Abstract:
A backlight unit for a liquid crystal display. The backlight unit comprises a frame, a first supporting portion, a second supporting portion, and a film. The film comprises a first constraining portion and a second constraining portion. The film is positioned on the frame by the first and the second supporting portion passing through the first and the second constraining portion, respectively. When the frame is disposed in a first position, the first supporting portion partially contacts an inner wall of the first constraining portion for positioning the film. When the frame is disposed in a second position, the second supporting portion partially contacts an inner wall of the second constraining portion for positioning the film. An LCD utilizing the backlight unit is also disclosed.
Abstract:
A film-carrying system and a film-carrying device used therein are provided. The film-carrying system includes a support base, a film-carrying device and a film. The film-carrying device includes a support connection part, an elastic part, and a film connection part. The support connection part is coupled to the support base while the film connection part is coupled to the film. The elastic part has a free end and a fixed end; the free end connects to the film connection part, and the fixed end connects to the support connection part. The elastic deformation of the elastic part provides the film connection part with a degree of freedom in linear displacement, and the film connection part also has a degree of freedom in angular displacement corresponding to the support connection part.
Abstract:
A backlight module includes a back plate having a through opening area, a carrying element disposed on the back plate, a circuit board disposed on the carrying element and at least one light emitting element disposed on the circuit board and corresponding to the through opening area. An LCD includes an LCD panel having a display area and a non-display area opposite to each other, a backlight module including a back plate, a circuit board and at least one light emitting element and a cover disposed at the LCD panel. The back plate disposed at the non-display area has a through opening area corresponding to the non-display area. The light emitting element is disposed on the circuit board and corresponding to the through opening area. The cover has a surface and covers the through opening area. The surface of the cover faces the through opening area and the non-display area.
Abstract:
A film-carrying system and a film-carrying device used therein are provided. The film-carrying system includes a support base, a film-carrying device and a film. The film-carrying device includes a support connection part, an elastic part, and a film connection part. The support connection part is coupled to the support base while the film connection part is coupled to the film. The elastic part has a free end and a fixed end; the free end connects to the film connection part, and the fixed end connects to the support connection part. The elastic deformation of the elastic part provides the film connection part with a degree of freedom in linear displacement, and the film connection part also has a degree of freedom in angular displacement corresponding to the support connection part.
Abstract:
A backlight unit for a liquid crystal display. The backlight unit comprises a frame, a first supporting portion, a second supporting portion, and a film. The film comprises a first constraining portion and a second constraining portion. The film is positioned on the frame by the first and the second supporting portion passing through the first and the second constraining portion, respectively. When the frame is disposed in a first position, the first supporting portion partially contacts an inner wall of the first constraining portion for positioning the film. When the frame is disposed in a second position, the second supporting portion partially contacts an inner wall of the second constraining portion for positioning the film. An LCD utilizing the backlight unit is also disclosed.
Abstract:
A lamp device and a light source module are provided. The lamp device includes a lamp body and a coil connecting tube. The lamp body has an end portion and a lead wire extends from the end portion. The coil connecting tube is disposed corresponding to the end portion of the lamp body and electrically connecting to the lead wire for power supply purpose. The coil connecting tube winds about an axial direction of the lamp body and is capable of stretching or compressing along the axial direction. The light source module includes the lamp device and a lamp connector which has a power source portion being coupled to the coil connecting tube for power supply.
Abstract:
A back bezel assembly is provided. The back bezel assembly includes a frame and a metal shielding board. The frame is formed with at least one hollow portion. By forming at least one hollow portion, the frame is not formed with at least one first portion with the same material of the frame, wherein the at least one first portion has a first weight. The metal shielding board has a second weight, which is less than the first weight. The metal shielding board is fixed to the frame and covers at least one portion of the at least one hollow portion correspondingly. With the configuration of the back bezel assembly, the display adopting the back bezel assembly is lightweight and provided with the shielding effect of EMI (Electromagnetic Interference).
Abstract:
A lamp socket includes a socket body, a flange and a plurality of support members. The flange is connected to the socket body and protrudes from the socket body horizontally. The plurality of support members are connected to the socket body. At least one engaging groove including at least two engaging widths is formed between the plurality of the support members and the flange, so as to secure the socket body to a bezel.
Abstract:
A film-carrying system and a film-carrying device used therein are provided. The film-carrying system includes a support base, a film-carrying device and a film. The film-carrying device includes a support connection part, an elastic part, and a film connection part. The support connection part is coupled to the support base while the film connection part is coupled to the film. The elastic part has a free end and a fixed end; the free end connects to the film connection part, and the fixed end connects to the support connection part. The elastic deformation of the elastic part provides the film connection part with a degree of freedom in linear displacement, and the film connection part also has a degree of freedom in angular displacement corresponding to the support connection part.
Abstract:
A backlight structure comprises a frame, a circuit board, and a connector. The frame has an opening. The circuit board is located below the frame and has a through hole, wherein the through hole aligns with the opening. The connector passes through the opening and the through hole, protrudes from a surface of the frame, and is electrically connected to the circuit board.