Abstract:
A flexible touch screen panel includes a substrate having flexibility, sensing electrodes on at least one surface of the substrate, and implemented using an opaque conductive metal, and a polarizing plate on the substrate having the sensing electrodes formed thereon. The sensing electrodes may be implemented in a mesh shape having a plurality of openings.
Abstract:
An exemplary embodiment of the present invention discloses a method of manufacturing a touch panel, the method including, forming a plurality of sensing cells in a first region of a substrate, forming an insulating interlayer on the plurality of sensing cells, removing at least a portion of the insulating interlayer to form contact holes exposing the plurality of sensing cells, and forming a connection pattern and a transparent conductive pattern on the insulating interlayer simultaneously, wherein the connection pattern is electrically connected to adjacent sensing cells, and the transparent conductive pattern is disposed in a second region of the substrate outside of the first region.
Abstract:
A method of fabricating a touch screen panel includes forming an insulating layer on a substrate. A pattern is formed in the insulating layer. The pattern includes concave portions and convex portions. Sensing electrodes are formed in at least a portion of the concave portions.
Abstract:
A flexible touch screen panel includes a substrate having flexibility, sensing electrodes on at least one surface of the substrate, and implemented using an opaque conductive metal, and a polarizing plate on the substrate having the sensing electrodes formed thereon. The sensing electrodes may be implemented in a mesh shape having a plurality of openings.
Abstract:
A touch screen panel includes a substrate including an active area and a non-active area surrounding the active area, sensing cells disposed in the active area, the sensing cells comprising a first transparent conductive layer, and connection lines disposed in the non-active area, the connection lines comprising a lower pattern comprising the first transparent conductive layer and an upper pattern disposed on the lower pattern and comprising a metal layer, in which an ionicity of the metal layer is greater than an ionicity of the first transparent conductive layer.
Abstract:
Provided is a method of manufacturing a flexible display device, comprising: forming a concavo-convex area comprising a first concavo-convex pattern on one surface of a carrier substrate; forming a flexible substrate on the one surface of the carrier substrate; forming a display element configured to display an image on the flexible substrate; and separating the flexible substrate from the carrier substrate.
Abstract:
A flexible display device with a flexible touch screen includes, a window substrate divided into an active area and a non-active area outside of the active area, a touch screen panel including a plurality of sensing patterns on the active area and a plurality of sensing lines on the non-active area, the sensing lines coupled to the sensing patterns, a display panel on one surface of the touch screen panel, a transparent adhesive having at least two layers configured to attach the window substrate, the touch screen panel, and the display panel to one another, and a bending compensation portion on the same layer as at least one layer of the transparent adhesive. The flexible display device includes a folding axis in a first direction along which the window substrate, the touch screen panel, and the display panel are to be repeatedly bent.
Abstract:
A touch screen panel includes a substrate comprising a major surface and divided into an active area and a non-active area when viewed in a viewing direction perpendicular to the major surface; a plurality of driving electrodes formed over the active area of the substrate and generally arranged along a first direction; a plurality of first sensing electrodes formed over the active area of the substrate and generally arranged along a second direction; and a plurality of second sensing electrodes formed over the active area of the substrate and arranged along the second direction. The shapes of the first sensing electrode and the second sensing electrode are different from each other.
Abstract:
There is provided a flexible touch screen panel capable of being bent or folded. The flexible touch screen panel includes a film substrate and sensing electrodes formed in an active area of at least one surface of the film substrate. The film substrate is divided into a plurality regions so that elongation ratios differ between regions of the film substrate. Also provided is a method of manufacturing a flexible touch screen panel including providing a supporting substrate including a plurality of distinct regions, coating a plurality of film materials onto the supporting substrate, the distinct regions of the supporting substrate being coated with different film materials, hardening the film materials to form a film substrate, forming touch sensing patterns including sensing electrodes on the film substrate, and separating the supporting substrate and the film substrate from each other.
Abstract:
A flexible touch screen panel includes a substrate divided into an active area, a first non-active area, and a second non-active area, a plurality of sensing electrodes in the active area, a plurality of position detecting lines in the first non-active area and connected to the sensing electrodes, a plurality of connecting units in the second non-active area and connected to the plurality of position detecting lines and the connecting units are multiple layer structure wiring lines, a pad unit including a plurality of pads in the second non-active area and the pad unit is connected to the plurality of connecting units, and an insulating layer in the active area, overlapping the first non-active area, and excluded from the second non-active area