Abstract:
A liquid crystal display (LCD) includes an outer cover, a backlight module, a liquid crystal panel, and a bezel. The backlight module includes a reflection sheet, a light guide plate (LGP), an edge reflector, and a light source. The reflection sheet is disposed on the outer cover and faces the outer cover. There is an interval between the outer cover and the reflection sheet. The LGP is stacked on the reflection sheet and the edge reflector is disposed on the outer cover, wherein a containing space is defined by the outer cover and the edge reflector. The light source is disposed in the containing space. The liquid crystal panel is stacked on the LGP. The bezel is assembled to the outer cover. The outer cover and the bezel enclose the backlight module and the liquid crystal panel and the bezel exposes the liquid crystal panel.
Abstract:
A new flip-chip technology, denominated as DDFC (Direct-Downset Flip-Chip) technology, is characterized by the forming of a downset device hole in the substrate, and by the use of an array of solder bumps over the semiconductor chip and an array of recessed solder-bump pads of an inwardly-tapered conical shape over the bottom surface of the device hole for bonding the semiconductor chip to the substrate. During assembly, the semiconductor chip is embedded in a direct-downset manner into the device hole of the substrate, with the solder bumps being fitted and wetted to the recessed solder-bump pads. The proposed DDFC technology can be implemented without requiring solder-deflux or flip-chip underfill processes, thereby simplifying overall package fabrication.
Abstract:
A touch-sensitive display device includes a liquid crystal display module and a touch-sensitive element. The touch-sensitive element is attached to a surface of the liquid crystal display module.
Abstract:
A liquid crystal display (LCD) includes an outer cover, a backlight module, a liquid crystal panel, and a bezel. The backlight module includes a reflection sheet, a light guide plate (LGP), an edge reflector, and a light source. The reflection sheet is disposed on the outer cover and faces the outer cover. There is an interval between the outer cover and the reflection sheet. The LGP is stacked on the reflection sheet and the edge reflector is disposed on the outer cover, wherein a containing space is defined by the outer cover and the edge reflector. The light source is disposed in the containing space. The liquid crystal panel is stacked on the LGP. The bezel is assembled to the outer cover. The outer cover and the bezel enclose the backlight module and the liquid crystal panel and the bezel exposes the liquid crystal panel.