Abstract:
A light exposure system includes a light source device, a shutter device and a control device. The light source device is capable of emitting a light to an assembly liquid crystal cell. The shutter device is located on an optical path of the light. The control device controls the light source device or the shutter device to control the illuminance on the assembly liquid crystal cell. The control device makes the assembly liquid crystal cell have a plurality of first exposure times receiving a first illuminance and a plurality of second exposure times receiving a second illuminance during the light exposure process. The first exposure times and the second exposure times are arranged alternately. The sum of the first exposure times and the second exposure times is substantially equal to the default continuous exposure time.
Abstract:
A liquid crystal display device includes: a first substrate; a second substrate spaced apart from the first substrate; and a plurality of liquid crystal molecules disposed between the first and second substrates. The first substrate includes a transparent substrate, an insulator layer formed on a surface of the transparent substrate and formed with a plurality of grooves, and a pixel electrode formed on a surface of the insulator layer and formed with a plurality of electrode slits.
Abstract:
A display panel is disclosed, which includes: a first substrate; a second substrate opposite to the first substrate; a liquid crystal layer disposed between the first and second substrate; a shielding pattern disposed on the second substrate and defining a first region and a second region, wherein a transmittance of the first region is larger than a transmittance of the second region; a first polymer layer disposed on a side of the first substrate facing to the second substrate; and a second polymer layer disposed on a side of the second substrate facing to the first substrate, wherein a roughness of a first area of the first polymer layer is different from a roughness of a second area of the second polymer layer, the second area overlaps with the first region, and the first area overlaps with a projection of the first region on the first polymer layer.
Abstract:
An exposure system and a manufacturing method of a component of a display panel are disclosed. The exposure system includes a carrying device and a light source device. The carrying device carries the object. The light source device, including a plurality of lamp sets arranged along a first direction, emits light to irradiate the object. The lamp sets include a first lamp set and a second lamp set, which are disposed adjacent to each other. The first lamp set has a first lamp and a second lamp, which are extending along a second direction. The second lamp set has a third lamp and a fourth lamp, which are extending along the second direction. The first and second lamps are connected with a first junction, and the third and fourth lamps are connected with a second junction. The first junction and the second junction are misaligned on the first direction.
Abstract:
A liquid crystal display device includes: a first substrate; a second substrate spaced apart from the first substrate; and a plurality of liquid crystal molecules disposed between the first and second substrates. The first substrate includes a transparent substrate, an insulator layer formed on a surface of the transparent substrate and formed with a plurality of grooves, and a pixel electrode formed on a surface of the insulator layer and formed with a plurality of electrode slits.
Abstract:
A display panel is disclosed, which comprises: a first substrate; a second substrate opposite to the first substrate; a liquid crystal layer disposed between the first substrate and the second substrate; a shielding pattern disposed on the second substrate and comprising a first region and a second region, in which a transmittance of the first region is larger than that of the second region; and a first aggregation layer disposed on a side of the first substrate facing to the second substrate, wherein a roughness of the first aggregation layer corresponding to the first region of the shielding pattern is larger than that of the first aggregation layer corresponding to the second region thereof.