Abstract:
Es wird eine transparente leitende Platte bereitgestellt, bei welcher der Silbernanodraht selbst bei Einwirkung von sichtbarem Licht oxidationsfest ist. Die transparente leitende Platte (1) umfasst eine Basisplatte (2), eine Silbernanodraht-Halteschicht (3), die auf die Basisplatte (2) laminiert ist, ein Opferreagens, das der Silbernanodraht-Halteschicht (3) hinzugefügt ist, und einen Silbernanodraht (4), der auf eine Oberfläche der Silbernanodraht-Halteschicht (3) laminiert ist.
Abstract:
PROBLEM TO BE SOLVED: To provide a composite input unit having a touch panel on a solar cell, the composite input capable of preventing light transmittance reduction due to a routing wiring part to ensure that light on the solar cell is sufficiently provided, increasing in photoelectric conversion efficiency of the solar cell, and having a touch panel function.SOLUTION: A composite input unit includes: a solar cell part capable of generating electricity by receiving light with a light receiving surface; a touch panel part that is provided on the light receiving surface of the solar cell part and has a transparent conductive film; and a routing wiring part that is provided to the solar cell part on its side surface with respect to the light receiving surface and is connected with the transparent conductive film. The transparent conductive film and the routing wiring part are electrically connected with each other by way of a folded part that is made of a conductive nanowire material and can be folded over the light receiving surface and the side surface.
Abstract:
PROBLEM TO BE SOLVED: To provide a conductive nanofiber sheet capable of reducing pattern view, and forming a conductive pattern film easily, and to provide a manufacturing method thereof. SOLUTION: A conductive nanofiber sheet 1 is equipped with a base body sheet 10, a conductive pattern layer 6 which is formed on the base body sheet 10, contains a conductive nanofiber 3, is conductive via the conductive nanofiber 3, and has a plurality of micro pin holes 7 in size impossible of visual recognition, and an insulating pattern layer 5 which is formed in a part wherein the conductive pattern layer 6 on the base body sheet 10 is not formed, contains the conductive nanofiber 3, and is insulated from the conductive pattern layer 6. The insulating pattern layer 5 has a narrow and small groove 9 of a width impossible of visual recognition. The narrow and small groove 9 disconnects the conductive nanofiber 3 which is in a conductive state, and by this narrow and small groove 9, the insulating pattern layer 5 is insulated from the conductive pattern layer 6. COPYRIGHT: (C)2010,JPO&INPIT
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.
Abstract:
PROBLEM TO BE SOLVED: To provide a conductive molding with three-dimensional shape in which a layer having electrical conductivity is formed in a curved surface, and to provide a method for manufacturing the conductive molding. SOLUTION: The conductive molding 60 is provided with: a molding resin part 62, which has a three-dimensional shape; a conductive pattern layer 6, which is formed on the molding resin part 62 including conductive nanofibers 3, and can be conducted via conductive nanofibers 3; and an insulating pattern layer 5 which is formed in a part where the conductive pattern layer 6 on the molding resin part 62 is not formed, includes the conductive nanofiber 3, and is insulated from the conductive pattern layer 6. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a touch panel that prevents an electrode pattern from being visually recognized.SOLUTION: A touch panel 100 includes: a first adhesive layer 4 laminated on a substrate 1; a first conductive layer 5 laminated on the first adhesive layer 4, and has first electrode patterns 21; a second adhesive layer 6 laminated on the first adhesive layer 4 and the first conductive layer 5; and a second conductive layer 7 laminated on the second adhesive layer 6, and has second electrode patterns 25. The first electrode patterns 21 each comprise a first island electrode part 22, and a first connection part 23 that electrically connects the first island electrode parts 22 with each other; and the second electrode patterns 25 each comprise one of second island electrode parts 26 formed in plurality with intervals in a second direction crossing a first direction so as not to overlap with the first electrode patterns 21, and one of second connection parts 27 that cross over the first connection parts 23 and electrically connect the second island electrode parts 26 with each other.