Abstract:
An electroluminescent display device includes a main substrate, an encapsulation substrate, a plurality of display units, a sealant, and at least an atomic layer deposition barrier. The main substrate has a first inner surface and a first outer surface. The encapsulation substrate is disposed oppositely to the main substrate. The encapsulation substrate has a second inner surface and a second outer surface. The display units are disposed on the first inner surface. The sealant is disposed between the main substrate and the encapsulation substrate, and the sealant covers the display units. The atomic layer deposition barrier covers at least one of the second inner surface and the second outer surface.
Abstract:
The present invention provides a touch panel. The touch panel includes a substrate, a touch sensing device, and an optical matching layer. The touch sensing device is disposed on one side of the substrate, and includes an electrode pattern. The electrode pattern includes silver or silver alloy. At least one side of the substrate has the optical matching layer disposed thereon.
Abstract:
An organic electroluminescent display device includes an organic light emitting structure, a back light module, and a light control structure. The organic light emitting structure includes a first electrode, a second electrode, an organic light emitting layer, and a photo current sensitive layer. The back light module is disposed correspondingly to the organic light emitting structure so as to provide a light beam to the organic light emitting structure. The photo current sensitive layer is configured to absorb the light beam for generating an electrical current, and the electrical current is configured to drive the organic light emitting layer. The light control structure is disposed between the organic light emitting structure and the back light module as so to control amount of the light beam entering the organic light emitting structure.
Abstract:
The present invention provides a shadow mask module and an organic vapor deposition apparatus and a thermal evaporation apparatus using the same. The shadow mask module is disposed between a gas outlet and a substrate, and includes a pixel mask and a thermal resist mask. The pixel mask is disposed between the gas outlet and the substrate, and includes a plurality of first openings. The thermal resist mask is disposed between the gas outlet and the pixel mask, and includes a plurality of second openings. Each second opening is disposed corresponding to at least one of the first openings.
Abstract:
A touch-sensitive display device includes a substrate, an OLED structure and a cover plate. The OLED structure is disposed on the substrate and includes a first electrode layer, a light-emitting layer and a second electrode layer. The first electrode layer is disposed on the substrate, the light-emitting layer is disposed on the first electrode layer, and the second electrode layer is disposed on the light-emitting layer and patterned to form a plurality of touch-sensing electrodes. The cover plate is disposed opposite the substrate and spaced at an interval from the substrate, and the OLED structure is sealed between the substrate and the cover plate.
Abstract:
A strengthened glass article includes a glass block having at least one cut facet, a reinforcement layer, and a sheltering layer. The reinforcement layer is at least disposed on at least a part of the cut facet. The sheltering layer is at least disposed on at least a part of a periphery of the glass block and covers at least a part of the reinforcement layer.
Abstract:
An organic light-emitting display with a solar cell includes a first substrate, a second substrate, a plurality of organic light-emitting units, and at least one solar cell unit. The second substrate is disposed oppositely to the first substrate and has an inside surface facing the first substrate. The organic light-emitting units are arranged as an array on the inside surface of the second substrate. The second substrate has non-emission regions positioned between any two adjacent light-emitting units. The solar cell unit is disposed in one of the non-emission region for receiving the light generated by the solar cell units to produce current.
Abstract:
An organic light-emitting diode package structure includes an organic light-emitting diode device disposed on a substrate, and a filling layer covering the organic light-emitting diode device and including a fluorine-containing polyimide layer.
Abstract:
An organic electroluminescent display device includes an upper substrate, a lower substrate, an organic electroluminescent layer, an upper electrode, a lower electrode and a light filter. The organic electroluminescent layer is disposed between the upper substrate and the lower substrate. The organic electroluminescent layer includes a plurality of first electroluminescent units, a plurality of second electroluminescent units and a plurality of third electroluminescent units. Each first electroluminescent unit is employed to emit light within a first wavelength range, each second electroluminescent unit is employed to emit light within a second wavelength range, and each third electroluminescent unit is employed to emit light within a third wavelength range. The light filter is disposed between the upper substrate and the lower substrate to block the light not within the first wavelength range, the second wavelength range and the third wavelength range.