Abstract:
A display device includes first and second plastic substrates. The first substrate is directly bonded to the second plastic substrate by heat and pressure. When the display device is manufactured, a process of forming a coupling member interposed between the first and second plastic substrates may be omitted, thereby preventing deterioration of reliability of the display device due to the coupling member.
Abstract:
A flexible reflective display device capable of improving display quality by using a reflective electrode employing carbon nanotubes. In an exemplary embodiment, a flexible reflective display device includes a substrate, a thin film transistor, a first electrode, an electrophoretic layer and a second electrode layer. The thin film transistor is provided on the substrate. The first electrode includes carbon nanotubes and is electrically connected to the thin film transistor to display black color by reflecting external light.
Abstract:
An electrophoretic display includes a thin film transistor formed on an insulation substrate, a pixel electrode electrically connected to the thin film transistor, a partitioning wall partitioning the pixel electrode, an ink formed on the pixel electrode exposed between sections of the partitioning wall and in which an electrophoretic member is dispersed, and a common electrode panel formed on the ink and the partitioning wall and having a common electrode.
Abstract:
A method of manufacturing a thin film transistor array panel 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; depositing an organic semiconductor layer on the data line, the drain electrode and exposed portions of the gate insulating layer; depositing a protection layer on the organic semiconductor layer; forming a photoresist on the protection layer, the photoresist having positive photosensitivity; etching the protection layer and the organic semiconductor layer using the photoresist as an etch mask; forming a passivation layer on the protection layer, the data line, and the drain electrode, the passivation layer having a contact hole exposing a portion of the drain electrode; and forming a pixel electrode on the passivation layer, the pixel electrode electrically connected to the drain electrode via the contact hole.
Abstract:
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.
Abstract:
A liquid crystal display according to exemplary embodiments of the present invention includes a first panel including a first lower substrate, a first lower electrode formed on the first lower substrate, a first upper substrate facing the first lower substrate, a first upper electrode formed on the first upper substrate, and a first cholesteric liquid crystal injected between the first lower electrode and the first upper electrode, wherein the first lower electrode includes carbon nanotubes. The liquid crystal display including the first lower electrode made of the carbon nanotubes without a light absorption layer provides a simple structure capable of realizing a black state.
Abstract:
An electrophoretic display (EPD) device and a method of manufacturing the EPD are disclosed. An EPD device includes a first substrate, a second substrate, and an electrophoretic layer. The first substrate includes a plurality of pixel areas, and each pixel area includes a first electrode. The second substrate faces the first substrate and includes a second electrode to form an electric field with the first electrode and a color filter corresponding to the first electrode. The electrophoretic layer is disposed between the first substrate and the second substrate and is controlled by an electric field formed by the first electrode and the second electrode to display an image. An end portion of the color filter extends beyond an end portion of the first electrode.
Abstract:
A display apparatus according to an embodiment includes a first substrate including a plastic material, a second substrate facing the first substrate, and a coating layer formed on at least one surface of the first substrate. The coating layer includes a first compound having an acryl-based monomer and a second compound having a silicon derivative, and prevents reflection of light from the first substrate when light is provided to the first substrate. Thus, the display apparatus may have enhanced lightness (brightness) thereby improving the display quality.
Abstract:
A touch screen display device includes a common electrode, a base substrate disposed opposite to the common electrode, a display signal line formed on the base substrate, a plurality of pixel electrodes, a touch position sensing part formed between the base substrate and the pixel electrodes, the touch position sensing part sensing a change of electrostatic capacitance formed between the common electrode and the touch position sensing part, and a display layer disposed between the common electrode and the pixel electrodes. The display layer includes a plurality of micro capsules comprising positively charged pigment particles and negatively charged pigment particles.
Abstract:
Disclosed are an apparatus having a planarized substrate and a method of manufacturing the same. A coating layer is formed on a concave-convex substrate used for the apparatus and cured, thereby planarizing the concave-convex substrate.