Abstract:
The disclosed display device includes: a substrate; a gate electrode disposed on the substrate, wherein a first projection is defined by projecting the gate electrode on the substrate; and a connecting member disposed on the gate electrode and electrically connecting to the gate electrode, wherein a second projection is defined by projecting the connecting member on the substrate, an overlapping region is defined as a region of the second projection overlapping the first projection, and an area of the first projection is greater than an area of the overlapping region.
Abstract:
A display device is disclosed, which includes: a substrate; a scan line having an extension direction, disposed on the substrate and including a gate electrode; a semiconductor layer disposed on the gate electrode; source and drain electrodes disposed on the semiconductor layer; an insulating layer including a via hole and disposed on the drain electrode; a first transparent conductive layer disposed on the insulating layer, wherein a part of the first transparent conductive layer electrically connects to the drain electrode through the via hole; and a second transparent conductive layer disposed between the substrate and the first transparent conductive layer and not overlapping the via hole. Herein, the second transparent conductive layer has a first edge, the drain has a second edge, a minimum distance between the first edge and the second edge along a direction substantially perpendicular to the extension direction ranges from 0 μm to 4 μm.
Abstract:
A display device includes: a substrate; a display medium layer disposed on the substrate; and a polarizer having a first film, a second film and a third film sequentially laminated on the display medium layer. The second film connects to the first film. The third film connects to the second film. A first bottom surface of the first film has a first edge. A second bottom surface of the second film has a second edge. A third bottom surface of the third film has a third edge. A first minimum distance exists between projections of the first edge and the second edge on the substrate in a first direction perpendicular to a normal direction of the substrate, and a second minimum distance exists between the second edge and the third edge on the substrate in the first direction. The first minimum distance is different from the second minimum distance.
Abstract:
A display panel including a first substrate having a pixel region, a thin film transistor, an insulating layer, a pixel electrode, a second substrate, and a display medium is provided. The thin film transistor is located on the first substrate and in the pixel region. The insulating layer is located in the pixel region and covers the thin film transistor. The insulating layer has a contact hole having a first maximum distance extending along a first direction and a second maximum distance extending along a second direction. The first direction is different from the second direction. The second maximum distance is longer than the first maximum distance. The pixel electrode is electrically connected to the thin film transistor through the contact hole. The display medium is located between the first substrate and the second substrate.
Abstract:
A display module including a display panel and a backlight module disposed on a side of the display panel is provided. The backlight module includes a light guide, a light emitting diode, and a first optical film. The light emitting diode has a light emitting surface adjacent to the light guide. The first optical film is located between the light guide and the display panel. The first optical film includes a plurality of first prisms extending along a first direction. The first prisms corresponding to the light emitting surface form a main portion and a peripheral portion located outside the main portion. The main portion has a first height larger than a second height of the peripheral portion.
Abstract:
A display device comprising: a substrate with a display region and a border region; a first metal layer disposed on the substrate; a first insulating layer disposed on the first metal layer and having a first contact via on the border region; a second metal layer disposed on the first insulating layer and in the first contact via to electrically connect to the first metal layer; a second insulating layer disposed on the second metal layer; a first electrode layer disposed on the second insulating layer and having a first opening; a third insulating layer disposed on the first electrode layer and has a second opening on the border region; and a second electrode layer disposed on the third insulating layer and in the second opening to electrically connect to the first electrode layer, wherein the first contact via corresponds to the first opening, is disclosed.
Abstract:
An OLED display device is disclosed, which comprises: a TFT substrate, comprising a substrate and plural TFT units disposed on the substrate; and an OLED unit electrically connected to one of the plural TFT units. The TFT units respectively comprise: an active layer disposed on the substrate and made of polysilicon; a first insulating layer disposed on the active layer; source and drain electrodes disposed on the first insulating layer; a metal layer disposed on the first insulating layer; and a second insulating layer disposed on the metal layer, wherein the metal layer has plural first protrusions at a top surface thereof, the second insulating layer comprises a first region corresponding to the active layer and a second region corresponding to a region outside the active layer, and a roughness of a top surface of the first region is greater than that of the second region.
Abstract:
A display panel is disclosed, which comprises: a first substrate; a scan line disposing on the first substrate; a data line disposing on the first substrate and overlapping with the scan line to form a first overlapping region; and an active layer disposing between the scan line and the data line and overlapping with the scan line and the data line to form a second overlapping region, wherein the second overlapping region locates in the first overlapping region and has a via, wherein an edge of the scan line has a first length along a substantial extension direction of the scan line in the first overlapping region, the active layer has a second length along a substantial extension direction of the scan line in the second overlapping region, and the second length is greater than the first length.
Abstract:
A display panel is provided. The display panel includes a TFT substrate and a photo-alignment layer. The TFT substrate includes a plurality of pixel units, wherein each pixel unit includes a plurality of sub-pixels. The photo-alignment layer is located on the pixel units, and has at least two different aligning directions corresponding to each sub-pixel. When light passes through each sub-pixel, the display panel shows a dark line pattern. The dark line pattern includes a major line and a minor line. The major line is located on the boundary between the two different aligning directions in the photo-alignment layer, and extends along a first direction, wherein the major line has a major line width. The minor line is connected to the major line, and extends along a second direction, wherein the minor line has a minor line width, and the major line width is greater than the minor line width.
Abstract:
A liquid crystal display panel and a liquid crystal display device containing the same are disclosed. The liquid crystal display panel of the present invention comprises: a first substrate with a pixel electrode region and a non-pixel electrode region; a second substrate opposite to the first substrate; a first alignment layer disposed on the pixel electrode region and the non-pixel electrode region; and a liquid crystal layer disposed between the first substrate and the second substrate. Herein, the first alignment layer on the pixel electrode region has a first thickness, that on the non-pixel electrode region has a second thickness, and the first thickness is larger than the second thickness.