Abstract:
A vehicle inside mirror device employs a ball clamp in which a barrel-shaped ball clamp is prepared by assembling a pair of semi-barrel-shaped and symmetrical bodies to accommodate for manufacturing errors and the like. The ball clamp includes a mirror through which a driver can view rearwardly; and a mirror mounting part. The mirror mounting part has a barrel-shaped hinge part. A first ball clamp surrounds and clamps the hinge part. A second ball clamp corresponds to the first ball clamp with a spring between the first ball clamp and the second ball clamp for generating an expansion force. The mirror mounting part is fixed to a glass or a ceiling of a vehicle and has a hinge part for coupling the second ball clamp thereto. A tube surrounding the first ball clamp, the second ball clamp and the spring.
Abstract:
A flat display panel includes a first substrate and a second substrate, and the first and second substrates are sealed via a sealing member therebetween. The second substrate includes a display region and a non-display region. The display region and the non-display region include black matrix patterns, and the black matrix patterns have at least one opening in a sealing region of the second substrate. The sealing member is arranged in the sealing region
Abstract:
An OLED display according to an exemplary embodiment includes: a first substrate; a second substrate facing the first substrate; an organic light emitting element on the first substrate; a liquid crystal driving electrode facing the organic light emitting diode at a lower portion of the second substrate; and a plurality of liquid crystals between the organic light emitting element and the liquid crystal driving electrode. In this case, the plurality of liquid crystals has optical isotropy when an electric field is not applied and has optical anisotropy when the electric field is applied.
Abstract:
An organic light emitting diode (OLED) display and a method of manufacturing the same are provided. The OLED display includes: a substrate main body; an OLED that is formed on the substrate main body; a hydrophilic polymer layer that is formed on the substrate main body to cover the OLED and that includes a hydrophilic surface having an angle of contact within a range of larger than 0° and smaller than or equal to 50°; and an inorganic protective layer that is formed on the hydrophilic surface of the hydrophilic polymer layer.
Abstract:
An organic light emitting diode display comprises a display substrate including an organic light emitting element, an encapsulation substrate disposed to face the display substrate, a sealant disposed between edges of the display substrate and the encapsulation substrate for bonding and sealing the display substrate and the encapsulation substrate together, a filler filling in a space between the display substrate and the encapsulation substrate, first spacers formed on one surface of the display substrate contacting the filler, and second spacers formed on one surface of the encapsulation substrate contacting the filler. The display substrate and the encapsulation substrate are divided into a dropping area and a spreading area surrounding the dropping area and positioned relatively close to the sealant, and either or both of the first spacers and the second spacers have different shapes in the dropping area and in the spreading area.
Abstract:
An organic light emitting diode (OLED) display includes a display substrate including a display substrate including an organic light emitting element and a pixel defining layer having an opening defining a light emitting region of the organic light emitting element, an encapsulation substrate arranged opposite to the display substrate, a sealant arranged at an edge between the display substrate and the encapsulation substrate to seal a space between the display substrate and the encapsulation substrate from an outside and a filler filling the space between the display substrate and the encapsulation substrate, wherein the pixel defining layer has a thickness that varies by location, and a portion of the pixel defining layer closest to the sealant at edges of the display substrate having a thickness that is greater than a thickness of the pixel defining layer at all other portions of the display.
Abstract:
A portable terminal is capable of selecting a cell for connecting to a communication network. The portable terminal sets a specific cell that satisfies preset conditions among surrounding cells as a management cell. The portable terminal determines whether a cell selection or cell reselection event is generated. The portable terminal performs a cell selection procedure excluding the management cell when the cell selection or cell reselection event is generated.
Abstract:
The present invention is to increase the efficiency of the transmission channel between the base stations and to improve the accuracy of the signal in transmitting the traffic information in the circuit communication method or TDM method in comparison with the packet method, and provides the apparatus for speech coding at the Code Division Multiple Access base station which can solve the anticipated problem of the frame sync acquisition between base stations in such case.
Abstract:
An operation method performed by user equipment in a wireless communication system is provided. The method includes: determining whether to switch a Discontinuous Reception (DRX) state; switching to a new DRX state and operating in the new DRX state, if it is determined to switch to the DRX state; and reporting the switch to the new DRX state to a network. The new DRX state is based on a new DRX cycle comprising on-duration for which a downlink channel is monitored and off-duration for which the downlink channel is not monitored.
Abstract:
Present embodiments provide a display apparatus including a substrate; a sealing substrate facing the substrate; a display unit between the substrate and the sealing substrate; a first sealing member between the substrate and the sealing substrate to be spaced apart from the display unit, so as to bond the substrate and the sealing substrate to each other; a second sealing member between the substrate and the sealing substrate to be spaced apart from the display unit and the first sealing member, so as to bond the substrate and the sealing substrate to each other; and a light pattern layer on a surface of the sealing substrate opposite to a surface facing the display unit, so as to adjust light intensity transmitted through the sealing substrate. The light pattern layer includes a first pattern corresponding to the first sealing member and a second pattern corresponding to the second sealing member.