Abstract:
A plate flatness measurement device, including a support frame including a center area, the center area including a through-hole in a center of the center area, and a peripheral area surrounding the center area, the peripheral area having a plate with protrusions on a bottom surface of the plate mounted to the peripheral area; and a sensor module in the support frame, the sensor module at least partially protruding above the support frame to contact the protrusions.
Abstract:
An apparatus for fabricating an organic light emitting display includes a chamber, a stage having a hollow portion, a displacement sensor on the stage and configured to measure a distance between the stage and a measurement target that is on or over an upper part of the stage, and a controller. The controller includes an input unit configured to receive distance information obtained by the displacement sensor, a memory unit configured to store reference distance information, a determination unit configured to compare the distance information received by the input unit with the reference distance information, and an output unit configured to output a variable control signal according to whether or not the determination unit determines that the distance information between the stage and the measurement target corresponds to the reference distance information. A method for fabricating an organic light emitting display using the apparatus is also provided.
Abstract:
An inkjet printing apparatus according to an embodiment includes a stage where a target substrate is disposed, and an inkjet head that discharges ink on the target substrate. The inkjet head includes a tank that stores the ink, nozzles that are provided on the tank and discharge the ink, and a damper that is disposed in the tank, and the damper comprises a protruding portion that protrudes toward the nozzles from the damper.
Abstract:
A magnet plate for manufacturing a display device is disclosed. In one aspect, the plate includes at least two magnet units formed in a first direction, each magnet unit including first and second linear motion (LM) guides. The plate also includes a support plate attached to the LM guides. The magnet unit also includes a magnet supporter comprising an upper portion including a magnet coupling part, a lower portion including a plurality of cam followers, and at least two first transfer plate coupling protrusions formed at a predetermined interval. The magnet unit further includes a magnet guide plate placed beneath the magnet supporter and including a guide cam hole into which the cam follower is inserted. The guide cam hole is oblique with respect to the first direction and has a predetermined width such that the cam follower moves within the guide cam hole.
Abstract:
A display device includes: a flexible display panel; an accommodation unit in which the flexible display panel is accommodated; and a bending adjuster located on one surface of the flexible display panel and configured to adjust curvature of the flexible display panel.
Abstract:
An inkjet device includes a stage, a first suction member, a second suction member, a spray member, and a substrate. The first suction member is at a first side surface of the stage. The second suction member is at a second side surface of the stage. The spray member is configured to store ink and to move above top surfaces of the stage, the first suction member, and the second suction member, the spray member including a body and a nozzle at a side of the body to discharge the ink. The substrate is on the stage in which the ink discharged from the spray member is printed on the substrate.
Abstract:
A foldable display device may include: a support structure including a hinge, a plurality of supports disposed on opposite sides of the hinge and coupled to the hinge, where a light transmitting area is defined in a portion of the supports; a foldable display panel disposed on a first surface of the support structure, and including a foldable display area corresponding to the hinge, and a plurality of display areas disposed on opposite sides of the foldable display area; and a first input sensor disposed in the light transmitting area of the support structure at a position spaced apart from the foldable display panel.
Abstract:
A deposition apparatus includes a sheet, an edge portion of which is integrally combined with a sheet frame, an electrostatic chuck attached to a bottom surface of the sheet, the electrostatic chuck adhering a substrate by a force of static electricity, a metal mask located below the electrostatic chuck, an edge portion of the metal mask being combined with a mask frame, the metal mask having a predetermined patterned opening, and the substrate being mounted to the upper surface of the metal mask, a transfer member coupled to a side surface of the sheet frame, the transfer member flattening the sheet by pulling the sheet to side directions, and a magnetic plate located above the sheet, the magnetic plate closely attaching the substrate to the electrostatic chuck by pulling the metal mask using a magnetic force.
Abstract:
A magnet plate for manufacturing a display device is disclosed. In one aspect, the plate includes at least two magnet units formed in a first direction, each magnet unit including first and second linear motion (LM) guides. The plate also includes a support plate attached to the LM guides. The magnet unit also includes a magnet supporter comprising an upper portion including a magnet coupling part, a lower portion including a plurality of cam followers, and at least two first transfer plate coupling protrusions formed at a predetermined interval. The magnet unit further includes a magnet guide plate placed beneath the magnet supporter and including a guide cam hole into which the cam follower is inserted. The guide cam hole is oblique with respect to the first direction and has a predetermined width such that the cam follower moves within the guide cam hole.
Abstract:
An apparatus for fabricating an organic light emitting display includes a chamber, a stage having a hollow portion, a displacement sensor on the stage and configured to measure a distance between the stage and a measurement target that is on or over an upper part of the stage, and a controller. The controller includes an input unit configured to receive distance information obtained by the displacement sensor, a memory unit configured to store reference distance information, a determination unit configured to compare the distance information received by the input unit with the reference distance information, and an output unit configured to output a variable control signal according to whether or not the determination unit determines that the distance information between the stage and the measurement target corresponds to the reference distance information. A method for fabricating an organic light emitting display using the apparatus is also provided.