Abstract:
A distributed constant type filter includes a substrate including a part made of a first dielectric material having a first relative dielectric constant and a different-material part made of a second dielectric material having a second relative dielectric constant different from the first relative dielectric constant. A filter pattern is formed on a top surface and a ground pattern is formed on a bottom surface of the substrate. Part of the filter pattern is formed on the different-material part.
Abstract:
A portable apparatus including a flat antenna apparatus is disclosed. The portable apparatus operates with a battery. The flat antenna apparatus includes an antenna element and a ground element, where the ground element is a surface of the battery.
Abstract:
An antenna device includes an antenna part and a dielectric formed on the antenna part. The dielectric is formed to be thicker in a direction of directivity that the antenna part is to be made to have, than in another direction.
Abstract:
A micro-relay includes a first substrate having stationary contacts and a stationary electrode, a second substrate arranged so as to face the first substrate, and a movable plate arranged between the first and second substrates. The movable plate has a frame and a movable portion. The frame is sandwiched between the first and second substrates to realize a hermetical sealed structure. The movable portion has a movable electrode facing the stationary electrode, and a movable contact faces the stationary contacts. The movable portion moves between the first and second substrates due to electrostatic attraction that develops between the movable electrode and the stationary electrode.
Abstract:
Bush 1 comprises back metal layer 2 made from a steel plate and porous sintered metal layer 4 made from copper, provided on the surface of back metal layer 2 through copper plating layer 3 and impregnated and coated with sliding material 5 within and on the surface of porous sintered metal layer 4, where sliding material 5 comprises PTFE as the main component (not less than 50 vol. % of the entire material), 3-40 vol. % of Bi particles and/or Bi alloy particles, 1-40 vol. % of injection moldable fluororesin such as PFA, etc., 0.1-20 vol. % of hard particles such a W, Al2O3, etc., and 0.1-20 vol. % of a solid lubricant such as graphite, etc. The sliding material based on PTFE as the main component is free from lead and can further improve the wear resistance, while maintaining good sliding characteristics.
Abstract translation:衬套1包括由钢板制成的背金属层2和由铜制成的多孔烧结金属层4,其通过镀铜层3设置在背金属层2的表面上并在其表面内和表面上浸渍并涂覆有滑动材料5 多孔烧结金属层4,其中滑动材料5包含PTFE作为主要成分(不小于整个材料的50体积%),3-40体积% %的Bi颗粒和/或Bi合金颗粒,1-40体积% %的可注射成型氟树脂如PFA等,0.1-20体积% %的硬颗粒如W,Al 2 O 3等,和0.1-20体积% %的固体润滑剂如石墨等。以PTFE为主要成分的滑动材料不含铅,可以进一步提高耐磨性,同时保持良好的滑动特性。
Abstract:
A panel-type input device including a pair of electrode plates, each electrode plate having a substrate and a conductive coat provided on a surface of the substrate, the conductive coat of each electrode plate being formed from a conducting polymer. The conductive coat of each electrode plate includes a detecting area adapted to detect a touch input and an inoperative area disposed adjacent to the detecting area, the inoperative area having a surface resistivity higher than a surface resistivity of the detecting area. A parallel electrode pair adapted to apply a voltage to the conductive coat is formed in the detecting area, and conductors connected to the parallel electrode pair are formed in the inoperative area. The inoperative area insulates the conductors from the detecting area.
Abstract:
An input detection circuit including: an acquisition portion that acquires at least one potential of a first conductive membrane formed on a first surface of a first substrate, and a second conductive membrane formed on a second surface of a second substrate provided at a position away from the first substrate, the second surface being opposed to the first conductive membrane; a first control portion that controls switches connected to the first conductive membrane or the second conductive membrane to intermittently apply a voltage to the first conductive membrane; and a first detection portion that detects an input operation by detecting the generation of a current that flows from the first conductive membrane to which the voltage is applied by the first control portion, to the second conductive membrane based on the potential acquired by the acquisition portion.
Abstract:
A haptic sense rendering apparatus is disclosed that includes a haptic sense rendering unit, a magnet, a coil that magnetically interacts with the magnet and drives the haptic sense rendering unit, and a drive circuit that generates a drive signal for driving the haptic sense rendering unit to emphasize at least one of a drive starting operation and a drive terminating operation and supplies the generated drive signal to the coil.
Abstract:
The present invention discloses an antenna apparatus including a dielectric substrate on which an element including a conductive material pattern is formed. The dielectric substrate is a film.