Abstract:
PROBLEM TO BE SOLVED: To provide a conductive nano-fiber sheet that suppresses ion migration caused by a metal nano-fiber used for electrodes between ends of two adjacent electrodes.SOLUTION: The conductive nano-fiber sheet includes: a base sheet; at least two electrodes provided on the base sheet, including a conductive nano-fiber, and conductible through the conductive nano-fiber; at least two laying circuits that perform electrical connections from each electrode to an outside, respectively; and an air-shielding layer composed of an insulating resin, provided between ends of two adjacent electrodes.
Abstract:
PROBLEM TO BE SOLVED: To provide an electrostatic capacitance transparent touch sheet which offers superior visibility and durability without changing sensitivity and size of a touch panel.SOLUTION: An electrostatic capacitance transparent touch sheet comprises: a substrate; a plurality of independent strip-shaped first electrodes formed on the substrate; a plurality of strip-shaped second electrodes which are formed on a surface of the substrate opposite the surface on which the first electrodes are formed and extends in a direction that crosses the first electrodes; and an insulating section which is formed continuously with the second electrodes and has a same thickness as the second electrodes. The first electrodes are made of a transparent metallic oxide. The second electrodes comprise a plurality of conductive nanowires which are connected to each other to allow electrical conduction, and a binder resin for retaining the plurality of conductive nanowires on the substrate. The insulating section is made purely of the binder resin that constitutes the second electrodes.
Abstract:
PROBLEM TO BE SOLVED: To provide an electrostatic capacitance transparent touch sheet which offers superior visibility and durability without changing sensitivity and size of a touch panel.SOLUTION: An electrostatic capacitance transparent touch sheet 1 comprises: a first conductive sheet A comprising a first substrate 2 to be adhered onto a hard substrate, and a plurality of independent strip-shaped first electrodes 3 which are formed to be sandwiched between the hard substrate and the first substrate 2 when the first substrate 2 is adhered onto the hard substrate; a second conductive sheet B comprising a second substrate 4 located to face the first substrate 2, a plurality of strip-shaped second electrodes 5 which are formed on a surface of the second substrate 4 opposite the surface facing the first substrate 2 and extends in a direction that crosses the first electrodes 3, and an insulating section 6 which is formed continuously with the second electrodes 5 and has a same thickness as the second electrodes 5; and a bonding layer 9 which bonds the first conductive sheet A and the second conductive sheet B together.