Abstract:
Disclosed is a touch device including a substrate and a touch-sensing electrode layer thereon. The touch-sensing electrode layer includes at least one sensing electrode in a touch-sensing region, and at least one conducting line in a non-touch-sensing region. The conducting line is electrically connected to the sensing electrode. The non-touch-sensing region is located outside of the touch-sensing region, and the non-touch-sensing region includes a curve region connecting a first non-curve region and a second non-curve region. The conducting line has a first width in the first non-curve region, a second width in the second non-curve region, and a third width in the curve region, wherein the third width is greater than the first width and the second width.
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.
Abstract:
An electronic panel includes a first substrate; a conductive line disposed on the first substrate and extending along a first direction; a conductive element extending along a second direction perpendicular to the first direction; and an active layer disposed between the conductive element and the first substrate. In a top view, the active layer includes a first overlapping region overlapping a portion of the conductive line; a first contact region electrically connected to a connecting portion of the conductive element through a first via hole; and a turning region between the first overlapping region and the first contact region. The turning region doesn't extend along the first direction and the second direction.
Abstract:
A display device is disclosed, which includes: a display panel; and a backlight module corresponding to the display panel. The backlight module includes: a light source; and a light guide plate adjacent to the light source and having a surface and a light guide dot. The light guide dot comprises a first valley and a second valley, the first valley has a first valley point, and the second valley has a second valley point. On the basis of the surface of the light guide plate as a reference surface, the first valley is recessed into the reference surface, the second valley is recessed into the reference surface, a distance from the first valley point to the reference surface is defined as a first depth, a distance from the second valley point to the reference surface is defined as a second depth, and the first depth is different from the second depth.
Abstract:
A display panel includes a display medium layer between a first substrate and a second substrate. First and second data lines and first and second scan lines are disposed intersected on the first substrate to define a pixel area including a pixel electrode disposed on the first substrate, and a common electrode over the pixel electrode. The common electrode in the pixel area has a first slit near the first data line and a second slit near the second data line. The first slit has a first edge close to the first data line. The second slit has a second edge close to the second data line. The pixel electrode has a third edge located in the first slit and a fourth edge located in the second slit. The distance between the first and the third edge is different from that between the second and the fourth edge.
Abstract:
In a display panel, a first substrate has an active area and a peripheral area around the active area. A first trace is located at the peripheral area and extends along a first direction. A second trace intersects the first trace to define a crossing area. The first trace and the second trace are electrically isolated at the crossing area. An insulation layer is disposed on the first trace and the second trace and has an opening region corresponding to the crossing area. The opening region exposes the crossing area. The switch element is adjacent to the opening region, and has an active layer. The active layer has a first width in parallel with the first direction, and the shortest distance between the opening region and the active layer in parallel with the first direction is larger than zero and smaller than the first width.
Abstract:
A display panel is disclosed, comprising: a first substrate; a thin film transistor layer disposed on the first substrate; an insulating layer disposed on the thin film transistor layer; at least one pixel electrode disposed on the insulating layer and exposing an exposure region of the insulating layer; and an alignment layer disposed on the pixel electrode and the exposure region; wherein a surface roughness of the alignment layer disposed on the exposure region is larger than a surface roughness of the alignment layer disposed on the pixel electrode.
Abstract:
A display panel includes a substrate. A scan line and a data line intersect with each other and are disposed on the substrate. An active layer is disposed on the substrate and between the data line and the substrate. A transparent conductive layer is disposed on the substrate and above the active layer. The active layer includes a contact region electrically connected to the data line, a second contact region electrically connected to the transparent conductive layer, and an intermediate region disposed between the first and the second contact regions. A portion of the intermediate region overlapping with the scan line is a channel region. A portion of the intermediate region not overlapping with the scan line is a non-channel region. The width of the non-channel region is greater than the width of the channel region.
Abstract:
A display panel comprises a first substrate, a second substrate, a liquid crystal layer disposed between the first substrate and the second substrate, a light-shielding layer disposed between the liquid crystal layer and the second substrate, plural spacers, and an alignment film disposed between the first substrate and the second substrate. The alignment film comprises a first region near the spacer and a second region adjacent to the first region. The second region is positioned outside the first region and corresponds to the light-shielding layer. The first region has a first phase value (S1) and a first roughness value (R1). The second region has a second phase value (S2) and a second roughness value (R2). The ratio (S1/R1) of the first phase value to the first roughness value is larger than the ratio (S2/R2) of the second phase value to the second roughness value.
Abstract:
A display panel including a first polarizer, a second polarizer, a first substrate, a second substrate, a liquid crystal layer, and a pixel array is provided. The pixel array disposed on the first substrate includes a pixel area wherein a pixel electrode is disposed. The pixel electrode includes a first main electrode, a second main electrode, which substantially perpendicularly intersecting for defining a first domain, a second domain, a third domain, and a fourth domain of the pixel area, and a plurality of branch electrodes separately connected to the first or the second main electrode. When a maximum voltage is applied to the display panel, the liquid crystal layer has an average Azimuthal Angle represented as y1, satisfying B1