Abstract:
A touch organic light emitting diode (OLED) display device, including: a thin film transistor formed on one side of a substrate, a touch signal feedback layer formed on the thin film transistor, a luminous substrate provided on the touch signal feedback layer, and a touch signal receiving layer formed on the other side of the substrate. An anode layer of the luminous substrate is connected to a drain electrode of the thin film transistor. As to the touch-sensitive OLED display device, a touch screen and an OLED display portion are prepared integratedly, so that the weight and thickness of the display itself are greatly reduced, and the production cost is saved. A manufacturing method of the touch-sensitive OLED display device is further disclosed.
Abstract:
The present application discloses an array substrate comprising an active layer; and a plurality of touch electrodes in a same layer as the active layer.
Abstract:
An array substrate, a method for manufacturing an array substrate, and a display panel are provided. The array substrate includes: a base substrate; a thin film transistor on the base substrate; and a PIN diode on a side of the thin film transistor away from the base substrate, in a direction running away the base substrate from the thin film transistor, the PIN diode including a first electrical conduction type semiconductor layer and an intrinsic semiconductor layer and a second electrical conduction type semiconductor layer stacked in sequence, wherein a material from which the first electrical conduction type semiconductor layer is made includes one or more of following materials: metal oxide, metal sulfide, metal selenide, metal nitride, metal phosphide, or metal arsenide.
Abstract:
Provided are an array substrate and preparation method therefor, and a display apparatus. The array substrate includes: a substrate, the substrate having a first TFT region, a touch control region and a second TFT region; a photosensitive PN junction, the photosensitive PN junction being provided in the touch control region; a first thin-film transistor, provided in the first TFT region, and electrically connected to the photosensitive PN junction; and a second thin-film transistor, provided in the second TFT region, and electrically connected to a pixel electrode.
Abstract:
The present disclosure relates to the field of display, in particular to a thin film transistor, a method for preparing the same, and a display device. The thin film transistor of the present disclosure includes a gate electrode, a gate insulating layer, a semiconductor layer, a source electrode, a drain electrode, and a photoelectric conversion layer in contact with the gate electrode. The photoelectric conversion layer is configured to generate an induced potential in a light environment.
Abstract:
The present application discloses an array substrate comprising an active layer; and a plurality of touch electrodes in a same layer as the active layer.
Abstract:
Embodiments of the disclosure disclose a display substrate, a display device comprising the display substrate and a method for manufacturing the display substrate. The display substrate comprising a base substrate (1), a black matrix (2) and a color filter (3) formed on the base substrate (1), the color filter (3) and the black matrix (2) are arranged alternately with a height difference existing between the black matrix (2) and the color filter (3). The display substrate further comprises a planarizing layer (40) formed on the black matrix (2) or on both the black matrix (2)and the color filter (3). The planarizing layer (40) is configured to minimize the height difference between the black matrix (2) and the color filter (3). Thus, the height difference between the black matrix (2) and the color filter (3) can be minimized, and surface smoothness of the color filter (3) is improved effectively. Therefore, image displaying quality is improved.