Abstract:
A system for displaying images is provided. The system includes a touch sensor device including a substrate having a sensing region. The sensing region includes a central portion. A sensing electrode layer is disposed on the substrate in the sensing region and includes a plurality of sensing electrode patterns corresponding to the central portion. Each sensing electrode pattern includes at least one non-linear edge, such that the adjacent sensing electrode patterns are wedged with each other.
Abstract:
A touch panel device including, and arranged above each other in a downward direction, a cover layer, a sensor layer including a plurality of sensing elements, characterized in that between the cover layer and the sensor layer is an electrically-resistive layer, electrically resistive layer being an electrically non-insulating layer and having an electrical resistance is provided, wherein the electrical resistance of the electrically-resistive layer is lower than the electrical resistance of the cover layer and higher than the electrical resistance of the sensing elements.
Abstract:
A liquid crystal display device includes a substrate having pixel regions and a counter substrate opposed thereto. Gate lines and data lines intersect to define the pixel regions. A first common electrode overlaps the data lines and is disposed on a first insulating layer that is disposed on the substrate and the data lines. A second insulating layer is disposed between the first common electrode and a pixel electrode pattern that is disposed on the first insulating layer and insulated from the first common electrode. A second common electrode is disposed on one of the data lines and electrically connected to the first common electrode. A projection of the second common electrode on the substrate overlaps a projection of the one of the data lines on the substrate. A spacer is disposed on the substrate and is overlapped with the one of the data lines.
Abstract:
The invention provides a touch panel device comprising, and arranged above each other in a downward direction, a cover layer for use as a touch surface, a sensor layer comprising a plurality of sensing elements, the sensing elements being arranged to register capacitance, characterized in that between the cover layer and the sensor layer is an electrically-resistive layer, electrically resistive layer being a electrically non-insulating layer and having an electrical resistance is provided, wherein the electrical resistance of the electrically-resistive layer is lower than the electrical resistance of the cover layer and higher than the electrical resistance of the sensing elements. The electrically-resistive layer can have a resistance suitable for causing, in response to a touch event above a center of a central sensing element, a detectable change in the capacitance as measured by at least two sensing elements adjacent to the central sensing element.
Abstract:
A system for displaying images is provided. The system includes a touch sensor device including a transparent substrate having a sensing region and a non-sensing region adjacent to the sensing region. A sensing electrode pattern layer is on the transparent substrate in the sensing region. An inorganic dielectric material layer is on the transparent substrate. The inorganic dielectric material layer has a first portion in the non-sensing region and a second portion in the sensing region and partially covering the sensing electrode pattern layer. A method of forming a touch sensor device is also disclosed.
Abstract:
A touch panel is provided. The touch panel includes: a substrate, wherein the substrate includes a viewing region and a border region at an edge of the viewing region; a patterned transparent conductive layer formed on the substrate, wherein the patterned transparent conductive layer is formed on the viewing region and the border region, and the patterned transparent conductive layer has a touch sensitive function; and a patterned metal layer formed on the border region, wherein the patterned metal layer includes a contact region and a trace region connecting to the contact region, and at least a portion of the contact region overlaps with the patterned transparent conductive layer, wherein a shift range between the contact region and the patterned transparent conductive layer disposed on the border region adjacent to the contact region is smaller than about 150 μm.
Abstract:
A liquid crystal display device includes a substrate having pixel regions and a counter substrate opposed thereto. One of the pixel regions is defined by a pair of gate lines extending in a first direction and a pair of data lines extending in a second direction. A first insulating layer is disposed on the substrate corresponding to the pixel region. A first common electrode is continuously disposed on the first insulating layer and overlaps the data lines. A pixel electrode pattern is disposed above the first common electrode. A second insulating layer is interposed between the first common electrode and the pixel electrode pattern. A second common electrode is disposed above one of the data lines and electrically connected to the first common electrode. A projection of the second common electrode on the substrate overlaps a projection of the one of the data lines on the substrate.
Abstract:
An active matrix image sensing panel comprises a substrate and an image sensing pixel. The image sensing pixel is disposed on the substrate and comprises a scan line, a data line crossing the scan line, a photo sensing element and a TFT element. The photo sensing element includes a first terminal electrode and a second terminal electrode, and the voltage of the first terminal electrode is higher than that of the second terminal electrode. The TFT element includes a first electrode, a second electrode, a first gate electrode and a second gate electrode. The first electrode is electrically connected to the data line, the second electrode is electrically connected to the first terminal electrode, the first gate electrode is electrically connected to the scan line, and the second gate electrode is electrically connected to the first or second terminal electrode. An active matrix image sensing apparatus is also disclosed.
Abstract:
A system for displaying images employing an organic electroluminescent device is provided. The organic electroluminescent device includes a first substrate with an inside surface; an organic electroluminescent pixels array disposed on the inside surface of the first substrate; a second substrate with an inside surface, wherein the inside surface of the second substrate is opposite to the inside surface of the first substrate; a color filter layer disposed on the inside surface of the second substrate; and an opaque frit sealing layer disposed between the first substrate and the second substrate, wherein the opaque frit sealing layer is separated from the organic electroluminescent pixels array by a dummy region and is encapsulating the organic electroluminescent pixel array between the first substrate and second substrate, and wherein the dummy region is filled up with a black matrix material, a frit sealing layer.
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.