Abstract:
A liquid crystal panel (2) is equipped with a first transparent substrate (21) on which a TFT is formed, a second transparent substrate (22), and a liquid crystal layer (23) interposed therebetween. An illumination device is disposed on the first transparent substrate side of the liquid crystal panel. When viewed along the normal direction of the primary surfaces of the first and second transparent substrates, a portion of the first transparent substrate protrudes beyond the second transparent substrate and a portion of the second transparent substrate protrudes beyond the first transparent substrate. The portion of the second transparent substrate which protrudes beyond the first transparent substrate is supported by a support part (41). Thus, it is possible to reduce display anomalies generated when pressure is applied to the display screen by a finger or the like.
Abstract:
Disclosed is a gasket comprising a support layer; a blocking pad layer laminated on one side of the support layer and made of an acrylic polymer resin composition; and an adhesive layer laminated on the other side of the support layer and made of an adhesive polymer resin. The acrylic polymer resin composition comprises a urethane acrylate oligomer; a first acrylic monomer; a second acrylic monomer having a higher glass transition temperature than the first acrylic monomer; and a filler.
Abstract:
Problems to be SolvedProvided is a backlight unit capable of maintaining its outermost size of the plane even when a horizontal misalignment occurs in the fixation of the upper frame and the lower frame during assembling or transportation.Solution:A backlight unit includes a lower frame defining an opening portion in its upper portion, a light source arranged in the opening portion, a light guide plate arranged in the opening portion for guiding light from the light source, and an upper frame arranged at the opening portion side of the opening portion and having a window portion capable of transmitting light from the light guide plate. The lower frame and the upper frame are engagingly fixed at an engaging portion having a projecting portion integrally arranged on a side surface of one side surface and a rib portion defining a hole portion extending from an another side surface to the one side surface and to which the projecting portion can be engaged with. When viewed from a side, a lower portion of the side surface of the upper frame and an upper portion of the side surface of the lower frame are in contact with each other and the width of the hole portion is larger than the width of the projecting portion. When one side end portion of the projecting portion is made in contact with one side end portion of the hole portion, the side surface of the upper frame is located approximately on the same plane with the other side end portion of the side surface of the lower frame, and the other side end portion of the upper frame is located outer side than the other side end portion of the side surface of the lower frame.
Abstract:
Disclosed are a backlight unit capable of reducing heat and noise and a liquid crystal display using the same. The backlight unit comprises a light source unit comprising light sources for irradiating light; a cover bottom disposed under the light source unit; a vibration-absorbing member attached on the other surface of the cover bottom; and an inverter coupled to the cover bottom via the vibration absorbing member interposed therebetween.
Abstract:
An object of the present invention is to increase the resistance of electronic paper to external stress. The resistance to external stress is increased by providing an element formation layer, which includes an integrated circuit portion, a first electrode, a second electrode, and a charged particle-containing layer, between a first insulating film including a first structure body in which a first fibrous body is impregnated with a first organic resin, and a second insulating film including a second structure body in which a second fibrous body is impregnated with a second organic resin.
Abstract:
A display system is provided including a display assembly with a display region of a first size, an overlay having a first substantially transparent section corresponding to the size of the display region of the display assembly and a second customized section extending beyond the first substantially transparent section, and an adhesive optically bonding the display region of the display assembly to the overlay. In some embodiments, the display assembly is one of a liquid crystal display, an organic light emitting diode display, and an electronic paper display. In some embodiments, the second customized section of the overlay may include an accessory, such as a sensor accessory, an actuator, or a coating.
Abstract:
A liquid crystal display design that reduces manufacturing costs and improves optical efficiency. The LCD includes a liquid crystal display panel, a light guide plate arranged on a rear surface of the liquid crystal display panel, a reflective plate that includes a bottom plate and a plurality of sidewalls attached to the bottom plate, the bottom plate of the reflective plate being arranged on a rear surface of the light guide plate to accommodate the light guide plate and the plurality of side walls of the light guide plate extending from the bottom plate to surround sides of the light guide plate and a bottom chassis arranged on a rear side of the reflective plate to accommodate the liquid crystal display panel, the light guide plate, and the reflective plate.
Abstract:
A flat panel display device includes a bezel and a flat display panel accommodated in the bezel. The bezel includes a substrate part, bent parts, each of which is formed on one of edges of the substrate part and extends substantially perpendicular to the substrate part, and a protrusion formed at an end of one of the bent parts. In another embodiment, a flat panel display device further includes a cover bezel covering the bezel and the flat display panel. The cover bezel has an open window through which light from the flat panel display transmits, and the cover bezel includes an insertion part that is coupled with the protrusion.
Abstract:
A computing device is disclosed. The computing device includes a shock mount assembly that is configured to provide impact absorption to sensitive components such as a display and an optical disk drive. The computing device also includes an enclosureless optical disk drive that is housed by an enclosure and other structures of the computing device. The computing device further includes a heat transfer system that removes heat from a heat producing element of the computing device. The heat transfer system is configured to thermally couple the heat producing element to a structural member of the computing device so as to sink heat through the structural member, which generally has a large surface area for dissipating the heat.
Abstract:
In at least one embodiment of the disclosure, a display device includes a first substrate and a second substrate. A layer is located between the first substrate and the second substrate. The layer includes a first region and a second region. The first region comprises an electrophoretic display layer having electrophoretic particles. The second region is located between the first region and an edge of the first substrate and includes a contact portion. The distance between the first substrate and the second substrate corresponding to the second region is smaller than the distance between the first substrate and the second substrate corresponding to the first region.