Abstract:
Discussed are a glass patterned retarder stereoscopic 3D display device and a method for fabricating the same. The device is capable of enhancing a viewing angle in upper and lower directions and an aperture ratio by forming light shielding patterns on a rear surface of a color filter substrate. Further, the device is capable of preventing scratches occurring on the light shielding patterns due to a polishing belt, by forming high hardness polymer on the light shielding patterns and removing stair-steps of a rear indium tin oxide (ITO).
Abstract:
A display device can include a substrate including a first non-active area, an active area surrounding the first non-active area, and a second non-active area surrounding the active area, a light emitting diode disposed in the active area of the substrate, and an encapsulation layer disposed on the light emitting diode, in which the encapsulation layer includes a first inorganic encapsulation layer, an organic encapsulation layer disposed on the first inorganic encapsulation layer, and a second inorganic encapsulation layer disposed on the organic encapsulation layer. Also, a hole extends through the substrate in the first non-active area, and the organic encapsulation layer is disconnected or terminates in an area located between the active area and the hole.
Abstract:
In accordance with an embodiment of the present disclosure, a display apparatus includes a substrate including a display area where an image is displayed. The display apparatus includes a first thin film transistor disposed on the substrate. The first thin film transistor includes a first semiconductor layer. The display apparatus includes a signal line disposed on the substrate. The display area includes a first area which includes a first transmission area and a second area outside the first area. The signal line includes a first signal line which is disposed in the first area and a second signal line which is disposed in the second area. A part of the first signal line is disposed at the same layer as the first semiconductor layer, and the first signal line includes an oxide semiconductor material.
Abstract:
A display device is provided. The display device according to an exemplary embodiment of the present specification includes a substrate including a non-display area and a display area which includes an optical area including a light-emitting area and a transmissive area, and a general area configured to surround the optical area, a planarization layer disposed on the substrate in the display area, a plurality of light-emitting elements disposed on the planarization layer and including an anode, a light-emitting layer, and a cathode, a bank disposed on the planarization layer and configured to cover an end of the anode, and a deposition-suppressing layer disposed on the light-emitting layer in the transmissive area among the light-emitting area and the transmissive area of the optical area, in which the bank is disposed in the light-emitting area among the light-emitting area and the transmissive area of the optical area.