Abstract:
A touch display device is provided. The touch display device includes a first substrate; a transistor disposed over the first substrate; a first insulating layer disposed over the transistor; a first electrode disposed over the first insulating layer; a second insulating layer disposed over the first electrode; a conductive layer disposed over the second insulating layer, wherein the conductive layer includes a touch signal line; a third insulating layer disposed over the conductive layer; and a second electrode disposed over the third insulating layer, wherein one of the first electrode and the second electrode is electrically connected to the touch signal line, wherein another one of the first electrode and the second electrode is electrically connected to the transistor and at least partially overlaps the conductive layer.
Abstract:
A display device is provided. The display device includes a first substrate, wherein the first substrate includes: a plurality of scan lines disposed on the first substrate; a plurality of data lines disposed on the first substrate, wherein the plurality of the scan lines and the plurality of the data lines define a plurality of sub-pixels; and a sensing electrode disposed on the first substrate and having an opening; a second substrate disposed opposite the first substrate; and a display medium disposed between the first substrate and the second substrate, wherein the sensing electrode is disposed corresponding to at least two of the plurality of sub-pixels, and the opening is disposed corresponding to one of the plurality of scan lines or one of the plurality of data lines.
Abstract:
A TFT substrate includes a substrate and a plurality of pixels disposed on the substrate. Each of two adjacent pixels includes a gate line region, an active layer, an etch stop layer, a first source/drain layer and a second source/drain layer. The gate line region includes a first region having a first portion and a second region having a second portion. The active layer includes a channel region disposed on the first portion. In a projecting direction of the substrate, the first opening is defined between the second source/drain layer of one pixel and the first source/drain layer of the adjacent pixel. An open area is formed within the first opening. The first source/drain layer and the first portion have an overlapped area, and a width of the overlapped area along a second direction is greater than a width of the second portion along the second direction.
Abstract:
An embodiment of the invention provides a thin-film transistor substrate, including: a substrate; a gate electrode disposed on the substrate; a gate insulating layer disposed on the substrate and covering the gate electrode; an active layer disposed on the gate insulating layer and above the gate electrode, wherein the active layer includes a metal oxide; a source electrode disposed on and electrically connecting to the active layer; a first insulating layer covering the source electrode; and a drain electrode disposed on and electrically connecting to the active layer, wherein the drain electrode includes a metal oxide layer.
Abstract:
A semiconductor structure is provided. A first conductive layer is formed between a substrate and a first insulating layer. A semiconductor layer is disposed over the first insulating layer. A second conductive layer is formed between a semiconductor layer and a second insulating layer and includes a first segment and a second segment. A third conductive layer is disposed over the second insulating layer. The first insulating layer, the semiconductor layer, the first segment and the second segment constitute a first transistor. The third conductive layer, the semiconductor layer, the first segment and the second segment constitute a second transistor. During a first period, the first and third conductive layers receive a first voltage level and a second voltage level respectively. During a second period, the first and third conductive layers receive a third voltage level and a fourth voltage level respectively.
Abstract:
An embodiment of the present invention provides a display including: a first substrate; gate lines and data lines defining a first color, second color, and third color pixel area; a first color, second color, and third color pixel transistor located in the first color, second color, and third color pixel area respectively; a second substrate; and a black matrix, wherein the black matrix has a first portion and a second portion, and the first portion extends from an edge of a first color pixel active layer for a first shading distance, the second portion extends from an edge of a third pixel active layer for a second shading distance larger than the first shading distance.