Abstract:
A substrate assembly is provided, including a first substrate and a circuit substrate. The first substrate comprising an edge. An active element layer is disposed on the first substrate. A plurality of first electrodes are disposed on the first substrate and between the edge and an edge of the active element layer, and arranged along a first direction. At least one of the plurality of first electrodes is electrically connected to the active element layer, a first register mark is disposed on the first substrate. The circuit substrate is partially overlapping the first substrate in a vertical projection direction, a plurality of second electrodes is disposed on the circuit substrate.
Abstract:
A display panel includes a first scan line and a second scan line adjacent to the first scan line disposed on the first substrate. A common electrode line is adjacent to the first scan line or the second scan line. The common electrode line has an enlarged portion, and an extending direction of the common electrode line is substantially the same as an extending direction of the first scan line. A first data line and a second data line adjacent to the first data line are disposed on the first substrate. In a direction perpendicular to the extending direction of the common electrode line, the enlarged portion has a maximum width, a part of the common electrode line overlapping the first data line has a maximum width, and the maximum width of the enlarged portion is greater than the maximum width of the first data line.
Abstract:
A first substrate of a display panel includes scan lines disposed above a first base and extending along a first direction, and data lines disposed above the first base and extending along a second direction. An electrode between two data lines has two extending portions substantially parallel to the second direction and one bending portion, and the bending portion is positioned between and connects two extending portions. When a light passes the electrode, an extending direction of a dark pattern corresponding to the bending portion is substantially parallel to the first direction, the dark pattern has a first width in a first gray level and a second width in a second gray level, the first width is larger than the second width, the second gray level is a maximum gray level of the display panel and the first gray level is equal to half of all gray levels.
Abstract:
The disclosed display device includes: a substrate; a gate electrode disposed on the substrate; a first insulating layer disposed on the gate electrode; a metal layer disposed on the first insulating layer and including an opening; a second insulating layer disposed on the metal layer; and a connecting member electrically connecting to the gate electrode through a contact via penetrating the first insulating layer and the second insulating layer. A first outline included in a first projection of the gate electrode crosses a third outline included in a third projection of the connecting member at first and second intersections, a second outline included in a second projection of the metal layer crosses the third outline at third and fourth intersections, and a first distance between the first and second intersections is less than a second distance between the third and fourth intersections.
Abstract:
A display apparatus includes a liquid crystal layer between first and second substrates. The first and second scan lines along a first direction are disposed adjacently above the first substrate. A first region defined by the first and second data/scan lines includes the first and second sub-pixel regions. The first sub-pixel region includes a first TFT (connected to the first scan line and the first data line) and a first electrode electrically connected to the first TFT. A first common electrode disposed above the first substrate includes the first and second portions connected to each other. The first portion is positioned between the first electrode and the first data line, and the second portion is positioned between the second electrode and the first data line, wherein a width of the first portion in the first direction is greater than a width of the second portion in the first direction.
Abstract:
A display panel is disclosed, which includes: a substrate with a first surface; a first conductive line with a first inclined surface, a second conductive line with a second inclined surface, a third conductive line with a third inclined surface and a fourth conductive line with a fourth inclined surface respectively disposed on the first surface of the substrate, wherein the first conductive line intersects the second conductive line and the fourth conductive line, and the third conductive line intersects the second conductive line and the fourth conductive line, wherein an angle included between the first surface and the first inclined surface or an extension surface thereof of the first conductive line is different from an angle included between the first surface and the third inclined surface or an extension surface thereof of the third conductive line.
Abstract:
A display panel includes a liquid crystal layer positioned between first and second substrates. The first substrate comprises scan lines and data lines intersected to define pixel regions. Each pixel region comprises an electrode having two extending portions parallel to the extending direction of the data lines and one bending portion positioned between and connecting the two extending portions. A dark pattern including a first dark pattern and plural second dark patterns is generated when a light passes the pixel region. The first dark pattern is corresponding to the bending portion and parallel to the scan line. The second dark patterns correspond to the extending portions. The first dark pattern has the first and second widths in the first (half of all gray levels) and second gray levels (maximum gray level), respectively. A ratio of the first width to the second width is 2.1 to 3.0.
Abstract:
A display panel is disclosed, comprising: a first electrode comprising a first trunk electrode and a second trunk electrode and a second electrode comprising a third trunk electrode and a fourth trunk electrode formed thereon, wherein when light passes through the display panel, the first and second trunk electrode respectively correspond to first and second dark lines crossing to each other to form a first cross site, the third and fourth trunk electrode respectively correspond to third and fourth dark lines crossing to each other to form a second cross site, the first and third dark lines respectively comprise first and second arc portions at the first and second cross sites near to a first scan line, and a first concave side of the first arc portion and the second concave side of the second arc portion face to sides opposite to each other.
Abstract:
A thin film transistor substrate is disclosed, which comprises: a substrate; and plural thin film transistor (TFT) units, an insulating layer, a pixel electrode and an alignment layer sequentially disposed thereon. The TFT units comprise a gate insulating layer, an active layer and source and drain electrodes; the insulating layer has contact vias to expose the drain electrodes of the TFT units; and the pixel electrode is disposed on the insulating layer and extents to the contact vias to electrically connect with the drain electrodes. Herein, a side wall of at least one of the contact vias has a first inclined portion at a first direction and a second inclined portion at a second direction, the first direction is different from the second direction, and an inclination of the pixel electrode on the first inclined portion is different from that on the second inclined portion.
Abstract:
A semiconductor substrate includes: a substrate; a first conductive line extending along a first direction; a semiconductor layer, wherein the first conductive line includes a first part overlapping with the semiconductor layer and a second part not overlapping with the semiconductor layer, the first part of the first conductive line has a first width along a second direction different from the first direction, the second part of conductive line has a second width along the second direction, and the first width is greater than the second width; and an electrode disposed on the semiconductor layer and including an arc edge outside the first conductive line, wherein the semiconductor layer includes a first part extending along the second direction and overlapping with the arc edge and a second part connecting the first part and overlapping with a side of the first part of the first conductive line.