Abstract:
A transparent touch panel (1) comprises an upper and lower optical phase films (4, 6) having movable electrode parts (3, 5), giving a quarter wavelength delay to incident light with a center frequency in the visible light region. The films are separated by an empty layer (7). Upper and lower polarizers (8, 9) are fixed to the upper surface of the touch panel and lower surface of the display respectively. The optical axis of the upper film and polarization axis of the upper polarizer is 45[deg], and the polarization axis of light emitted from the display is 45[deg] wrt the optical axis of the lower film. The optical axes of the upper and lower films is 90[deg].
Abstract:
In a resistance film type touch panel (8), an upper electrode sheet (1) having upper electrodes (111) on one face of a flexible transparent film (9) and a hard coat layer (12) on the other face of the film, and a lower electrode sheet (2) having lower electrodes (121) confronting to the upper electrodes on one face of a glass substrate (10) are arranged to face each other via a distance formed by spacers (13) between the upper electrodes and the lower electrodes confronting the upper electrodes, and respective peripheries of the upper electrodes and the lower electrodes confronting the upper electrodes are bonded by an adhesive layer (3), with the transparent film and the hard coat layer being fused at respective end parts thereby constituting a compressive stress layer (10a) at a surface layer part of each side end face of the glass substrate.
Abstract:
In a resistance film type touch panel (8), an upper electrode sheet (1) having upper electrodes (111) on one face of a flexible transparent film (9) and a hard coat layer (12) on the other face of the film, and a lower electrode sheet (2) having lower electrodes (121) confronting to the upper electrodes on one face of a glass substrate (10) are arranged to face each other via a distance formed by spacers (13) between the upper electrodes and the lower electrodes confronting the upper electrodes, and respective peripheries of the upper electrodes and the lower electrodes confronting the upper electrodes are bonded by an adhesive layer (3), with the transparent film and the hard coat layer being fused at respective end parts thereby constituting a compressive stress layer (10a) at a surface layer part of each side end face of the glass substrate.
Abstract:
A protection panel (100) for an electronic apparatus display window, having a decoration layer (9) with a protection panel body (1) and a transparent wind ow section (8a) that are made of a transparent resin. The protection panel body (1) is formed from an object on the upper surface of which a transparent low er electrode (2) is formed. The protection panel body (1) is adhered at the peripheral edge section to a transparent resin film (3) on the lower surface of which a transparent upper electrode (4) is formed opposite the transparen t lower electrode (2) with an air layer in between. The decoration layer (9) i s formed on at least one surface of a transparent resin cover film (8) adhered on the upper surface of the transparent resin film (3).
Abstract:
A least one bus bar (32a) and a transparent electrode (12) of a conductive panel (1) on the side facing the bus bar (32a) via gaps (31, 31A) formed by notching an adhesive layer (3) from the outer edge side thereof are allowed to face each other so as to be energized by pressing, whereby providing a touch panel capable of wide-area inputting that allows many inputs by one-time screen display.
Abstract:
An upper electrode sheet (1) including a transparent electrode on a transparent polyethylene terephthalate film and a lower electrode sheet (2) including a transparent electrode on a transparent polycarbonate film are opposed with insulating spacers (3) between the electrodes. A transparent polycarbonate retainer board (5) is bonded to the lower electrode sheet (2) with a transparent adhesive layer (4).