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, a frame disposed under the planar display panel, a lower bezel disposed outside the frame, and an upper bezel disposed outside the planar display panel. The frame includes at least one side wall. The outer surface of the side wall includes a plurality of tenons and at least one baffle is coupled to the side wall. The baffle is contacted with a side of the planar display panel. The side wall of the lower bezel includes at least one 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:
Modules for fixing flexible printed circuit boards. A module comprises a casing and a flexible printed circuit board. The casing has a recess on a lateral side. The flexible printed circuit board has a flexible portion disposed in the recess, wherein the thickness of the flexible portion is substantially equal to the thickness of the recess.
Abstract:
A backlight module, at least includes an outer frame, a bottom frame, an upper frame, a reflector and a light source. The upper frame and the bottom frame are mounted within the outer frame and are removably coupled to each other. The upper frame is disposed above the bottom frame and the bottom frame can be separated from the outer frame when the backlight module is inverted. The reflector is disposed under the upper frame and on the bottom frame and the reflector can be removed after the bottom frame is separated from the outer frame. The light source disposed under the upper frame and above the reflector and the light source can be changed after the reflector is removed. This backlight module enables users to directly exchange the light source by just simply taking out the bottom frame and the reflector sequentially. By this, the damage of the display panel, the multilayer optical film and the light guide plate caused by hitting and scratching during the exchanging process is prevented.
Abstract:
A light-emitting apparatus able to dynamically produce lights of different wavelengths comprises a light source, a lamp holder surrounding the light source and having a notch, and a light-transmitting structure surrounding the lamp holder, wherein the light-transmitting structure can rotate around the lamp holder and includes a first section through which only a light in a first wavelength range is sent out, and a second section through which only a light in a second wavelength range is sent out. The first section and the second section can be rotated in turn to face the notch of the lamp holder, following the rotation of the light-transmitting structure.
Abstract:
A backlight assembly is provided. The backlight assembly including a frame, a light source, and at least one optical film. The light source is disposed on the frame. The optical film has at least one positioning flange. The positioning flange includes at least two contact edges configured to abut against at least one edge of the frame in at least two directions to hold the optical film in place relative to the frame.
Abstract:
Display panels buffering display data from a data driver. The display panel comprises a first signal line, a first data line, a first scan line interlaced with the first data line, a first pixel coupled to the first data line and the first scan line, a first switching element comprising a first terminal coupled to the first data line, a first storage capacitor coupled between a second terminal of the first switching element and a ground, and a second switching element coupled to the first storage capacitor and the first signal line.
Abstract:
A display module includes a planar display panel, a frame disposed under the planar display panel, a lower bezel disposed outside the frame, and an upper bezel disposed outside the planar display panel. The frame includes at least one side wall. The outer surface of the side wall includes a plurality of tenons and at least one 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 at least one 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:
Display panels buffering display data from a data driver. The display panel comprises a first signal line, a first data line, a first scan line interlaced with the first data line, a first pixel coupled to the first data line and the first scan line, a first switching element comprising a first terminal coupled to the first data line, a first storage capacitor coupled between a second terminal of the first switching element and a ground, and a second switching element coupled to the first storage capacitor and the first signal line.
Abstract:
Display panels buffering display data from a data driver. The display panel comprises a first signal line, a first data line, a first scan line interlaced with the first data line, a first pixel coupled to the first data line and the first scan line, a first switching element comprising a first terminal coupled to the first data line, a first storage capacitor coupled between a second terminal of the first switching element and a ground, and a second switching element coupled to the first storage capacitor and the first signal line.