Abstract:
A push button switch includes a base part provided with a fixed contact and a snap dome, a light source disposed on a lower surface of the base part, a cover member disposed to cover the base part and having at one side surface an opening, and an operating controller disposed to slide inside the opening in a lateral direction and configured to press the snap dome downwardly. The light source is contained in a cutout provided in a motherboard on which the push button switch is mounted, to illuminate the operating controller brightly.
Abstract:
A reading device includes a light source, an imaging element, a controller, a correcting unit, and a notifying unit. The light source is configured to irradiate an object with light. The imaging element is configured to receive and read the light from the object. The controller is configured to control a second reading operation of reading the object with an invisible image. The correcting unit is configured to perform correction with respect to the invisible image. The notifying unit is configured to notify an outside of at least the invisible image corrected.
Abstract:
A lighting device 1 includes a heat sink 2, a substrate 3 attached to a mounting portion 11 of the heat sink 2, a plurality of light sources 4 mounted on the substrate 3, and a cap 6 electrically connected to the substrate 3 while fixed to a rear portion of the heat sink 2 through a casing 5. The heat sink 2 has a three-dimensional shape including a plurality of mounting portions 11a, 11b and 11c facing in directions different from each other and provided at least at a front-end surface 12 of the heat sink 2. At least the front-end surface 12 is exposed to outside, and a plurality of heat-releasing fins 2a is provided around the front-end surface 12. The lighting device has a higher heat-releasing property, and can enlarge an illuminated area.
Abstract:
A piezoelectric/electrostrictive device includes a stationary portion; a thin-plate portion supported by the stationary portion; and a piezoelectric/electrostrictive element including a plurality of electrodes and a plurality of piezoelectric/electrostrictive layers arranged alternatingly in layers. The piezoelectric/electrostrictive device is manufactured by the steps of forming a piezoelectric/electrostrictive laminate by alternatingly laminating laminar electrodes and piezoelectric/electrostrictive layers on a plane of a thin-plate member adapted to form the thin-plate portion, and cutting the thin-plate member and the piezoelectric/electrostrictive laminate. The cutting step is performed by advancing a wire member (wire saw) reciprocating in a direction parallel to the direction of lamination of the piezoelectric/electrostrictive laminate while holding the wire member substantially parallel to the direction of lamination. Thus, since the laminar electrodes are cut while being extended within corresponding layer planes, the degree of covering the end surfaces of the piezoelectric/electrostrictive layers decreases.
Abstract:
The response characteristics of an output signal and current consumption are kept constant. A drive circuit for outputting an output signal having a voltage determined by a logic of an input signal includes a constant voltage generating section generating a constant bias voltage, a CML circuit outputting the output signal having the voltage determined by the logic of the input signal, where an amplitude of the output signal is determined by a constant current flowing through the CML circuit and a potential of the output signal is determined by the bias voltage, an adjustment constant current source that allows a constant current to flow out from a bias voltage output end of the constant voltage generating section, and a current setting section that sets in advance the constant current flowing into the adjustment constant current source, according to the constant current flowing through the CML circuit.
Abstract:
A rotary electric machine includes a rotor core, a stator, a field yoke, and a field winding. The rotor core is fixed to a rotary shaft, which includes a magnetic body for forming a magnetic path, and magnetic salient poles. The stator has teeth and a stator winding wound around the teeth by concentrated winding. A slot is formed between adjacent ones of the teeth in a circumferential direction. The field yoke magnetically connects the stator and the magnetic body. The field winding is located in proximity to at least one of the winding ends of the stator winding in an axial direction of the rotary shaft. The field winding generates a magnetic pole on the magnetic salient poles when energized.
Abstract:
A switch module includes a substrate (4), a plurality of switches (6) provided on an upper surface of the substrate (4), first and second light-guiding sheets (8, 10) disposed to be stacked above the plurality of switches (6), at least one first light source (12) disposed on the upper surface of the substrate (4) to illuminate the first light-guiding sheet (8), at least one second light source (14) disposed on the upper surface of the substrate (4) to illuminate the second light-guiding sheet (10), and a switching-control device (15) configured to switch between lighting of the first light source (12) and lighting of the second light source (14). First and second displays (22, 24) are respectively provided on a surface of each of the first and second light-guiding sheets (8, 10). When the first light source (12) is lighted, the first display is displayed, and when the second light source (14) is lighted, the second display (24) is displayed. By switching between lighting of the first light source (12) and lighting of the second light source (14), either the first display (22) or the second display (24) can be selectively displayed.