Abstract:
A light emitting display device includes a driving transistor including a control electrode, a floating electrode, a first electrode connected to a driving voltage line; and a second electrode; a second transistor including a gate electrode, a third electrode connected to a data line, and a fourth electrode connected to the control electrode; a storage capacitor including a first storage electrode and a second storage electrode connected to the control electrode; and a light emitting diode (LED) connected to the second electrode of the driving transistor, where the first storage electrode is connected to a storage voltage line electrically separate from the driving voltage line.
Abstract:
A transistor display panel includes a substrate, a gate line disposed on the substrate, a data line disposed on the substrate, and a transistor disposed on the substrate. The transistor includes a first electrode, a second electrode overlapping the first electrode, a semiconductor layer disposed between the first electrode and the second electrode, and a gate electrode. The semiconductor layer is disposed in an overlapping region where the gate line and the data line overlap each other.
Abstract:
A stereoscopic image display panel includes a display panel including a unit pixel that includes pixels, where each of the pixels emits light based on a data signal, and a lens array including a lens that is located on the display panel in accordance with a location of the unit pixel. Each of the pixels includes a light-emitting element that is located near a center of an area of the unit pixel and a pixel driving circuit that drives the light-emitting element.
Abstract:
A method of forming a fine electrode, including: forming a base part on a substrate; disposing a transparent electrode solution at a boundary portion between a circumferential surface of the base part and an upper surface of the substrate; forming a transparent electrode by partially removing the transparent electrode solution; and removing the base part from the substrate.
Abstract:
Disclosed is a display substrate including a driving unit on a substrate comprising a first thin film transistor and a display unit on the substrate being adjacent to the driving unit and comprising a second thin film transistor.
Abstract:
A display device including: a first insulation substrate and a second insulation substrate facing each other; a first field generating electrode and a second field generating electrode disposed on the first insulation substrate, wherein the first and second field generating electrodes overlap each other via an insulating layer; a first signal line and a second signal line disposed on the first insulation substrate and connected to the first field generating electrode; a slit pattern disposed in the first field generating electrode or the second field generating electrode; and a spacer disposed between the first insulation substrate and the second insulation substrate, wherein the spacer overlaps a portion of the slit pattern.
Abstract:
This disclosure relates to a display device including a lens array unit. An exemplary embodiment of the present inventive concept provides a display device including: a display unit including a plurality of pixels; and a lens array unit including a plurality of lenses, wherein a first lens of the plurality of lenses corresponds to and overlaps two or more of the plurality of pixels, the two or more pixels include a first pixel and a second pixel, the first pixel is closer to an optical axis of the first lens than the second pixel is in a plan view, and a shortest distance between the first pixel and a reference surface that is perpendicular to the optical axis of the first lens is greater than a shortest distance between the reference surface and the second pixel.
Abstract:
A transistor array panel according to an exemplary embodiment includes a substrate, and a first transistor and a second transistor positioned on the substrate. Each of the first transistor and the second transistor includes: a first electrode; a second electrode overlapping the first electrode; a spacing member positioned between the first electrode and the second electrode; a semiconductor layer extending along a side wall of the spacing member; and a gate electrode overlapping the semiconductor layer. A thickness of the spacing member of the first transistor is larger than a thickness of the spacing member of the second transistor.
Abstract:
A liquid crystal display includes a first substrate, a gate line and a data line disposed on the first substrate, a first insulating layer disposed on the gate line and the data line, a first electrode disposed on the first insulating layer and having a flat form in a planar shape, a second insulating layer disposed on the first electrode, and a second electrode disposed on the second insulating layer and including a plurality of branch electrodes, where a width of a branch electrode of the plurality of branch electrodes is equal to or less than about 2 micrometers.