摘要:
A wireless communication device comprises an antenna interface, a user interface, and a processing system. The antenna interface is configured to physically connect to an antenna mounting unit. The user interface is configured to receive wireless communication usage information from a user. The processing system is configured to process the wireless communication usage information to select one of a plurality of antenna configurations. The user interface is configured to display an image of the selected antenna configuration installed on the antenna mounting unit.
摘要:
A transparent electrode for a display device includes a nanocarbon material and a dopant comprising at least one of aluminum, alumina, palladium, and gold. In some embodiments, the transparent electrode has excellent transparency and low resistance.
摘要:
A liquid crystal display contains a light source, a light guide panel that directs light from the light source towards a display panel, and optical sheets containing a diffusion sheet that spreads the light from the light guide panel and at least one prism sheet that redirects light from the diffusion sheet in a direction substantially perpendicular to the display panel. The optical sheets contain a region adjacent to the light source that has a hardened part that substantially prevents heat from being transferred to a display region of the optical sheet corresponding to the display region of the display panel and minimizes the temperature difference across the display region. The hardened part is formed on at least opposing sides of the optical sheets, overlaps a non-display region of the display panel and is bent or contains a convex part that projects towards the display panel.
摘要:
A method of manufacturing a thin film transistor array panel is provided, the method includes forming a gate line on a substrate; forming a gate insulating layer on the gate line; forming a data line and a drain electrode on the gate insulating layer; forming an organic semiconductor layer on the data line, the drain electrode and an exposed portion of the gate insulating layer between the data line and the drain electrodel; forming a protective member fully covering the organic semiconductor layer; forming a passivation layer on the protective layer, the data line, and the drain electrode; forming a contact hole in the passivation layer to expose a portion of the drain electrode; and forming a pixel electrode on the passivation layer, the pixel electrode connected to the drain electrode through the contact hole.
摘要:
A wireless handset has a relatively slidable first and second housing sections to provide an extended configuration for using a predetermined function of the wireless handset and a closed configuration for reducing a predetermined dimension of the wireless handset when not using the predetermined function. An electronically controllable lock is coupled to the first and second housing sections having an actuated position for inhibiting movement of the first and second housing sections out of the extended configuration and a deactuated position wherein movement of the first and second housing sections out of the extended configuration is not inhibited. A controller is coupled to the lock wherein the controller is programmed to determine whether the handset is in a predetermined operating mode and to place the lock into the actuated position when the handset is in the predetermined operating mode. The controller is also programmed to place the lock into the deactuated position when the handset is no longer in the predetermined operating mode.
摘要:
An organic thin film transistor (“TFT”) array panel includes a substrate, a gate line extending in a first direction, a data line extending in a second direction, intersecting with and insulated from the gate line, a source electrode connected to the data line, a drain electrode facing the source electrode, a pixel electrode connected to the drain electrode, and an organic semiconductor connected to the source electrode and the drain electrode, the organic semiconductor made of an organic material with photosensitivity.
摘要:
A display apparatus includes a first substrate including a plurality of pixels, a first electrode arranged on the first substrate, a second substrate facing the first substrate, and a second electrode arranged on the second substrate and spaced apart from the first electrode, the second electrode to form an electric field in cooperation with the first electrode. At least one of the first and second electrodes includes a transparent conductive nanomaterial having a transmittance of no less than 73% to no more than 100% and a sheet resistance of 0 ohms to 100 ohms.
摘要:
An apparatus includes a substrate having a plurality of pixels, wherein the substrate comprises a concave-convex surface and a cured adhesive layer formed on the concave-convex surface.
摘要:
A flexible substrate, a method of manufacturing a display substrate, and a method of manufacturing a display panel. A spinning device is filled with a source solution, and a carrier substrate is arranged such that the spinning device faces the carrier substrate. An electric field is formed between the spinning device and the carrier substrate by supplying a power to the spinning device and the carrier substrate, and a nano-fiber is formed by spraying the source solution toward the carrier substrate. A flexible substrate is formed on the carrier substrate by coating a polymer resin on the nano-fiber, a plurality of display cells are formed on the flexible substrate, and then a display substrate is formed by separating the carrier substrate from the flexible substrate.
摘要:
A display device that is capable of reducing interference fringe such as a moiré pattern is presented. The display device comprises first and second substrates facing each other, each of the first and second substrates comprising fibers arranged in a lattice pattern, and a pixel layer formed between the first and second substrates. The fibers in the first substrate extend in a first direction and a second direction that is substantially perpendicular to the first direction, the fibers in the second substrate extend in a third direction and a fourth direction substantially perpendicular to the third direction, and the first direction and the third direction form an oblique angle.