Abstract:
A backlight assembly has an improvement on the structure for eliminating the gap between a light guide plate and a light source. The improvement includes a flexible printed circuit consisting of a body and a mount portion at each of its two ends. The mount portion has a substantially V-arm with a coupling hole. A mold frame has two couplers at its front surface and close to the coupling holes of the flexible printed circuit. The distance between the two coupling holes is substantially smaller than the distance between the couplers for generating deformation force. Consequently, when the two couplers are engaged with the coupling holes, the light source will be attached close to the light incident edge of the light guide plate, thereby eliminating the gap between the light guide plate and the light source.
Abstract:
An electronic device comprises a flexible printed circuit board and a circuit board. The flexible printed circuit board comprises two first connection portions and a multifunction opening, wherein the multifunction opening comprises a flow-stopping portion and a first positioning portion, the flow-stopping portion is disposed between the two first connection portions, and the first positioning portion is connected to an end of the flow-stopping portion. The circuit board comprises a first positioning hole corresponding to the first positioning portion, wherein the circuit board is connected to the flexible printed circuit board.
Abstract:
A flexible circuit board. The flexible circuit board is connected to an LCD module, comprising a first conductive portion, a second conductive portion, a third conductive portion, a conductive trace and a slot. The second conductive portion is disposed at the border of flexible circuit board and comprises a first contact pad. The third conductive portion is located between the first and second conductive portions. The conductive trace comprises a first trace segment a second trace segment. The first conductive segment connects the first conductive portion with the first contact pad, and the second trace segment connects the second conductive portion with the third conductive portion, wherein the slot is formed between the first and second trace segments.
Abstract:
A flexible circuit board. The flexible circuit board is-connected to an LCD module, comprising a first conductive portion, a second conductive portion, a third conductive portion, a conductive trace and a slot. The second conductive portion is disposed at the border of flexible circuit board and comprises a first contact pad. The third conductive portion is located between the first and second conductive portions. The conductive trace comprises a first trace segment a second trace segment. The first conductive segment connects the first conductive portion with the first contact pad, and the second trace segment connects the second conductive portion with the third conductive portion, wherein the slot is formed between the first and second trace segments.
Abstract:
A flexible circuit board. The flexible circuit board is connected to an LCD module, comprising a first conductive portion, a second conductive portion, a third conductive portion, a conductive trace and a slot. The second conductive portion is disposed at the border of flexible circuit board and comprises a first contact pad. The third conductive portion is located between the first and second conductive portions. The conductive trace comprises a first trace segment a second trace segment. The first conductive segment connects the first conductive portion with the first contact pad, and the second trace segment connects the second conductive portion with the third conductive portion, wherein the slot is formed between the first and second trace segments.
Abstract:
A display module includes components of a display panel having an outward first FPC for connecting to a system, wherein the first FPC has a foldable part on which a welding area is defined, and a backlight unit opposite to the display panel for providing illumination for the display panel. The backlight unit has an outward second FPC which is welded with the welding area of the foldable part. Both the foldable part and second FPC are folded and turned around to keep the welding area attach to the backside of the backlight unit.
Abstract:
This invention provides a display device and the assembly method thereof. The display device includes a first electronic module and a second electronic module partly overlapping each other. The first electronic module includes a first signal transmission unit with one side extending to form a first extension section. The second electronic module includes a second signal transmission unit partly overlapping the first signal transmission unit and having a side extending to form a first connection section. The first extension section overlaps and is electrically connected to the first connection section. Part of the overlapping first extension section and first connection section are bent to partly overlap the second signal transmission unit. Thus the second signal transmission unit is able to accept and to transmit signals via the first signal transmission unit of the first electronic device.
Abstract:
A display module includes a planar display panel being a liquid crystal display panel, a frame disposed under the planar display panel, a lower bezel disposed outside the frame, an upper bezel disposed outside the planar display panel, and a back light module disposed inside the frame. The frame includes at least one side wall. The outer surface of the side wall includes a plurality of tenons and a fixing plate is coupled to the side wall. The fixing plate is contacted with a side of the planar display panel. The side wall of the lower bezel includes a first hole corresponding to a first tenon so that the first tenon can be engaged with the first hole. The side wall of the upper bezel includes at least one second hole corresponding to a second tenon so that the second tenon can be engaged with the second hole.
Abstract:
A display module includes a planar display panel being a liquid crystal display panel, a frame disposed under the planar display panel, a lower bezel disposed outside the frame, an upper bezel disposed outside the planar display panel, and a back light module disposed inside the frame. The frame includes at least one side wall. The outer surface of the side wall includes a plurality of tenons and a fixing plate is coupled to the side wall. The fixing plate is contacted with a side of the planar display panel. The side wall of the lower bezel includes a first hole corresponding to a first tenon so that the first tenon can be engaged with the first hole. The side wall of the upper bezel includes at least one second hole corresponding to a second tenon so that the second tenon can be engaged with the second hole.
Abstract:
A display module includes components of a display panel having an outward first FPC for connecting to a system, wherein the first FPC has a foldable part on which a welding area is defined, and a backlight unit opposite to the display panel for providing illumination for the display panel. The backlight unit has an outward second FPC which is welded with the welding area of the foldable part. Both the foldable part and second FPC are folded and turned around to keep the welding area attach to the backside of the backlight unit.