Abstract:
Disclosed are an organic light emitting diode display and a manufacturing method thereof, and more particularly, an organic light emitting diode display and a manufacturing method thereof, that improve light extraction efficiency by forming a light controlling layer formed in a multilayer having different refractive indexes so that light is not absorbed in a pixel defining layer but reflected to the front side due to a refractive index difference.
Abstract:
An electronic device includes a processor configured to control an operation of the electronic device, a memory device coupled to the processor, where the memory device is configured to operate as a main memory of the electronic device, and a display device coupled to the processor, where the display device is configured to display an original image based on first image data for the original image at a first frame, and to display a bioeffect image based on second image data for the bioeffect image at a second frame.
Abstract:
An organic light emitting diode (OLED) display includes a substrate, a light path guide layer formed on the substrate and having an inclined side wall, an organic light emitting diode (OLED) formed on the substrate and the light path guide layer, and a phase transition layer formed on the OLED and formed so as to correspond to the inclined side wall. Therefore, in the OLED display, the phase transition layer is formed in the light path guide layer so that it is possible to minimize external light reflectance increased by the light path guide layer.
Abstract:
A method of driving a head mounted display is provided. The method derives a position adjustment data by displaying a binocular position adjustment image on a left-eye panel region and a right-eye panel region, derives a size adjustment data by displaying a binocular size adjustment image on the left-eye panel region and the right-eye panel region, generates a luminance adjustment data based on a difference between a left-eye and a right-eye luminance perception data, converts an image source into an input image data based on the position adjustment data, the size adjustment data, and the luminance adjustment data, and displays an image corresponding to the input image data.
Abstract:
A method of driving a display device, including: counting the number of times of input of a user event; calculating an event input rate defined as the number of times of input of the user event per unit time; and displaying a subliminal image when the event input rate is equal to or greater than a first reference value.