Abstract:
An organic light-emitting display device includes a substrate, a first buffer layer and a second buffer layer on the substrate, a thin film transistor on the second buffer layer, an organic light-emitting diode electrically connected with the thin film transistor, and a photo sensor with an intrinsic region on the second buffer layer, wherein the photo sensor is capable of absorbing red light from the organic light-emitting diode and of exhibiting quantum efficiency of from about 50% to about 90%.
Abstract:
An organic light emitting display and a method of correcting images thereof prevents the occurrence of excessive pixel aging, burning and image sticking caused by loading effect and includes: a loading effect measuring unit to measure a luminance according to a level at which an image signal having an equal gray scale value is loaded into a display panel of the organic light emitting display; an average loading level calculating unit to calculate a loading level at which the luminance averages; a loading effect compensating unit to compensate the power supply voltage corresponding to the image signal to obtain a luminance equal to the luminance at the average loading level; and a power supply control unit to control the power supply voltage to supply the compensated power supply voltage to the display panel of the organic light emitting display.
Abstract:
An organic light-emitting display device, includes a substrate, a thin film transistor on the substrate, a passivation layer on the thin film transistor, an organic light-emitting diode on the passivation layer and electrically connected to the thin film transistor, a photo sensor between the substrate and the organic light-emitting diode, and a light blocking layer on the passivation layer.
Abstract:
A photo-oxidation device of a water treatment system photo-oxidizes organic material, in particular, aromatic organic material, in the water to facilitate its removal from the water. The photo-oxidation device includes a UV lamp, a flow channel in which the UV lamp is disposed, and a catalyst of an oxidation reaction between an organic material and the UV radiation emitted by the UV lamp. The UV radiation emitted from the UV lamp illuminates the flow channel while the water passes through the flow channel. The catalyst, on the other hand, is fixed to an inner wall of the flow channel to foster the oxidation of the organic material by the UV radiation. The water treatment system in which the photo-oxidation device is incorporated, includes a pre-treatment unit having particle filters, a first treatment section, and a second treatment section. The first treatment section has a reverse osmosis unit in which salts are removed from the water, a gas treatment unit in which gases are removed form the water, a first one of the photo-oxidation devices, and an ion-exchange unit in which ions are removed from the water. The second treatment section has a second photo-oxidation device, a second ion-exchange unit, and a particle-removing filter.
Abstract:
An organic light emitting display device includes a substrate, a thin film transistor having a gate insulating layer and an inter-insulating layer, an organic light emitting diode electrically connected with the thin film transistor, and a photo sensor, wherein the gate insulating layer includes a relief structure positioned above the photo sensor.
Abstract:
An organic light emitting display device includes a substrate, a thin film transistor having a gate insulating layer and an inter-insulating layer, an organic light emitting diode electrically connected with the thin film transistor, and a photo sensor, wherein the gate insulating layer includes a relief structure positioned above the photo sensor.
Abstract:
An organic light-emitting display includes a substrate, a thin film transistor on the substrate, an organic light-emitting diode electrically connected to the thin film transistor, and a photo sensor having a plurality of photo diodes connected to one another in parallel.
Abstract:
An organic light-emitting display device includes a substrate, a first buffer layer and a second buffer layer on the substrate, a thin film transistor on the second buffer layer, an organic light-emitting diode electrically connected with the thin film transistor, and a photo sensor with an intrinsic region on the second buffer layer, wherein the photo sensor is capable of absorbing red light from the organic light-emitting diode and of exhibiting quantum efficiency of from about 50% to about 90%.