Abstract:
In a mask for hardening a sealant and a method of manufacturing a flat display device using the mask, the mask includes a main body in which a transmission slit is formed, and a partial shielding portion partially shielding the transmission slit. The transmission slit corresponds to the shape of the sealant enclosing a light-emitting portion formed on a substrate. By using such a mask, the partial shielding portion covers a portion where the amount of laser irradiation is relatively large, thus hardening the sealant uniformly across the entire regions of the sealant, and thus guaranteeing a stable encapsulating structure.
Abstract:
In a flat panel display panel and a method of manufacturing the same, the flat panel display panel may be constructed with a first substrate on which a plurality of pixels are formed; a second substrate disposed so as to face a surface of the first substrate on which the plurality of pixels are formed; a first sealing member disposed between the first and second substrates for sealing them; a first bank formed on the first substrate; a second bank formed on the second substrate and disposed facing the first bank; and a second sealing member disposed between the first and second banks.
Abstract:
An organic light emitting diode display includes a display substrate including organic light emitting diodes and a pixel defining layer having openings for defining respective light emitting regions of the organic light emitting diodes, an encapsulation substrate disposed to face the display substrate, a sealant disposed along the edge of the encapsulation substrate and bonding and sealing the display substrate and the encapsulation substrate together, and a filling material for filling the space between the display substrate and the encapsulation substrate. The pixel defining layer is divided into a plurality of deposit regions having a relatively small height and that are uniformly distributed, and a diffusion region surrounding the plurality of deposit regions and having a larger height than that of the plurality of deposit regions.
Abstract:
A display apparatus comprises a first substrate, a second substrate separated from the first substrate and facing the first substrate, and a first sealing portion interposed between the first substrate and the second substrate, wherein the first substrate comprises a first region overlapped by the second substrate and a second region not overlapped by the second substrate, and the first sealing portion is situated on a boundary between the first region and the second region and comprises one or more injection holes.
Abstract:
A method and apparatus of generating a data block for a plurality of uplink frequencies is provided. The apparatus determines a size of a data field of the data block so that each data block matches a minimum of a first amount of data and second amount of data. The first amount of data is allowed to be transmitted by a first grant on a first uplink frequency and the second amount of data is allowed to be transmitted by a second grant on a second uplink frequency. The apparatus generates at least one data block so that the amount of data in the generated data blocks is less than multiple times the minimum of the first amount of data and the second amount of data.
Abstract:
In a mask for hardening a sealant and a method of manufacturing a flat display device using the mask, the mask includes a main body in which a transmission slit is formed, and a partial shielding portion partially shielding the transmission slit. The transmission slit corresponds to the shape of the sealant enclosing a light-emitting portion formed on a substrate. By using such a mask, the partial shielding portion covers a portion where the amount of laser irradiation is relatively large, thus hardening the sealant uniformly across the entire regions of the sealant, and thus guaranteeing a stable encapsulating structure.
Abstract:
An organic light emitting diode display includes a display substrate including organic light emitting diodes and a pixel defining layer having openings for defining respective light emitting regions of the organic light emitting diodes, an encapsulation substrate disposed to face the display substrate, a sealant disposed along the edge of the encapsulation substrate and bonding and sealing the display substrate and the encapsulation substrate together, and a filling material for filling the space between the display substrate and the encapsulation substrate. The pixel defining layer is divided into a plurality of deposit regions having a relatively small height and that are uniformly distributed, and a diffusion region surrounding the plurality of deposit regions and having a larger height than that of the plurality of deposit regions.
Abstract:
An organic light emitting diode (OLED) display includes a display substrate including an organic light emitting element, an encapsulation substrate arranged opposite to the display substrate and covering the organic light emitting element, a sealant disposed on the edge of the display substrate and the encapsulation substrate, and sealing the display substrate and the encapsulation substrate to each other; and a filler filling the space between the display substrate and the encapsulation substrate. One surface of at least one of the display substrate and the encapsulation substrate is contacted with the filler and is divided into a hydrophobic region and a hydrophilic region, and the hydrophobic region is positioned between the hydrophilic region and the sealant.
Abstract:
Disclosed is an anisotropic-electroconductive adhesive, which includes an insulating adhesive component containing a radical polymerizable compound and a polymerization initiator; and a plurality of insulating coated electroconductive particles dispersed in the insulating adhesive component, the insulating coated electroconductive particle having a coating layer made of insulating thermoplastic resin on a surface of an electroconductive particle, wherein a softening point of the insulating thermoplastic resin is lower than an exothermic peak temperature of the insulating adhesive component. The anisotropic-electroconductive adhesive enables rapid curing of the insulating adhesive component at a low temperature and is very useful for making a circuit connection structure since it may prevent a short of circuit without connection failure even when the electroconductive particles are condensed.
Abstract:
A display apparatus comprises a first substrate, a second substrate separated from the first substrate and facing the first substrate, and a first sealing portion interposed between the first substrate and the second substrate, wherein the first substrate comprises a first region overlapped by the second substrate and a second region not overlapped by the second substrate, and the first sealing portion is situated on a boundary between the first region and the second region and comprises one or more injection holes.