摘要:
Provided is a flexible organic light emitting display device (100) including a pixel area (A/A) and a bezel area (B/A). The flexible organic light emitting display device (100) includes: a first inorganic encapsulation layer (131) conformally configured on an organic light emitting element (140) of the pixel area (A/A) so as to protect the organic light emitting element (140) from oxygen and moisture; a second inorganic encapsulation layer (132) configured to be relatively flatter than the first inorganic encapsulation layer (131), protect the organic light emitting element (140) from oxygen and moisture, and encapsulate a plurality of foreign matter compensation layers (137, 133) by contacting the first inorganic encapsulation layer (131) in the bezel area (B/A); and a foreign matter compensation layer structure in which the plurality of foreign matter compensation layers (137, 133) is stacked between the first inorganic encapsulation layer (131) and the second inorganic encapsulation layer (132).
摘要:
Provided is a flexible organic light emitting display device (100) including a pixel area (A/A) and a bezel area (B/A). The flexible organic light emitting display device (100) includes: a first inorganic encapsulation layer (131) conformally configured on an organic light emitting element (140) of the pixel area (A/A) so as to protect the organic light emitting element (140) from oxygen and moisture; a second inorganic encapsulation layer (132) configured to be relatively flatter than the first inorganic encapsulation layer (131), protect the organic light emitting element (140) from oxygen and moisture, and encapsulate a plurality of foreign matter compensation layers (137, 133) by contacting the first inorganic encapsulation layer (131) in the bezel area (B/A); and a foreign matter compensation layer structure in which the plurality of foreign matter compensation layers (137, 133) is stacked between the first inorganic encapsulation layer (131) and the second inorganic encapsulation layer (132).
摘要:
A display device is disclosed. The display device includes a first substrate (111) including a display area (DA) on which pixels are arranged, and a non-display area (NDA) surrounding the display area (DA). A dam (DAM) surrounds the display area (DA), the dam (DAM) arranged on the non-display area (NDA). An organic light emitting diode (250) is provided in the display area (DA), an encapsulation film (300) is formed on the organic light emitting diode (250), a buffer layer (410) formed on the encapsulation film (300), and an insulating film (420) formed on the buffer layer (410). A pad area (PA) is arranged outside the dam (DAM). The buffer layer (410) and the insulating film (420) extend from the display area (DA) to the pad area (PA). A link line (216) is provided between the dam (DAM) and the first substrate (111). A routing line (TL) is provided on the insulating layer (420) between the display area (DA) and the pad area (PA).
摘要:
A display device is disclosed. The display device includes a first substrate (111) including a display area (DA) on which pixels are arranged, and a non-display area (NDA) surrounding the display area (DA). A dam (DAM) surrounds the display area (DA), the dam (DAM) arranged on the non-display area (NDA). An organic light emitting diode (250) is provided in the display area (DA), an encapsulation film (300) is formed on the organic light emitting diode (250), a buffer layer (410) formed on the encapsulation film (300), and an insulating film (420) formed on the buffer layer (410). A pad area (PA) is arranged outside the dam (DAM). The buffer layer (410) and the insulating film (420) extend from the display area (DA) to the pad area (PA). A link line (216) is provided between the dam (DAM) and the first substrate (111). A routing line (TL) is provided on the insulating layer (420) between the display area (DA) and the pad area (PA).
摘要:
A display device is disclosed. The display device includes a first substrate (111) including a display area (DA) on which pixels are arranged, and a non-display area (NDA) surrounding the display area (DA). A dam (DAM) surrounds the display area (DA), the dam (DAM) arranged on the non-display area (NDA). An organic light emitting diode (250) is provided in the display area (DA), an encapsulation film (300) is formed on the organic light emitting diode (250), a buffer layer (410) formed on the encapsulation film (300), and an insulating film (420) formed on the buffer layer (410). A pad area (PA) is arranged outside the dam (DAM). The buffer layer (410) and the insulating film (420) extend from the display area (DA) to the pad area (PA). A link line (216) is provided between the dam (DAM) and the first substrate (111). A routing line (TL) is provided on the insulating layer (420) between the display area (DA) and the pad area (PA).
摘要:
An organic light emitting display device (100, 200) according to an exemplary embodiment of the present disclosure including an foreign matter compensation layer (150) on inorganic layer. Since the passivation layer (120, 220) and the second inorganic layer (160, 260) are in direct contact with each other at the edge of the substrate (101), the number of interfaces between the inorganic layers is decreased. Thus, even if the organic light emitting display device (100, 200) is bent, a moisture permeation path which may be unexpectedly formed can be minimized.
摘要:
Provided is a flexible organic light emitting display device (100) including a pixel area (A/A) and a bezel area (B/A). The flexible organic light emitting display device (100) includes: a first inorganic encapsulation layer (131) conformally configured on an organic light emitting element (140) of the pixel area (A/A) so as to protect the organic light emitting element (140) from oxygen and moisture; a second inorganic encapsulation layer (132) configured to be relatively flatter than the first inorganic encapsulation layer (131), protect the organic light emitting element (140) from oxygen and moisture, and encapsulate a plurality of foreign matter compensation layers (137, 133) by contacting the first inorganic encapsulation layer (131) in the bezel area (B/A); and a foreign matter compensation layer structure in which the plurality of foreign matter compensation layers (137, 133) is stacked between the first inorganic encapsulation layer (131) and the second inorganic encapsulation layer (132).