Abstract:
PROBLEM TO BE SOLVED: To provide an information input device of high responsiveness to an information input operation. SOLUTION: The information input device 1 includes a panel member 4 having a contact type information input function; a case 2 having a support 2b supporting the panel member 4; a pressure detection unit 5 provided across the panel member 4 and the support 2b to detect a pressing operation force to the panel member 4; and an initial load applying part 6 provided across the panel member and the support and drawing the panel member 4 and the support 2b to apply an initial load to the pressure detection unit 5. The information input operation corresponding to the pressing force to the panel member 4 can be quickly performed. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an information input device of high responsiveness to an information input operation. SOLUTION: The information input device 1 includes a panel member 4 having a contact type information input function; a case 2 having a support 2b for supporting the panel member 4; a pressure detection unit 5 provided across the panel member 4 and the support 2b to detect a pressing operation force to the panel member 4; and an initial load applying part 6 pressing the panel member 4 and the support 2b to each other to apply an initial load to the pressure detection unit 5. The information input operation corresponding to the pressing force to the panel member 4 can be quickly performed. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a transparent conductive sheet having translucency and resistance to corrosion and not limiting the kind of metals constituting a metal thin film layer, and provide a method of manufacturing the same and a decorative molded product. SOLUTION: A metal thin film sheet is at least formed in such manners as to allow a metal thin film layer 2 and a resist layer 3 to make contact with each other on a substrate sheet 1 and allow the resist layer 3 to be the front surface. In the resist layer 3 of the metal thin film sheet, many fine recesses 8 are formed in a part or the whole of the resist layer 3 by using a nano-imprint method. Then, the resist layers 10 existing on the bottom faces of the many fine recesses 8 that are formed are removed by dry etching, and the metal thin film layer 2 is exposed to the bottom faces of the many fine recesses 8 that are formed. Then, the metal thin film layer 2 that is exposed to the bottom faces of the many fine recesses 8 is removed by wet etching. Thereby, the whole or a part of the resist layer 3 and the metal thin film layer 2 are configured to form a fine mesh-like shape. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a portable apparatus which has a transparent cover having a circuit pattern inside, is rich in designability, can be made high in functionality and downsized. SOLUTION: The portable apparatus has, between two sheet type transparent base bodies 5a and 5b, the transparent cover 1 which is provided with a circuit pattern of a conductive substance and has a light beam transmissivity of ≥50%, an apparatus main body 2 which is coupled so that the transparent cover 1 can be opened and closed, and hides and exposes members 3 and 4 provided on a top surface by opening and closing the transparent cover 1, an opening/closing discrimination means 7 of discriminating whether the transparent cover is opened or closed, and function switching means 22 and 23 of switching functions of the circuit pattern according to whether the opening/closing discrimination means discriminates that the transparent cover is opened/closed. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To obtain a light emission display panel which causes the effective light emission display of different luminescence colors to be made at points where light emission display patterns overlap. SOLUTION: The light emission display panel independently displays one single color display pattern by switching the luminescence colors of a light source. The single color display pattern 11b includes an overlap color display region 16 where the single color display pattern 11b overlaps on at least one among the other single color display patterns. Relating to each of the single color display patterns 11b, the luminance satisfies the following relation between the one discrete color display region 17b and the overlap color display region 16: Formula (1): 0.5≤(cE S /cE OL )≤1.5 (in the formula (1), cE S is the luminance in the discrete color display region during light source lighting of the c color, cE OL is the luminance in the overlap color display region during light source lighting of the c color). COPYRIGHT: (C)2009,JPO&INPIT
Abstract translation:要解决的问题:为了获得在发光显示图案重叠的点处进行不同发光颜色的有效发光显示的发光显示面板。 解决方案:通过切换光源的发光颜色,发光显示面板独立地显示一个单色显示图案。 单色显示图案11b包括重叠颜色显示区域16,其中单色显示图案11b与其它单色显示图案中的至少一个重叠。 对于单色显示图案11b中的每一个,亮度满足一个离散彩色显示区域17b和重叠颜色显示区域16之间的关系:公式(1):0.5≤(cE S SB> /cEOL)≤1.5(在公式(1)中,cE S SB>是在c颜色的光源点亮期间的离散彩色显示区域中的亮度, SB> OL SB>是在c颜色的光源点亮期间的重叠颜色显示区域中的亮度)。 版权所有(C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a method of manufacturing a conductive pattern coating body in which differences in hue between a conductive pattern part and a non-conductive pattern part, light transmittance and a haze value are made small, and the conductive pattern part and the non-conductive pattern part are not clearly recognized visually.SOLUTION: A method of manufacturing a conductive pattern coating body includes the steps of: distributing and arranging conductive ultrafine fibers without aggregation or entanglement, crossing them each other, and bringing them into electrical contact with each other at the crossing portion to form conductive fiber films; emitting a laser beam to a desired position of the conductive fiber films and disconnecting or eliminating a part of the conductive ultrafine fibers to form a conductive pattern part; and fixing the conductive ultrafine fibers on the surface of a base material. The means of fixing the conductive ultrafine fibers on the surface of the base material impregnates the conductive ultrafine fibers with a binder to form the conductive fiber films, so as to fix the conductive ultrafine fibers on the surface of the base material before forming the conductive pattern part.
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.