Abstract:
A backlight module and a display panel. The backlight module comprises a light guide plate, a heat dissipation plate and a light source. The display panel comprises a liquid crystal screen and a circuit board connected with the liquid crystal screen, the liquid crystal screen and the circuit board are arranged parallel to an arrangement direction of the heat dissipation plate main body and are respectively arranged at two sides of the heat dissipation plate. By means of the display device, the heat conducted to the back plate in the region of the heat dissipating plate corresponding to the circuit board can be reduced, and the temperature of the region where the circuit board locates can be reduced, thereby preventing aging of the electronic component and prolonging the lifetime of the circuit board.
Abstract:
An OLED array substrate and a manufacturing method thereof, and a display device provided with the OLED array substrate are disclosed. The OLED array substrate includes a plurality of thin film transistors (2) disposed on a base substrate (1), each thin film transistor (2) being provided with a black matrix (6) thereon, and the black matrix (6) being provided with a via (60); over the black matrix (6) being disposed from bottom to top a first electrode (41), a luminescent layer (43) and a second electrode (42). The first electrode (41) is connected with the thin film transistor (2) through the via (60), and the first electrode (41) disposed over adjacent thin film transistors (2) are separated from each other by a barrier (44). The black matrix can block light emitted by the OLED to prevent TFTs from being illuminated, thereby ensuring the display effect of an active matrix type OLED display device.
Abstract:
Embodiments of this disclosure provide a transparent display panel and a manufacturing method thereof, and a display device. The transparent display panel comprises a plurality of light-emitting regions and a plurality of transparent regions. The transparent display panel further comprises at least one light-guiding component disposed on a light-emitting side of the transparent display panel, wherein the at least one light-guiding component is configured to transmit a part of light emitted from the light-emitting regions to the transparent regions. In the transparent display panel, a light-guiding component is used to transmit the light emitted by the light-emitting subpixels in the light-emitting regions to the transparent regions, and a plurality of light-redirecting members formed on a surface of the light-guiding component are used to change the direction of light transmitted to the transparent regions and to emit the light from the light-emitting side of the transparent regions. As a result, display uniformity of the whole transparent display panel is improved, and a better display performance can be achieved.
Abstract:
An encapsulation structure for OLED device comprises a glass substrate, a glass cover plate, an OLED device and a sealing layer. The glass substrate has a recessed portion, the glass cover plate is located at an opening of the recessed portion, and a periphery of the glass cover plate and the glass substrate are bonded through a frit barricade formed by melted glass powders, so that the glass cover plate and the glass substrate have an integral structure, a closed cavity is formed by the glass cover plate and the recessed portion, and both the OLED device and the sealing layer are located within the closed cavity. With the above encapsulation structure, water vapor and oxygen gas can be prevented from entering the OLED device, and service life of the OLED device is prolonged. There is further disclosed an encapsulating method.
Abstract:
A flexible organic light emitting diode display device, comprising: a first flexible substrate and a second flexible substrate opposite to the first flexible substrate wherein on the first flexible substrate, there are formed in sequence a thin film transistor, a first passivation layer, a first electrode, an organic electroluminescence layer, a second electrode, a stress absorption layer is disposed between the second electrode and the second flexible substrate, and material for the stress absorption layer is a resin material. The stress absorption layer of the flexible organic light emitting diode display device can absorb a stress occurring as it is bent, so as to prevent electrodes from being broken due to the action of the stress and affecting the display quality. There is further disclosed a manufacturing method of the flexible organic light emitting diode display device.
Abstract:
An OLED array substrate and a manufacturing method thereof, and a display device provided with the OLED array substrate are disclosed. The OLED array substrate includes a plurality of thin film transistors (2) disposed on a base substrate (1), each thin film transistor (2) being provided with a black matrix (6) thereon, and the black matrix (6) being provided with a via (60); over the black matrix (6) being disposed from bottom to top a first electrode (41), a luminescent layer (43) and a second electrode (42). The first electrode (41) is connected with the thin film transistor (2) through the via (60), and the first electrode (41) disposed over adjacent thin film transistors (2) are separated from each other by a barrier (44). The black matrix can block light emitted by the OLED to prevent TFTs from being illuminated, thereby ensuring the display effect of an active matrix type OLED display device.
Abstract:
A flexible organic light emitting diode display device, comprising: a first flexible substrate and a second flexible substrate opposite to the first flexible substrate wherein on the first flexible substrate, there are formed in sequence a thin film transistor, a first passivation layer, a first electrode, an organic electroluminescence layer, a second electrode, a stress absorption layer is disposed between the second electrode and the second flexible substrate, and material for the stress absorption layer is a resin material. The stress absorption layer of the flexible organic light emitting diode display device can absorb a stress occurring as it is bent, so as to prevent electrodes from being broken due to the action of the stress and affecting the display quality. There is further disclosed a manufacturing method of the flexible organic light emitting diode display device.