Abstract:
The touch sensor according to a preferred embodiment of the present invention includes: a transparent substrate; and an electrode formed on the transparent substrate in a mesh pattern, wherein the electrode has a line width of one side smaller than that of the other side in a thickness direction.
Abstract:
Disclosed herein is a touch panel including a transparent substrate, an electrode formed to have a mesh pattern on the transparent substrate, and a wiring formed to have a zigzag pattern on the transparent substrate, having first and second peaks alternately continued in a length direction, and connected to the electrode. Since the electrode and the wiring are formed to have a uniform pattern overall, the electrode and the wiring can be disposed in an active region of the touch panel, and thus, a bezel region can be reduced.
Abstract:
A touch panel may include: a substrate having an upper surface and a lower surface; a first electrode layer disposed on the lower surface of the substrate and formed in a mesh shape; a first insulating layer disposed on the lower surface of the substrate and disposed to surround the first electrode layer; a surface reforming layer disposed on a lower surface of the first insulating layer and capable of reforming a hydrophobic surface to a hydrophilic surface; and a second electrode layer disposed on a lower surface of the surface reforming layer and formed in a mesh shape.
Abstract:
A touch panel may include: a substrate having an upper surface and a lower surface; a first electrode layer disposed on the lower surface of the substrate and formed in a mesh shape; a first insulating layer disposed on the lower surface of the substrate and disposed to surround the first electrode layer; a surface reforming layer disposed on a lower surface of the first insulating layer and capable of reforming a hydrophobic surface to a hydrophilic surface; and a second electrode layer disposed on a lower surface of the surface reforming layer and formed in a mesh shape.
Abstract:
The touch sensor according to a preferred embodiment of the present invention includes: a transparent substrate; and an electrode formed on the transparent substrate in a mesh pattern, wherein the electrode has a line width of one side smaller than that of the other side in a thickness direction.
Abstract:
A touch panel may include a substrate; a printing part formed on a bezel area of the substrate; and a plurality of electrodes provided on the substrate and the printing part and including conductive wires configuring a plurality of unit cells having a mesh shape. Portions of wires configuring each of the plurality of unit cells overlapped with a boundary line between the substrate and the printing part among the plurality of unit cells are disconnected.
Abstract:
Disclosed herein is a touch panel including: a transparent substrate divided into an active region and a non-active area that is a boundary of the active region; and a bezel portion formed in the non-active region of one surface of the transparent substrate, wherein the bezel portion is formed by exposing and developing a silver halide emulsion layer, thereby reducing a step difference of the bezel portion.
Abstract:
Disclosed herein is a touch panel in which an electrode pattern is opened along a shape of an electrode and a light blocking portion is formed to extend from an end portion of the opened pattern and have a predetermined angle with respect to the end portion to prevent an introduction of light even though an introduction path of light and a direction in which opened portions are arranged are consistent, thus preventing the opened portion from being visible.
Abstract:
Disclosed herein are a raw glass plate for manufacturing a touch panel and a method of manufacturing a touch panel using the raw glass plate. The raw glass plate includes a unit substrate region divided into an active region and a non-active region that is an edge portion of the active region; electrodes formed on the active region of the unit substrate region; wirings that are formed on the non-active region of the unit substrate region and are electrically connected to the electrodes; and a guard line that is formed outside a position at which the wirings are formed, on the non-active region of the unit substrate region in a longitudinal direction of the wirings.
Abstract:
Disclosed herein is a touch panel including a transparent substrate and an electrode formed on the transparent substrate and an electrode having light transmittance of 5 to 50%, wherein as the electrode has high light transmittance, such that it is possible to solve a defective problem of visibility of the touch panel due to the opacity and specular phenomenon of the electrode.