Abstract:
A connector that is capable of reducing defects in display apparatuses is presented. The connector includes a body, a plurality of terminals and a cover. The body has a base and a sidewall. The terminals are disposed on the body and arranged to make an electrical connection with the electrical circuit when the electrical circuit is received by the body. The cover includes a rotation axis, a fixing portion extending from the rotation axis such that the fixing portion is substantially parallel to the base of the body, and a protrusion portion protruding from the rotation axis substantially perpendicularly to the base of the body. The connector prevents electrical discharge from the flexible printed circuit board to the electrical circuit and prevents physical damage to the electrical circuit. Therefore, defect rate decreases and a yield of a display apparatus increases.
Abstract:
A back-light assembly capable of preventing light leakage and a liquid crystal display including the same. The back-light assembly includes a lamp emitting light, a lamp holder comprising a reflecting part into which the lamp is inserted and an absorbing part, wherein the absorbing part absorbs the light, and the reflecting part reflects the light, a side member comprising a through hole, the lamp being inserted into the through hole, and a bottom chassis comprising a bottom surface and side surfaces, the side surfaces extending from the bottom surface.
Abstract:
A light-guide plate includes an incident surface receiving light, an upper surface extended from a first side of the incident surface, a lower surface opposed to the upper surface and a plurality of first prisms protruding from the upper surface and spaced apart by a separation distance.
Abstract:
A backlight assembly includes a receiving container, a light guide plate, a light source unit, an optical member and a panel-guiding member. The receiving container includes a bottom plate and a sidewall extended from an edge portion of the bottom plate. The light source unit includes a light source generating light and disposed at side face of the light guide plate, and a light reflecting cover that covers the light source to reflect the light generated from the light source toward the side face. The optical member is disposed over the light guide plate. The panel-guiding member has a first plate combined with the sidewall of the receiving container, and a second plate extended from the first plate such that the second plate covers a portion of the optical member and is spaced apart from an upper face of the optical member. Therefore, warpage and cleavage of the optical member are prevented.
Abstract:
A liquid crystal display includes a light guide plate guiding light, light sources disposed adjacent to at least one side of the light guide plate, and a lower receptacle. The lower receptacle includes a bottom plate on which the light guide plate and the light sources are disposed, a lower receptacle side wall extending in a direction substantially perpendicular to the bottom plate and from an edge of the bottom plate, and an upper plate extended from the lower receptacle side wall and substantially parallel to the bottom plate. The upper plate does not overlap the light guide plate in a plan view of the liquid crystal display.
Abstract:
In a backlight assembly of a display device, a supporting frame receives a light-guide plate while exposing a light-exiting surface of the light-guide plate. A first receiving member covers an opposite surface of the light-guide plate facing the light-exiting surface, and a side first portion of the light-guide plate adjacent to a first side surface is inserted into a first sidewall portion of the first receiving member. A first light source is disposed between the first side surface and the first sidewall portion. A first reflective sheet is extended along an inner surface of the first receiving member and surrounds the first light source. The backlight assembly may further comprise a second receiving member, a second light source, and a second reflective sheet. A lamp reflector may be omitted, assemblability of the backlight assembly and the display device, and protection against heat, may be improved.
Abstract:
A back-light assembly capable of preventing light leakage and a liquid crystal display including the same. The back-light assembly includes a lamp emitting light, a lamp holder comprising a reflecting part into which the lamp is inserted and an absorbing part, wherein the absorbing part absorbs the light, and the reflecting part reflects the light, a side member comprising a through hole, the lamp being inserted into the through hole, and a bottom chassis comprising a bottom surface and side surfaces, the side surfaces extending from the bottom surface.
Abstract:
A backlight assembly, a display apparatus having the backlight assembly, and a method of assembling the backlight assembly are disclosed for embodiments. For example, a backlight assembly may include a receiving container which includes a first receiving member that receives a lamp and a portion of a light guide plate and a second receiving member that receives a remaining portion of the light guide plate. A reflection sheet is disposed between the light guide plate and the receiving container and elongated to cover the lamp. An adhesive is disposed between the reflection sheet and the receiving container and includes a heat-bondable material to adhere the reflection sheet to the receiving container when heat is applied thereto. Accordingly, the reflection sheet may be prevented from being wrinkled due to heat generated from the lamp, thereby enhancing assemblability of the backlight assembly.
Abstract:
A display device includes a panel assembly on which an image is formed, a cover member which comprises a front portion having a display window exposing at least a portion of a front side of the panel assembly and a side portion which is bent from the front portion, the cover member having one or more joining regions where a pair of end portions engage with and are joined to each other, the cover member comprising a first joining part and a second joining part which are formed at the pair of end portions, respectively, wherein at least one of the first joining part and the second joining part include a region stepped from a surface of the cover member, and at least a portion of the first joining part and the second joining part overlap each other, and an accommodating member which accommodates the panel assembly and is joined to the cover member.
Abstract:
The present disclosure relates to a liquid crystal display (LCD). There is provided an LCD comprising at least one lamp, a light guide plate for converting light incident from the lamp into a surface light source, an LCD panel disposed above the light guide plate for displaying an image thereon, a first reflection plate disposed below the light guide plate and including an end bent to extend parallel to a surface of the light guide plate such that the reflection plate can surround the lamp installed on the surface of the light guide plate, a mold frame including a space for accommodating the lamp, the light guide plate, the LCD panel and the reflection palate therein and including a portion of a sidewall protruding into the LCD to surround the top of the lamp, and a second reflection plate disposed on a rear surface of a portion of the mold frame arranged above the lamp. Therefore, a thin and lightweight LCD can be obtained and lamp efficiency can also be improved.