Abstract:
A polarizing plate includes a first glass plate; a second glass plate facing the first glass plate; and a polarizing device between the first and second glass plates. An external surface of at least one of the first and second glass plates, which is not in contact with the polarizing device, has a root mean square surface roughness of about 1 nanometer or less.
Abstract:
A display device includes a first substrate including a display area and a non-display area which is outside the display area; a first gate signal line and a second gate signal line each on the non-display area of the first substrate; a connection electrode which is on the non-display area of the first substrate and connects the first gate signal line and the second gate signal line to each other; and a static electricity prevention pattern which is on the non-display area of the first substrate and on the connection electrode.
Abstract:
A display device according to an exemplary embodiment includes: a substrate; a thin film transistor disposed on the substrate; an electrode connected with the thin film transistor; a roof layer disposed on the electrode, while interposing a microcavity therebetween; an injection hole disposed along a side surface of the microcavity; a liquid crystal layer disposed in the microcavity; and an encapsulation layer covering the injection hole of the microcavity. The roof layer comprises a first portion disposed adjacent to the injection hole, and a second portion other than the first portion, and a height from the substrate to an upper surface of the first portion is lower than the height from the substrate to an upper surface of the second portion.
Abstract:
A liquid crystal display (LCD) is presented. The LCD includes: a substrate; a plurality of thin film transistors disposed on the substrate; a plurality of liquid crystal (LC) layers disposed within a plurality of microcavities on the substrate; a partition wall disposed between the LC layers adjacent in a first direction; and signal lines disposed between the LC layers and the partition wall and connected to the plurality of thin film transistors.
Abstract:
A liquid crystal display includes a pixel electrode including a first subpixel electrode and a second subpixel electrode, a first common electrode corresponding to the first pixel electrode, a second common electrode corresponding to the second pixel electrode, a first transistor connected to the first subpixel electrode; a second transistor connected to the second subpixel electrode, a gate line connected to the first transistor and the second transistor, and a data line connected to the first transistor and the second transistor.
Abstract:
A display device including: an insulation substrate including a plurality of pixel areas; a thin film transistor positioned on the substrate; an organic layer positioned on the thin film transistor; a pixel electrode formed to be spaced apart from the organic layer with a microcavity therebetween, the pixel electrode being connected to the thin film transistor; a common electrode overlapping the pixel electrode with a roof layer therebetween; and a liquid crystal layer within the microcavity.
Abstract:
A liquid crystal display is provided that includes: a substrate; a thin film transistor disposed on the substrate; a protection layer disposed on the thin film transistor; a first electrode and a second electrode disposed on the protection layer; an alignment layer disposed on the second electrode; and a roof layer facing the second electrode, wherein a plurality of microcavities are formed between the second electrode and the roof layer, the microcavities include a liquid crystal material, and the alignment layer includes a photo-alignment material.
Abstract:
An exemplary embodiment of the present disclosure provides a blind-type liquid crystal display, including: a fixing member; two or more connecting members branched from the fixing member; and a plurality of liquid crystal panels that are connected to the fixing member through the connecting members and are disposed to extend in one direction, wherein each of the plurality of liquid crystal panels may include an substrate, a roof layer facing the insulation substrate, and a liquid crystal layer that is disposed between the insulation substrate and the roof layer and includes a plurality of microcavities.
Abstract:
A substrate peeling device including an attachment/detachment unit attached to a first substrate and a second substrate, which is coupled to the first substrate, to peel the second substrate, a sensing unit configured to sense a speed at which the first substrate and the second substrate are peeled by the attachment/detachment unit, and a control unit configured to control the attachment/detachment unit to constantly maintain an angle at which the first substrate and the second substrate are peeled.
Abstract:
A display device includes a display panel having a plurality of selective light transmitting regions through which light can be controllably transmitted and one or more light blocking regions. It further includes a backlighting unit disposed and configured to supply backlighting light to the display panel and a backlighting light changing layer configured to change one or more optical characteristics (e.g., polarization) of light passed therethrough. The display device further includes a reflection pattern layer disposed between the backlighting light changing layer and the backlighting unit and including a plurality of light-passing regions configured to let light pass therethrough and one or more reflection portions configured to reflect light, where the reflection portions are disposed to intercept, and reflect light coming from the backlighting unit and heading forward to a corresponding one or more of the light blocking regions of the display panel back to the backlighting unit.