Patent classifications
G02F1/1303
Adhesion defect detection apparatus and adhesion defect detection method using the same
An adhesion defect detection apparatus includes an inspection window having a first dummy area, a second dummy area, and an inspection area disposed between the first dummy area and the second dummy area. A first shape changer is disposed on the inspection window. The first shape changer is configured to change a shape of the inspection window in a first direction. A second shape changer is disposed outside of both the first dummy area and the second dummy area. The second shape changer is configured to change a shape of the inspection window in a second direction that is perpendicular to the first direction.
CURVED DISPLAY DEVICE MANUFACTURING METHOD
The present invention provides a curved display device manufacturing method comprising the steps of: coupling a flat display, a transparent adhesive layer, and flat cover glass, thereby manufacturing a flat display assembly; applying an adhesive to the edge of the flat display assembly; seating the flat display assembly on a curved jig; adsorbing the flat display assembly onto the surface of the curved jig by using vacuum holes formed in the curved jig such that the flat display assembly is bent; and coupling a backlight unit to the adhesive-applied area. The step of coupling a backlight unit to the adhesive-applied area comprises a step of curing the adhesive in a state in which the backlight unit is forced against the display assembly such that the display assembly remains bent.
Method for manufacturing laminated glass, laminated glass and light control film
A method for manufacturing a laminated glass whereby, in a laminated glass comprising a liquid crystal film sandwiched therein and having a three-dimensionally curved surface shape, the formation of wrinkles in the liquid crystal film can be suppressed; and a laminated glass which has a three-dimensionally curved surface shape and in which wrinkles in a liquid crystal film sandwiched therein are suppressed. The method for manufacturing the laminated glass comprises: a heat molding step for heating the liquid crystal film to a temperature higher than the glass transition point of the first base material layer and the second base material layer; and a bonding step for, after completing the heat molding step, heating the laminate, wherein the liquid crystal film is sandwiched between the first glass sheet and the second glass sheet, at a temperature lower than the glass transition point and bonding the same by applying a preset pressure.
Display device
A display device with favorable display quality is provided. A display portion where a plurality of pixels is arranged in a matrix is divided into Region A and Region B, i.e., regions on the upstream side and the downstream side of a scanning direction. A signal line for supplying an image signal is provided in each of Region A and Region B. Region A and Region B adjoin each other such that a boundary line showing the boundary between the regions is bent. Bending the boundary line suppresses formation of a stripe in a boundary portion. For example, in a given column, the total number of pixels electrically connected to a signal line in Region A is made different from the total number of pixels electrically connected to a signal line in Region B.
DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME
A display device may include a display panel including an active area displaying an image and a peripheral area surrounding the active area, pad parts disposed on a side surface of the display panel, a light blocking layer disposed on a portion of the peripheral area adjacent to the side surface of the display panel, and circuit units electrically connected to the pad parts.
METHOD FOR PRODUCING A POLARIZER FILM ASSEMBLY WITH A CONTINUOUS FILM LAYER
A method for manufacturing a polarizer film assembly for a display assembly in an information handling system comprises forming a mask on a base film substrate and creating a set of optical targets on the base film substrate prior to applying the dye to the base film substrate. The dye adheres to unmasked areas to form a polarizer film, but the mask prevents the dye from adhering to masked areas, forming a set of non-polarized areas. The set of optical targets may include fiducials for aligning a cutter to the base film substrate for cutting the borders of the base layer substrate such that the polarizer film assembly forms a continuous surface with non-polarized areas positioned relative to a camera or other optical sensor.
Photosensitive siloxane composition and cured film formed by using the same
To provide a photosensitive composition capable of easily forming a cured film having a low refractive index. The present invention provides a photosensitive siloxane composition comprising: a polysiloxane, a photosensitive agent, hollow silica particles, and a solvent. The hollow silica particles contain voids inside, and have outer surfaces subjected to hydrophobic treatment.
MURA REDUCTION METHOD
A system, methods, and a non-transitory computer-readable medium for digital lithography to reduce mura in substrate sections. The boundary lines of the digital lithography need to be invisible. In one example, a system includes a processing unit configured to print a virtual mask file provided by a controller. The controller is configured to receive data and convert the data into a virtual mask file having an exposure pattern for a lithographic process. The exposure pattern includes a plurality of first sections, and second sections. Each first section forms a boundary with each second section along a first column of image projection systems of the processing unit. The controller patterns the substrate. The exposure pattern includes a first section pattern of each first section that crosses the eye to eye boundary with the second section making the boundary invisible.
LCD frame assembly
Systems, devices, and methods are provided for rear assembly of a display with a frame assembly having a frame joined to a liquid crystal layer (e.g., cell), initially forming a front of the display. The frame may be substantially continuous with the cell and formed without an adhesive layer, reducing a thickness of the display. The frame may be injection molded about the cell with a thermoplastic or thermoset material. Molding the frame about the cell may enable the frame to uniformly support the cell and/or support the cell with less material or structure. Various layers may be added to the frame assembly from a rear of the display. Rear assembly may further reduce the thickness of the display by removing one or more adhesive layers.
METHOD OF PRODUCING COMPONENT BOARD
A method of producing a CF board and an array board includes: a separation film forming process for forming resin substrates on the separation films; a thin film component forming process for forming TFTs and color filters that axe thin film components on the resin removals of fee resin substrates; a determining process for determining whether levels of adhesion between the separation films and the resin substrates are high or low based on image data obtained through capturing of images of the separation films, and a removing process for removing the resin substrates from the supporting substrates if the levels of adhesion are determined low in the determining process.