Abstract:
An improved membrane switch (10). The switch (10) includes a pair of transparent, laminar contacts (16, 18) sandwiching a spacer (30) formed therein so that the contacts (16, 18) can be engaged at the location of the window (36) by the application of pressure to one of the contacts (16, 18). Engagement of the contacts (16, 18) closes a circuit to effect a desired function. With this structure, the problem of back lighting method without distortion of the indicia being caused by silver conductive ink circuit of the prior art is eliminated.
Abstract:
PROBLEM TO BE SOLVED: To provide a sensor and a switch mechanism used for a print medium and others for expanding electronic functionality, using a small amount of resources and occupying small space. SOLUTION: In this sensor comprising a sensor/switch device provided with a base and at least one element including conductive material and attached to the base, the element is provided with at least one operating space configured with at least one from a conductive mode, an inductive mode and capacitive mode, and including at least one conductive material. This conductive material on the base is not visually recognized. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
An upper electrode plate (1) has a 0.15 to 0.8 mm thick optically isotropic heat-resistant transparent resin plate (8) having a glass transition temperature characteristic of not less than 150 DEG C. The heat-resistant transparent resin plate is laminated directly or indirectly on a quarter wave plate (9) all over their surfaces.
Abstract:
An upper electrode plate (1) has a 0.15 to 0.8 mm thick optically isotropic heat-resistant transparent resin plate (8) having a glass transition temperature characteristic of not less than 150 DEG C. The heat-resistant transparent resin plate is laminated directly or indirectly on a quarter wave plate (9) all over their surfaces.
Abstract:
A mobile terminal includes: a light-transmissive actuator having a dome-like shape; a conductive coating layer formed to be light-transmissive and formed at an inner side of the actuator; a light-transmissive base including a first light-transmissive electrode pattern and a second light-transmissive electrode pattern formed thereon, the first light-transmissive electrode pattern being configured to contact with the edge of the actuator, and the second light-transmissive electrode pattern being configured to contact with the central portion of the actuator when the actuator is pressed; and a display unit disposed under the light-transmissive base and configured such that visual information is seen thereon through the actuator, the coated layer and the base.
Abstract:
A resistive film touch panel (8) wherein an upper electrode sheet (1) having an upper electrode (111) on one face of a flexible transparent film (9) and a hard coating layer (12) on the other face and a lower electrode sheet (2) having a lower electrode (121) confronting the upper electrode on one face of a glass substrate (10) are opposed to each other through a spacer (13) between the upper and lower electrodes and the upper and lower electrodes are bonded at their peripheries with an adhesive layer (3). The transparent film and the hard coating layer are fused at their edge portions, and a surface portion of the side edge face of the glass substrate is a compressive stress layer (10a).
Abstract:
An upper electrode plate (1) has an optically isotropic, heat-resisting, transparent resin sheet (8) having a feature of providing a glass transition temperature of at least 150 °C and a thickness of 0.15-0.8 mm, the heat-resisting, transparent resin sheet being pasted over the entire surface thereof to a 1/4 wavelength plate (9) directly or indirectly.