Abstract:
PURPOSE:To efficiently obtain the color filters having various excellent properties by forming an inorg. active film layer on a transparent substrate, subjecting this layer to dyeing of a 1st color, forming a resist only on the parts where the 1st color is made to remain, subjecting the layer to a decoloring treatment and further, subjecting the layer to dyeing of the 2nd and 3rd colors and stripping the resist. CONSTITUTION:The inorg. active film layer 2 is formed on the transparent substrate 1. The layer 2 is subjected to dyeing of the 1st color and the resist 3a is formed only in the parts where the 1st color is made to remain and the layer is subjected to the decoloring treatment. The inorg. active film layer 2 is then dyed with the 2nd color and the resist 3b is formed only in the parts where the 2nd color is made to remain. Said layer is subjected to the decoloring treatment. Further, the inorg. active film layer 2 is dyed with the 3rd layer and finally the resists 3a, 3b are stripped. This production process, therefore, necessitates just twice the patterning of the regists 3a, 3b at the time of forming the patterns of the three colors RGB of the color filters. The color filters having the high strength and smoothness is obtd. by the fewer stages in this way.
Abstract:
PURPOSE:To enable efficient and economical production by providing an active film layer which consists of a metal oxide on a transparent substrate and providing an ink layer of ink contg. a coloring material, then providing a resist layer thereon, thermally migrating the coloring agent into the active film layer to color the active film layer and removing the ink layer and the resist layer. CONSTITUTION:The active film layer 2 which consists of the metal oxide is formed on the transparent substrate 1 and the ink layer 3 is formed on the active film layer 2, following which the resist layer 4 is formed over the entire surface of the ink layer 3. The coloring material in the ink layer 3 is thermally migrated into the fine pores of the active film layer 2 to color said layer. The active film layer 2 is then sealed at need and the unnecessary ink layer 3 and the resist layer 4 formed on the active film layer 2 are removed. Since the splashing of the coloring agent into the air is thereby prevented, the efficiency of the coloration is improved and the production is economical, as the consumption of more than the need coloring agent is obviated. Since the splashed coloring agent does not stain the other colored parts, the color filter having high saturation is obtd.
Abstract:
PROBLEM TO BE SOLVED: To provide a capacitive type touch sensor with an optical function having low reflection, small thickness and a narrow frame.SOLUTION: A capacitive type touch sensor includes a cover glass and a capacitive type film sensor member laminated on a rear surface of the cover glass, and further includes a polarizing plate between the cover glass and the film sensor member. The film sensor member includes: a transparent base sheet including a λ/4 retardation film; a transparent conductive film in which an electrode pattern in a center window portion and a thin-line routing circuit pattern in an outer frame portion are formed, disposed on each surface of the base sheet; and a light-shielding conductive film layered on each of the thin-line routing circuit patterns of the transparent conductive films.
Abstract:
PROBLEM TO BE SOLVED: To provide a cover glass-integrated sensor having excellent visibility with a sharp outline of a display screen viewed through the cover glass and giving a united appearance in a part enclosing the display screen.SOLUTION: The cover glass-integrated sensor comprises: a cover glass having a first frame-like light-shielding layer formed of a screen printed film in a circumference edge on a back face of a glass substrate; and a capacitance type film sensor, which has a second frame-like light-shielding layer also serving as a rust preventive functional layer, formed of an exposed and developed color resist material in a circumference edge of a top face and is laminated to the back face of the cover glass. The inner rim of the second frame-like light-shielding layer is positioned nearer to the center than the inner rim of the first frame-like light-shielding layer.
Abstract:
PROBLEM TO BE SOLVED: To provide a cover glass-integrated sensor having excellent visibility with a sharp outline of a display screen viewed through the cover glass and giving a united appearance in a part enclosing the display screen.SOLUTION: The cover glass-integrated sensor comprises: a cover glass having a first frame-like light-shielding layer formed of a screen printed film in a circumference edge on a back face of a glass substrate; and a capacitance type film sensor, which has a second frame-like light-shielding layer formed of an exposed and developed color resist material in a circumference edge on a top face and is laminated to the back face of the cover glass. The inner rim of the second frame-like light-shielding layer is positioned nearer to the center than the inner rim of the first frame-like light-shielding layer.
Abstract:
PROBLEM TO BE SOLVED: To provide a transparent conductive film layer sheet which prevents moisture from entering the sheet to prevent whitening. SOLUTION: The transparent conductive film layer sheet 5 includes: a base sheet 7 comprising a material whose in-plane direction retardation value Re at a wavelength of 550 nm is at most 20 nm, the material having high steam permeability; a transparent conductive film layer 3 which is formed on one-side surface of the base sheet 7; an adhesive layer 4 which is formed so that it may cover the transparent conductive film layer 3; and a protection sheet 1 which is laminated on the other-side surface of the base sheet 7 and comprises a material having steam barrier properties. The protection sheet 1 can be processed to be a solid shape so that it may cover the side surface of the adhesive layer 4. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a touch input sheet high in yield and productivity capable of obtaining the touch input sheet having each circuit pattern in an accurate position, and a manufacturing method therefor. SOLUTION: The touch input sheet includes circuit patterns of transparent conductive film in a central window on a transparent base sheet and thin-line lead circuit patterns formed of transparent conductive films and conductive print films successively laminated on an outer frame line portion. The circuit patterns of the transparent conductive film are formed at predetermined places. The transparent conductive film and the conductive print film of the thin-line lead circuit patterns are formed in lamination with an identical pattern at predetermined places without causing position deviation. In the touch input sheet and the manufacturing method therefor, the circuit patterns of the transparent conductive film and the thin-line lead circuit patterns are formed at both sides of the base sheet with an alignment mark formed on either side thereof. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a mount structure of a tactile feeling feedback type touch panel having superior shock-resistant, anti-dust, and anti-drip properties for effectively relaying the vibration of a vibrating element. SOLUTION: The mount structure of a tactile feeling feedback type touch panel includes: a touch panel body; a design sheet laminated onto the upper surface of the touch panel body, and having a transparent window part and a decorated part surrounding the transparent window part; a vibrating element formed on a rear periphery of the touch panel body and hidden by the decorated part; a housing concavely formed having a step allowing insertion, from the exterior, of the touch panel body, the design sheet, and the vibrating element, and on the bottom surface, having a concave part or aperture for a display device, and a frame-shaped supporting part supporting a rear periphery of the touch panel body; an elastic member frame arranged on the supporting part, and positioned more toward an outer edge side of the touch panel body than the vibrator; and a tactile feeling feedback control part arranged in the interior of the housing, and adding a driving voltage to the vibrating element by detecting a pressurizing operation to the touch panel body. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a transparent conductive sheet having transparency, conductivity, and stable electromagnetic wave blocking properties, a method for manufacturing the transparent conductive sheet, and a transparent conductive decorative molded article. SOLUTION: The transparent conductive sheet includes a base sheet having a number of fine recessions and projections formed on part or the whole of its surface such that the fine projections form a meshed plane shape, and a metal thin film layer at least formed on the fine projections of the base sheet. COPYRIGHT: (C)2011,JPO&INPIT