Abstract:
A flexible substrate, a manufacturing method thereof and a flexible display device are disclosed. The flexible substrate includes a display panel region and a flexible printed circuit board (FPC) region. The display panel region includes a flexible base (21), a gate electrode (22), a gate insulating layer (23), an active layer (24), a source electrode (25), a drain electrode (26), a passivation layer (27) and a pixel electrode (28). The pixel electrode (28) is electrically connected with the drain electrode (26) through an opening in the passivation layer (27). The FPC region includes a lead structure which is formed on the flexible base (21) and made from a material including at least one or a combination of more selected from a material for preparing the gate electrode (22), a material for preparing the source electrode (25) and the drain electrode (26), and a material for preparing the pixel electrode (28).
Abstract:
A light control device for a vehicle, includes a distance detector and at least one controllable polarizer. The distance detector detects the distance between a first vehicle in which the distance detector is located and an interference light source. The at least one controllable polarizer is configured to perform a polarization process on light to weaken the intensity of the light when the distance between the interference light source and the first vehicle is within a predetermined range; otherwise stop the polarization process on the light.
Abstract:
An array substrate and a display device are provided for solving a problem of drift of an I-V curve of a thin film transistor because the oxide active layer is irradiated with light in the prior art. The array substrate includes a plurality of thin film transistors arranged in an array, wherein, each of the thin film transistors includes an oxide active layer, and the array substrate further includes a light absorption layer provided above the oxide active layer, the light absorption layer is used for absorbing light irradiated thereon, and an orthographic projection of the light absorption layer on the oxide active layer at least partly covers an active region of the oxide active layer.
Abstract:
A display screen, a manufacturing method thereof, and a display device are disclosed. The display screen includes a base substrate, a thin film transistor located on the base substrate, the thin film transistor including a metal layer, at least one of a light-absorbing material layer or a scattering structure disposed between the base substrate and the metal layer in a direction perpendicular to the base substrate.