Abstract:
PROBLEM TO BE SOLVED: To provide a transparent wiring sheet capable of detecting a failure of conduction of an electrode with high reliability.SOLUTION: A transparent wiring sheet 1 of the present invention has an input area Aarranged in the center in a plan view and a routing wiring area Aarranged outside the input area A. In the routing wiring area A, first connections 25 each connected to one end of an electrode 21 and second connections 26 each connected to the other end of the electrode 21 are formed by insulating a transparent conductive layer in a patterned manner. Terminal bodies (routing circuits 30 and inspection electrodes 40) composed of a conductor including a conductive material are provided on at least one of the first connections 25 and the second connections 26.
Abstract:
PROBLEM TO BE SOLVED: To provide a sensor sheet in which shrinkage, deformation, and discoloration of a base material are suppressed, and a method for manufacturing the same.SOLUTION: The sensor sheet comprises a flat film-like base film 10 made of a thermoplastic resin, and a transparent electrode 20 which is formed by solidifying a solution containing a light transmissive conductive polymer as a solute and having a thickener contained in a solvent and is fixed to a surface of the base film.
Abstract:
PROBLEM TO BE SOLVED: To provide a thin touch pad and capacitive sensor sheet.SOLUTION: A touch pad 1 for detecting adjacency of an input object 100 and a position of the input object 100 when the input object 100 is adjacent to the touch pad includes: a tabular protection plate 2 having light permeability; a light guide 4 provided on the protection plate 2 and transferring illumination light L to the protection plate 2; a reflection member 6 provided on the light guide 4 and having a reflection surface 6a for reflecting the illumination light L toward the protection plate 2 side; and an electrode part 7 provided on a back surface 6b opposite to the side with the reflection surface 6a on the reflection member 6 and detecting change in capacitance between the input object 100 and the electrode part.
Abstract:
PROBLEM TO BE SOLVED: To provide a method capable of manufacturing an electroconductive pattern formation substrate having a three-dimensional shape without entailing the deviation of the position of an electroconductive pattern from a desired position.SOLUTION: The provided method for manufacturing an electroconductive pattern formation substrate 10 having a three-dimensional shape and including a transparent insulating substrate 11 and an electroconductive film 12 configured on the insulating substrate 11 and possessing an electroconductive segment C where a net-like member consisting of a metal is positioned within a base substance and an insulating segment I where gaps formed as a result of the removal of the net-like member within the base substance are positioned is furnished with a step of obtaining a substrate for molding wherein at least a foundational film on which the net-like member is positioned within the base substance is formed on the insulating substrate 11, a step of providing a substrate having a three-dimensional shape by three-dimensionally molding the substrate for molding, and a step of forming gaps within the foundational film possessed by the substrate having a three-dimensional shape by irradiating the same with a laser beam from the insulating substrate 11 side past the insulating substrate 11 so as to form the electroconductive film 12.
Abstract:
PROBLEM TO BE SOLVED: To provide a transparent wiring sheet that is suitable for a touch panel input device and with which a touch panel input device can be manufactured without adhering a pair of conductive pattern forming sheets with a double-sided adhesive tape.SOLUTION: A transparent wiring sheet 1 includes a transparent insulating substrate, a first transparent conductive layer 20 provided on one surface of the transparent insulating substrate, and a second transparent conductive layer provided on the other surface of the transparent insulating substrate. The first transparent conductive layer 20 is provided with a first conductive pattern Pobtained by forming a first insulating section 21 and a second insulating section 22 differing from the first insulating section 21. The second transparent conductive layer is provided with a second conductive pattern obtained by forming a third insulating section overlapping with the first insulating section 21 and a fourth insulating section differing from the second insulating section and the third insulating section.
Abstract:
PROBLEM TO BE SOLVED: To provide a conductive pattern formation substrate which reduces the visibility of a pattern, and to provide a manufacturing method of the conductive pattern formation substrate.SOLUTION: A conductive pattern formation substrate includes: a base material 2; a conductive pattern 5 including a metal nanowire and provided on the base material 2; an insulation pattern 6 contacting with the conductive pattern 5 and provided at a region different from a region where the conductive pattern 5 is formed; and a light diffusion layer 9 which at least partially covers at least one of the conductive pattern 5 and the insulation pattern 6.
Abstract:
PROBLEM TO BE SOLVED: To provide a method of manufacturing a conductive pattern formation substrate, in which a high quality transparent conductive film having a hardly visible conductive pattern can be formed and deterioration in conductivity of a conductive part of the transparent conductive film is suppressed.SOLUTION: The method is used for manufacturing the conductive pattern formation substrate 10 comprising: an insulating substrate 11; the transparent conductive film 12 which has the conductive part C provided on the insulating substrate 11 and having mesh-like members made of metal having the conductivity in a transparent base material with insulation quality and the insulating part I in which cavities formed by removing the mesh-like members in the transparent base material are disposed; and an insulating protection film 16 provided on the transparent conductive film 12. This method includes: a step of forming a base film a formed by disposing the mesh-like members in the transparent base material on the insulating substrate 11; a step of providing the protection film 16 on the base film a; and a step in which, after the protection film 16 is provided, the cavities are formed by irradiating the base film a with laser beam L to form the transparent conductive film 12.
Abstract:
PROBLEM TO BE SOLVED: To provide a light emission direction control film which improves light transmittance and suppresses the occurrence of moire stripes. SOLUTION: A hardened light-transmissive elastomer layer 3 and an unhardened and transparent adhesive elastomer layer 4 are successively laminated on a light shielding layer 2 on a base layer 1 to form a laminate 5, and a plurality of laminates 5 are laminated and are caused to adhere to each other by adhesive elastomer layers 4 to form a block member, and the block member is sliced to form a louver later of a car navigation system. The light shielding layer 2 is made of urethane or the like and can have a thickness from 15mμ to about 2μm, so that a high light transmittance of ≥81% can be easily obtained. COPYRIGHT: (C)2006,JPO&NCIPI