Abstract:
An exemplary embodiment provides a display device including: a substrate including a display area and a peripheral area; a pixel layer disposed in the display area; a driver layer disposed in the peripheral area; a first optical film disposed above the pixel layer and the driver layer; a second optical film disposed below the substrate; and a sealant disposed between the first optical film and the second optical film to overlap the first optical film and the second optical film in a thickness direction of the substrate.
Abstract:
A liquid crystal panel (LCD) may include: a flexible liquid crystal panel; and a housing unit for housing the liquid crystal panel. The housing unit may have an integrated structure which includes a bottom surface, a side surface connected from the bottom surface, and a top fixing end connected from the side surface, the liquid crystal panel may be housed between the bottom surface and the top fixing end, and the housing unit may be formed of a flexible soft material.
Abstract:
A display module for a multi-display device includes an array substrate, connectors disposed on the array substrate and configured to transmit signals for driving the array substrate, a printed circuit board (PCB) electrically connected to the connectors and configured to transmit signals to the connectors, and connecting members that extend through the array substrate and configured to electrically connect the connectors and the PCB.
Abstract:
An exemplary embodiment provides a display device and a manufacturing method thereof. A display device according to the exemplary embodiment includes: a substrate; a thin film transistor disposed on the substrate; a first electrode connected to the thin film transistor; a roof layer disposed on the first electrode and spaced apart from the first electrode by interposing a microcavity therebetween; a liquid crystal layer positioned inside the microcavity; an encapsulation layer positioned on the roof layer; and a barrier layer covering an upper surface and a lateral surface of the encapsulation layer, wherein a lateral surface of the barrier layer includes a thermal distortion portion.
Abstract:
A liquid crystal display is provided. The liquid crystal display includes: a substrate including a plurality of pixels; a pixel electrode disposed in each of the pixels; a roof layer facing the pixel electrode; a liquid crystal layer disposed in a plurality of microcavities between the pixel electrodes and the roof layer, each of the microcavities including liquid crystal material therein, wherein each of the microcavities extends across at least two of the pixels, and a width of a first light blocking member positioned between adjacent ones of the pixels corresponding to one microcavity and a width of a second light blocking member positioned between adjacent pixels of adjacent microcavities are different from each other.
Abstract:
A curved liquid crystal display and a method of manufacturing it are presented. The display includes: a substrate having a central portion; a thin film transistor disposed on the substrate; a pixel electrode connected to the thin film transistor; and a roof layer disposed to face the pixel electrode; and a liquid crystal layer disposed between the pixel electrode and the roof layer and formed by a plurality of microcavities, wherein the microcavities hold a liquid crystal material, wherein a difference between a maximum cell gap and a minimum cell gap in each of the microcavities increases with distance from the central portion of the substrate.
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.