Abstract:
A liquid crystal display includes a first substrate and a second substrate which face each other and each include a display area and a peripheral area, a liquid crystal layer in the display areas and between the first substrate and the second substrate, and a conductive sealant combining the first substrate and the second substrate. The first substrate includes a common electrode in the display and peripheral areas of the first substrate. The second substrate includes a first and signal lines in the peripheral area of the second substrate, a first insulating layer on the first signal line and the second signal line, and a conductor on the first insulating layer in the peripheral area and connected to the first signal line through a contact hole. The common electrode includes a cutout corresponding to the conductor, and the cutout is at a corner of the display areas.
Abstract:
Provided is a method for manufacturing liquid droplet microarrays, including: providing a lower substrate on which microstructures are patterned; providing an upper substrate to which one or more liquid path lines and a liquid reservoir are linked at both sides thereof; placing the upper substrate over the lower substrate; and arranging liquid droplets in microarrays on the structures of the lower substrate by allowing a liquid contained in the liquid reservoir to flow though the liquid path lines. Provided also are liquid droplet microarrays obtained by the method, a device for delivering a material including the liquid droplet microarrays, and a method for delivering a material through the device.
Abstract:
A method of configuring a radio connection in a multiple cell system is provided. The method includes configuring a first radio connection between a user equipment (UE) and a primary base station (BS) and a second radio connection between the UE and a secondary BS based on a cooperative transmission configuration in which a plurality of BSs transmit the same data to the UE, receiving first channel state regarding the first radio connection and second channel state regarding the second radio connection from the UE, releasing at least one radio connection of the first radio connection and the second radio connection, the at least one radio connection having a worse channel state than a threshold, transmitting to the UE, a new cooperative transmission configuration changed by the release of the at least one radio connection, and receiving a layer reconfiguration complete message indicating completion of layer reconfiguration based on the new cooperative transmission configuration.
Abstract:
A backlight assembly comprises a light source unit emitting light, a heat-blocking plate disposed over the light source unit to prevent heat generated from the light source unit from being upwardly transmitted, and a receiving container receiving the light source unit and the heat-blocking plate. The receiving container includes a bottom plate and a plurality of sidewalls. Each of the sidewalls extends from a side of the bottom plate and has openings formed through each of the sidewalls. The openings are formed over the heat-blocking plate.
Abstract:
Linear deposition sources are disclosed. In one embodiment, the linear deposition source includes a container accommodating evaporation material and a heater configured to generate heat energy such that vaporized material is discharged uniformly onto a substrate on which a deposition layer is formed. The heater is provided on the container, wherein a portion of the heater positioned at a center portion of the container in the longitudinal direction generates more heat energy than the other portion of the heater. The heater includes a coil configured in a sinusoidal pattern, wherein the curvature pitch or height of the portion of the coil positioned at the center portion of the container in the longitudinal direction is set to be different from that of the other portion of the coil. Further, the resistance of the portion of the coil positioned at the center portion of the container in the longitudinal direction may be set to be greater than that of the other portion of the coil.
Abstract:
The present invention relates to 6-(4-substituted-anilino)pyrimidine derivatives useful as an antiviral agent, and more particularly novel 6-(4-substituted-anilino)pyrimidine derivatives having an excellent inhibitory effect on replication of Hepatitis C virus; HCV), represented by the following formula I: in which R represents a C1-C4 straight or branched alkoxycarbonyl group, heterocycliccarbonyl group or carboxyalkyl group; and pharmaceutically acceptable salts thereof, a preparation method thereof, and an antiviral pharmaceutical composition comprising the compound as an effective ingredient. The 6-(4-substituted-anilino)pyrimidine derivatives according to the present invention have an excellent inhibitory effect on replication of Hepatitis C virus (HCV) and thus can be advantageously used as a therapeutic or prophylactic agent of hepatitis C.
Abstract:
A micromachined cell lysis device with electrodes that are spaced by less than 10 μm from one another. The cells are attracted to the space between the electrodes and then lysed.
Abstract:
A portable wireless terminal, comprising a main body, a folder hinged to the main body so as to be opened from and closed into the main body, and a camera lens assembly rotatably connected to a hinge axis of the folder, such that the camera lens assembly is formed as a body tube so as to be drawn into and out from the main body in the direction of the hinge axis. The camera lens assembly of the portable wireless terminal is drawn out from one side of the terminal, to not limit the range of its photographing angle by the main body or the folder of the terminal. Further, the camera lens assembly drawn out from the main body of the portable wireless terminal is easily adjusted directionally, to allow for convenient manipulation by users.
Abstract:
A method of manufacturing a monolithic ink-jet printhead includes preparing a silicon substrate, forming an ink passage comprising a manifold supplying ink, an ink chamber filled with ink supplied from the manifold, an ink channel connecting the ink chamber to the manifold, and a nozzle through which the ink is ejected from the ink chamber, on the silicon substrate, and reprocessing a wall of the ink passage by passing XeF2 gas through the ink passage and dry etching the wall of the ink passage. In the reprocessing of the wall of the ink passage using XeF2 gas, the wall of the ink passage is smoothed, and a size of the ink passage can be more precisely adjusted to a design dimension, thereby improving a printing performance of the ink-jet printhead.
Abstract:
A bubble-jet type ink-jet printhead, and a manufacturing method thereof are provided, wherein, the printhead includes a substrate integrally having an ink supply manifold, an ink chamber, and an ink channel, a nozzle plate having a nozzle, a heater consisting of resistive heating elements, and an electrode for applying current to the heater. In particular, the ink chamber is formed in a substantially hemispherical shape on a surface of the substrate, a manifold is formed from its bottom side toward the ink chamber, and the ink channel linking the manifold and the ink chamber is formed at the bottom of the ink chamber. Thus, this simplifies the manufacturing process and facilitates high integration and high volume production. Furthermore, a doughnut-shaped bubble is formed to eject ink in the printhead, thereby preventing a back flow of ink as well as formation of satellite droplets that may degrade image resolution.