Abstract:
A TRANSPARENT MOUNTING SHEET HAS A STRUCTURE IN WHICH A ONE-SIDED RE-PEELABLE SHEET (3), PROVIDED WITH A CORE MEMBER (3A) OF A PLASTIC FILM, A SILICONE RUBBER SHEET (3C) THAT IS LAMINATED ON A PRIMER TREATED SURFACE (3B) FORMED BY ONE SURFACE OF THE CORE MEMBER HAVING BEEN SUBJECTED TO A PRIMER TREATMENT, AND AN ACRYLIC ADHESIVE AGENT LAYER (3D) THAT IS LAMINATED ON THE OTHER SURFACE OF THE CORE MEMBER, IS BONDED TO AT LEAST ONE OF SURFACES OF A GEL SHEET (4) BY THE ACRYLIC ADHESIVE AGENT LAYER, AND THIS TRANSPARENT MOUNTING SHEET IS USED SO THAT A PROTECTIVE PANEL FOR AN ELECTRONIC APPARATUS DISPLAY WINDOW IS MOUNTED ON A SURFACE OF A DISPLAY IN A MANNER SO AS TO BE RE-PEELABLE.
Abstract:
In the touch panel of an analog resistance film form having independent connection electrodes to be connected via a conductive adhesive (5) to lead electrodes (13,14) set to an opposing panel, the conductive adhesive is made up of a main conductive filler (51) of flakes or spheres of a particle size of 1-20 mum or short fibers of a length of 1-20 mum and a spherical auxiliary conductive filler (52) having an insulating core material (52a) coated with a conductive layer (52b) and a larger particle size by 10-100 mum than a minimum distance of contact faces of the electrodes, both fillers dispersed in a binder, whereby the auxiliary conductive filler is always kept in touch with the lead electrodes and connection electrodes.
Abstract:
Provided is a transparent thin plate including a transparent substrate 10 in a sheet form, a mesh layer 11 formed on a surface of the transparent substrate 10 and made of an opaque material having a structure wherein an outline of meshes is made of bands that are very thin and have a substantially equal width, and having a light transmittance of 50% or more, and a colored layer 16 that is arranged in a state that the layer 16 is laminated in a partial area of the mesh layer and on the surface of the mesh layer, and has a color different from that of the opaque material constituting the mesh layer 11.
Abstract:
IN A PROTECTION PANEL FOR ELECTRONIC DEVICE DISPLAY WINDOW (100) PROVIDED WITH A PROTECTION PANEL MAIN BODY (1) COMPOSED OF TRANSPARENT RESIN AND WITH A DECORATION LAYER (9) HAVING A TRANSPARENT WINDOW SECTION (8A), A TRANSPARENT LOWER ELECTRODE (2) IS FORMED ON THE UPPER SURFACE OF THE PROTECTION PANEL MAIN BODY (1). THE PROTECTION PANEL MAIN BODY IS ADHERED, IN ITS PERIPHERAL PORTION, TO A TRANSPARENT RESIN FILM (3) ON THE LOWER SURFACE OF WHICH A TRANSPARENT UPPER ELECTRODE (4) IS FORMED VIA AN AIR LAYER IN A POSITION OPPOSITE TO THE TRANSPARENT LOWER ELECTRODE (2). THE DECORATION LAYER (9) IS FORMED ON AT LEAST ONE SURFACE OF A TRANSPARENT RESIN COVER FILM (8) ADHERED TO THE UPPER SURFACE OF A TRANSPARENT RESIN FILM (3).
Abstract:
THERE IS PROVIDED A FRONT LIGHT-COMBINED TOUCH PANEL DEVICE WHICH CAN SUFFICIENTLY ILLUMINATE A REFLECTING TYPE LIQUID CRYSTAL DISPLAY WITHOUT LOWERING TRANSMITTANCE. A TRANSPARENT TOUCH PANEL (13) IS USED WHICH COMPRISES: AN UPPER ELECTRODE PLATE (9) HAVING AN UPPER ELECTRODE FORMED ON A LOWER FACE OF A FILM-LIKE INSULATING SUBSTRATE; AND A LOWER ELECTRODE PLATE (11) HAVING A LOWER ELECTRODE FORMED ON AN UPPER FACE OF A PLATE-LIKE OR FILM-LIKE INSULATING SUBSTRATE WITH MINUTE PROJECTIONS AND DIPS (8) ARRANGED ON THE UPPER FACE THEREOF, IN WHICH THE UPPER ELECTRODE PLATE (9) AND THE LOWER ELECTRODE PLATE (11) ARE ARRANGED TO FACE EACH OTHER VIA AN AIR LAYER BETWEEN THE ELECTRODES, AND THE LIGHT GUIDE PLATE (3) IS BONDED TO A REAR FACE OF THE TRANSPARENT TOUCH PANEL (13) VIA A SELF-ADHESIVE LAYER (12) OR RE-LEASE SHEET, AND A LIGHT SOURCE (4) IS SET AT AN END FACE OF THE LIGHT GUIDE PLATE (3), SO THAT THE TRANSPARENT TOUCH PANEL (13) AND THE FRONT LIGHT DEVICE (2) ARE COMBINED IN ONE BODY.(FIG 1)
Abstract:
In the touch panel of an analog resistance film form having independent connection electrodes to be connected via a conductive adhesive (5) to lead electrodes (13,14) set to an opposing panel, the conductive adhesive is made up of a main conductive filler (51) of flakes or spheres of a particle size of 1-20 mum or short fibers of a length of 1-20 mum and a spherical auxiliary conductive filler (52) having an insulating core material (52a) coated with a conductive layer (52b) and a larger particle size by 10-100 mum than a minimum distance of contact faces of the electrodes, both fillers dispersed in a binder, whereby the auxiliary conductive filler is always kept in touch with the lead electrodes and connection electrodes.
Abstract:
A production method of a color filter in accordance with the present invention comprises forming an inorganic active film layer on a transparent substrate, dyeing the inorganic active film layer in a first color, forming a resist at portions other than the portion which is to be dyed in a second color, carrying out decoloration treatment, dyeing the inorganic active film layer in the second color, peeling off the resist, forming another resist at portions other than the portion which is to be dyed in a third color, carrying out decoloration treatment, dyeing the inorganic active film layer in the third color and peeling off the resist.
Abstract:
Provided are a narrow frame touch input sheet, manufacturing method of the same, and conductive sheet used in the narrow frame touch input sheet, which are suitable for a capacitive touch sensor having a narrow frame and two layers of transparent conductive film patterns. The method uses the conductive sheet including one or more transparent base sheets stacked into a layer, transparent conductive films, light-excluding conductive electrode films, and first resist layers, which are layered sequentially on the uppermost and lowermost surfaces thereof. The first resist layers are exposed simultaneously on the both surfaces, and after development, the transparent conductive films and the light-excluding conductive electrode films are simultaneously etched, the first resist layers are stripped away, then second resist layers are formed as coating on the both surfaces in an outer edge portion, so that the light-excluding conductive electrode films are etched only in the central window portions. Thus, circuit patterns of the transparent conductive films are exposed.