a second body part. The first body part includes at least one first lamp fixing portion disposed on an upper surface of the first body part. The second body part is slidably combined with the first body part. The second body part includes a second lamp fixing portion being combined with the first lamp fixing portion and defining a space through which a lamp is inserted to be fixed.
Abstract:
Disclosed are a liquid crystal display (LCD) device and a method for assembling the LCD device. The LCD device has a display section for displaying images, a receiving container for receiving the display section, a power supplying section for supplying a power source to the display section, a signal converting section for converting signals from the display section and a securing section for securing the power supplying section and the signal converting section to the receiving container. The power supplying section and the signal converting section are disposed between the display section and the securing section that is directly facing to a rear surface of the receiving container. Accordingly, a total thickness and weight of the LCD device can be minimized and an assembly facility of the LCD device can be improved
Abstract:
A receptacle assembly that receives a back light assembly and a display unit of a liquid crystal display device is disclosed. The receptacle assembly for receiving the back light assembly comprises a first receptacle module and a second receptacle module engaged with the rear surface of the first receptacle module to support the first receptacle module. The first receptacle module and the second receptacle module are formed of plastic and metal respectively. Therefore, the distortion that can be generated by the exterior impact and the vibration and the deflection due to the heat can be prevented. Further, the productivity is improved by simplifying the engaging structure of the receptacle assembly, and the size stability is improved.