Abstract:
An electronic device having a variable capacitance element, includes a support substrate providing physical support, a pair of anchors formed on the support substrate, and having support portions in a direction perpendicular to a surface of the substrate, a movable electrode supported by the support portions of the pair of anchors, having opposing first and second side surfaces constituting electrode surfaces, and at least partially capable of elastic deformation, a first fixed electrode supported above the support substrate, and having a first electrode surface opposing to the first side surface of the movable electrode, and a second fixed electrode supported above the support substrate, and having a second electrode surface opposing to the second side surface of the movable electrode.
Abstract:
An electronic device includes: a base member; a conductive film including a first end portion and a second end portion fixed to the base member, the conductive film being movable in a lateral direction of the base member between the first end portion and the second end portion; a first driving electrode, which is provided in the base member at a position opposed to a first main surface of the conductive film, and to which a first driving voltage is applied; a second driving electrode, which is provided in the base member at a position opposed to a second main surface of the conductive film, and to which a second driving voltage is applied; and a terminal provided in the base member at a position where the terminal enables to come into contact with the second main surface of the conductive film.
Abstract:
A variable filter device has: a first series arm which is serially connected to a signal line, includes a variable capacitance and an inductance, and constitutes a series resonator; first and second parallel arms, which are connected between the signal line and the ground on both sides of the first series arm, each of which includes a variable capacitance and an inductance, and constitutes a grounded series resonator. The first series arm defines the center frequency of the pass band, and the first and second parallel arms define attenuation poles sandwiching the pass band.
Abstract:
A method includes acquiring first information and second information from a terminal device, transmitting a second portion of data from the first storage device to a second storage device coupled to the second base station based on a determination to transfer the second portion of the data, determining whether to change a communication destination of a first communication of the terminal device from the first base station to the second base station based on the first information and the second information, changing the communication destination from the first base station to the second base station after the data is transmitted from the first storage device to the second storage device, and transmitting a segment of the second portion of the data from the second storage device to the terminal device after the communication destination is changed from the first base station to the second base station.
Abstract:
A sensor part has sensor cells provided in a matrix arrangement on a sensor that detects a pulse within a region in which the pulse of a diagnostic target is detected, in a state in which a pressure is applied to the region through the sensor. A diagnostic apparatus acquires a distribution of a pulse waveform based on the pulse detected in a state in which the pressure is constant, determines observation positions within the region, and determines a maximum amplitude at the observation positions that are determined by increasing the pressure, based on the distribution of the pulse waveform. A digitized score of the pulse at each observation position is computed based on the pressure at a time when the pulse waveform having the maximum amplitude is obtained at each observation position.
Abstract:
A positional information managing device includes a processor. The processor is configured to manage first positional information of a first mobile device communicating with a network. The processor is configured to associate device information of a second mobile device connected to the first mobile device with the first positional information. The second mobile device communicates with the network through the first mobile device.