Abstract:
Disclosed is a display apparatus having a circular display portion, wherein the display apparatus includes a cover window (170) for covering a circular display portion on a substrate (110), and an insertion member (190) provided in a gap space between an edge of the substrate (110) and an edge of the cover window (170), thereby improving reliability of the substrate.
Abstract:
Disclosed is a flexible electronic device, including: a body made of a flexible material; a display unit included in the body; a flexible circuit board included in the body; a bending adjuster which includes a first plate configured to maintain a flat shape at room temperature, and a second plate configured to maintain a bent state at a specific temperature or more and having an elastic force larger than that of the first plate in a superelastic state, and is configured to adjust a bending of the body by these plates, such that it is possible to more improve reality of an image output from a display unit by controlling the overall electronic device to be bent at a predetermined angle, more stably maintain a bent state and a flat state, reliably prevent a display unit and a flexible circuit board from being damaged, and stably maintain the bent state and the flat state despite using for a long period of time.
Abstract:
An organic light-emitting display device (100) includes an organic light-emitting element (120) on a substrate (110), a metal substrate (150), and an encapsulation unit (140) configured to seal the organic light-emitting element (120), and a structure in which a driving film (160) is connected so as not to be protruded further than the substrate (110). A portion of the encapsulation unit (140) is between the metal substrate (150) and the driving film (160), and the portion of the encapsulation unit (140) is configured to reduce damage to the driving film (160) caused by the metal substrate (150). Thus, the organic light-emitting display device (100) may realize a narrow bezel and also reduce a driving defect caused by damage to the driving film (160).
Abstract:
A backlight device includes a backboard (1) having a first portion (11) and a second portion (12). The second portion (12) is mounted to an outer periphery of the first portion (11). The first portion (11) and the second portion (12) together define a light mixing chamber (S). An insulating layer (13) is formed on a surface of the first portion (11) in the light mixing chamber (S) or a surface of the second portion (12) in the light mixing chamber (S). A lighting module (2) includes at least one conductive circuit (21) and at least one light-emitting diode (22) electrically connected to the at least one conductive circuit (21). The at least one conductive circuit (21) is formed on the insulating layer (13). An optical module (3) is mounted to the backboard (1) and is located in a top of the light mixing chamber (S).
Abstract:
The electrode member (10) according to the embodiment includes: a substrate (100 ; 1000); and an electrode part (200) on the substrate (100 ; 1000), wherein the electrode part (200) includes a sensing electrode (300) and a wire electrode (400), at least one electrode of the sensing electrode (300) and the wire electrode (400) includes an opening part (OA) and the electrode part (200) has a black color.
Abstract:
A display device includes a display panel and a flexible printed circuit (FPC) connected to the display panel. The FPC includes a first region and a second region, the second region having greater flexibility than the first region.
Abstract:
Disclosed are a touch window and a touch device including the same. The touch window includes first and second areas, wherein the second area is bentable from the first area.